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CN102743834A - Exercise bike and method for regulating functions of crank of exercise bike - Google Patents

Exercise bike and method for regulating functions of crank of exercise bike Download PDF

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Publication number
CN102743834A
CN102743834A CN2011101007095A CN201110100709A CN102743834A CN 102743834 A CN102743834 A CN 102743834A CN 2011101007095 A CN2011101007095 A CN 2011101007095A CN 201110100709 A CN201110100709 A CN 201110100709A CN 102743834 A CN102743834 A CN 102743834A
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CN
China
Prior art keywords
crank
knob
clamping device
change
exercycle
Prior art date
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Granted
Application number
CN2011101007095A
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Chinese (zh)
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CN102743834B (en
Inventor
张家祥
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HAOJIATING INDUSTRY Co Ltd SHENZHEN CITY
Shenzhen Good Family Enterprise Co Ltd
Original Assignee
HAOJIATING INDUSTRY Co Ltd SHENZHEN CITY
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Priority to CN201110100709.5A priority Critical patent/CN102743834B/en
Publication of CN102743834A publication Critical patent/CN102743834A/en
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Abstract

The invention discloses an exercise bike which comprises a conversion board and a crank, wherein the conversion board comprises a crank knob and a crank clamping mechanism; the crank comprises a crank positioning arm; the crank positioning arm comprises a first part and a second part; the crank knob is pivoted with the conversion board; the crank clamping mechanism is pivoted with the conversion board; the crank knob is movably connected with the crank clamping mechanism; and the crank clamping mechanism is controlled by rotating the crank knob, so that the crank clamping mechanism can be used for clamping the first part and second part of the crank positioning arm, and the crank moving mode can be selected. According to the exercise bike and the method for regulating the functions of the crank of the exercise bike, the technical problem of fixed angle between cranks and single exercise mode of an exercise bike in the prior art can be solved, multiple exercise combinations can be generated by regulating the angle between the cranks to be 0 degree or 180 degrees, so that multiple exercise modes are increased, and the exercise effect is remarkable.

Description

The method of exercycle and adjustment crank function thereof
Technical field
The present invention relates to the exercycle field, particularly relate to a kind of method of exercycle adjustment saddle function.
Background technology
In the prior art; The exercising way of exercycle is generally the bicycle type motion, forms 180 ° angle between left crank and the right crank, and the person taking exercise sits on the saddle; Double-legged parallel this left side crank and the right crank firmly trampled makes and should drive the main shaft rotation with this right side crank rotation by left side crank.
The employing aforesaid way is taken exercise; Person taking exercise's large and small leg can effectively be taken exercise; But fixed angle is other positions that 180 ° exercycle can't be taken exercises between this crank, and person taking exercise's coordination of body is taken exercise, and exercising way is single and dull.And take exercises other positions if desired, and then need use the different physical exercise equipment, cause various, the wasting of resources of equipment.
Summary of the invention
The present invention mainly solve the exercycle exercising way single, can't whole body coordinate the technical problem of taking exercise; The method of a kind of exercycle and adjustment crank function thereof is provided, can adjusts the angle between the crank and make that each position of person taking exercise's whole body coordinates to take exercise, train on is obvious.
For solving the problems of the technologies described above; The technical scheme that the present invention adopts is: a kind of exercycle is provided, comprises change-over panel and crank, comprise crank knob and crank clamping device on this change-over panel; This crank comprises the crank registration arm, and this crank registration arm comprises first and second portion.This crank knob and this change-over panel articulate, and this crank clamping device and this change-over panel articulate, and this crank knob and this crank clamping device can be dynamically connected.Rotate this crank clamping device of this crank knob controlling, make the first or the second portion of this this crank registration arm of crank clamping device clamping, and then realize selection the motion mode of this crank.
As the further improvement of above-mentioned exercycle, this crank comprises left crank and right crank, changes the angle between this left side crank and this right side crank through this crank knob, and the angle that this left side crank and this right side crank form is 0 ° or 180 °.
Further improvement as above-mentioned exercycle; This left side crank comprises the crank cursor; This crank registration arm becomes T shape with this crank cursor, this this first of crank clamping device clamping or second portion, and the angle that makes this left side crank and this right side crank form is 0 ° or 180 °.
Further improvement as above-mentioned exercycle; This crank clamping device comprises crank interlock body, the crank regulating arm that can be dynamically connected with this crank knob and a plurality of crank turning arms that articulate with this change-over panel; This crank interlock body comprises drive end and force side; These a plurality of crank turning arms are distributed in the both sides of this drive end and can be dynamically connected with this drive end, and this crank regulating arm and this force side can be dynamically connected.
As the further improvement of above-mentioned exercycle, this crank regulating arm one end and this change-over panel articulate, and the other end of this crank regulating arm is provided with guide groove and can be dynamically connected with this crank knob.
As the further improvement of above-mentioned exercycle, this force side is provided with through hole and can be dynamically connected with this guide groove.
As the further improvement of above-mentioned exercycle, this drive end is provided with a plurality of sliding trays, and these a plurality of crank turning arms can be dynamically connected through these a plurality of sliding trays and this drive end.
As the further improvement of above-mentioned exercycle, this change-over panel also is provided with two positioning strips, and this two positioning strip is parallel to each other and forms passage, and the force side of this crank interlock body straight line in this passage moves.
For solving the problems of the technologies described above; Another technical scheme that the present invention adopts is: the method that a kind of exercycle adjustment crank function is provided; It is characterized in that the crank clamping device on rotation this change-over panel of crank knob controlling on the change-over panel makes the first or the second portion of this crank clamping device gripper crank registration arm; Change the angle between left crank and the right crank, and then realize selection the motion mode of this left side crank and this right side crank.
Further improvement as said method; This left side crank comprises the crank cursor; This crank registration arm becomes T shape with this crank cursor, the first or the second portion of this this crank registration arm of crank clamping device clamping, and the angle that makes this left side crank and this right side crank form is 0 ° or 180 °.
The invention has the beneficial effects as follows: be different from fixed angle between the prior art exercycle crank, situation that exercising way is single; Exercycle of the present invention is through the first or the second portion of this this crank of crank clamping device clamping; Thereby making the angle between this crank is 0 ° or 180 °, produces more exercising way.
The invention has the beneficial effects as follows: exercycle of the present invention integrates more exercising way, and the person taking exercise just can increase the different combinations exercising way through the angle of this crank of adjustment, has reduced the use to other equipment, has saved resource.
Description of drawings
Fig. 1 is the perspective view of exercycle of the present invention;
Fig. 2 is the main shaft disk modular structure sketch map of exercycle of the present invention;
Fig. 3 is an exercycle saddle module perspective view of the present invention;
Fig. 4 is the local enlarged diagram of exercycle saddle modular structure of the present invention;
Fig. 5 is an exercycle crank modular structure sketch map of the present invention;
Fig. 6 is the VI partial structurtes enlarged diagram of crank module shown in Figure 5;
Fig. 7 is an exercycle damping module perspective view of the present invention; And
Fig. 8 is the weighting distribution wheel structural representation of exercycle damping module of the present invention.
The specific embodiment
See also Fig. 1 and Fig. 2, Fig. 1 is the perspective view of exercycle of the present invention, and Fig. 2 is the main shaft disk modular structure sketch map of exercycle of the present invention.
Exercycle of the present invention comprises support 10, main shaft disk 20, saddle module 30, crank module 40, damping module 50.
This support 10 comprises handrail 11 and base 12, and this handrail and this base 12 can be dynamically connected.
This main shaft disk 20 comprises main shaft 21, main wheel 22 and change-over panel 23, and this main shaft 21, this main wheel 22 and this change-over panel 23 are fixedly connected.
See also Fig. 3 and Fig. 4, Fig. 3 is an exercycle saddle module perspective view of the present invention, and Fig. 3 is the local enlarged diagram of exercycle saddle modular structure of the present invention.
This saddle module 30 comprises eccentric reel 31, saddle 32 (seeing also Fig. 1), saddle knob 33 and saddle clamping device 34.This off-centre reel 31 is sheathed on the cylindrical of this main shaft 21.One end of this off-centre reel 31 is provided with saddle registration arm 310, the other end is provided with eccentric wheel 311; Adopt the mode that articulates between this saddle registration arm 310 and this change-over panel 23; This this saddle 32 of eccentric wheel 311 butts, in the present invention, this eccentric wheel 311 can be provided with protecting sheathing.The below of this saddle 32 is welded to connect bar 320 (seeing also Fig. 1) and can be dynamically connected with this handrail 11 through this connecting rod 320, and the below of this this connecting rod 320 of eccentric wheel 311 butts.The clamping of these saddle knob 33 these saddle clamping devices 34 of control or the action that separates.
This saddle clamping device 34 comprises saddle slide mass 340, the saddle regulating arm 341 that can be dynamically connected with this saddle knob 33 and a plurality of saddle turning arms 342 that articulate with this change-over panel 23; This saddle slide mass 340 comprises socket end 3400 and projection end 3401; These a plurality of saddle turning arms 342 are distributed in the both sides of this socket end 3400 and can be dynamically connected with this socket end 3400, and this saddle regulating arm 341 can be dynamically connected with this projection end 3401.
These saddle regulating arm 341 1 ends and this change-over panel 23 articulate, and the other end of this saddle regulating arm 341 is provided with first guide groove and can be dynamically connected with this saddle knob 33.This projection end 3401 is provided with through hole and can be dynamically connected with this first guide groove.This socket end 3400 is provided with a plurality of first sliding trays, and these a plurality of saddle turning arms 342 can be dynamically connected through these a plurality of first sliding trays and this socket end 3400.This change-over panel 23 also is provided with a plurality of positioning strips 230, and these a plurality of positioning strips 230 are parallel to each other and form passage, and the projection end 3401 of this saddle slide mass 340 straight line in this passage moves.In the present invention, these a plurality of positioning strips 230 are one, also can be two, three or more a plurality of.
See also Fig. 5 and Fig. 6, Fig. 5 is an exercycle crank modular structure sketch map of the present invention, and Fig. 6 is the VI partial structurtes enlarged diagram of crank module shown in Figure 5.
This crank module 40 comprises crank knob 41, crank clamping device 42 and crank 434 (seeing also Fig. 1), and wherein this crank 434 comprises left crank (not indicating) and right crank (not indicating).This crank knob 41 articulates with this change-over panel 23, and this crank clamping device 42 articulates with this change-over panel 23, and this crank knob 41 can be dynamically connected with this crank clamping device 42.This left side crank comprises crank registration arm 430, crank cursor 431; This crank cursor 431 is positioned on the perpendicular bisector of this crank registration arm 430; 431 one-tenth T shapes of this crank registration arm 430 and this crank cursor, this crank registration arm 430 of these crank cursor 431 phase heteropleurals of these crank clamping device 42 clampings.Wherein, This crank registration arm 430 comprises first 4300 and second portion 4301; That is; This first 4300 and this second portion 4301 are distributed in the both sides of this crank cursor 431, and through this first 4300 of clamping or this second portion 4301, making the angle between this left side crank and this right side crank is 0 ° or 180 °.
This crank clamping device 42 comprises crank interlock body 420, the crank regulating arm 421 that can be dynamically connected with this crank knob 41 and a plurality of crank turning arms 422 that articulate with this change-over panel 23; This crank interlock body 420 comprises drive end 4200 and force side 4201; These a plurality of crank turning arms 422 are distributed in the both sides of this drive end 4200 and can be dynamically connected with this drive end 4200, and this crank regulating arm 421 can be dynamically connected with this force side 4201.
These crank regulating arm 421 1 ends and this change-over panel 23 articulate, and the other end of this crank regulating arm 421 is provided with second guide groove and can be dynamically connected with this crank knob 41.This force side 4201 is provided with through hole and can be dynamically connected with this second guide groove.This drive end 4200 is provided with a plurality of second sliding trays, and these a plurality of crank turning arms 422 can be dynamically connected through these a plurality of second sliding trays and this drive end 4200.This change-over panel 23 also is provided with two positioning strips (not indicating), and this two positioning strip is parallel to each other and forms passage, and the force side 4201 of this crank interlock body 420 straight line in this passage moves.
See also Fig. 7 and Fig. 8, Fig. 7 is an exercycle damping module perspective view of the present invention, and Fig. 8 is the weighting distribution wheel structural representation of exercycle damping module of the present invention.
This damping module 50 comprises weighting distribution wheel 51, magnet-wheel 52, magnet-wheel governor motion 53.This weighting distribution wheel 51 comprises rotating shaft 510, annular sidewall 511 and base plate 512, and this rotating shaft 510 is fixedly connected with this base plate 512, and this annular sidewall 511 is accommodated frame for annular and formation, and these weighting distribution wheel 51 general employing iron and steel etc. can be made by the material of magnetic attraction.This magnet-wheel 52 for circular and be housed in this weighting distribution wheel 51 accommodate in the frame and this rotating shaft 510 is the bearing of this magnet-wheel 52; This magnet-wheel 52 comprises a plurality of magnet pieces (figure does not show), the first side wall (figure does not show) and second sidewall (figure does not show); This first side wall and this second sidewall are oppositely arranged and form the framework of this magnet-wheel 52; These a plurality of magnet pieces then are located between this first side wall and this second sidewall; On the circumference of these a plurality of magnet pieces distributions and this magnet-wheel 52, these a plurality of magnet pieces and the 511 interval settings of this annular sidewall and distance are adjustable.Wherein, this first side wall is relative with this base plate 512, is connected through belt between the rotating shaft 510 of this weighting distribution wheel 51 and this main shaft 21, and this main shaft 21 rotates and drives this rotating shaft 510 and rotate, and rotates thereby drive this weighting distribution wheel 51, and further, this magnet-wheel 52 keeps static.
This magnet-wheel governor motion 53 comprises damping knob 530 (seeing also Fig. 1), draught line (figure does not show) and machine leader (figure does not show).These damping knob 530 these draught lines of connection also can spur this draught line and move.This machine leader is located between this first side wall and this second sidewall, and the two ends of this machine leader articulate with this first side wall and this second sidewall respectively, and these a plurality of magnet pieces are fixedly connected with this machine leader, and this machine leader also is provided with through hole and is connected with this draught line.This second sidewall is provided with the 3rd guide groove and in the guide groove two ends fixed pulley is set, and this draught line connects this machine leader through these two fixed pulleys, wherein; Under the normality; It is nearest to the annular sidewall 511 of this weighting distribution wheel 51 that this machine leader and these a plurality of magnet pieces are combined into magnetic force body (indicating), and in the time of this machine leader of pulling, this magnetic force body is toward the direction gathering of this rotating shaft 510; At this moment, this magnetic force body is to the furthest of this annular sidewall 511.Wherein, This damping knob 530 can be adjusted nine class; Make this magnetic force body between this annular sidewall 511, form the distance of nine different stages respectively respectively, and make this weighting distribution wheel 51 receive the magnetic attraction effect of nine different stages, form different dampings thus.
Through embodiment the present invention is done further introduction below, to let the people understand the function of exercycle of the present invention more.
Embodiment one, horseback riding type and extended position motion mode:
This damping knob 530 is rotated in optional action, regulates the distance between this magnetic force body and this weighting distribution wheel 51, makes it to adapt to different other persons taking exercise of physique level;
Optional action; Rotate this saddle clamping device 34 on these saddle knob 33 these change-over panels 23 of control; Make this saddle clamping device 34 match with this saddle registration arm 310 on this off-centre reel 31; Promptly this this saddle registration arm 310 of saddle clamping device 34 clampings selects to make this saddle 32 to get into motor pattern, if this saddle 32 has been in motor pattern and has then need not this action;
Optional action; Rotate these crank knob 41 these crank clamping devices 42 of control on this change-over panel 23; Make this first 4300 of this this crank registration arm 430 of crank clamping device 42 clampings; Making the angle between this left side crank and this right side crank is 0 °, then need not this action if the angle between this left side crank and this right side crank has been 0 °;
The person taking exercise sits on this saddle 32; Both feet become the parallel pedal of firmly trampling this left side crank and this right side crank synchronously forward or backward, and the rotation of this crank 434 drives this main shaft 21 and rotates, and the rotating drive of this main shaft 21 should be rotated by off-centre reel 31; Rotation that should off-centre reel 31 then drives this eccentric wheel 311 and rotates; This this saddle 32 of eccentric wheel 311 butts, and because eccentric effect, this saddle 32 will be followed the rotation of this crank 434 and rise and fall synchronously and do the elliptical orbit motion; And because the effect of this connecting rod 320; Drive this handrail 11 automatically with this crank 434 by behind the forward direction or by the back to the preamble swing, when firmly trampling pedal and this handrail 11 forward and swing after by forward direction, be the horseback riding type motion mode, when firmly trample backward pedal and this handrail 11 by after be that extended position moves when swinging forward.
Embodiment two, single pin horseback riding type and single pin extended position motion mode:
This damping knob 530 is rotated in optional action, regulates the distance between this magnetic force body and this weighting distribution wheel 51, makes it to adapt to different other persons taking exercise of physique level;
Optional action; Rotate this saddle clamping device 34 on these saddle knob 33 these change-over panels 23 of control; Make this saddle clamping device 34 match with this saddle registration arm 310 on this off-centre reel 31; Promptly this this saddle registration arm 310 of saddle clamping device 34 clampings selects to make this saddle 32 to get into motor pattern, if this saddle 32 has been in motor pattern and has then need not this action;
Optional action; Rotate these crank knob 41 these crank clamping devices 42 of control on this change-over panel 23; Make this second portion 4301 of this this crank registration arm 430 of crank clamping device 42 clampings; Making the angle between this left side crank and this right side crank is 180 °, then need not this action if the angle between this left side crank and this right side crank has been 180 °;
The person taking exercise sits on this saddle 32; The parallel pedal of firmly trampling this left side crank and this right side crank forward or backward of both feet, the rotation of this crank 434 drives this main shaft 21 and rotates, and the rotating drive of this main shaft 21 should be rotated by off-centre reel 31; Rotation that should off-centre reel 31 then drives this eccentric wheel 311 and rotates; This this saddle 32 of eccentric wheel 311 butts, and because eccentric effect, this saddle 32 will be followed the rotation of this crank 434 and rise and fall synchronously and do the elliptical orbit motion; And because the effect of this connecting rod 320; Drive this handrail 11 automatically with this crank 434 by behind the forward direction or by the back to the preamble swing, when firmly trampling pedal and this handrail 11 forward and swing after by forward direction, be single pin horseback riding type motion mode, when firmly trample backward pedal and this handrail 11 by after be that single pin extended position moves when swinging forward.
Embodiment three, and the bicycle type motion mode just changes, reverses:
This damping knob 530 is rotated in optional action, regulates the distance between this magnetic force body and this weighting distribution wheel 51, makes it to adapt to different other persons taking exercise of physique level;
Optional action; Rotate this saddle clamping device 34 on these saddle knob 33 these change-over panels 23 of control; Make this saddle registration arm 310 on this saddle clamping device 34 and this off-centre reel 31 be separated, select to make this saddle 32 to get into still-modes, if this saddle 32 has been in still-mode and has then need not this action; At this moment, this handrail 11 also is in still-mode;
Optional action; Rotate these crank knob 41 these crank clamping devices 42 of control on this change-over panel 23; Make this second portion 4301 of this this crank registration arm 430 of crank clamping device 42 clampings; Making the angle between this left side crank and this right side crank is 180 °, then need not this action if the angle between this left side crank and this right side crank has been 180 °;
The person taking exercise sits on this saddle 32; The parallel pedal of firmly trampling this left side crank and this right side crank forward or backward of both feet; The rotation of this crank 434 drives this main shaft 21 and rotates, and when trampling forward, is just rotatable cycling mode, when trampling backward, then is reversible type cycling mode.
Embodiment four, and the Leapfrog type motion mode just changes, reverses:
This damping knob 530 is rotated in optional action, regulates the distance between this magnetic force body and this weighting distribution wheel 51, makes it to adapt to different other persons taking exercise of physique level;
Optional action; Rotate this saddle clamping device 34 on these saddle knob 33 these change-over panels 23 of control, make that this saddle registration arm 310 on this saddle clamping device 34 and this off-centre reel 31 is separated, promptly this saddle clamping device 34 unclamps this saddle registration arm 310; Selection makes this saddle 32 get into still-mode; If this saddle 32 has been in still-mode and has then need not this action, at this moment, this handrail 11 also is in still-mode;
Optional action; Rotate these crank knob 41 these crank clamping devices 42 of control on this change-over panel 23; Make this first 4300 of this this crank registration arm 430 of crank clamping device 42 clampings; Making the angle between this left side crank and this right side crank is 0 °, then need not this action if the angle between this left side crank and this right side crank has been 0 °;
The person taking exercise sits on this saddle 32; The parallel pedal of firmly trampling this left side crank and this right side crank synchronously forward or backward of both feet; The rotation of this crank 434 drives this main shaft 21 and rotates; And this saddle 32 all keeps inactive state with this handrail 11, when trampling forward for just changeing the Leapfrog type motion mode, when trampling the Shi Zewei Leapfrog type motion mode that reverses backward.
The structure of exercycle of the present invention and adjustment crank function thereof mainly solves fixed angle between the prior art exercycle crank, technical problem that exercising way is single; Angle through regulating between this crank 434 is 0 ° or 180 °; And the combination that produces multiple exercising way has increased multiple exercising way, train on is obvious.
The above is merely embodiments of the invention; Be not so limit claim of the present invention; Every equivalent structure or equivalent flow process conversion that utilizes specification of the present invention and accompanying drawing content to be done; Or directly or indirectly be used in other relevant technical fields, all in like manner be included in the scope of patent protection of the present invention.

Claims (10)

1. an exercycle is characterized in that, comprises change-over panel and crank; Comprise crank knob and crank clamping device on the said change-over panel; Said crank comprises the crank registration arm, and said crank registration arm comprises first and second portion, and said crank knob and said change-over panel articulate; Said crank clamping device and said change-over panel articulate, and said crank knob and said crank clamping device can be dynamically connected;
Rotate the said crank clamping device of said crank knob controlling, make the first or the second portion of the said crank registration arm of said crank clamping device clamping, and then realize selection the motion mode of said crank.
2. exercycle according to claim 1; It is characterized in that; Said crank comprises left crank and right crank, changes the angle between said left crank and the said right crank through said crank knob, and the angle that said left crank and said right crank form is 0 ° or 180 °.
3. exercycle according to claim 2; It is characterized in that; Said left crank comprises the crank cursor; Said crank registration arm becomes T shape with said crank cursor, said first of said crank clamping device clamping or second portion, and the angle that makes said left crank and said right crank form is 0 ° or 180 °.
4. exercycle according to claim 1; It is characterized in that; Said crank clamping device comprises crank interlock body, the crank regulating arm that can be dynamically connected with said crank knob and a plurality of crank turning arms that articulate with said change-over panel; Said crank interlock body comprises drive end and force side, and said a plurality of crank turning arms are distributed in the both sides of said drive end and can be dynamically connected with said drive end, and said crank regulating arm and said force side can be dynamically connected.
5. exercycle according to claim 4 is characterized in that, said crank regulating arm one end and said change-over panel articulate, and the other end of said crank regulating arm is provided with guide groove and can be dynamically connected with said crank knob.
6. exercycle according to claim 5 is characterized in that, said force side is provided with through hole and can be dynamically connected with said guide groove.
7. exercycle according to claim 4 is characterized in that said drive end is provided with a plurality of sliding trays, and said a plurality of crank turning arms can be dynamically connected through said a plurality of sliding trays and said drive end.
8. exercycle according to claim 4 is characterized in that said change-over panel also is provided with two positioning strips, and said two positioning strips are parallel to each other and form passage, and the force side of said crank interlock body straight line in said passage moves.
9. the method for exercycle adjustment crank function; It is characterized in that; Crank clamping device on the said change-over panel of crank knob controlling on the rotation change-over panel; Make the first or the second portion of said crank clamping device gripper crank registration arm to change the angle between left crank and the right crank, and then realize selection the motion mode of said left crank and said right crank.
10. method according to claim 9; It is characterized in that; Said left crank comprises the crank cursor; Said crank registration arm becomes T shape with said crank cursor, the first or the second portion of the said crank registration arm of said crank clamping device clamping, and the angle that makes said left crank and said right crank form is 0 ° or 180 °.
CN201110100709.5A 2011-04-21 2011-04-21 Exercise bike and method for regulating functions of crank of exercise bike Active CN102743834B (en)

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CN201110100709.5A CN102743834B (en) 2011-04-21 2011-04-21 Exercise bike and method for regulating functions of crank of exercise bike

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Application Number Priority Date Filing Date Title
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CN102743834B CN102743834B (en) 2015-02-18

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105920799A (en) * 2016-06-15 2016-09-07 山东师范大学 Multifunctional fitness furniture
KR101715292B1 (en) * 2016-08-10 2017-03-22 김미진 Horse Riding Health Machine

Citations (5)

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Publication number Priority date Publication date Assignee Title
CN2210688Y (en) * 1994-12-14 1995-10-25 张家福 Pedal sport-vehicle
CN201094833Y (en) * 2007-10-15 2008-08-06 罗丽弦 Novel body building cycle
US20080261780A1 (en) * 2001-11-13 2008-10-23 Cybex International, Inc. Home arc exercise machine
US7513855B1 (en) * 2007-10-11 2009-04-07 Proteus Sports Inc. Folding exercising machine
CN201578798U (en) * 2009-12-04 2010-09-15 青岛达正钢塑制品有限公司 Folding type body-building vehicle

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN2210688Y (en) * 1994-12-14 1995-10-25 张家福 Pedal sport-vehicle
US20080261780A1 (en) * 2001-11-13 2008-10-23 Cybex International, Inc. Home arc exercise machine
US7513855B1 (en) * 2007-10-11 2009-04-07 Proteus Sports Inc. Folding exercising machine
CN201094833Y (en) * 2007-10-15 2008-08-06 罗丽弦 Novel body building cycle
CN201578798U (en) * 2009-12-04 2010-09-15 青岛达正钢塑制品有限公司 Folding type body-building vehicle

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105920799A (en) * 2016-06-15 2016-09-07 山东师范大学 Multifunctional fitness furniture
KR101715292B1 (en) * 2016-08-10 2017-03-22 김미진 Horse Riding Health Machine

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