WO2017054727A1 - 能调节角度定位及自闭铰链 - Google Patents
能调节角度定位及自闭铰链 Download PDFInfo
- Publication number
- WO2017054727A1 WO2017054727A1 PCT/CN2016/100554 CN2016100554W WO2017054727A1 WO 2017054727 A1 WO2017054727 A1 WO 2017054727A1 CN 2016100554 W CN2016100554 W CN 2016100554W WO 2017054727 A1 WO2017054727 A1 WO 2017054727A1
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- WIPO (PCT)
- Prior art keywords
- magnet
- sleeve
- screw
- hinge
- fixed
- Prior art date
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- E—FIXED CONSTRUCTIONS
- E05—LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
- E05D—HINGES OR SUSPENSION DEVICES FOR DOORS, WINDOWS OR WINGS
- E05D11/00—Additional features or accessories of hinges
- E05D11/10—Devices for preventing movement between relatively-movable hinge parts
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- E—FIXED CONSTRUCTIONS
- E05—LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
- E05F—DEVICES FOR MOVING WINGS INTO OPEN OR CLOSED POSITION; CHECKS FOR WINGS; WING FITTINGS NOT OTHERWISE PROVIDED FOR, CONCERNED WITH THE FUNCTIONING OF THE WING
- E05F1/00—Closers or openers for wings, not otherwise provided for in this subclass
- E05F1/02—Closers or openers for wings, not otherwise provided for in this subclass gravity-actuated, e.g. by use of counterweights
- E05F1/04—Closers or openers for wings, not otherwise provided for in this subclass gravity-actuated, e.g. by use of counterweights for wings which lift during movement, operated by their own weight
- E05F1/06—Mechanisms in the shape of hinges or pivots, operated by the weight of the wing
Definitions
- the invention relates to an adjustable angle positioning and a self-closing hinge.
- the Chinese Patent Database has announced the invention of the utility model name "A Lifting and Closing Device", Patent No. 2013208356551. It includes a top hinge, a lower hinge, a drive base and a drive rod.
- the upper hinge comprises an upper sleeve and an upper joint blade fixed to the upper sleeve;
- the lower hinge comprises a lower sleeve and a lower joint blade fixed to the lower sleeve;
- the transmission seat is fixed to the upper sleeve, and the bottom end of the transmission seat is concave
- a transmission cavity is provided, and the inner spiral surface of the transmission cavity is provided with a first spiral portion.
- the transmission rod is fixed to the lower sleeve, and the rotating surface of the transmission rod is provided with a second spiral portion, the transmission rod is connected to the transmission cavity, and the first spiral portion and the second spiral portion are adapted to engage, wherein: pushing the upper hinge
- the upper hinge is rotated relative to the lower hinge, and the upper hinge is raised by the cooperation of the first spiral portion and the second spiral portion; the release of the upper hinge is lowered by gravity, and the first spiral portion and the second spiral portion are passed.
- the cooperation can make the upper hinge automatically reset and return to close.
- the lifting hinge device cannot realize self-positioning within a certain predetermined angle, can be self-closing at another predetermined angle, and cannot adjust the predetermined angle of self-positioning.
- the present invention provides a hinged positioning angle self-positioning and self-closing hinge that overcomes the deficiencies of the lifting hinge device of the prior art.
- Adjustable angular positioning and self-closing hinges including two hinges, a solid rod and a threaded sleeve, the two hinges being relatively rotatable, each hinge comprising a sleeve and a blade fixed to the outside of the sleeve, the solid rod
- the utility model has a screw, which is characterized in that it further comprises a fixing seat, an adjusting seat and a screw ring, wherein the screw sleeve is fixed in a sleeve of a hinge, the fixing seat is fixed in a sleeve of a hinge, the screw sleeve and a fixing seat; a fixing rod, a screw ring, a first magnet, a second magnet, a first spring, a cup body, a second spring and an adjusting seat are disposed between the screw sleeve and the fixing seat of the two hinges
- the fixing rod has a screw threaded on the threaded sleeve, the first spring is
- a screw rod and a screw ring and two magnets and two springs and an adjusting seat are arranged between the screw sleeve and the solid seat.
- the screw sleeve and the screw rod in the connecting sleeve of the two sleeve sleeves can rotate relative to each other to make the rod
- a six-straight pitch pitch convex spiral rod tooth having more than two of the screws can slide axially downward with respect to six straight-slant pitch concave spiral rod teeth of two or more of the screw sleeve
- the six helical pitches of the helical helical rod teeth of the screw can be slid and moved axially downward relative to the six straight oblique pitch concave spiral rod teeth of the screw sleeve, so that the screw sleeve and the screw can also be opposite each other.
- the axial downward movement and the upper movement are within a predetermined angle of the hinge rotation, and the top rods of the two magnets are balanced by the magnetic force and the spring force of the two springs, so that the hinge blades can be self-aligned and rotated.
- the self-closing function can be realized by the self-closing function of the hinge angle, and the adjustment seat is adjusted to rotate and cooperate with the seat and the first position.
- the spacing position of the second magnet and the fixing seat can be adjusted and adjusted so that the second magnet and the first magnet can be strongly magnetized together in the connecting sleeve, so as to make the adjusting seat
- the predetermined positioning angle of the hinged blade can be adjusted correspondingly, so that the blade of the hinge can be self-positioned at a single positioning angle position between the required predetermined positioning angles, and a single positioning angle in the predetermined positioning angle.
- the blade of the hinge below the starting point of the positioning position can be self-closing, the hinge is rotated to a starting position of the predetermined positioning angle, and a positioning angle in the predetermined positioning angle is below the starting position of the positioning position.
- the adjustment seat can cooperate with the second magnet and the bottom of the cup and the cup to adjust and adjust the distance between the second magnet and the first magnet.
- the magnetic force of the second magnet and the first magnet can be strongly positioned in the connecting sleeve together, so that the adjusting seat can be matched with the adjustment of the hinge blade.
- the positioning angle position is self-positioned so that the hinge can be self-positioning at a positioning angle position between the required predetermined positioning angles, and a positioning position at a predetermined positioning angle can be self-positioning.
- the leaf of the hinge can be self-closing.
- FIG. 1 is a schematic structural view of a hinge of the first embodiment.
- FIG. 2 is a schematic structural diagram of a left hinge of the first embodiment.
- FIG. 3 is a schematic structural diagram of a right hinge of the first embodiment.
- FIG 4 is a schematic structural view of a first spring of the first embodiment.
- FIG. 5 is a schematic structural view of a third bearing of the first embodiment.
- FIG. 6 is a schematic view showing the assembly structure of the connecting sleeve of the first embodiment.
- FIG. 7 is a schematic structural view of the connecting sleeve of the first embodiment.
- FIG. 8 is a schematic structural view of the screw sleeve of the first embodiment.
- FIG. 9 is a schematic perspective view of the screw sleeve of the first embodiment.
- FIG. 10 is a perspective view showing the first bearing of the first embodiment.
- FIG. 11 is a schematic perspective view of the spiral ring of the first embodiment.
- FIG. 12 is a perspective view of the sliding sleeve of the first embodiment.
- FIG. 13 is a schematic perspective view of the solid rod of the first embodiment.
- FIG. 14 is a schematic structural view of the first magnet of the first embodiment.
- FIG. 15 is a schematic perspective view of the first magnet of the first embodiment.
- 16 is a schematic structural view of a first screw of the first embodiment.
- FIG. 17 is a schematic structural view of a second magnet of the first embodiment.
- FIG. 18 is a perspective view showing the second magnet of the first embodiment.
- FIG. 19 is a schematic structural view of a second screw of the first embodiment.
- 20 is a perspective view of the sealing apron of the first embodiment.
- 21 is a perspective view of the cup of the first embodiment.
- FIG. 22 is a schematic structural view of the cup body of the first embodiment.
- FIG. 23 is a schematic perspective view of the fixed seat of the first embodiment.
- FIG. 24 is a schematic structural view of the fixing seat of the first embodiment.
- FIG. 25 is a schematic perspective view of the adjusting seat of the first embodiment.
- FIG. 26 is a schematic structural view of the adjusting seat of the first embodiment.
- 27 is a schematic structural view of a hinge of the second embodiment.
- 28 is a schematic view showing the assembly structure of the sleeve of the second embodiment.
- 29 is a schematic structural view of a hinge of the third embodiment.
- FIG. 30 is a schematic view showing the structure of the gasket of the third embodiment.
- Figure 31 is a schematic view showing the structure of the solid rod of the third embodiment.
- FIG. 32 is a schematic perspective view of a sealing apron of the third embodiment.
- 33 is a schematic structural view of a second spring of the third embodiment.
- Figure 34 is a schematic view showing the structure of the hinge of the fourth embodiment.
- 35 is a schematic structural view of a hinge of Embodiment 5.
- 36 is a perspective view of the screw pull ring of the fifth embodiment.
- FIG. 37 is a schematic perspective view of a rubber column of the fifth embodiment.
- FIG. 38 is a schematic structural view of a through-spring through hole of a screw sleeve of Embodiment 5.
- 39 is a perspective view showing the first magnet of the fifth embodiment.
- 40 is a perspective view showing the second magnet of the fifth embodiment.
- Figure 41 is a perspective view showing the first magnet cover of the fifth embodiment.
- Figure 42 is a perspective view showing the second magnet cover of the fifth embodiment.
- the invention structure and structural fittings of the hinge are suitable for being placed in the sleeve of any shape of the hinge, such as butterfly hinge, H-shaped hinge, sub-male hinge, flag hinge, door hinge, door folding Page hinges and any odd hinges and more.
- the adjustable angle positioning and self-closing hinges can be fitted to any door page and any door and window as well as any door, compartment door and the like.
- the adjustable angle positioning and the predetermined setting positioning angle of the self-closing hinge can be set to a predetermined setting positioning angle set to 180 degrees from a positional positioning position position of a predetermined setting positioning angle of 20 degrees, and a positioning angle of 20 degrees at a predetermined positioning angle is set.
- any predetermined position of the positioning angle position, the hinge of the leaf can achieve self-positioning, and the starting point of any predetermined positioning angle, the hinge of the blade can be below the starting position of the positioning position In order to make the hinges of the hinges achieve self-closing.
- the hinge comprises a left hinge 10 and a right hinge 20 ;
- the left hinge 10 includes a left sleeve 11 and a left blade 12 fixed to the left sleeve 11 .
- the left sleeve 11 is disposed on the lower half of the left blade 12;
- the right hinge 20 includes a right sleeve 21 and a right blade 22 fixed to the outside of the right sleeve 21, and the right sleeve 21 is disposed on the right blade 22.
- a second flange 52 is disposed in the connecting sleeve 50, and can be abutted in the annular groove 520 of the plug 60 through the second flange 52 so that the second flange 52 can be disposed in the connecting sleeve 50.
- the annular groove 520 of the fixing seat 60 is inserted to enable the fixing seat 60 and the second flange 52 to be fixed in the connecting sleeve 50.
- the fixing seat 60 extends out of the outer portion of the connecting sleeve, and is screwed into the screw through hole of the left bushing 11 through the fixing screw 98, and is fixed in the fixing seat 60 to fix the left bushing 11 and the fixing seat 60 together.
- the hinge further includes a fixing rod 30 , a screw sleeve 40 , a coupling sleeve 50 , a fixing seat 60 , and an adjusting seat 70 .
- the connecting sleeve 50 is connected in the left sleeve 11 and the right sleeve 21, and the left sleeve 11 and the right sleeve 21 are arranged side by side so that the hinges can rotate relative to each other; the third bearing can also be rotated and sleeved
- the third bearing 59 is rotatably connected between the circumferential plane of one end of the left sleeve 11 and the circumferential plane of the end of the right sleeve 21 so that the right hinge 20 is opposite to the left.
- the page 10 axis rotates more smoothly, and the left sleeve 11 and the right sleeve 21 are arranged side by side such that the hinges are rotatable relative to the axis.
- the threaded sleeve 40 is rotatably and non-slidably coupled within the connecting sleeve 50 in the right sleeve 21, and the right hinge 20 has a swivel 41 in the right sleeve 21 and a thin rod 42 of the threaded sleeve 40.
- the outer portion of the connecting sleeve 50 is fixedly fastened, and the rotating sleeve 40 is provided with a rotating ring 41.
- the upper portion of the threaded sleeve 40 is convexly provided with a thin rod 42 having a thin rod 42 rotatably passing through the rotating ring 41.
- the swivel 41 is fitted to the upper end portion of the right sleeve 21, and the screw through hole that is screwed through the right sleeve 21 by the fixing screw 98 is locked into the fixed thin rod 42 by locking through the swivel 41. So that the right sleeve 21 and the swivel 41 and the thin rod 42 are fixed together, so as to be able to position the axial and circumferential spacing coefficient coefficients of the fixed rod under the axis and the upper sliding and moving relative to the sleeve, as opposed to It is the blade that can fit the hinge freely to set the positioning angle.
- the swivel 41 and the right bushing 21 can also limit and control the axial movement of the nut 40.
- a second flange 52 is disposed in the connecting sleeve 50, and can be abutted in the annular groove 520 of the fixing seat 60 through the second flange 52 so that the second flange 52 can be disposed in the connecting sleeve 50.
- the annular groove 520 of the fixing seat 60 is inserted so that the fixing seat 60 and the second flange 52 can be connected and fixed in the connecting sleeve.
- the fixing seat 60 extends out of the outer portion of the connecting sleeve 50 and is screwed through the fixing screw 98.
- the screw through hole of the left sleeve 11 is screwed into the fixed adjustment seat 70 after being locked into the fixed seat 60, and at the same time, the fixing screw 98 is first locked and fixed together with the left sleeve 11 and the fixed seat 60.
- the adjusting seat 70 waits for the adjusting seat 70 to be rotated to adjust the base of the fixing base 60 and the second magnet 82 and the cup 61 to adjust and adjust the spacing between the second magnet 82 and the first magnet 81.
- the screw sleeve and the fixing seat are spaced apart, and a fixing rod 30, a screw ring 43, a first magnet 81, a second magnet 82, a cup body 61 and a gasket are arranged between the screw sleeve and the fixing seat in the connecting sleeve.
- the first spring 91 and the second spring 92 have a screw 31, and the first magnet 81 and the second magnet 82 are magnetically attracted.
- the energy storage of the energy storage of the first magnet 81 and the second magnet 82 by magnetic magnetic attraction must be greater than the energy storage elastic force of the first spring 91 plus the release of the energy storage pre-tension of the first spring. .
- the first magnet of the hinge is that the steel does not have the magnetic attraction force or the second magnet is the steel that does not store the magnetic attraction force.
- the hinged blade can be self-positioned at a single positioning angular position between predetermined positioning angles, and the hinged blade can be self-closing when the single positioning angle is below the starting point of the self-positioning angular position.
- the rod 30 has a rod 31 of the rod fitting screw 40 of the screw 31, so that the screw 31 of the rod 30 can slide and move along the axis with respect to the screw sleeve 40.
- the fixing rod 30 includes a screw 31 that is screwed to the threaded sleeve 40.
- the first spring 91 abuts between the fixed rod 30 and the spacer 85.
- the first magnet 81 and the connecting rod 33 are fixed to the fixing rod 30.
- the second spring 92 is slidable along the axis, and the second spring 92 can be abutted against the fixed seat.
- the other end of the second spring 92 can abut against the second magnet 82.
- the second magnet 82 can move relative to the fixed seat 60.
- the adjusting seat 70 cooperates with the second magnet 82 and the cup bottom of the cup body and the fixing base 60 to adjust and adjust the position of the second magnet 82 and the fixing seat 60; the adjusting seat 70 is adjusted to rotate to be correspondingly fixed.
- the seat 60 and the second magnet 82 and the cup bottom of the cup 61 are arranged to adjust and adjust the position of the second magnet 82 and the first magnet 81 so as to enable the second magnet and the first magnet to be magnetized together.
- the leaf of the hinge can be self-closing, and the position of the hinge is rotated to a position of 90 degrees between the predetermined angles.
- the starting point is self-positioning, and the predetermined angle is 90.
- the hinge seat can correspond to a predetermined angle required for adjusting the blade of the hinge to be self-positioning at a positioning angle position of a predetermined angle required, and the blade of the hinge can be below a starting point of a positioning angle of a predetermined angle required Achieve self-closing function.
- a first flange 51 is disposed in the connecting sleeve 50, and the first flange 51 can abut against the annular groove 403 of the screw ring 43 in the connecting sleeve 50, so that the first flange 51 is in the connecting sleeve.
- the inner ring 50 can be inlaid with a spiral ring groove 403, so that the screw ring 43 and the first flange 51 and the connecting sleeve 50 are connected and fixed together in the connecting sleeve 50, so that the screw ring 43 cannot rotate and cannot slide and move.
- the ground connection is fixed in the connection sleeve 50,
- the spiral ring 43 is recessed through the through hole, and the circumferential edge of the inner ring of the through hole 43 is convexly provided with a spiral inner ring flange 433, and the fixed rod 30 has a convex ring 32, and
- a convex ring sliding track groove 332 is recessed in a circumferential direction of the outer ring of the convex ring, so that the inner ring flange 433 of the screw ring 43 can abut against the convex ring sliding track groove 332, so as to make the screw
- the inner ring flange 433 of the ring can correspond to the convex ring sliding track groove 332 of the convex ring 32 of the fixed rod 30, so as to be able to position and limit the sliding and moving of the fixed rod in the axial direction downward and upward relative to the screw sleeve.
- the pitch dimension of the axial direction and the wheelbase does not change, and the right blade 21 of the right hinge 20 can be set to a predetermined positioning angle so that the positioning angle of the right blade 22 of the right hinge 20 can be positioned from a position angle of 50 degrees. It is predetermined to be set to a 180 degree positioning angle position, as the right blade 22 of the right hinge 20 needs to be self-positioning starting at a predetermined angular position of 90 degrees between predetermined angles, while the blade of the hinge is opened to a predetermined angle of 90 degrees. When the 90 degree positioning position is in the middle, the right blade 22 of the right hinge 20 is driven to drive the connection in the sleeve.
- the nut sleeve in the sleeve 50 is rotated such that the six helical pitches of the two or more of the two or more of the screws of the fixed rod can be six straight pitch pitches of the two or more of the screw sleeve 40.
- the concave spiral rod teeth slide downward in the axial direction, so that the six straight-slant pitch helical magnetic rod teeth of the screw can slide axially downward with respect to the six straight-slant pitch concave spiral rod teeth of the screw sleeve.
- the solid rod has a screw and the first magnet corresponding to the right flap 22 of the right hinge 20 to slide down and move until the hinge vane is opened to a desired 90 degree predetermined angular position
- the right blade 22 of the right hinge 20 requires a 90 degree positioning angle position among the predetermined angles, while the right blade 22 of the right hinge 20 has no positioning function, while the right blade 22 of the right hinge 20 is required.
- the first spring is the energy storage elastic state of the first spring 91 by the high pressure compression of the annular convex ring 32 of the fixed rod 30 from the top to the bottom.
- the energy storage state of the first spring 91 is changed to release the energy storage elastic force, so that the energy storage elastic force at one end of the first spring 91 can strongly support the annular annular ring 32, and the first The energy storage elastic force of the other end of the spring 91 is strong against the circumferential surface of the top spacer 85 and the front end of the cup 61,
- the right blade 22 of the right hinge 20 needs to be closed to make the hinge
- the blade positioning angle of the page is below the starting point of the 90 degree positioning angular position between the predetermined angles that have been adjusted in place by the adjustment seat in the fixed seat, so that the right blade 22 of the right hinge 20 can achieve the self-closing function.
- the screw ring 43 is located under the screw sleeve and the screw thread 31 passes through the screw ring 43 and then the screw sleeve 40 is screwed so that the screw ring 43 can restrict the rotation and movement of the screw rod 31 relative to the screw sleeve 40, and the spacing coefficient coefficient generated.
- the spacing between the axial and the wheelbase that can position and limit the sliding and moving of the fixed rod in the axial direction downward and upward relative to the screw sleeve does not change, and the hinged blade can be matched to the hinged blade.
- the positioning angle can be freely set, and the positioning angle of the predetermined angle can be self-positioned correspondingly to a positioning angle of the blade that can match the hinge.
- the fixing rod 32 has a convex ring sliding track groove 332 recessed at a circumferential side surface of the outer ring of the convex ring 32, and the inner ring of the inner ring of the through ring passing through the through hole is convexly provided with an inner ring of the spiral ring a flange 433, so that the inner ring flange of the spiral ring can abut against the convex ring sliding track groove, so that the inner ring flange 433 of the spiral ring can correspondingly fit the convex ring sliding track groove 332
- the distance between the axial and the wheelbase of the sliding and moving of the fixed rod in the axial direction downward and upward relative to the screw sleeve is not changed, and the positioning angle is set relative to the right blade corresponding to the right hinge.
- a third flange 53 is disposed in the connecting sleeve 50, and can be abutted in the annular groove 530 of the first bearing through the third flange 53 so that the third flange 53 is in the connecting sleeve 50.
- the annular groove 530 of the first bearing can be embedded therein so that the first bearing 44 and the third flange 53 cannot be movably connected to the connecting sleeve in the upper and lower directions (by providing a third flange in the connecting sleeve) 53 such that the third flange 53 can be fitted with the annular groove 530 of the first bearing in the connecting sleeve 50 to axially limit the displacement of the first bearing 44; the annular convex ring 32 and the first of the fixed rod 30
- a second bearing 34 is also disposed between the springs 91. The second bearing 34 is sleeved on the connecting rod 33 of the fixed rod 30.
- the first spring 91 is sleeved on the connecting rod 33, and one end of the first spring 91 can be offset. At the second bearing 34, the other end of the first spring 91 can be supported between the spacer 85 and the circumferential plane of the front end of the cup bottom of the cup 61.
- a second flange 52 is disposed in the connecting sleeve 50, and can be abutted in the annular groove 520 of the plug 60 through the second flange 52 so that the second flange 52 can be disposed in the connecting sleeve 50.
- the annular groove 520 of the fixing seat 60 is inscribed so that the fixing seat 60 and the second flange 52 are not slidably and movably connected and fixed in the connecting sleeve, and the fixing part 60 extends out of the connecting sleeve and is fixed to the left side.
- the connecting sleeve 50 can be a center sleeve 50.
- first screw 83 and a second screw 84 further comprising a first screw 83 and a second screw 84, and a fixing screw 98, the first screw 83 and The second screw 84 has a polished rod section and a threaded section 831, 841 at the end; the polished rod section of the first screw 83 passes through the inner ring through hole of the first magnet 81, and the threaded section 831 is screwed to the connection of the fixed rod 30
- the screw head 832 of the first screw 83 is supported at the inner ring through hole step 801 of the first magnet 81, so that the first magnet 81 and the connecting rod 33 are fixed together, so that the first magnet 81 can
- the sliding and moving of the fixing rod 30 together can restrict the first magnet from being disengaged from the first screw, so as to be correspondingly matched with the adjusting seat 70, so that the adjusting seat 70 can cooperate with the fixing seat 60 and the second magnet 82, Relatively to adjust the rotation of the adjustment base 70 to correspondingly match the base
- a required positioning angle position is self-positioning; the polished portion of the second screw 84 passes through the The inner ring of the magnet 82 has a through hole, and the threaded portion 841 is screwed into the end face of the adjusting seat 70 such that the screw head 842 of the second screw 84 is supported at the inner ring through hole step 821 of the second magnet 82, so that The second magnet 82 and the second screw 84 are coupled together with the adjusting base 70, and can further restrict the second magnet 82 from being detached from the second screw 84, so that the second magnet 82 can correspondingly cooperate with the fixing seat 60 and the adjusting seat 70, so that The adjusting seat 70 can adjust and rotate the position of the second magnet 82 and the first magnet 81 by adjusting the rotation, so that the adjusting seat can be correspondingly matched with the predetermined setting positioning angle of the blade for adjusting the hinge.
- the fixed rod 30 has a fixed convex ring 32 at the end of the fixed rod 30.
- the convex ring 32 is fixed with an annular convex ring 32, and the annular convex ring 32 is fixed with a connecting rod 33, and the convex ring 32 is fixed.
- the annular convex ring 32 is fixedly coupled to form the convex ring 32.
- the annular groove 321 is concavely disposed in the circumferential direction of the outer ring of the annular convex ring 32, and the annular groove 321 of the annular convex ring is sleeved with a sealant.
- the sealing ring 322 extends beyond the annular mounting groove 321 to seal against the connecting sleeve 50, and the sealing rubber ring 322 can fit the annular ring 32 in the connecting sleeve 50. Sliding and moving, relative to the ability to generate seal damping force and resistance within the connecting sleeve 50, and to strengthen and enhance the damping force and resistance force generated by the sliding and moving of the annular convex ring 32 in the connecting sleeve 50. The effect of the effect is to increase the strength of the self-positioning force of the annular convex ring in the connecting sleeve 50, and to simultaneously strengthen and enhance the magnetic storage magnetic force together with the magnetic attraction of the second magnet and the first magnet.
- the intensity of the self-positioning force of the right blade 22, which can simultaneously assist in reinforcing and reinforcing the right hinge 20, can be adjusted at a positioning angle position between the predetermined positioning angle positions, and can also be controlled at the same time. And limiting the release of the first spring's energy storage top bomb force, also to make the first The top-loading force and the abutment speed of the annular convex ring of the top-clamping rod of the upward force of the spring can be slowed down and buffered, and the blade can be controlled and restricted.
- the self-closing speed is fast and slow, and it can also improve and enhance the safety of the angle adjustment positioning and the self-closing hinge.
- the adjusting seat 70 connects the cup of the cup 61
- the bottom and the fixing seat 60 are used for adjusting the position of the spacing between the bottom of the cup and the fixing seat, adjusting the position of the spacing between the bottom of the cup and the fixing seat, and adjusting and adjusting the position of the spacing between the fixing seat and the second magnet;
- the adjusting seat is adjusted to rotate to correspond to the second magnet and the bottom of the cup and the cup body, so as to adjust and adjust the position of the second magnet and the first magnet, so that the second magnet and the first magnet can
- the magnetic attraction together can be positioned in the connecting sleeve, so that the adjusting seat can correspondingly adjust the positioning angle of the hinge vane, so that the hinge can be self-positioned at a 90 degree positioning angle position in a predetermined angle, and in a predetermined angle Below the starting
- the concave spiral thread teeth of the six straight oblique pitches of the two or more teeth of the screw sleeve 40 are slid downwardly in the axial direction, so that the screw rod of the fixed rod can slide and move downward along the axis with the screw sleeve.
- the screw and the first magnet of the fixed rod will slide down correspondingly to the right blade 22 of the right hinge 20 and move to the hinge.
- the blade is opened to a desired predetermined angular position, and the right hinge is opposite.
- the adjusting seat in the fixed seat is adjusted to rotate the adjusting seat, so that the adjusting seat can cooperate with the fixing seat and the cup bottom of the second magnet and the cup body, so as to adjust and adjust the position of the second magnet and the first magnet.
- the second magnet and the first magnet can be magnetically attracted together to be positioned in the connecting sleeve, so that the adjusting seat can be correspondingly matched with the predetermined angular position required for adjusting the hinged blade, so that the right blade 22 of the right hinge 20
- the starting position of the desired positioning angle can be self-positioning at a desired predetermined angle, but the right blade 22 of the right hinge 20 can also be opened to a 180 degree angle of the maximum limit point of the predetermined rotation of the blade of the hinge. After the degree, at this time, the right blade 22 of the right hinge 20 will self-close and return to a positioning angle position between a predetermined angle that has been adjusted by the adjustment seat in the fixed seat, and the hinge blade needs to be closed.
- the positioning angle of the right blade 22 of the right hinge 20 is separated from a starting position of a predetermined set positioning angle that has been adjusted in place by the adjusting seat in the fixed seat, so that the right hinge 20 is The right blade 22 can achieve a self-closing function.
- the adjusting seat 70 is a third screw, and the third screw is screwed through the protruding portion of the fixing portion and abuts against the bottom of the cup body, and the third screw is adjusted to rotate and cooperate with the seat and the third screw.
- the two magnets are capable of adjusting and adjusting the pitch size of the second magnet and the first magnet.
- the threaded section 841 of the second screw 84 is threadedly coupled within the end face of the adjustment seat 70 of the seat 60.
- the second spring and the second magnet are completely located in the cup body, and the second magnet is adapted to the sliding cup body, and the lower portion of the first magnet is adapted to the sliding cup body.
- the screw is restrained and controlled by the screw sleeve and the screw ring, and the rod teeth of the rod matching screw of the screw are urged, and the inner ring flange 433 of the screw ring is also matched with the convex ring 32 of the fixed rod 30.
- the convex ring sliding track groove 332 can generate a lower and upper sliding and moving movement of a predetermined angular interval with respect to each other, so as to be able to position the axial direction of the screw relative to the screw sliding down and upward along the axis.
- the hinge is opened to a positioning angle of 90 degrees, and at the same time, the hinge blade has no positioning function, and at the same time, the hinge blade has no positioning function.
- the hinge leaf When positioning at a 90 degree positioning angle, it is necessary to adjust the rotation adjustment seat through the adjustment seat in the fixed seat so that the adjustment seat can match the seat of the fixed seat and the second magnet and the cup to adjust and adjust.
- the second magnet and the first magnet are spaced apart such that the second magnet and the first magnet can be magnetically attracted together to be positioned in the connecting sleeve, so that the adjusting seat can be correspondingly matched to the predetermined setting required to adjust the hinged blade Positioning the angle so that the hinged blade can self-position at a desired 90 degree positioning angle of the predetermined set positioning angle, and is also 90 degrees between the predetermined angle of the hinged blade at a predetermined angle of 180 degrees to a predetermined angle of 180 degrees.
- the positioning angle position is self-positioning, when the hinge of the hinge needs to be closed, the positioning angle of the hinge leaf is separated from the positioning angle of 90 degrees, and the positioning angle of the hinge leaf is lower than the positioning angle of 90 degrees in the predetermined positioning angle.
- the energy storage elastic force of the first spring is a state in which the elastic storage force is compressed by the annular convex ring of the fixed rod,
- the energy storage elastic state of the first spring is changed to release the elastic force, so that the screw and the bearing of the fixed rod can be elastically jacked up, and the threaded rod teeth of the screw are adapted to the threaded screw sleeve teeth, resulting in
- the predetermined axial and circumferential angles are slid and moved upwards to enable the hinged blades to be self-closing.
- a first flange 51 is disposed in the connecting sleeve 50, and the first flange 51 in the connecting sleeve 50 can abut against the annular groove 403 of the screw ring 43 in the connecting sleeve 50, so that the first flange 51 is
- the annular sleeve 403 of the connecting sleeve 50 can be embedded with a screw ring, so that the screw ring 43 and the first flange 51 and the connecting sleeve 50 are connected and fixed together in the connecting sleeve 50, so that the screw ring 43 cannot rotate or
- the sliding and moving connection is fixed in the connecting sleeve 50, and the circumferential edge of the inner ring of the through hole of the spiral ring is convexly provided with an inner ring flange of the spiral ring, and the outer ring side of the convex ring of the fixed rod a convex ring sliding track groove is provided to enable the inner ring flange of the spiral ring to
- the inner ring flange 433 of the spiral ring is sleeved and slidably connected with the sliding sleeve 333, so that the spiral inner ring flange 433 of the sliding sleeve 333 can be abutted against the convex ring sliding track
- the inner ring flange 433 of the spiral ring 433 which is slidably coupled to the sliding sleeve 333 can correspond to the convex ring sliding track groove 332 of the convex ring 32 of the fixed rod 30, so as to be able to
- the movement of the auxiliary reinforcing rod is smoother than the sliding and moving movement of the relative screw sleeve along the axis, so that the hinged blade can be more smoothly opened and closed.
- the chute cam 32 is a convex ring 32.
- the first spring 91 and the second spring 92 can cause the right blade 22 of the right hinge 20 to be released after the 125° angular position of the right blade 22 of the right hinge 20 is opened, while the right hinge 20 is
- the right blade 22 is a 90-degree predetermined angle self-positioning angle position that is opened beyond a 50 degree positioning angle to a 180 degree positioning angle among the already set positioning angles, while the first spring 91 is fixed by the fixed rod 30.
- the annular convex ring 32 compresses the energy storage state of the first spring 91 by the high pressure of the top to the bottom, so that the energy storage state of the first spring 91 is changed, so that the energy storage elastic force is released, so that The energy storage elastic force of one end of the first spring 91 can strongly support the annular annular ring 32, and the energy storage elastic force of the other end of the first spring 91 is strong with the supporting spacer 85 and the cup body.
- the front end circumferential plane of the 61, at the same time, the second spring 92 is a high pressure compression second spring which is supported by the fixed rod 30 and the first magnet 81 and the second magnet 82 with a top-down strength.
- the energy storage state of the 92 causes the energy storage state of the second spring 92 to change So that the storage elastic force generated Released so that the energy storage elastic force of one end of the second spring 92 can strongly support the second magnet 82, and the energy storage elastic force of the other end of the second spring 92 is strong enough to support the top cup
- the bottom of the cup 61 is opposite so that the first spring 91 and the second spring 92 can cause the right blade 22 of the right hinge 20 to be closed so that the first spring 91 and the second spring 92 can turn the right hinge 20
- the blade 22 is reset to a self-positioning of a predetermined angular position of 90 degrees out of a predetermined set angle of positioning.
- the right hinge 20 is provided with two spaced-apart right bushings 21, which are right bushings 21 and right blades 22 thereof.
- the left hinge 10 is provided with a left sleeve 11 as described above, and the sleeve is a left sleeve 11, and the left sleeve 11 is interposed between the two right sleeves 21, and the blades are adapted to the notches.
- the connecting sleeve is omitted, and the left bushing 11 constitutes the connecting sleeve 50.
- the screw sleeve is screwed into the screw sleeve 40 through the screw through hole of the right sleeve 21 through the fixing screw 98, so that the screw sleeve 40 is fixed in the right sleeve 21 by the fixing screw 98.
- the screw sleeve 40 is fixed.
- the right hinge 20 and the right sleeve 21 can also limit and control the axial movement of the screw sleeve 40, so as to be able to position the screw in the relative screw
- the hinge comprises a left hinge 10 and a right hinge 20;
- the left hinge 10 includes a left sleeve 11 and a fixed left a left blade 12 outside the sleeve 11, the left sleeve 11 is disposed in a lower half of the left blade 12;
- the right hinge 20 includes a right sleeve 21 and a right blade 22 fixed to the outside of the right sleeve 21,
- the right sleeve 21 is disposed on the upper half of the right blade 22, and the screw through hole through which the fixing screw 98 is screwed through the right sleeve 21 is locked in the lock ring to lock the rotating ring to make the right shaft
- the sleeve 21 and the swivel 41 and the thin rod 42 are fixed together;
- the second flange 52 is provided in the connecting sleeve 50, through the first The two flanges 52 cooperate with the connecting sleeve 50 to enable the fixing seat 60 to
- the fixing seat 60 extends out of the connecting sleeve and is screwed into the screw through hole of the left sleeve 11 by the fixing screw 98.
- the fixed seat 60 is locked in the lock to fix the left sleeve 11 and the fixed seat 60 together.
- the hinge further includes a fixed rod 30, a threaded sleeve 40, a coupling sleeve 50, a fixed seat 60 and an adjustment seat 70.
- the connecting sleeve 50 is connected in the left sleeve 11 and the right sleeve 21, and the left sleeve 11 and the right sleeve 21 are arranged side by side so that the hinges can rotate relative to each other; the third bearing can also be rotated and sleeved
- the third bearing 59 is rotatably sleeved between the circumferential surface of one end of the left sleeve 11 and the circumferential surface of one end of the right sleeve 21 to rotate the right hinge 20 relative to the axis of the left hinge 10.
- the left sleeve 11 and the right sleeve 21 are arranged side by side such that the hinges are rotatable relative to the axis.
- the threaded sleeve 40 is rotatably and non-slidably coupled within the connecting sleeve 50 in the right sleeve 21, and the right hinge 20 has a swivel 41 in the right sleeve 21 and a thin rod 42 of the threaded sleeve 40.
- the outer portion of the connecting sleeve 50 is fixedly fastened, and the rotating sleeve 40 is provided with a rotating ring 41.
- the upper portion of the threaded sleeve 40 is convexly provided with a thin rod 42 having a thin rod 42 rotatably passing through the rotating ring 41.
- the swivel 41 is fitted to the upper portion of the right sleeve 21, and is screwed into the screw through hole of the right sleeve 21 by the fixing screw 98 and locked through the swivel 41 to lock the fixed thin rod to
- the right sleeve 21 and the swivel 41 and the thin rod are fixed together so as to be able to position the axial and circumferential spacing coefficient coefficients of the fixed rod under the axis and the upper sliding sleeve and the movement, and the opposite can be matched.
- the hinged vanes are such that the hinge vanes are free to be predetermined to provide a positioning angle so that the swivel 41 and the right sleeve 21 can also limit and control the axial movement of the nut 40.
- a second flange 52 is disposed on the connecting sleeve 50, and the connecting sleeve 50 is matched by the second flange 52 to fix the fixing base 60 in the connecting sleeve.
- the fixing seat 60 extends out of the outer portion of the connecting sleeve 50 and is screwed by the fixing screw 98.
- the screw through hole passing through the left sleeve 11 is screwed into the fixed adjustment seat 70 after being locked into the fixed seat 60, and at the same time, the fixing screw 98 does not need to be matched with the left sleeve 11 and the fixed seat 60 first.
- the fixing adjustment seat 70 is locked, and the adjustment seat 70 is adjusted to rotate to match the fixing base 60 and the second magnet 82 and the base of the cup body, so as to adjust and adjust the distance between the second magnet 82 and the first magnet 81.
- the second magnet and the first magnet can be magnetically attracted together to be positioned in the connecting sleeve, so that the adjusting seat can correspondingly adjust the positioning angle of the blade of the hinge to make the hinge of the hinge
- a predetermined positioning angle between the required positioning angles is self-aligned, and then the locking screw is fixed by the waiting fixing screw 98 to prevent the adjusting seat 70 from loosening.
- the magnetic attraction of the energy storage of the first magnet 81 and the second magnet 82 by magnetic attraction must be greater than the energy storage elastic force of the first spring 91 and the release of the energy storage pre-tension of the first spring 91.
- the collar 32 can be combined with the annular collar 32 to form the collar 32.
- the auxiliary adjustment blade positioning angle pad 616 can form a cup
- the cup bottom of the body 61 can also be a gasket 85, and an annular mounting groove 321 is recessed in the outer ring circumferential direction of the auxiliary adjusting blade positioning angle gasket 616, and a sealing rubber ring 322 is sleeved in the annular mounting groove 321
- the sealing rubber ring 322 also protrudes out of the annular mounting groove 321 so that the auxiliary adjusting blade positioning angle washer 616 can seal the sliding contact against the connecting sleeve 50, so that the auxiliary adjusting blade is positioned at the angular spacer 616.
- the sealing rubber ring can cooperate with the adjusting seat and the second magnet to control and limit the adjusting seat and the second magnet without swaying and traversing in the connecting sleeve, so that the right blade 22 of the right hinge 20 is at a predetermined angle. Position self-positioning is more stable.
- the auxiliary adjustment blade positioning angle washer 616 is the cup bottom of the cup body 61, and the cup bottom of the cup body 61 is the spacer 85.
- the fixing rod 30 has a screw 31 end having a fixed convex ring 32 fixed thereto, and the convex ring 32 is fixed with an annular convex ring 32, and The annular ring 32 is fixed with a connecting rod 33, and the convex ring 32 and the annular convex ring 32 are fixed together to form a convex ring 32.
- the outer ring of the convex ring 32 is concavely provided with a convex ring sliding track.
- the fixing rod 30 further includes a convex ring 32 fixed to the end of the screw 31.
- the convex ring sliding track extends through the groove through hole 332 at the circumferential side of the outer ring of the convex ring 32, and the convex ring 32 further includes a ring-shaped annular ring 32 is disposed, and the annular ring 32 is recessed with an annular mounting groove 321 .
- the annular mounting groove 321 is sleeved with a sealing rubber ring 322 , and the sealing rubber ring 322 extends out of the annular mounting groove 321 .
- the annular collar 32 can be sealed and abutted in the connecting sleeve 50.
- the sealing ring 322 and the annular collar 32 are assembled to form the above-mentioned convex ring 32.
- An annular groove 322 is recessed in a circumferential direction of the outer ring of the annular ring 32, and the annular groove 321 of the annular ring 32 is sleeved with a sealing rubber ring 322, and the sealing rubber ring 322 is also extended.
- the groove 321 is mounted to be sealingly abutted in the connecting sleeve, so that the sealing rubber ring of the annular ring 32 can control and limit the sliding and moving of the screw in the connecting sleeve along the axis and the upper sleeve.
- the axial and circumferential spacing distances do not change, and can also control and limit the sliding and movement of the screw in the sleeve under the axis and the axis of the sleeve without shaking, and the sealing rubber ring 322 also plays Preventing the solid rod from falling toward the second magnet, the sealing rubber ring also has the function of assisting reinforcement and reinforcing and enhancing the energy storage of the second magnet and the enhanced release of the magnetic storage magnetism of the first magnet, so that the second The magnet and the first magnet are strong
- the magnetic attraction is positioned in the connection sleeve with a strong force, and the self-positioning strength of the self-positioning of the blade can be self-aligned at a positioning angle between the predetermined set positioning angles with respect to the auxiliary reinforcing and reinforcing and reinforcing hinges.
- the convex ring sliding track penetrates the groove through hole 332 to form a convex ring sliding track groove 332.
- the seal ring 322 and the annular collar 32 are assembled to form the above-mentioned convex ring 32.
- the fixing rod 32 has a convex ring 32 with a convex ring sliding track extending through the groove through hole 332 in the circumferential direction of the outer ring, and the fixing sliding rod 339 passes through the screw through hole of the left sleeve 11 and continues to pass through the left.
- the convex ring sliding track in the sleeve 11 (the connecting sleeve 50) passes through the groove through hole 332 and continues through the screw through hole of the left sleeve 11 to fix the fixing slider 339 to the inner and outer rings of the left sleeve 11.
- the circumferential shaft wall is fixed such that the fixed sliding rod 339 and the left sleeve 11 are fixed together, so that the fixed sliding rod 339 of the sleeve sliding sleeve 333 can pass through the convex ring sliding track through the groove through hole.
- the convex ring sliding track of the convex ring 32 corresponding to the fixing rod 339 can be correspondingly engaged with the groove through hole 332, so as to be able to control and position the sliding of the fixed rod along the axis and the upper sleeve. And moving the axial and circumferential spacing size factor positions.
- the second spring 92 can cause the right blade 22 of the right hinge 20 to be released after the 125° angular position of the right blade 22 of the right hinge 20 is opened, while the right blade 22 of the right hinge 20 is Opening a predetermined angle self-positioning angle position between a 50 degree positioning angle and a 180 degree positioning angle among the predetermined positioning angles, and the second spring 92 is an annular convex ring which is fixed by the fixing rod 30.
- the energy storage elastic force at one end of the second spring 92 can strongly support the annular annular ring 32, and the energy storage elastic force at the other end of the second spring 92 can be strong against the spacer 85 and the first A magnet 81, relative to the second spring 92, enables the right blade 22 of the right hinge 20 to be closed so that the second spring 92 can reset the right blade 22 of the right hinge 20 to a predetermined angular position of 90 degrees. .
- the tension spring 318 has a front pull hook 328 hooked to the pull rod rod 313, and the tension spring 318 has a rear pull hook 338 hooked to the screw pull ring 311, so that the tension spring 318 can control the solid rod has a screw 31 along the opposite threaded sleeve along the shaft
- the position of the gap between the line and the upper slide does not change.
- the screw sleeve is screwed into the screw sleeve 40 through the screw through hole of the right sleeve 21 through the fixing screw 98, so that the screw sleeve 40 is fixed in the right sleeve 21 by the fixing screw 98.
- the screw sleeve 40 is fixed.
- the right hinge 20 and the right sleeve 21 can also limit and control the axial movement of the screw sleeve 40, so as to be able to position the screw in the opposite threaded sleeve
- the axial and circumferential spacing dimension coefficient positions along the axis and the upper sliding and moving are opposite to the predetermined positioning angle of the blade capable of engaging the hinge, so that the hinge blade can freely set the positioning angle; the solid rod 30
- the outer ring of the convex ring 32 has a convex ring sliding track groove 332 recessed in the circumferential direction, and the fixing slider 339 passes through the screw through hole of the left bushing 11 (the connecting sleeve 50) and abuts the convex ring sliding track.
- the fixed sliding rod 339 is fixed to the circumferential shaft wall of the inner and outer rings of the left sleeve 11, so that the fixed sliding rod 339 and the left sleeve 11 are fixed together, so that the fixed sliding rod 339 can
- the convex ring sliding track corresponding to the slide ring 32 of the matching solid rod 30 passes through the groove through hole 332 to control and position the fixed rod
- the axial and circumferential spacing dimension coefficient positions of the screw sleeve along the upper and lower sliding and moving directions of the screw sleeve are opposite to the predetermined positioning angle of the blade capable of engaging the hinge, so that the positioning angle of the hinged blade can be from 50 degrees.
- the positioning angle position is predetermined to be set to a 180 degree positioning angle position.
- the first magnet cover 811 is screwed into the first magnet 81 through the circumferential through hole of the first magnet cover 811 by the fixing screw 98, so that the first magnet cover 811 and the first magnet 81 are fixed to each other. together.
- the first magnet cover 811 is made of epoxy or any kind of glue to fix the first magnet 81 and the first magnet cover 811 together.
- the first screw 83 passes through the through hole of the first magnet cover 811 and then locks the screw ring collar 32 through the rubber column 922 to make the first magnet cover 811 and the first magnet 81 and the rubber column 922 and The annular collars 32 are joined together.
- the second magnet cover 822 is screwed through the circumferential through hole of the second magnet cover 822 by the fixing screw 98 to lock the second magnet 82 to fix the second magnet cover 822 and the second magnet 82. together.
- the second magnet cover 822 is passed through an epoxy or any kind of glue to secure the second magnet 82 and the second magnet cover 822 together.
- the adjusting seat 70 is screwed into the screw through hole of the second magnet cover 822 to fix the second magnet cover 822 and the adjusting base 70 together.
- the adjusting seat 70 is adjusted and rotated to correspondingly cooperate with the fixing seat 60 and the second magnet 82 and the second magnet cover 822 to adjust and adjust the position of the second magnet 82 and the first magnet 81.
- the predetermined angular position of the blade that matches the hinge can be self-aligned.
- the rubber post 922 can cause the right blade 22 of the right hinge 20 to be opened to a 125 degree angle at which the right blade 22 of the hinge is opened, so that the right blade 22 of the hinge is opened more than 50 degrees of the predetermined set positioning angle. Positioning angle to a degree of self-positioning angle of 90 degrees between 180 degrees of positioning angle, and At the same time, the rubber column 922 is in a state of energy storage elastic force of the high-pressure compression rubber column 922 of the top-down strength by the annular convex ring 32 of the fixed rod 30 and the first magnet cover 811, so that the rubber column 922 is The state of the stored energy elastic force changes to release the stored elastic force of the rubber column 922 so that the storage elastic force of one end of the rubber column 922 can strongly support the annular annular ring 32, and the rubber column 922 The other end of the storage elastic force is strong enough to abut against the first magnet cover 811, so that the rubber column 922 can turn the right blade 22 of the right hinge 20 back, so that the rubber column
- the invention provides an adjustable angle positioning and self-closing hinge, which comprises a hinge, a fixed rod, a screw sleeve, a screw ring, a fixing seat and an adjusting seat.
- the close fitting between the components can be realized within a predetermined angle.
- Positioning, self-closing at another predetermined angle, and being able to adjust the predetermined angle of self-positioning, has wide application prospects and good industrial applicability.
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- Engineering & Computer Science (AREA)
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- Closing And Opening Devices For Wings, And Checks For Wings (AREA)
Abstract
Description
Claims (11)
- 能调节角度定位及自闭铰链,包括两合页、固杆和螺套,该两合页能相对转动,该每一合页都包括轴套和固接在轴套外的叶片,该固杆具有螺杆;其特征在于:还包括固座、调节座和螺环,该螺套固接在一合页的轴套内,该固座固接在一合页的轴套内,该螺套和固座间隔;该两合页的轴套内之螺套和固座间设有固杆、螺环、第一磁铁、第二磁铁、第一弹簧、杯体、第二弹簧和调节座,该固杆具有的螺杆螺接在螺套,该第一弹簧顶抵在固杆和杯体的前端面之间,该第一磁铁能和固杆一起移动,该第二弹簧一端能顶抵固座,该第二弹簧之另一端顶抵第二磁铁,该第二磁铁能相对固座移动,该第一磁铁和第二磁铁相磁吸,该调节座经调整转动以能对应配合第二磁铁和固座及杯体的杯底,以能调节和调近第二磁铁和固座的间距尺寸位置;该调节座经调整转动以能配合第二磁铁和固座和杯体的杯底,以能调整和调近第二磁铁和第一磁铁的间距尺寸位置。
- 根据权利要求1所述的能调节角度定位及自闭铰链,其特征在于:该固座固接在另一合页的轴套内。
- 根据权利要求2所述的能调节角度定位及自闭铰链,其特征在于:还包括连接套,该固杆能滑动和移动连接在连接套内,该螺套能转动且不能滑动地连接在连接套内,该第一磁铁、第二磁铁、第一弹簧和第二弹簧设在连接套内;该一合页和螺套伸出连接套外的部分固接,该另一合页和固座伸出连接套外的部分固接。
- 根据权利要求1所述的能调节角度定位及自闭铰链,其特征在于:该一合页设有两个间隔布置的上述的轴套,该轴套为右轴套;其右叶片设缺口;该左合页设有一个上述的左轴套,该轴套为左轴套,该左轴套介于两个右轴套之间,其左叶片适配上述右叶片缺口。
- 根据权利要求1至4中任一项所述的能调节角度定位及自闭铰链,其特征在于:还包括第一螺钉和第二螺钉,该第一螺钉和第二螺钉都具有光杆段和位于末端的螺纹段,该第一螺钉的光杆段穿过第一磁铁且螺纹段螺接在固杆,该第一螺钉的螺杆头支撑在第一磁铁;该第二螺钉的光杆段穿过第二磁铁且螺纹段螺接在调节座内,该第二螺钉的螺杆头支撑在第二磁铁。
- 根据权利要求1至4中任一项所述的能调节角度定位及自闭铰链,其特征在于:还包括能相对活动设在轴套内的杯体,该第二弹簧顶抵在杯体的杯底和第二磁铁之间,该调节座连接杯体的杯底和固座用于调整杯底和固座间的间距,以能调节和调近固座和第二磁铁的间距;该调节座经调整转动以能对应配合第二磁铁和固座和杯体的杯底,以能调整和调近第二磁铁和第一磁铁的间距尺寸位置。
- 根据权利要求6所述的能调节角度定位及自闭铰链,其特征在于:该调节座为第三螺钉,该第三螺钉螺接穿过固座且顶抵在杯体的杯底。
- 根据权利要求6所述的能调节合页叶片定位角度自定位及自闭铰链,其特征在于:该第二弹簧、第二磁铁都完全位于杯体内,该第二磁铁适配滑接杯体,该第一磁铁下部适配滑接杯体。
- 根据权利要求6所述的能调节合页叶片定位角度自定位及自闭铰链,其特征在于:该固杆具有的螺杆的末端有一固接的凸环,且该凸环固接有环形凸环,该环形凸环固接有连接杆,该第一弹簧套接连接杆且顶抵在凸环和杯体前外环缘及垫片之间。
- 根据权利要求6所述的能调节合页叶片定位角度自定位及自闭铰链,其特征在于:该第二弹簧完全位于固杆具有的凸环和垫片及第一磁铁之间,且该第一螺钉穿过第一磁铁内环通孔、垫片内环通孔和第二弹簧再螺接连接杆,以使第一磁铁和连接杆连接在一起;该第二磁铁完全位于辅助调节叶片定位角度垫片上,且该第二螺钉穿过第二磁铁内环通孔、垫片内环通孔再螺接调节座,以使第二磁铁和调节座固接在一起;其中:该凸环固接有环形凸环,且该环形凸环固接有连接杆,且该凸环和环形凸环固接一起以能构成凸环,在该环形凸环的外环周向处凹设有环形凹槽,且该环形凸环的环形凹槽套接有密封胶圈,且该密封胶圈还伸出环形安装槽外,以能密封靠接在连接套内,且该密封胶圈能配合环形凸环在连接套里下与上的滑动和移动,相对以能在连接套内产生密封阻尼力度和阻力力度和起到增强环形凸环在连接套里下与上的滑动和移动所产生的阻尼力度和阻力力度的效果作用,相对以使环形凸环在连接套里的自定位力度的强度更增强,相对以能同时对应配合辅助加强和增强第二磁铁的储能和第一磁铁的储能磁吸一起的储能磁吸力度的增强释放,以使第二磁铁和第一磁铁能强力度的磁吸一起定位在连接套内,也相对以能同时辅助加强和增强合页的叶片能在预定设置定 位角度位置之间的一定位角度位置自定位的力度的强度更增强。
- 根据权利要求6所述的能调节合页叶片定位角度自定位及自闭铰链,其特征在于:该固杆具有的螺杆的末端有一固接的凸环,且该凸环固接有环形凸环,且该环形凸环固接有连接杆;其中该螺杆固接有螺杆拉环圈,而该拉钩杆的尺寸速配螺套拉簧通孔上端的拉钩杆置放台阶,且该拉钩杆装置位置是平放在拉钩杆置放台阶上,在此该螺套开设有贯穿的螺套拉簧通孔,而该拉簧是装置在螺套拉簧通孔内;且拉簧两端固接有前拉钩和后拉钩,且该拉簧具有的前拉钩挂钩住拉钩杆,而该拉簧具有的后拉钩挂钩住螺杆拉环圈,以使该拉簧能控制固杆具有的螺杆在相对螺套沿轴线往下滑动和移动的间距尺寸位置不会变动,以使该拉簧也起到防止固杆朝第二磁铁的方向掉落,相对以使该拉簧能定位和限制固杆在相对螺套沿轴向往下与往上的滑动和移动的轴向和轴距的间距尺寸不会变动。
Priority Applications (6)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CA3006262A CA3006262C (en) | 2015-09-29 | 2016-09-28 | Adjustable-angle positioning and self-closing hinge |
KR1020187010835A KR20180054759A (ko) | 2015-09-29 | 2016-09-28 | 각도 조절식 자동 폐쇄형 힌지 |
EP16850351.4A EP3358114A4 (en) | 2015-09-29 | 2016-09-28 | ADJUSTABLE ANGULAR POSITIONING HINGE AND AUTOMATIC CLOSURE FOR HIGHLY SEALED DOOR |
AU2016333280A AU2016333280A1 (en) | 2015-09-29 | 2016-09-28 | Adjustable-angle positioning and self-closing hinge |
US15/763,748 US10604978B2 (en) | 2015-09-29 | 2016-09-28 | Adjustable-angular positioning and self-closing hinges |
JP2018517206A JP6694190B2 (ja) | 2015-09-29 | 2016-09-28 | 角度を調整して定位及び自動閉鎖可能のヒンジ |
Applications Claiming Priority (6)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201510631766.4A CN106499281B (zh) | 2015-08-21 | 2015-09-29 | 能调节角度定位的自闭铰链 |
CN201510631766.4 | 2015-09-29 | ||
CN201520762076.8U CN206128937U (zh) | 2015-08-21 | 2015-09-29 | 一种能调节角度定位及自闭铰链 |
CN201520762076.8 | 2015-09-29 | ||
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CN201610795626.5A CN107780744A (zh) | 2016-08-31 | 2016-08-31 | 能调节角度定位及自闭铰链 |
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WO2019206499A1 (de) * | 2018-04-24 | 2019-10-31 | Audi Ag | Abgedichtetes staufach für ein kraftfahrzeug und kraftfahrzeug mit einem solchen staufach |
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CN114737840A (zh) * | 2022-03-16 | 2022-07-12 | 四川辛安特种门窗有限公司 | 一种机库侧转门 |
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