专利摘要:
The invention relates to a shock—absorbing seat tube, in— 5 cluding an outer tube and an inner tube sleeved within the outer tube. The inner tube is adapted for connection to a bicycle saddle from below through a joint. The seat tube is provided with a height adjustment device having a supporting end inserted into the inner tube, and a shock—absorbing device disposed in 10 the inner tube at a position above the height adjustment device and includes a fixing part and a damper part. The fixing part passes at its top end through the inwardly protruded portion of the inner tube and is arranged in the barrel portion of the inner tube. The damper part is arranged between the inwardly protruded 15 portion and the supporting end.
公开号:NL2027264A
申请号:NL2027264
申请日:2021-01-05
公开日:2021-08-30
发明作者:Liao Xue-Sen
申请人:Hsin Lung Access Co Ltd;
IPC主号:
专利说明:

[0001] [0001] This invention is related to a shock-absorbing seat tube with a height adjustment function.BACKGROUND OF THE INVENTION
[0002] [0002] Bicycles are common modern leisure and exercise equip- ment, and the distance and time that modern people ride are gradually elongated with the increasing need of exercise. Gen- erally, a bicycle saddle is disposed on the rear section of the frame through a seat tube, and a height adjustment device is mounted on the seat tube to adjust the height of the saddle to suit different riders. The height adjustment device is arranged between the seat tube and the seat post and actuated by linear displacement to change the relative position of the seat tube and the seat post, thereby achieving the height adjustment. The height adjustment devices of this kind can be roughly divided into "mechanical", " pneumatic-hydraulic" and "hybrid" types, depending on the way that they operate. The "mechanical" type employs certain mechanical parts which cooperate to adjusts the relative position of the seat tube and the seat post. The "pneu- matic-hydraulic" type involves using a pneumatic part, a hydraulic part, or both, to adjust the relative position of the seat tube and the seat post. The "hybrid" type combines the "mechanical" type with the "pneumatic-hydraulic" type to adjust the relative position of the seat tube and the seat post.
[0003] [0003] However, while the "mechanical type”, "pneumatic-hy- draulic type" and "hybrid type" height adjustment devices described above are useful for adjusting the length of the seat tube at a controlled rate, the conventional seat tube cannot provide shock absorption. As a result, the rider often feels uncomfortable due to the vibration of the bicycle frame passing through the saddle and the seat tube, which is not conducive to long-term riding. Therefore, considerable improvements need to be made to the bicycle seat tube.SUMMARY OF THE INVENTION
[0004] [0004] In one aspect provided herein is a seat tube structure, especially a shock-absorbing seat tube with a height adjustment function.
[0005] [0005] The adjustable shock-absorbing seat tube disclosed herein includes an inner tube and an outer tube sleeved on the inner tube. The inner tube is adapted for connection at one end to a bicycle saddle from below through a joint, and sleeved at the other end within the outer tube. The outer tube is connected at its bottom end to a bicycle frame. The outer tube is provided inside with a height adjustment device which is fixed at one end and configured at the opposite end with a supporting end inserted into the inner tube. The inner tube is provided inside with a shock-absorbing device at a position above the height adjustment device. The shock-absorbing device comprises a fix- ing part and a damper part, wherein the fixing part comprises a shaft body and a shaft head located at a top end of the shaft body and having a width greater than that of the shaft body. The inner tube comprises a barrel portion and an inwardly pro- truded portion formed in the barrel portion and surrounding a through hole that communicates with the barrel portion. The through hole allows the shaft body to pass therethrough and further allows the shaft head to be nested in the barrel por- tion, and wherein the damper part is arranged between the inwardly protruded portion and the supporting end.
[0006] [0006] In a preferred embodiment, the barrel portion has a width greater than that of the through hole, and the width of the through hole has a size between that of the shaft head and the shaft body.
[0007] [0007] In a preferred embodiment, the seat tube further com- prises at least one washer mounted between the fixing part and the through hole.
[0008] [0008] According to the above technical feature, the seat tube further comprises a casing tube screwed at its top end to the inner tube, while the barrel portion and the through hole are formed on the casing tube.
[00083] [00083] In a preferred embodiment, the shaft body is fixed at its bottom end to the supporting end.
[0010] [0010] In a preferred embodiment, the damper part is config- ured as a compressed spring sleeved on the shaft body.
[0011] [0011] In a more preferred embodiment, the supporting end is formed with a recess for receiving and fixing the shaft body in position.
[0012] [0012] In a preferred embodiment, the height adjustment de- vice comprises a cylinder, a piston rod axially displaceably arranged in the cylinder and a controller unit. The cylinder is formed at its top end with the supporting end inserted into the inner tube. The piston rod extends at its top end into the cylinder and is secured at its bottom end to a fixed cap fixed in the outer tube. The piston rod is connected to the controller unit, so that the piston rod is adapted for being pushed by the controller unit through manually triggering, thus opening a valve of the cylinder, resulting in an axial displacement of the piston rod relative to the cylinder.
[0013] [0013] In a preferred embodiment, the height adjustment de- vice comprises either a pneumatic cylinder or a hydraulic cylinder.BRIEF DESCRIPTION OF THE DRAWINGS
[0014] [0014] The present invention will become more readily appar- ent to those ordinarily skilled in the art after reviewing the following detailed description and accompanying drawings, in which:
[0015] [0015] Fig. 1 is a perspective view of the shock-absorbing seat tube according to the invention;
[0016] [0016] Fig. 2 is a schematic structural diagram of the shock- absorbing seat tube according to the first embodiment of the invention;
[0017] [0017] Fig. 3 is an enlarged schematic diagram showing a por- tion of the shock-absorbing seat tube according to the first embodiment of the invention;
[0018] [0018] Fig. 4 is a schematic diagram of the shock-absorbing seat tube according the first embodiment of to the invention during its operation;
[0019] [0019] Fig. 5 is an exploded view of the shock-absorbing seat tube according to the second embodiment of the invention; and
[0020] [0020] Fig. 6 is an enlarged schematic diagram showing a por- tion of the shock-absorbing seat tube according to the second embodiment of the invention.DETAILED DESCRIPTION OF PREFERRED EMBODIMENTS
[0021] [0021] The above and other objects, features and effects of the invention will become apparent with reference to the fol- lowing description of the preferred embodiments.
[0022] [0022] Fig. 1 is a perspective view of the shock-absorbing seat tube according to the invention, and Fig. 2 is a schematic cross-sectional view thereof. The shock-absorbing seat tube disclosed herein includes an inner tube 10 and an outer tube 20 sleeved thereon. The inner tube 10 is adapted for connection at one end to the bicycle saddle from below through a joint 30, and sleeved at the other end within the outer tube 20. The outer tube 20 is connected at its bottom end to the bicycle frame, and the seat tube is provided inside with a height adjustment device 40 and a shock-absorbing device 50.
[0023] [0023] The height adjustment device 40 may be a pneumatic cylinder or a hydraulic cylinder and disposed generally inside the outer tube 20. In this embodiment, a hydraulic cylinder is taken as an example, which includes a cylinder 41, a piston rod 42 axially displaceably arranged in the cylinder 41, and a controller unit 43. The cylinder 41 includes a top supporting end 411 inserted into the inner tube 10. The piston rod 42 extends at its top end into the cylinder 41 and is secured at its bottom end to a fixed cap 21 fixed in the outer tube 20, so 5 that the piston rod 42 is fixed to be immobile. The piston rod 42 is connected to the controller unit 43, and the bottom end of the piston rod 42 can be pushed by the controller unit 43. As the piston rod 42 is linearly displaced, it causes the oil circuit in the cylinder 41 to be open, thus allowing the rider to adjust the height of the inner tube 10 through linear dis- placement of the inner tube 10 relative to the outer tube 20 according to his/her needs. When the inner tube 10 is adjusted to a proper height. the rider may simply release the controller unit 43, causing a restoring elastic member (not shown in the figure) to push down the piston rod 42, thus forcing the oil circuit in the cylinder 41 to be closed, thereby positioning the inner tube 10 and completing adjustment of the height of the saddle. The controller unit 43 disclosed herein can be controlled by a control trigger mounted on the bicycle handle- bar.
[0024] [0024] The shock-absorbing device 50 is disposed within the inner tube 10 at a position above the height adjustment device
[0025] [0025] The barrel portion 521 has a width greater than the diameter of the through hole 522, and the diameter of the through hole 522 has a size between that of the shaft head 512 and the shaft body 511, so that the shaft head 512 is allowed to move reciprocally in the barrel portion 521 without passing through the through hole 522. At least one washer 54 may be mounted between the fixing part 51 and the through hole 522.
[0026] [0026] Figs. 1 and 2 show the device assembled from the ele- ments described above. The height adjustment device 40 is useful for adjusting the height of the bicycle saddle. When the con- troller unit 43 pushes the piston rod 42 upward, the oil circuit in the cylinder 41 is in an open state, and the inner tube 10 is linearly displaced relative to the outer tube 20, thereby adjusting the height of the saddle. After the adjustment, the controller unit 43 may be released to fix the height of the saddle.
[0027] [0027] When the rider sits on the saddle (no matter when the saddle is just being seated or when riding on a bumpy road), the shock-absorbing device 50 is responsible for performing the shock-absorbing function, as shown in Figs. 3 and 4. When the rider sits on the saddle or rides on a bumpy road, the inner tube 10 will move downwards axially due to the downward force applied by the rider. At this time, the inner tube 10 and the inwardly protruded portion 523 move downwardly, and the damper part 53 1s compressed to perform a shock-absorbing effect on the saddle. In this embodiment, the distance between the in- wardly protruded portion 523 and the top supporting end 411 is equal to the compression distance T of the damper part 53.
[0028] [0028] Furthermore, in the second embodiment shown in Figs. 5 and 6, the shock-absorbing device 50 further comprises a casing tube 52 screwed at its top end to the inner tube 10, while the barrel portion 521 and the through hole 522 are formed on the casing tube 52 and the inwardly protruded portion 523 is located at the bottom end of the casing tube 52. During use, the inwardly protruded portion 523 acts to abut downwards against the damper part 53, thus achieving a shock-absorbing effect.
[0029] [0029] The invention provides an improved height adjustable shock-absorbing seat tube. While the invention has been de- scribed with reference to the preferred embodiments above, it should be recognized that the preferred embodiments are given for the purpose of illustration only and are not intended to limit the scope of the present invention and that various mod- ifications and changes, which will be apparent to those skilled in the relevant art, may be made without departing from the spirit and scope of the invention.
权利要求:
Claims (10)
[1]
An adjustable shock absorbing seat tube comprising an inner tube and an outer tube sheathed on the inner tube, the inner tube adapted for connection at one end to a bicycle saddle from below through a joint, and sheathed at the other end within the outer tube, and wherein- connected at its lower end to a bicycle frame at the outer tube, and wherein the outer tube is internally provided with a height adjusting device fixed at one end and configured at the other end with a support end inserted into the inner tube, the adjustable shock absorbing seat is characterized in that : the inner tube is internally provided with a shock absorbing device at a position above the height adjusting device, the shock absorbing device comprising a fixing part and a damper part, the fixing part comprising a shaft body and a shaft head which shaft head is located at an upper end of the shaft body and has a greater width than that of the shaft body, and wherein the inner tube comprises a sleeve portion and an inwardly projecting portion formed in the sleeve portion and surrounds a through hole communicating with the sleeve portion, and wherein the through hole is the shaft body passing therethrough and further allowing the shaft head to nest in the sleeve portion, and wherein the damper portion is disposed between the inwardly projecting portion and the support end.
[2]
The adjustable shock absorbing seat tube according to claim 1, wherein the sleeve portion has a width greater than that of the through hole, and the width of the through hole has a dimension between that of the shaft head and the shaft body.
[3]
The adjustable shock absorbing seat tube of claim 2, further comprising at least one ring disposed between the attachment portion and the through-hole.
[4]
An adjustable shock absorbing seat tube according to any one of claims 1 to 3, further comprising a housing tube screwed to the inner tube at its upper end, the sleeve portion and the through-hole being formed on the housing tube.
[5]
An adjustable shock absorbing seat tube according to any one of claims 1 to 3, wherein the shaft body is attached to the support end at its lower end.
[6]
An adjustable shock absorbing seat tube according to claim 5, wherein the damping part is formed as a compressed spring sheathed on the shaft body.
[7]
An adjustable shock absorbing seat tube according to claim 5, wherein the support end is formed with a recess for receiving and fixing the shaft body in position.
[8]
An adjustable shock absorbing seat tube according to any one of claims 1 to 3, wherein the height-adjusting device comprises a cylinder, a piston rod arranged axially slidably in the cylinder and a control unit, and the cylinder is formed at its upper end with the support end in the said cylinder. inner tube, and wherein the piston rod extends at the upper end into the cylinder and is secured at the lower end to a fixed cap secured in the outer tube, the piston rod being connected to the control unit so that the piston rod is adapted to pushing the control unit by manual actuation, which opens a valve of the cylinder, resulting in axial displacement of the piston rod relative to the cylinder,
[9]
An adjustable shock absorbing seat tube according to any one of claims 1 to 3, wherein the height adjusting device comprises a pneumatic cylinder.
[10]
An adjustable shock absorbing seat tube according to any one of claims 1 to 3, wherein the height adjusting device comprises a hydraulic cylinder.
类似技术:
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同族专利:
公开号 | 公开日
US20210214031A1|2021-07-15|
DE202020107502U1|2021-01-29|
TWM598260U|2020-07-11|
NL2027264B1|2021-12-01|
引用文献:
公开号 | 申请日 | 公开日 | 申请人 | 专利标题
GB658676A|1949-02-15|1951-10-10|Harold Douglas Hanks|Improvements in and relating to saddles for pedal cycles|
FR2687630A3|1989-07-10|1993-08-27|Rene Tranvoiz|Device for suspension of a saddle stem on a cycle or rolling object|
US5911430A|1997-11-19|1999-06-15|Wuschke; Thomas M.|Bicycle seat post shock absorber|
US20020139905A1|2001-04-03|2002-10-03|Duncan Allen Gary|Adjustable height seat support with suspension|
CN201390312Y|2009-02-27|2010-01-27|徐讯|Automatic lifter of bicycle saddle|
GB2483876A|2010-09-22|2012-03-28|Nicholas David Le Sueur|Seat height adjustment mechanism|
CN104921496A|2015-06-30|2015-09-23|遵义市郎笑笑食品有限责任公司|Manual honeysuckle picking stool|
CN106627867A|2016-11-25|2017-05-10|芜湖市泰能电热器具有限公司|Car seat with damping function|
US9957008B1|2017-03-06|2018-05-01|Taiwan Hodaka Industrial Co., Ltd.|Bicycle seatpost structure|
法律状态:
优先权:
申请号 | 申请日 | 专利标题
TW109200449U|TWM598260U|2020-01-10|2020-01-10|Adjustable shock-absorbing seatpost|
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