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CN103046234B - Synchronous feeding positioning device used for transferring button - Google Patents

Synchronous feeding positioning device used for transferring button Download PDF

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Publication number
CN103046234B
CN103046234B CN201110306409.2A CN201110306409A CN103046234B CN 103046234 B CN103046234 B CN 103046234B CN 201110306409 A CN201110306409 A CN 201110306409A CN 103046234 B CN103046234 B CN 103046234B
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CN
China
Prior art keywords
rotating shaft
thread segment
button
synchro
carrying
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CN201110306409.2A
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Chinese (zh)
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CN103046234A (en
Inventor
林培嘉
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
GAOLIN CO Ltd
Kaulin Manufacturing Co Ltd
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GAOLIN CO Ltd
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Priority to CN201110306409.2A priority Critical patent/CN103046234B/en
Publication of CN103046234A publication Critical patent/CN103046234A/en
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Publication of CN103046234B publication Critical patent/CN103046234B/en
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  • Transmission Devices (AREA)

Abstract

The invention discloses a synchronous feeding positioning device used for transferring buttons. The synchronous feeding positioning device comprises a base frame, a driver, a first rotating shaft, horizontal pushing members, a second rotating shaft, gears and a front blocking member, wherein the base frame is provided with a placing platform, the driver is fixed on the base frame, the first rotating shaft is connected with the driver an is provided with a first threaded section and a second threaded section in an opposite rotating direction, horizontal pushing members are arranged at the side edge of the placing platform and form a guide groove which is used for placing buttons, one of the horizontal pushing members is in threaded connection transmission with the first threaded section, the other horizontal pushing member is in threaded connection transmission with the second threaded section, the second rotating shaft is located at the side edge of the first rotating shaft, gears are fixedly connected with the first rotating shaft and the second rotating shaft, the front blocking member is in threaded connection transmission with the second rotating shaft, and the front blocking member and horizontal pushing members conduct synchronous feeding movement through rotating shafts and counter gears. Thus, the simplification and accurate positioning of a mechanism can be achieved.

Description

The synchro-feed positioner of carrying for button
Technical field
The present invention is relevant a kind of feeding positioner, espespecially a kind of synchro-feed positioner of carrying for button.
Background technology
Known be with button Sewing machines by button sewing on a clothing, wherein button major part is automatically to carry by a button conveying equipment, but the button that this kind of conveying equipment must meet again various different sizes or specification adjusts accordingly, be to design the button conveying equipment of various ways taking industry as head it off for use.
Known button conveying equipment, mainly to be equipped with respectively one first axial transmission mechanism, one second axial transmission mechanism and one the 3rd axial transmission mechanism according to each axial user demand, wherein each axial transmission mechanism includes a mobile member, connects a rotating shaft of mobile member and drive the motor of each rotating shaft, and provide locking and connecting of aforementioned each axial transmission mechanism by a bearing, to be combined into a button conveying equipment.
But known button conveying equipment, due to element or the device of a large amount of high unit prices of use, makes overall cost high, thereby loses its practicality and economic benefit.In addition each be axially with separately independently motor drive, be sometimes subject to, due to the spread of voltage of particular locality, usually can locating bad problem, the utmost point is waited to be improved.
Summary of the invention
An object of the present invention, is to provide a kind of synchro-feed positioner of carrying for button, and it is to utilize single driver to drive the movement of each thruster member and front member simultaneously, and can accurately position each button.
In order to reach above-mentioned object, the invention provides a kind of synchro-feed positioner of carrying for button, comprise a pedestal, a driver, one first rotating shaft, a pair of thruster member, one second rotating shaft, a pair of gear and a front member, this pedestal has a storing platform; This driver is fixed on this pedestal; This first rotating shaft connects this driver and is driven and rotate, and this first rotating shaft has one first thread segment and one second thread segment, and this first thread segment is contrary with the rotation direction of this second thread segment; This is disposed in respectively the respective side of this storing platform to thruster member and is formed with for a described button accommodating guide groove, the transmission that is spirally connected of this thruster member wherein and this first thread segment, another this thruster member with the transmission that is spirally connected of this second thread segment; This this pedestal of the second rotating shaft cross-under and the side that is positioned at this first rotating shaft arrange; This is fixed in respectively this first rotating shaft and this second rotating shaft and engaged transmission each other to gear; This front member and this second rotating shaft transmission that is mutually spirally connected, this front member and this do synchro-feed by this first rotating shaft, this second rotating shaft and this to gear to thruster member and move.
The present invention also has following effect, by the element of the contour unit price of driver is integrated, is significantly reduced overall cost cost.Each thruster member and front member utilize the each thruster member of each guide rod cross-under and front member, so that can stably move.
Brief description of the drawings
Fig. 1 is the combination schematic diagram of synchro-feed positioner of the present invention.
Fig. 2 is the combination schematic diagram at another visual angle of synchro-feed positioner of the present invention.
Fig. 3 is pedestal three-dimensional exploded view of the present invention.
Fig. 4 is driver of the present invention, the first rotating shaft and thruster member three-dimensional exploded view.
Fig. 5 is the second rotating shaft of the present invention and front member three-dimensional exploded view.
Fig. 6 is configuration schematic diagram after each principal organ of the present invention combination.
Fig. 7 is that the present invention is applied to the use state diagram () that button is carried.
Fig. 8 is that the present invention is applied to the use state diagram (two) that button is carried.
Main element symbol description:
10 ... pedestal
11 ... base 12 ... side holder
121,122 ... guide rod 13 ... middle bearing
131 ... elongated slot 14 ... put platform
141 ... upper plane 142 ... perforation
20 ... driver
21 ... rotating shaft 22 ... shaft coupling
30 ... the first rotating shaft
31 ... the first thread segment 32 ... the second thread segment
40,40' ... thruster member
41,41' ... axis hole 42,42' ... guide block
421,421' ... screw 43 ... L-type catch
43' ... Contraband type catch A ... guide groove
50 ... the second rotating shaft
51 ... the 3rd thread segment
60,60' ... gear
70 ... front member
71 ... screw 72 ... axis hole
73 ... telescopic baffle
8 ... button.
Detailed description of the invention
Below in conjunction with the drawings and specific embodiments, the invention will be further described, can be implemented, but illustrated embodiment is not as a limitation of the invention so that those skilled in the art can better understand the present invention also.
Refer to shown in Fig. 1 ~ Fig. 2, the invention provides a kind of synchro-feed positioner of carrying for button, it is to be used in button Sewing machines (not shown) to carry out button and make feeding in process location, and this synchro-feed positioner mainly comprises a pedestal 10, a driver 20, one first rotating shaft 30, a pair of thruster member 40,40', one second rotating shaft 50, a pair of gear 60,60' and a front member 70.
Refer to shown in Fig. 3, pedestal 10 mainly comprises a base 11, a side holder 12, a middle bearing 13 and a storing platform 14; Base 11 is roughly a flat U-shaped, side holder 12 is arranged on the right edge position of base 11 tops by bolting elements such as screws, this side holder 12 is mainly for settling for driver 20, the second rotating shaft 50 and front member 70, being plugged with respectively two groups of guide rods 121,122 at left side and the rear side of side holder 12; Middle bearing 13 is a strip block, and it is connected across the aperture position of base 11 tops, and is incorporated into base 11 by screw, offers consistent elongated groove 131 in the middle position of middle bearing 13; Put platform 14 have for button 8 (consulting Fig. 7) place one on plane 141, and it is also bearing 13 top positions in the middle of being screwed in, and lay with 13 one-tenth vertical configurations of middle bearing, offer two perforation 142 that are socketed in aforementioned each guide rod 121 in storing platform 14 bottoms.
Refer to shown in Fig. 4, the driver 20 of the present embodiment be one can rotating servo motor, it is screwed in aforementioned side holder 12 (as shown in Figure 1), and this driver 20 has a rotating shaft 21, and is connected with a shaft coupling 22 in the free end of rotating shaft 21.
The first rotating shaft 30 is worn and is articulated in middle bearing 13 (as shown in Figure 1) by bearing or axle sleeve, and one second thread segment 32 that it has one first thread segment 31 and arranges with the identical axial line of the first thread segment 31 and serial connection, the first thread segment 31 is contrary with the rotation direction of the second thread segment 32, if when the first thread segment 31 dextrorotation are to threaded line, the second 32 of thread segments are left-handed to threaded line; The helical pitch of the first thread segment 31 and the second thread segment 32 equates, and the first thread segment 31 and the second thread segment 32 are elongated slots 131 of bearing 13 in the middle of being arranged in; This first rotating shaft 30 is connected with the rotating shaft 21 of aforementioned drives 20 by shaft coupling 22, and is activated the driving of device 20 and rotates.
Each thruster member 40,40' are disposed in respectively the left and right respective side of putting platform 14, and enclose and be formed with for the accommodating guide groove A (as shown in Figure 6) of button 8, each thruster member 40,40' offer respectively corresponding two axis holes 41,41', each axis hole 41,41' are used for being socketed in aforementioned each guide rod 121, so that each thruster member 40,40' are able to stable moving; Each thruster member 40,40' have respectively a guide block 42,42' in addition, each guide block 42,42' are that embedding is limit in aforesaid elongated slot 131, and be respectively equipped with a screw 421,421' in the bottom of each guide block 42,42', a thruster member 40 is wherein with the transmission that is mutually spirally connected of screw 421 and the first thread segment 31, and another thruster member 40' is with the transmission that is mutually spirally connected of screw 421' and the second thread segment 32.Again, the end of a thruster member 40 is therein connected with a L-type catch 43, be connected with a Contraband type catch 43' in the end of another thruster member 40', so that each button 8, before entering guide groove A, can first be arranged and the immigration (consulting shown in Fig. 8) of orderliness by L-type catch 43 and Contraband type catch 43'.
Refer to shown in Fig. 5, the second rotating shaft 50 is connected to the side holder 12 of aforementioned pedestal 10, and its side that is positioned at the first rotating shaft 30 arranges; This second rotating shaft 50 has one the 3rd thread segment 51, and the helical pitch of this 3rd thread segment 51 equates with the helical pitch of aforementioned the first thread segment 31 and the second thread segment 32.
Each gear 60 of the present embodiment, 60' are orthogonal helical gear, and a gear 60 is wherein fixed in the first rotating shaft 30, and another gear 60' is the end position that is fixed in the second rotating shaft 50, this two gear 60,60' engaged transmission each other.
Front member 70 is provided with a screw 71 and two axis holes 72, and this screw 71 is used for and the transmission that is mutually spirally connected of the 3rd thread segment 51 of the second rotating shaft 50, and two 72 of axis holes are to be socketed in aforesaid guide rod 122 (as shown in Figure 3); This front member 71 has a telescopic baffle 73, and this telescopic baffle 73 is positioned at a side of aforementioned each thruster member 40,40' and is formed on puts platform 14 tops (as shown in Figure 1).
Refer to shown in Fig. 6, can first each thruster member 40,40' be installed in to the middle bearing 13 of pedestal 10 and put on platform 14,20 of another drivers interconnect with the first rotating shaft 30 and gear 60, the subelement of front member 70 and the second rotating shaft 50, gear 60' and side holder 12 is combined with constituent components, again aforementioned each assembly is carried out to combination, to obtain synchro-feed positioner of the present invention.
Refer to shown in Fig. 7 and Fig. 8, when use, one button 8 can be placed on the upper surface 141 of putting platform 14, drive and will drive the first rotating shaft 30 to rotate by the rotating shaft 21 of driver 20, utilize the engaged transmission of each gear 60,60', to follow the first rotating shaft 30 and rotate with seasonal the second rotating shaft 50, now be screwed onto the first thread segment 31 thruster member 40, be screwed onto the thruster member 40' of the second thread segment 32 and be screwed onto the front member 70 of the 3rd thread segment 51, will button 8 be produced and be moved forward into carrying out fixing (as shown in Figure 7) simultaneously; In like manner, the in the situation that of most button 8, can first arrange in disorder button 8 with L-type catch 43 and Contraband type catch 43', then allow entering in guide groove A (as shown in Figure 7) that each button 8 sequentially arranges; Device of the present invention can adapt to various buttons of not planting specification or size and carry out the synchronous conveying of adjusting.
The above embodiment is only the preferred embodiment for absolutely proving that the present invention lifts, and protection scope of the present invention is not limited to this.What those skilled in the art did on basis of the present invention is equal to alternative or conversion, all within protection scope of the present invention.Protection scope of the present invention is as the criterion with claims.

Claims (8)

1. a synchro-feed positioner of carrying for button, is characterized in that, comprising:
One pedestal, has a storing platform;
One driver, is fixed on this pedestal;
One first rotating shaft, connect this driver and driven and rotate, this first rotating shaft has one first thread segment and one second thread segment, and this first thread segment is contrary with the rotation direction of this second thread segment, and this first thread segment and this second thread segment are that identical axial line and serial connection are arranged;
A pair of thruster member, is disposed in respectively the respective side of this storing platform and is formed with for a described button accommodating guide groove, the transmission that is spirally connected of this thruster member wherein and this first thread segment, another this thruster member with the transmission that is spirally connected of this second thread segment;
One second rotating shaft, this pedestal of cross-under and the side that is positioned at this first rotating shaft arrange, and this second rotating shaft has one the 3rd thread segment, and the helical pitch of this first thread segment, the second thread segment and the 3rd thread segment all equates;
A pair of gear, is fixed in respectively this first rotating shaft and this second rotating shaft and engaged transmission each other; And
One front member, with the transmission that is mutually spirally connected of the 3rd thread segment of this second rotating shaft, this front member and this do synchro-feed by this first rotating shaft, this second rotating shaft and this to gear to thruster member and move.
2. the synchro-feed positioner of carrying for button as claimed in claim 1, is characterized in that, this pedestal comprises a middle bearing, and this centre bearing offers an elongated slot, and this first thread segment and this second thread segment are all positioned at this elongated slot.
3. the synchro-feed positioner of carrying for button as claimed in claim 2, it is characterized in that, respectively this thruster member has respectively a guide block, and respectively this guide block embedding is limit in this elongated slot, and is respectively equipped with at each this guide block the screw being spirally connected for this first thread segment and this second thread segment.
4. the synchro-feed positioner of carrying for button as claimed in claim 3, is characterized in that, this pedestal comprises plural guide rod, and respectively this thruster member offers respectively corresponding plural axis hole, and respectively this axis hole is socketed in respectively respectively on this guide rod.
5. the synchro-feed positioner of carrying for button as claimed in claim 1, is characterized in that, this driver has a rotating shaft, and this rotating shaft is connected with this first rotating shaft by a shaft coupling.
6. the synchro-feed positioner of carrying for button as claimed in claim 1, is characterized in that, this is orthogonal helical gear to gear.
7. the synchro-feed positioner of carrying for button as claimed in claim 1, is characterized in that, this pedestal comprises plural guide rod, and this front member offers plural axis hole, and respectively this axis hole is socketed in respectively respectively on this guide rod.
8. the synchro-feed positioner of carrying for button as claimed in claim 1, is characterized in that, this front member has a telescopic baffle, and this telescopic baffle is positioned at this side to thruster member and is formed on this storing platform top.
CN201110306409.2A 2011-10-11 2011-10-11 Synchronous feeding positioning device used for transferring button Active CN103046234B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201110306409.2A CN103046234B (en) 2011-10-11 2011-10-11 Synchronous feeding positioning device used for transferring button

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201110306409.2A CN103046234B (en) 2011-10-11 2011-10-11 Synchronous feeding positioning device used for transferring button

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CN103046234A CN103046234A (en) 2013-04-17
CN103046234B true CN103046234B (en) 2014-08-06

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Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104452115A (en) * 2013-09-18 2015-03-25 上海威士机械有限公司 Improved button feeding mechanism of button attaching machine tool

Citations (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1167171A (en) * 1996-05-10 1997-12-10 胜家公司 Feeding mechanism for round-head button hole sewing machine
CN2379492Y (en) * 1998-12-02 2000-05-24 日产精机有限公司 Button feeding mechanism of button-sewing machine
CN2479038Y (en) * 2001-04-26 2002-02-27 大连服装机械总厂 Automatic opening or closing fastening means
EP1568810A1 (en) * 2002-11-21 2005-08-31 Tokai Kogyo Mishin Kabushiki Kaisha Sequin feeder
CN1861874A (en) * 2005-05-11 2006-11-15 重机公司 Button conveying device
CN1891888A (en) * 2005-07-08 2007-01-10 东海工业缝纫机株式会社 Sequin feeder device
CN1948577A (en) * 2006-11-02 2007-04-18 李龙洙 Sequin driving regulating mechanism
CN201148520Y (en) * 2007-12-26 2008-11-12 王斌章 Bead stepping machine
WO2010058966A2 (en) * 2008-11-19 2010-05-27 Seo Myung Won Automatic button supply apparatus

Patent Citations (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1167171A (en) * 1996-05-10 1997-12-10 胜家公司 Feeding mechanism for round-head button hole sewing machine
CN2379492Y (en) * 1998-12-02 2000-05-24 日产精机有限公司 Button feeding mechanism of button-sewing machine
CN2479038Y (en) * 2001-04-26 2002-02-27 大连服装机械总厂 Automatic opening or closing fastening means
EP1568810A1 (en) * 2002-11-21 2005-08-31 Tokai Kogyo Mishin Kabushiki Kaisha Sequin feeder
CN1861874A (en) * 2005-05-11 2006-11-15 重机公司 Button conveying device
CN1891888A (en) * 2005-07-08 2007-01-10 东海工业缝纫机株式会社 Sequin feeder device
CN1948577A (en) * 2006-11-02 2007-04-18 李龙洙 Sequin driving regulating mechanism
CN201148520Y (en) * 2007-12-26 2008-11-12 王斌章 Bead stepping machine
WO2010058966A2 (en) * 2008-11-19 2010-05-27 Seo Myung Won Automatic button supply apparatus

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