Quick-release type conveying belt
The quick-release conveyor belt design solves the problem of existing conveyor belt devices being unable to be thoroughly cleaned, enabling convenient disassembly and efficient cleaning, thus improving cleaning efficiency and hygiene.
Patent Information
- Application Number
- CN202520354331.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-28
- Publication Date
- 2026-01-30
- Estimated Expiration
- 2035-02-28
AI Technical Summary
Existing conveyor belt devices have a fixed structure, and hygiene cleaning can only be done on the outer surface, which cannot effectively clean the inner surface or internal parts, resulting in low efficiency and high labor intensity.
Design a quick-release conveyor belt, including a detachable drive roller, guide roller and support plate. The drive roller is connected to the motor through the installation mechanism and connecting components. The support plate is detachably connected to the bracket, which is convenient for disassembly and cleaning.
It enables convenient disassembly and thorough cleaning of the conveyor belt, improving cleaning efficiency and cleanliness while reducing labor intensity.
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Figure CN223851383U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of conveying belt, specifically, relates to a quick-release type conveying belt. BACKGROUND
[0002] Conveying belt, also known as transport belt, is a composite product of rubber and fiber, metal, or plastic and fabric, which is used for load bearing and material conveying in belt conveyor. In production and processing, conveying belt is used to convey materials or finished products, which can effectively reduce labor input. According to the search, Chinese patent application CN219135424U discloses an automatic paint spraying conveying belt. The guide roller is set to play a guiding role when the conveying belt body is running, reducing the friction between the conveying belt body and the contact surface of the support plate, thereby improving the stability of the conveying belt body when running.
[0003] However, when implementing the above technical solution, there are still the following technical problems: after a period of operation, the conveying belt surface will be attached with a lot of slag, and long-term cleaning will make the conveying belt overall dirty, which will affect the subsequent use, so the conveying belt needs to be cleaned from time to time. The overall structure of the above conveying belt device is fixed, and the sanitary cleaning can only clean the outer surface of the conveying belt simply, and cannot effectively clean the inner surface or other internal positions, which is low in efficiency and high in labor intensity.
[0004] Therefore, it is urgent for the utility model to provide a quick-release type conveying belt which can be disassembled during use, the internal conveying belt is disassembled, and then the user can clean it thoroughly, improving the overall efficiency and cleanliness of cleaning. UTILITY MODEL CONTENTS
[0005] In view of the above technical problems, the utility model aims to overcome the problems of the overall structure of the conveying belt device being fixed, the sanitary cleaning being able to only clean the outer surface of the conveying belt simply, and the inner surface or other internal positions being unable to be effectively cleaned, which is low in efficiency and high in labor intensity, thereby providing a quick-release type conveying belt which can be disassembled during use, the internal conveying belt is disassembled, and then the user can clean it thoroughly, improving the overall efficiency and cleanliness of cleaning.
[0006] In order to achieve the above object, the utility model provides a quick detachable conveying belt, conveying belt includes: support, both ends of the support rotatable is equipped with detachable drive roller and guide roller, the drive roller and guide roller are equipped with conveying belt body, the support is detachably equipped with the support plate who contacts with the inner wall of conveying belt body, one end of the drive roller is detachably connected with the output shaft of drive motor through the mounting mechanism, and the other end is detachably connected with the support through the connecting assembly, wherein,
[0007] Both ends of the conveying belt body are equipped with baffle.
[0008] Preferably, the mounting mechanism includes: threaded rod, rotating plate and lug, wherein,
[0009] One end of the drive roller is fixedly provided with a threaded rod, a threaded sleeve is threadedly sleeved on the threaded rod, one end of the threaded sleeve is rotatably connected with a rotating plate through a bearing, the rotating plate is fixedly provided with a lug, and the output end of the drive motor is fixedly provided with a mounting block.
[0010] Preferably, the circumferential surface of the threaded sleeve is fixedly provided with a handle.
[0011] Preferably, the connecting assembly includes: fixed rod, circular table sliding rod and clamping block, wherein,
[0012] The other end of the drive roller is fixedly provided with a fixed rod, the top end of the fixed rod is fixedly provided with a circular table sliding rod which is far away from one end of the fixed rod and close to the other end of the fixed rod, the circumferential surface of the circular table sliding rod is spaced apart and provided with a plurality of groups of slots, the clamping pawl is formed between two groups of slots, the limiting hole for the clamping pawl to pass through is formed in the side wall of the support, the circumferential surface of each clamping pawl is fixedly provided with a clamping block which abuts against the side wall of the support, the side wall of the baffle is fixedly connected with a reset spring, and one end of the reset spring is fixedly connected with a sliding sleeve which is sleeved on the circular table sliding rod.
[0013] Preferably, a plurality of groups of ball bearings which are in contact with the clamping block are rotatably arranged on the support along the circumferential direction of the limiting hole.
[0014] Preferably, the support plate is detachably installed on the support through the clamping mechanism.
[0015] Preferably, the clamping mechanism includes: sliding block, fixed block and spring, wherein,
[0016] The inner side wall of the support plate is provided with a mounting groove, two groups of sliding blocks are slidingly arranged in the mounting groove and away from each other, and the mounting groove is provided with a spring which is arranged at two ends and abuts against the side wall of the two groups of sliding blocks, the two groups of sliding blocks are fixedly provided with a fixed block which is slidingly matched with the inner wall of the support plate, and the support is provided with a clamping groove which is matched with the fixed block.
[0017] Preferably, the clamping mechanism further comprises guide blocks, guide blocks with trapezoidal shape in cross section and larger area near one end of the support plate are fixed on the two side walls of the support plate away from each other, and guide grooves matched with the guide blocks are arranged on the support frame.
[0018] Preferably, the guide roller is mounted on the support frame through a mounting member.
[0019] Preferably, the mounting member comprises a fitting groove and a fitting block, the fitting groove is arranged in the guide roller, and the fitting block is rotatably arranged on the inner side wall of the support frame and matched with the fitting groove.
[0020] According to the technical scheme, the detachable conveying belt has the beneficial effects that the support plate is detachably mounted between the support frames. The support plate is in contact with the inner wall of the conveying belt body to support and stabilize the conveying belt. The output shaft of the driving motor is detachably connected with one end of the driving roller through the mounting mechanism. In this way, the driving motor can drive the driving roller to rotate, thereby driving the conveying belt body to run. The other end of the driving roller is detachably connected with the support frame through the connecting assembly, so that the driving roller can be kept stable during rotation. The driving motor is started, and the driving roller starts to rotate, thereby driving the conveying belt body to run under the cooperation of the guide roller. The material can be placed on the conveying belt and conveyed to the designated position as the conveying belt moves. The driving roller, the guide roller and the support plate are detachably connected with the support frame, so that these components can be conveniently detached, replaced and cleaned when damaged or need to be maintained.
[0021] Other features and advantages of the present application will be described in detail in the following specific embodiments. Moreover, the parts not involved in the present application are the same as or can be realized by the prior art. BRIEF DESCRIPTION OF DRAWINGS
[0022] The accompanying drawings are included to provide a further understanding of the present application, and constitute a part of the specification, and are used to explain the present application together with the specific embodiments described below, but do not constitute a limitation on the present application. In the drawings:
[0023] Figure 1 is a perspective structural schematic of the detachable conveying belt provided in a preferred embodiment Figure 1 ;
[0024] Figure 2 is a perspective structural schematic of the detachable conveying belt provided in a preferred embodiment Figure 2 ;
[0025] Figure 3 is a partial exploded view of the detachable conveying belt provided in a preferred embodiment.
[0026] Figure 4 is a perspective view of a quick-release conveyor belt mounting mechanism and connecting assembly provided in a preferred embodiment;
[0027] Figure 5 is a perspective view of a quick-release conveyor belt mounting mechanism provided in a preferred embodiment;
[0028] Figure 6 is a partial perspective view of a quick-release conveyor belt clamping mechanism provided in a preferred embodiment;
[0029] Figure 7 is a perspective view of a quick-release conveyor belt clamping mechanism provided in a preferred embodiment;
[0030] Figure 8 is a partial plan view of a quick-release conveyor belt provided in a preferred embodiment;
[0031] Figure 9 is Figure 8 is a sectional view of A-A in Fig.
[0032] Explanation of reference signs
[0033] 100, conveyor belt body; 101, support; 102, baffle; 103, drive motor; 104, support plate; 105, drive roller; 106, guide roller; 200, mounting mechanism; 201, threaded rod; 202, bearing; 203, rotating plate; 204, rotating handle; 205, protrusion; 206, mounting block; 207, groove; 208, threaded sleeve; 300, connecting assembly; 301, fixed rod; 302, return spring; 303, sliding sleeve; 304, circular table sliding rod; 305, slotted; 306, clamping block; 307, ball; 308, limiting hole; 400, clamping mechanism; 401, guide groove; 402, guide block; 403, clamping groove; 404, mounting groove; 405, sliding block; 406, fixed block; 407, spring; 500, mounting piece; 501, accessory groove; 502, accessory block. DETAILED DESCRIPTION
[0034] The specific embodiments described hereinbefore will be better understood in connection with the accompanying drawings, of which, it should be understood that the specific embodiments described herein are intended for purposes of illustration only and are not intended to limit the present application.
[0035] In the present application, unless otherwise specified, the orientation words contained in the terms such as "up, down, inside, outside" only represent the orientation of the terms in the normal use state or the common name understood by the person skilled in the art, and should not be regarded as a limitation of the terms.
[0036] Referring to Figures 1-9 As shown in the figure, a quick-release conveying belt, comprising: a support 101, both ends of which are rotatably provided with detachable driving rollers 105 and guide rollers 106, the driving rollers 105 and the guide rollers 106 are externally sleeved with a conveying belt body 100, and a support plate 104 in contact with the inner wall of the conveying belt body 100 is detachably arranged between the support 101, one end of the driving roller 105 is detachably connected with the output shaft of a driving motor 103 through a mounting mechanism 200, and the other end is detachably connected with the support 101 through a connecting assembly 300; wherein,
[0037] Both ends of the conveying belt body 100 are provided with baffles 102.
[0038] In use, the conveying belt body 100 is sleeved on the driving rollers 105 and the guide rollers 106 to ensure that the conveying belt can run smoothly between the two rollers, the baffles 102 are arranged at both ends of the conveying belt body 100 to prevent materials from falling off from both sides of the conveying belt during conveying, and the support plate 104 is detachably mounted between the supports 101. The support plate 104 is in contact with the inner wall of the conveying belt body 100 to support and stabilize the conveying belt, and the output shaft of the driving motor 103 is detachably connected with one end of the driving roller 105 through the mounting mechanism 200. In this way, the driving motor 103 can drive the driving roller 105 to rotate, thereby driving the conveying belt body 100 to run. The other end of the driving roller 105 is detachably connected with the support 101 through the connecting assembly 300 to ensure that the driving roller 105 remains stable during rotation. The driving motor 103 is started, the driving roller 105 starts to rotate, and the conveying belt body 100 runs under the cooperation of the guide rollers 106. Materials can be placed on the conveying belt and transported to the designated position as the conveying belt moves. The driving roller 105, the guide roller 106, and the support plate 104 are all detachably connected with the support 101, so that these components can be easily detached, replaced, and cleaned when they are damaged or need to be maintained and cleaned.
[0039] Referring to Figures 4-6 As shown in the figure, the mounting mechanism 200 comprises: a threaded rod 201, a rotating plate 203, and a protrusion 205; wherein,
[0040] One end of the driving roller 105 is fixedly provided with the threaded rod 201, a threaded sleeve 208 is threadedly sleeved on the threaded rod 201, one end of the threaded sleeve 208 is relatively rotatably connected with the rotating plate 203 through a bearing 202, the protrusion 205 is fixedly arranged on the rotating plate 203, and the mounting block 206 is fixedly arranged on the output end of the driving motor 103, and the recess 207 matching the protrusion 205 is formed in the mounting block 206.
[0041] In the above scheme, the threaded sleeve 208 is rotated to move along the threaded direction of the threaded rod 201 until the threaded sleeve 208 is tightly connected with the driving roller 105, one end of the threaded sleeve 208 is relatively rotatably connected with the rotating plate 203 through the bearing 202, so that the rotating plate 203 can freely rotate within a certain range, the protrusion 205 on the rotating plate 203 is aligned with the groove 207 on the output end mounting block 206 of the driving motor 103, and is gently pushed in to realize the matching connection of the protrusion 205 and the groove 207, when the protrusion 205 completely enters the groove 207, the rotating plate 203 is fixed, so that the driving roller 105 is firmly connected on the output shaft of the driving motor 103 through the combined action of the threaded sleeve 208 and the protrusion 205.
[0042] Referring to Figure 5 As shown in the figure, the circumferential surface of the threaded sleeve 208 is fixedly provided with a rotating handle 204.
[0043] In the above scheme, when rotating the threaded sleeve 208, the rotating handle 204 is held and rotated with force to assist the threaded sleeve 208 to move along the threaded direction of the threaded rod 201, the design of the rotating handle 204 increases the moment of rotation, so that it is easier and more efficient to rotate the threaded sleeve 208, and the rotating speed and force can be more stably controlled when rotating the threaded sleeve 208 through the rotating handle 204, preventing safety hazards caused by too fast or too violent rotation.
[0044] Referring to Figures 2-6 As shown in the figure, the connecting assembly 300 includes a fixed rod 301, a circular table sliding rod 304 and a clamping block 306, wherein,
[0045] The other end of the driving roller 105 is fixedly provided with a fixed rod 301, the top end of the fixed rod 301 is fixedly provided with a circular table sliding rod 304 which is larger at the end away from the fixed rod 301 and smaller at the end close to the fixed rod 301, the circumferential surface of the circular table sliding rod 304 is spaced apart to be provided with a plurality of groups of grooves 305, the clamping jaws are formed between two groups of grooves 305, the support 101 is provided with a limiting hole 308 through which the clamping jaws pass, the circumferential surface of each clamping jaw is fixedly provided with a clamping block 306 which abuts against the side wall of the support 101, the side wall of the baffle 102 is fixedly connected with a return spring 302, one end of the return spring 302 is fixedly connected with a sliding sleeve 303 which is slidably sleeved on the circular table sliding rod 304.
[0046] When installing, the clamping jaw formed by the slot 305 on the circular slide rod 304 passes through the limiting hole 308 on the support 101, at this time the clamping block 306 on the circumferential surface of the clamping jaw is in contact with the side wall of the support 101, the reset spring 302 on the side wall of the baffle 102 exerts an outward pushing force on the circular slide rod 304 through the sliding sleeve 303, so that the clamping block 306 is in more close contact with the side wall of the support 101, thereby fixing the drive roller 105, when it is necessary to disassemble the drive roller 105, the sliding sleeve 303 can be pulled outward to compress the reset spring 302, so that the clamping block 306 is separated from the side wall of the support 101, and then the circular slide rod 304 is rotated to make the clamping jaw out of the limiting hole 308.
[0047] With reference to Figures 5-6 As shown in the drawings, a plurality of groups of the ball bearings 307 in contact with the clamping block 306 are arranged on the support 101 and rotate along the circumferential direction of the limiting hole 308.
[0048] In the above scheme, when the drive roller 105 is installed on the support 101 through the connecting assembly 300, when the drive roller 105 is driven to rotate by the driving motor 103, the clamping block 306 is in contact with the ball bearings 307 and generates a friction force. The rolling action of the ball bearings 307 reduces the friction resistance between the clamping block 306 and the side wall of the support 101, and the rolling action of the ball bearings 307 also ensures the continuous close contact between the clamping block 306 and the side wall of the support 101, preventing the problems of loosening or falling off caused by uneven friction.
[0049] With reference to Figures 1-3 As shown in the drawings, the support plate 104 is detachably installed on the support 101 through the clamping mechanism 400.
[0050] In the above scheme, through the design of the clamping mechanism 400, the quick disassembly and assembly between the support plate 104 and the support 101 is realized, and the work efficiency is improved.
[0051] With reference to Figures 6-7 As shown in the drawings, the clamping mechanism 400 comprises a sliding block 405, a fixed block 406 and a spring 407, wherein,
[0052] The inner side wall of the support plate 104 is provided with a mounting groove 404, two groups of sliding blocks 405 are slidingly arranged in the mounting groove 404 and away from each other, and the mounting groove 404 is provided with two springs 407, the two ends of which are respectively in abutment with the side walls of the two groups of sliding blocks 405, the two groups of sliding blocks 405 are fixedly provided with the fixed blocks 406 which slidingly cooperate with the inner wall of the support plate 104, and the support 101 is provided with the clamping groove 403 which cooperates with the fixed blocks 406.
[0053] In the above scheme, the slider 405 in the clamping mechanism 400 slides in the installation groove 404, and the spring 407 provides elastic force, so that the slider 405 and the fixing block 406 thereon can be popped out, when the support plate 104 approaches the support 101, the fixing block 406 will be aligned with the clamping groove 403 on the support 101. With the further approach of the support plate 104, the fixing block 406 will be compressed into the installation groove 404, while the spring 407 is compressed, when the fixing block 406 reaches the position of the clamping groove 403, the elastic force of the spring 407 will make the slider 405 and the fixing block 406 thereon pop out, into the clamping groove 403, so as to realize the fixed connection of the support plate 104 and the support 101, when it is needed to disassemble the support plate 104, the slider 405 can be manually pushed inward, so that the fixing block 406 is detached from the clamping groove 403, then the support plate 104 can be taken off from the support 101.
[0054] With reference to Figure 6 As shown in the figure, the clamping mechanism 400 further comprises: guide blocks 402, the two side walls of the support plate 104 are fixedly provided with guide blocks 402 with trapezoidal shape in cross section, the area of the end close to the support plate 104 is larger, the support 101 is provided with guide grooves 401 cooperating with the guide blocks 402.
[0055] In the above scheme, the support plate 104 is aligned with the predetermined position on the support 101, at this time, the trapezoidal guide blocks 402 on both sides of the support plate 104 will be aligned with the guide grooves 401 on the support 101, with the approach of the support plate 104, the larger area end of the trapezoidal guide block 402 will first enter the guide groove 401, due to the design of the trapezoidal shape, the guide block 402 can smoothly slide along the guide groove 401 until it is completely entered, the guide block 402 plays an auxiliary positioning role in the sliding process in the guide groove 401, ensuring the accuracy of the support plate 104 in the installation process.
[0056] With reference to Figure 3 As shown in the figure, the guide roller 106 is installed on the support 101 through the mounting piece 500.
[0057] In the above scheme, the guide roller 106 is conveniently installed on the support 101 through the mounting piece 500, improving the convenience and efficiency of installation.
[0058] With reference to Figure 6 As shown in the figure, the mounting piece 500 comprises: a fitting groove 501 and a fitting block 502; the fitting groove 501 is provided in the guide roller 106, and the fitting block 502 is rotatably provided on the inner side wall of the support 101 and matched with the fitting groove 501.
[0059] In the above scheme, the guide roller 106 is aligned with the predetermined position on the support 101, at this time the accessory groove 501 in the guide roller 106 is aligned with the accessory block 502 on the inner side wall of the support 101, the accessory block 502 is inserted into the accessory groove 501, and due to the adaptability of the accessory block 502 and the accessory groove 501, the accessory block 502 can smoothly enter the accessory groove 501 and tightly fit with it.
[0060] In summary, the quick release type conveying belt provided by the utility model is used, first, the threaded rod 201 at one end of the drive roller 105 is inserted through the corresponding hole position of the support 101, then the threaded sleeve 208 is rotated, the threaded sleeve 208 is moved along the threaded rod 201, until the protrusion 205 on the rotating plate 203 is matched with and clamped with the recess 207 on the mounting block 206 of the output end of the drive motor 103. In this way, one end of the drive roller 105 is detachably connected with the output shaft of the drive motor 103, then the fixing rod 301 and the circular table sliding rod 304 at the other end of the drive roller 105 are aligned with the limiting hole 308 on the support 101, then the drive roller 105 is pushed, so that the clamping jaw is inserted through the limiting hole 308. Under the action of the reset spring 302, the sliding sleeve 303 slides along the circular table sliding rod 304, until the clamping block 306 is abutted with and clamped with the side wall of the support 101. In this way, the other end of the drive roller 105 is detachably connected with the support 101.
[0061] The accessory groove 501 in the guide roller 106 is aligned with the accessory block 502 on the inner side wall of the support 101, then the guide roller 106 is rotated, so that the accessory groove 501 is adapted with and fixed with the accessory block 502. In this way, the guide roller 106 is installed on the support 101, the guide block 402 on the supporting plate 104 is aligned with the guide groove 401 on the support 101, then the supporting plate 104 is slid, so that the sliding block 405 slides in the mounting groove 404 and the spring 407 is compressed. When the fixing block 406 is aligned with the clamping groove 403 on the support 101, the spring 407 releases energy, pushes the sliding block 405 and the fixing block 406 to be clamped into the clamping groove 403. In this way, the supporting plate 104 is installed between the supports 101.
[0062] Finally, the conveying belt body 100 is sleeved on the drive roller 105 and the guide roller 106, and it is ensured that the inner wall of the conveying belt body 100 is in contact with the supporting plate 104. At the same time, it is ensured that the two ends of the conveying belt body 100 are provided with the baffle 102 to prevent the articles from falling off.
[0063] The preferred embodiments of the utility model are described in detail above combined with the drawings, but the utility model is not limited to the specific details in the above embodiments, and various simple modifications can be made to the technical scheme of the utility model within the technical concept of the utility model, and these simple modifications all belong to the protection scope of the utility model.
[0064] In addition, it should be noted that the various specific technical features described in the foregoing detailed description can be combined in any suitable manner, and that the application contemplates all possible combinations of features, unless otherwise indicated herein.
[0065] Furthermore, the various embodiments of the application can also be combined with each other, as long as they do not contradict the spirit of the application, and they should also be considered as disclosed by the application.
Claims
1. A quick release conveyor belt, characterized by, The conveying belt comprises a support (101), the support (101) is rotatably provided with a detachable driving roller (105) and a guide roller (106) at both ends, the driving roller (105) and the guide roller (106) are provided with a conveying belt body (100), the support (101) is detachably provided with a supporting plate (104) in contact with the inner wall of the conveying belt body (100), one end of the driving roller (105) is detachably connected with the output shaft of a driving motor (103) through a mounting mechanism (200), and the other end is detachably connected with the support (101) through a connecting assembly (300); wherein, Both ends of the conveying belt body (100) are provided with a baffle (102).
2. The quick release conveyor belt of claim 1, wherein, The mounting mechanism (200) comprises a threaded rod (201), a rotating plate (203) and a protrusion (205); wherein, One end of the driving roller (105) is fixedly provided with a threaded rod (201), a threaded sleeve (208) is threadedly sleeved on the threaded rod (201), one end of the threaded sleeve (208) is relatively rotatably connected with a rotating plate (203) through a bearing (202), the rotating plate (203) is fixedly provided with a protrusion (205), and the output end of the driving motor (103) is fixedly provided with a mounting block (206), the mounting block (206) is provided with a groove (207) matched with the protrusion (205).
3. The quick release conveyor belt of claim 2, wherein, The circumferential surface of the threaded sleeve (208) is fixedly provided with a rotating handle (204).
4. The quick release conveyor belt of claim 1, wherein, The connecting assembly (300) comprises a fixed rod (301), a circular table sliding rod (304) and a clamping block (306); wherein, The other end of the driving roller (105) is fixedly provided with a fixed rod (301), the top end of the fixed rod (301) is fixedly provided with a circular table sliding rod (304) which is far away from one end of the fixed rod (301) and close to the other end of the fixed rod (301), the circumferential surface of the circular table sliding rod (304) is provided with a plurality of groups of slotted holes (305) at intervals, a clamping jaw is formed between two groups of slotted holes (305), the support (101) is provided with a limiting hole (308) through which the clamping jaw passes, and the circumferential surface of each clamping jaw is fixedly provided with a clamping block (306) abutting against the side wall of the support (101), the side wall of the baffle (102) is fixedly connected with a reset spring (302), one end of the reset spring (302) is fixedly connected with a sliding sleeve (303) which is slidably sleeved on the circular table sliding rod (304).
5. The quick release conveyor belt of claim 4, wherein, A plurality of groups of rolling balls (307) are rotatably arranged on the support (101) along the circumferential direction of the limiting hole (308) and in contact with the clamping blocks (306).
6. The quick release conveyor belt of claim 1, wherein, The supporting plate (104) is detachably mounted on the support (101) through a clamping mechanism (400).
7. The quick release conveyor belt of claim 6, wherein, The clamping mechanism (400) comprises a sliding block (405), a fixed block (406) and a spring (407); wherein, The inner side wall of the support plate (104) is provided with a mounting groove (404), two groups of sliding blocks (405) are slidingly arranged in the mounting groove (404) and away from each other, springs (407) are arranged in the mounting groove (404) and abut against the side walls of the two groups of sliding blocks (405) respectively, the two groups of sliding blocks (405) are fixedly provided with fixing blocks (406) which are slidingly matched with the inner wall of the support plate (104), and the support frame (101) is provided with clamping grooves (403) which are matched with the fixing blocks (406).
8. The quick release conveyor belt of claim 7, wherein, The clamping mechanism (400) further comprises guide blocks (402), the two side walls of the support plate (104) which are away from each other are fixedly provided with guide blocks (402) which are trapezoidal in cross section and have a larger area near one end of the support plate (104), and the support frame (101) is provided with guide grooves (401) which are matched with the guide blocks (402).
9. The quick release conveyor belt of claim 1, wherein, The guide roller (106) is mounted on the support frame (101) through a mounting piece (500).
10. The quick release conveyor belt of claim 9, wherein, The mounting piece (500) comprises a fitting groove (501) and a fitting block (502), the fitting groove (501) is arranged in the guide roller (106), and the inner side wall of the support frame (101) is rotatably provided with the fitting block (502) which is matched with the fitting groove (501).
Citation Information
Patent Citations
Automatic paint spraying conveying belt
CN219135424U