A bicycle inner tube assembling machine

By designing a bicycle inner tube assembly machine, using components such as rotary modules and pre-tightening modules, the automatic loading and pre-tightening installation of bicycle inner tube accessories is achieved, which solves the problem of low manual assembly efficiency in the prior art, improves assembly efficiency and saves costs.

CN112706569BActive Publication Date: 2025-05-30CHENGDU SHANZHECHENG AUTOMATION TECH CO LTD
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Patent Information

Application Number
CN202110139010.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2021-02-01
Publication Date
2025-05-30
Estimated Expiration
2041-02-01

AI Technical Summary

Technical Problem

The lack of automatic assembly line for bicycle inner tube accessories in the prior art leads to relying on manual installation and extremely low efficiency.

Method used

A bicycle inner tube assembly machine is designed, including a rotary module, a pre-tightening module, a disk pad loading module, a nut loading module, a gasket loading module, a valve core loading module and a hood loading module. Through the rotary motor driving and industrial control machine control, automatic loading and pre-tightening installation of accessories is realized.

Benefits of technology

The automatic installation of bicycle inner tube accessories is realized, replacing traditional manual assembly, improving assembly efficiency, simplifying the structure, and saving production costs.

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Abstract

The present invention discloses a bicycle inner tube assembling machine, which includes a frame module, a rotating motor installation box installed in the frame module, a rotating module arranged at the top of the rotating motor installation box for hanging the bicycle inner tube, a warning module fixed on the frame module for warning of bicycle inner tube accessories, a disc gasket feeding module, a nut feeding module, a gasket feeding module, a valve core feeding module and a wind cap feeding module respectively fixed on the frame module, a rotating motor arranged in the rotating motor installation box for driving the rotation of the rotating module, a cam divider arranged at the top of the rotating motor installation box and connected to the rotating motor by a belt for driving the rotation of the rotating module, and an industrial control computer fixed on the frame module and respectively connected to the warning module, the disc gasket feeding module, the nut feeding module, the gasket feeding module, the valve core feeding module, the wind cap feeding module and the rotating motor.
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Description

Technical Field

[0001] The present invention relates to the technical field of bicycle inner tube assembly, and in particular to a bicycle inner tube assembling machine. Background Art

[0002] A bicycle inner tube refers to a circular elastic tube used to maintain the inner pressure of a tire and equipped with a tire valve. It includes components such as an inner tube body, a valve core, a disc gasket, a gasket, a nut, and a wind cap. Currently, there is no automatic assembly line for bicycle inner tube accessories on the market, and manual installation is still used, resulting in extremely low efficiency. Summary of the Invention

[0003] In view of the above problems, the purpose of the present invention is to provide a bicycle inner tube assembling machine, and the technical solution adopted by the present invention is as follows:

[0004] A bicycle inner tube assembling machine includes a frame module, a rotating motor mounting box installed in the frame module, a rotating module provided on the top of the rotating motor mounting box for hanging a bicycle inner tube, a pre-tightening module fixed on the frame module for pre-tightening bicycle inner tube accessories, a disc gasket feeding module, a nut feeding module, a gasket feeding module, a valve core feeding module, and a wind cap feeding module respectively fixed on the frame module, a rotating motor provided in the rotating motor mounting box for driving the rotating module to rotate, a cam divider provided on the top of the rotating motor mounting box and connected to the rotating motor by a belt for driving the rotating module to rotate, and an industrial control computer fixed on the frame module and respectively connected to the pre-tightening module, the disc gasket feeding module, the nut feeding module, the gasket feeding module, the valve core feeding module, the wind cap feeding module, and the rotating motor.

[0005] Compared with the prior art, the present invention has the following beneficial effects:

[0006] (1) The present invention ingeniously sets a rotating module for hanging a bicycle inner tube. Under the driving action of a rotating motor, the inner tube is displaced, and in cooperation with the pre-tightening module, the disc gasket feeding module, the nut feeding module, the gasket feeding module, the valve core feeding module, and the wind cap feeding module, automatic installation of bicycle inner tube accessories is achieved.

[0007] (2) The present invention realizes automatic feeding of the disc gasket, nut, gasket, valve core, and wind cap by setting a disc gasket feeding module, a nut feeding module, a gasket feeding module, a valve core feeding module, and a wind cap feeding module. In this way, traditional manual feeding and assembly can be replaced.

[0008] (3) The present invention ingeniously sets a pre-tightening module, which can realize pre-tightening installation of accessories while automatically feeding the disc gasket, nut, gasket, valve core, and wind cap. In this way, traditional manual installation of inner tube accessories can be completely replaced.

[0009] (4) Most of the component structures of the disc gasket feeding module, nut feeding module, gasket feeding module, valve core feeding module and wind cap feeding module of the present invention are the same, only the clamping parts are different; such a design can simplify the structure while ensuring reliable assembly and feeding.

[0010] In summary, the present invention has the advantages of simple structure, reliable operation, high assembly efficiency, cost saving in production, etc., and has high practical value and popularization value in the technical field of bicycle inner tube assembly. BRIEF DESCRIPTION OF THE DRAWINGS

[0011] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the following will briefly introduce the drawings required in the embodiments. It should be understood that the following drawings only show some embodiments of the present invention, so they should not be regarded as limiting the protection scope. For those skilled in the art, without creative efforts, other related drawings can also be obtained based on these drawings.

[0012] Figure 1 It is a schematic structural diagram of the present invention.

[0013] Figure 2 It is a schematic structural diagram of the present invention (removing the first rack module).

[0014] Figure 3 It is a schematic structural diagram of the present invention (removing the second rack module).

[0015] Figure 4 It is a schematic structural diagram of the rotation module of the present invention.

[0016] Figure 5 It is a schematic structural diagram of the inner tube rotating disc of the present invention.

[0017] Figure 6 It is a schematic structural diagram of the first fixture propulsion component of the present invention.

[0018] Figure 7 It is a schematic structural diagram of the inner tube clamping part of the present invention.

[0019] Figure 8 It is a schematic structural diagram of the pre-tightening module of the present invention.

[0020] Figure 9 It is a schematic structural diagram of the first gas filling component of the present invention.

[0021] Figure 10 It is a schematic structural diagram of the valve extrusion component of the present invention.

[0022] Figure 11 It is a schematic structural diagram of the disc gasket extrusion component of the present invention.

[0023] Figure 12 It is a schematic structural diagram of the electric screwdriver assembly of the present invention.

[0024] Figure 13 It is a schematic structural diagram (1) of the disc gasket feeding module of the present invention.

[0025] Figure 14 It is a schematic structural diagram (2) of the disc gasket feeding module of the present invention.

[0026] Figure 15 It is a schematic structural diagram of the first feeding transmission assembly of the present invention.

[0027] Figure 16 It is a schematic structural diagram of the disc gasket clamping assembly of the present invention.

[0028] Figure 17 It is a schematic structural diagram of the gasket feeding module of the present invention.

[0029] Figure 18 It is a schematic structural diagram of the second feeding transmission assembly of the present invention.

[0030] Figure 19 It is a schematic structural diagram of the gasket clamping assembly of the present invention.

[0031] Figure 20 It is a schematic structural diagram of the valve core feeding module of the present invention.

[0032] Figure 21 It is a schematic structural diagram of the valve core feeding seat of the present invention.

[0033] Figure 22 It is a schematic structural diagram of the valve core clamping assembly of the present invention.

[0034] In the above-mentioned drawings, the component names corresponding to the reference numerals are as follows:

[0035] 1 - Frame module, 2 - Rotary motor mounting box, 3 - Industrial control computer, 4 - Rotary module, 5 - Pre - tightening module, 6 - Disc gasket feeding module, 7 - Nut feeding module, 8 - Gasket feeding module, 9 - Valve core feeding module, 10 - Wind cap feeding module, 41 - Rotary motor, 42 - Cam divider, 43 - Inner tube rotating disk, 51 - Pre - tightening mounting plate, 52 - Pneumatic circuit transfer box, 53 - Gasket extrusion assembly, 54 - Electric screwdriver assembly, 55 - Disc gasket extrusion assembly, 56 - Valve extrusion cylinder assembly, 57 - Valve extrusion assembly, 58 - First gas filling assembly, 59 - Second gas filling assembly, 61 - Disc gasket vibrating disk group, 62 - First feeding transmission assembly, 63 - Disc gasket mounting base, 64 - Lateral push rod, 65 - Lateral moving slide plate, 66 - First slide rail, 67 - Second slider, 81 - Gasket vibrating disk group, 82 - Second feeding transmission assembly, 83 - Gasket mounting base, 84 - Lateral air rod mounting plate, 85 - Second lateral air rod, 86 - Longitudinal linear module, 87 - Gasket clamping head, 91 - Valve core vibrating disk group, 92 - Valve core feeding seat, 93 - Valve core mounting base, 94 - Third lateral air rod, 95 - Lateral slider, 96 - Rotary cylinder, 97 - Valve core clamping head, 431 - Rotating disk, 432 - Fixed disk, 433 - Inner tube clamping part, 434 - First fixture propulsion assembly, 435 - Second fixture propulsion assembly, 621 - Disc gasket feeding base, 622 - Second slide rail, 623 - Second slider, 624 - Disc gasket screening seat, 625 - First feeding transmission assembly guide rail, 626 - First screening cylinder, 681 - First longitudinal cylinder, 682 - First longitudinal slide plate, 683 - Disc gasket clamping head, 821 - Gasket feeding base, 822 - Third slide rail, 823 - Third slider, 824 - Gasket screening seat, 825 - Second feeding transmission assembly guide rail, 826 - Second screening cylinder, 4331 - First base block, 4332 - First clamping plate, 4333 - Second clamping plate, 4334 - Second base block, 4335 - Clamping head, 4336 - Third base block, 4337 - Arc plate, 4338 - Buffer spring, 4339 - Clamping circular plate, 4341 - First propulsion cylinder, 4342 - Propulsion fixing block, 4343 - Upper slider, 4344 - Lower slider, 4345 - Arc slide plate, 43321 - Return spring, 43322 - Roller. Detailed implementation mode

[0036] To make the purpose, technical solutions and advantages of this application clearer, the following further explains the present invention in conjunction with the drawings and embodiments. The implementation modes of the present invention include but are not limited to the following embodiments. Based on the embodiments in this application, all other embodiments obtained by those of ordinary skill in the art without creative efforts belong to the scope protected by this application.

[0037] Embodiment

[0038] As shown Figures 1 to 22 in the figure, this embodiment provides a bicycle inner tube assembling machine, which includes a frame module 1, a rotating motor installation box 2 installed in the frame module 1, a rotating module 4 arranged on the top of the rotating motor installation box 2 for hanging a bicycle inner tube, a pre-tightening module 5 fixed on the frame module 1 for pre-tightening bicycle inner tube fittings, a disc gasket feeding module 6, a nut feeding module 7, a gasket feeding module 8, a valve core feeding module 9 and a wind cap feeding module 10 respectively fixed on the disc pad of the frame module 1, and an industrial control computer 3 fixed on the frame module 1 and connected to the pre-tightening module 5, the disc gasket feeding module 6, the nut feeding module 7, the gasket feeding module 8, the valve core feeding module 9, the wind cap feeding module 10 and the rotating motor 41 respectively. It should be noted that the serial number terms such as "first" and "second" in this embodiment are only used to distinguish similar components and cannot be understood as specific limitations on the protection scope. In addition, the orientation terms such as "bottom", "top", "peripheral edge" and "center" in this embodiment are described based on the drawings. Moreover, the improvement based on the structure in this embodiment does not improve the program used, and those skilled in the art can implement it by combining conventional program segments according to the content recorded in this embodiment.

[0039] The structures and working principles of each part are specifically described below:

[0040] Among them, the rotation module 4 of this embodiment includes a rotation motor 41 disposed within the rotation motor mounting box 2 and used to drive the rotation of the rotation module 4, a cam divider 42 disposed at the top of the rotation motor mounting box 2, connected to the rotation motor 41 by a belt and used to drive the rotation of the rotation module 4, and an inner tube rotating disk 43 connected to the cam divider 42. Among them, the inner tube rotating disk 43 includes a rotating disk 431 fixedly connected to the cam divider 42, a fixed disk 432 disposed at the top of the rotating disk 431, connected to the frame module 1 and coaxial with the rotating disk 431, several inner tube clamping members 433 annularly and evenly spaced at the edge of the rotating disk 431 and used to clamp the bicycle inner tube, and a first clamp propulsion assembly 434 and a second clamp propulsion assembly 435 disposed on the fixed disk 432 and used to extrude the inner tube clamping members 433. The structures of the first clamp propulsion assembly 434 and the second clamp propulsion assembly 435 of this embodiment are the same, and the first clamp propulsion assembly 434 includes a first propulsion cylinder 4341 fixed on the fixed disk 432, an arc-shaped sliding plate 4345 complementary to the fixed disk 432, a propulsion fixing block 4342 fixed on the arc-shaped sliding plate 4345 and connected to the first propulsion cylinder 4341, and two groups of guiding sliding groups disposed between the fixed disk 432 and the arc-shaped sliding plate 4345; any one of the guiding sliding groups includes a lower sliding block 4344 fixed on the arc-shaped sliding plate 4345, and an upper sliding block 4343 fixed on the fixed disk 432 and slidably matched with the lower sliding block 4344. At the same time, any one of the inner tube clamping members 433 includes a first base block 4331 fixed on the top of the rotating disk 431, a third base block 4336 fixed on the bottom of the rotating disk 431 and corresponding to the position of the first base block 4331, a second base block 4334 fixed on the bottom of the first base block 4331 and in a T shape, a first clamping plate 4332 and a second clamping plate 4333 respectively hinged to the two ends of the second base block 4334 and jointly forming an eight-shaped shape, a clamping head 4335 disposed on the outer sides of the first clamping plate 4332 and the second clamping plate 4333, an arc-shaped plate 4337 hinged to the middle of the third base block 4336, a buffer spring 4338 connected to the arc-shaped plate 4337, and a clamping circular plate 4339 connected to the top of the buffer spring 4338 and corresponding to the position of the clamping head 4335; the structures of the first clamping plate 4332 and the second clamping plate 4333 are the same, and a roller 43322 for rolling extrusion with the fixed disk 432 is disposed on the first clamping plate 4332, and a return spring 43321 is disposed on the first clamping plate 4332.

[0041] In this embodiment, an inner tube clamping member 433 is used to clamp the bicycle inner tube to be installed with a disc gasket, nut, gasket, valve core and wind cap. The rotation disc 431 drives the movement of the bicycle inner tube to provide a flowing water circulation line for each working position. In this way, the traditional linear assembly line can be replaced, and further guarantee for providing installation accessories for the disc gasket feeding module, nut feeding module, gasket feeding module, valve core feeding module and wind cap feeding module can be provided.

[0042] In this embodiment, a disc gasket feeding module, a nut feeding module, a gasket feeding module, a valve core feeding module and a wind cap feeding module are respectively provided:

[0043] Among them, the disc gasket feeding module 6 includes a disc gasket vibrating disc group 61 and a disc gasket mounting base 63 respectively fixed on the frame module 1, a first feeding transmission component 62 fixed on the frame module 1 and connected to the disc gasket vibrating disc group 61, a transverse push rod 64 fixed on the disc gasket mounting base 63 in the horizontal direction, a second slider 67 fixed on the disc gasket mounting base 63, a first slide rail 66 sleeved on the second slider 67, a transverse moving slide plate 65 fixed on the first slide rail 66 and pushed by the transverse push rod 64 to move in the horizontal direction, a first longitudinal air cylinder 681 fixed on the transverse moving slide plate 65, a first longitudinal slide plate 682 arranged at the bottom of the first longitudinal air cylinder 681 and driven by the first longitudinal air cylinder 681 to move up and down, and a disc gasket clamping head 683 fixed on the first longitudinal slide plate 682 for clamping the disc gasket. In addition, the first feeding transmission component 62 includes a disc gasket feeding base 621 on the frame module 1, a second slide rail 622 fixed on the disc gasket feeding base 621, a second slider 623 sleeved on the second slide rail 622, a disc gasket screening seat 624 fixed on the top of the second slider 623, a first feeding transmission component guide rail 625 arranged between the disc gasket vibrating disc group 61 and the disc gasket screening seat 624, and a first screening air cylinder 626 fixed on the disc gasket mounting base 63 and connected to the disc gasket screening seat 624.

[0044] In addition, the nut feeding module 7, the gasket feeding module 8 and the wind cap feeding module 10 have the same structure. The gasket feeding module 8 includes a gasket vibrating disk group 81 and a gasket mounting base 83 respectively fixed on the frame module 1, a second feeding transmission assembly 82 fixed to the lower part of the gasket mounting base 83 and connected to the gasket vibrating disk group 81 for conveying gaskets, a transverse air rod mounting plate 84 horizontally installed on the top of the gasket mounting base 83, a second transverse air rod 85 fixed to the transverse air rod mounting plate 84, a longitudinal linear module 86 slidably connected to the second transverse air rod 85, and a gasket clamping head 87 provided at the bottom of the longitudinal linear module 86. Among them, the second feeding transmission assembly 82 includes a gasket feeding base 821 fixed to the gasket mounting base 83, a third slide rail 822 and a second screening cylinder 826 respectively fixed to the top of the gasket feeding base 821, a third slider 823 sleeved on the third slide rail 822, a gasket screening seat 824 fixed to the top of the third slider 823 and connected to the second screening cylinder 826, and a second feeding transmission assembly guide rail 825 provided between the gasket vibrating disk group 81 and the gasket screening seat 824 for conveying gaskets.

[0045] Moreover, the valve core feeding module 9 of this embodiment includes a valve core vibrating disk group 91 and a valve core mounting base 93 respectively fixed on the frame module 1, a valve core feeding seat 92 fixed to the valve core mounting base 93 for conveying valve cores, a third transverse air rod 94 horizontally fixed to the top of the valve core mounting base 93, a transverse slider 95 slidably connected to the top of the valve core mounting base 93 and pushed to move horizontally by the third transverse air rod 94, a rotary cylinder 96 fixed to the transverse slider 95, and a valve core clamping head 97 provided at the bottom of the rotary cylinder 96 for clamping valve cores.

[0046] While explaining the working principles of each feeding module, it is necessary to additionally describe the structure of the pre-tightening module 5. Among them, the pre-tightening module 5 includes a pre-tightening mounting plate 51 fixed to the frame module 1, an air circuit transfer box 52 provided in the center of the pre-tightening mounting plate 51, and a gasket extrusion assembly 53, an electric screwdriver assembly 54, a disk gasket extrusion assembly 55, a valve extrusion cylinder assembly 56, a valve extrusion assembly 57, a first gas adding assembly 58 and a second gas adding assembly 59 respectively fixed to the edge of the pre-tightening mounting plate 51 and connected to the air circuit transfer box 52.

[0047] In this embodiment, after the disc gasket feeding module feeds the material, it is extruded by the disc gasket extrusion assembly 55. At the same time, the nut feeding module and the electric screwdriver assembly 54 are matched in operation, the gasket feeding module and the gasket extrusion assembly 53 are matched in operation, the valve core feeding module and the valve extrusion cylinder assembly 56 are matched in operation, and the wind cap feeding module and the valve extrusion assembly 57 are matched in operation. Since the principles of the above-mentioned operation matching are roughly the same, taking the installation of the gasket feeding as an example, the principles of other operations will not be elaborated.

[0048] In this embodiment, gaskets are stored in the gasket vibrating disc group, and the second feeding transmission assembly 82 is used to convey the gaskets. After the gaskets are conveyed by the guide rail 825 of the second feeding transmission assembly, the gasket screening seat 824 holds a gasket and is pushed to the position to be clamped by the second screening cylinder 826.

[0049] The longitudinal linear module 86 drives the gasket clamping head 87 to move to the position to be clamped and clamps the gasket. The longitudinal linear module 86 moves upward and is pushed to the inner tube of the bicycle where the gasket is to be installed by the second transverse air rod 85. Among them, the gasket clamping head 87 clamps by pneumatic means.

[0050] After the gasket is fed, the gasket extrusion assembly 53 is used to press down to realize the automatic installation of the gasket. In this way, manual installation can be replaced, and the installation efficiency is greatly improved.

[0051] The above embodiments are only the preferred embodiments of the present invention, and do not limit the protection scope of the present invention. Any changes made by using the design principle of the present invention and non-creative labor on this basis shall fall within the protection scope of the present invention.

Claims

1. A bicycle inner tube assembling machine, characterized in that, it includes a frame module (1), a rotating motor mounting box (2) installed inside the frame module (1), a rotating module (4) arranged on the top of the rotating motor mounting box (2) for hanging a bicycle inner tube, a pre-tightening module (5) fixed on the frame module (1) for pre-tightening bicycle inner tube fittings, a disc gasket feeding module (6), a nut feeding module (7), a gasket feeding module (8), a valve core feeding module (9) and a wind cap feeding module (10) respectively fixed on the frame module (1), a rotating motor (41) arranged inside the rotating motor mounting box (2) for driving the rotating module (4) to rotate, a cam divider (42) arranged on the top of the rotating motor mounting box (2) and connected to the rotating motor (41) by a belt for driving the rotating module (4) to rotate, and an industrial control computer (3) fixed on the frame module (1) and respectively connected to the pre-tightening module (5), the disc gasket feeding module (6), the nut feeding module (7), the gasket feeding module (8), the valve core feeding module (9), the wind cap feeding module (10) and the rotating motor (41); the rotating module (4) further includes an inner tube rotating disc (43) connected to the cam divider (42); the inner tube rotating disc (43) includes a rotating disc (431) fixedly connected to the cam divider (42), a fixed disc (432) arranged on the top of the rotating disc (431), connected to the frame module (1) and coaxial with the rotating disc (431), several inner tube clamping members (433) annularly and evenly spaced on the edge of the rotating disc (431) for clamping a bicycle inner tube, and a first clamp propulsion assembly (434) and a second clamp propulsion assembly (435) arranged on the fixed disc (432) for extruding the inner tube clamping members (433); the pre-tightening module (5) includes a pre-tightening mounting plate (51) fixed on the frame module (1), an air circuit transfer box (52) arranged in the center of the pre-tightening mounting plate (51), and a gasket extrusion assembly (53), an electric screwdriver assembly (54), a disc gasket extrusion assembly (55), a valve extrusion cylinder assembly (56), a valve extrusion assembly (57), a first gas filling assembly (58) and a second gas filling assembly (59) respectively fixed on the edge of the pre-tightening mounting plate (51) and connected to the air circuit transfer box (52).

2. The bicycle inner tube assembling machine according to claim 1, characterized in that, The first clamp propulsion assembly (434) has the same structure as the second clamp propulsion assembly (435). The first clamp propulsion assembly (434) includes a first propulsion cylinder (4341) fixed on a fixed disk (432), an arc-shaped sliding plate (4345) complementary to the fixed disk (432), a propulsion fixing block (4342) fixed on the arc-shaped sliding plate (4345) and connected to the first propulsion cylinder (4341), and two sets of guiding sliding groups arranged between the fixed disk (432) and the arc-shaped sliding plate (4345); any one of the guiding sliding groups includes a lower sliding block (4344) fixed on the arc-shaped sliding plate (4345), and an upper sliding block (4343) fixed on the fixed disk (432) and slidably matched with the lower sliding block (4344).

3. The bicycle inner tube assembling machine according to claim 2, characterized in that, any one of the inner tube clamping members (433) includes a first base block (4331) fixed on the top of a rotating disk (431), a third base block (4336) fixed on the bottom of the rotating disk (431) and corresponding to the position of the first base block (4331), a second base block (4334) fixed on the bottom of the first base block (4331) and in a T shape, a first clamping plate (4332) and a second clamping plate (4333) respectively hinged to the two ends of the second base block (4334) and jointly forming an eight-shaped structure, a clamping head (4335) arranged on the outer sides of the first clamping plate (4332) and the second clamping plate (4333), an arc-shaped plate (4337) with its middle hinged to the third base block (4336), a buffer spring (4338) connected to the arc-shaped plate (4337), and a clamping circular plate (4339) connected to the top of the buffer spring (4338) and corresponding to the position of the clamping head (4335); the first clamping plate (4332) and the second clamping plate (4333) have the same structure, and the first clamping plate (4332) is provided with a roller (43322) that rolls and presses against the fixed disk (432), and the first clamping plate (4332) is provided with a return spring (43321).

4. The bicycle inner tube assembling machine according to claim 1, characterized in that, The disk gasket feeding module (6) includes a disk gasket vibrating disk group (61) and a disk gasket mounting base (63) respectively fixed on the frame module (1), a first feeding transmission component (62) fixed on the frame module (1) and connected to the disk gasket vibrating disk group (61), a transverse pushing rod (64) fixed horizontally on the disk gasket mounting base (63), a second slider (67) fixed on the disk gasket mounting base (63), a first slide rail (66) sleeved on the second slider (67), a transverse moving slide plate (65) fixed on the first slide rail (66) and pushed by the transverse pushing rod (64) to move horizontally, a first longitudinal cylinder (681) fixed on the transverse moving slide plate (65), a first longitudinal slide plate (682) arranged at the bottom of the first longitudinal cylinder (681) and driven by the first longitudinal cylinder (681) to move up and down, and a disk gasket clamping head (683) fixed on the first longitudinal slide plate (682) for clamping the disk gasket.

5. The bicycle inner tube assembling machine according to claim 4, characterized in that the first feeding transmission component (62) includes a disk gasket feeding base (621) on the frame module (1), a second slide rail (622) fixed on the disk gasket feeding base (621), a second slider (623) sleeved on the second slide rail (622), a disk gasket screening seat (624) fixed on the top of the second slider (623), a first feeding transmission component guide rail (625) arranged between the disk gasket vibrating disk group (61) and the disk gasket screening seat (624), and a first screening cylinder (626) fixed on the disk gasket mounting base (63) and connected to the disk gasket screening seat (624).

6. The bicycle inner tube assembling machine according to claim 1, characterized in that the nut feeding module (7), the gasket feeding module (8) and the wind cap feeding module (10) have the same structure, and the gasket feeding module (8) includes a gasket vibrating disk group (81) and a gasket mounting base (83) respectively fixed on the frame module (1), a second feeding transmission component (82) fixed on the lower part of the gasket mounting base (83) and connected to the gasket vibrating disk group (81) for conveying the gasket, a transverse air rod mounting plate (84) horizontally installed on the top of the gasket mounting base (83), a second transverse air rod (85) fixed on the transverse air rod mounting plate (84), a longitudinal linear module (86) slidably connected to the second transverse air rod (85), and a gasket clamping head (87) arranged at the bottom of the longitudinal linear module (86).

7. The bicycle inner tube assembling machine according to claim 6, characterized in that The second feeding and conveying component (82) includes a gasket feeding base (821) fixed on a gasket mounting base (83), a third slide rail (822) and a second screening cylinder (826) respectively fixed on the top of the gasket feeding base (821), a third slider (823) sleeved on the third slide rail (822), a gasket screening seat (824) fixed on the top of the third slider (823) and connected to the second screening cylinder (826), and a second feeding and conveying component guide rail (825) arranged between the gasket vibrating disk group (81) and the gasket screening seat (824) for conveying gaskets.

8. A bicycle inner tube assembling machine according to claim 1, characterized in that the valve core feeding module (9) includes a valve core vibrating disk group (91) and a valve core mounting base (93) respectively fixed on the frame module (1), a valve core feeding seat (92) fixed on the valve core mounting base (93) for conveying valve cores, a third transverse air rod (94) fixed horizontally on the top of the valve core mounting base (93), a transverse slider (95) connected to the top of the valve core mounting base (93) by a slide rail and pushed by the third transverse air rod (94) to move horizontally, a rotary cylinder (96) fixed on the transverse slider (95), and a valve core clamping head (97) arranged at the bottom of the rotary cylinder (96) for clamping valve cores.

Citation Information

Patent Citations

  • Bicycle inner tube assembly machine

    CN215096839U