Stretcher belt structure for logistics sorting and conveying
By designing an installation mechanism, the problem of tearing at the splice joints of the telescopic conveyor belt used for logistics sorting and conveying was solved, enabling the belt to be detached and replaced, thus extending its service life.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-10
- Publication Date
- 2026-03-24
AI Technical Summary
The existing telescopic conveyor belts used for logistics sorting and conveying are connected by steel buckle joints at the splicing points. After long-term use, they are prone to tearing, which leads to their inability to function properly.
Design an installation mechanism including installation components, splicing blocks, and steel buckle joints to achieve detachable connection of the belt through movable components and connecting components, ensuring the durability of the belt splice.
When a tear occurs at the joint of the belt, it can be easily replaced, extending the belt's service life and avoiding interruption of use due to tearing.
Smart Images

Figure CN224029904U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to conveyor belt technical field, concretely relates to a telescopic machine belt structure for logistics sorting and conveying. BACKGROUND
[0002] The telescopic machine for logistics sorting and conveying is a logistics conveying equipment which can freely stretch and adjust height to a certain extent, is mainly used for logistics transportation and warehouse management, is usually composed of a rack, a conveying belt, a driving device and a telescopic device, can adjust length and angle according to actual demand, realizes the rapid and efficient conveying of goods, wherein the belt is moved by the driving device driving the roller when operating, and the tightness of the belt is kept by the tensioning device.
[0003] The existing telescopic machine belt joint for logistics sorting and conveying is spliced by steel buckle joint, there is a certain distance between the bottom of the belt and the logistics telescopic machine, when operating, the steel buckle joint and the clamping part of the belt are pulled after the surface of the belt is placed with materials, the steel buckle joint and the clamping part of the belt are also pulled in the process of real-time tensioning of the belt by the tensioning device, tearing phenomenon occurs in the clamping part of the steel buckle joint and the belt after long-term use, the steel buckle joint cannot be replaced, and the belt cannot be normally used, therefore, the utility model provides a telescopic machine belt structure for logistics sorting and conveying. UTILITY MODEL CONTENT
[0004] The utility model aims at providing a telescopic machine belt structure for logistics sorting and conveying to solve the problem that the joint of the belt is spliced by the steel buckle joint, the clamping part of the steel buckle joint and the belt is torn after long-term use and cannot be used.
[0005] To achieve the above object, the utility model provides the following technical scheme: a telescopic machine belt structure for logistics sorting and conveying, which comprises a telescopic frame installed at the end of a logistics telescopic machine and a belt sleeved on the surface of the logistics telescopic machine and the telescopic frame, the two ends of the belt are provided with mounting mechanisms, the mounting mechanisms are composed of symmetrically arranged mounting assemblies, symmetrically arranged splicing blocks and steel buckle joints, the steel buckle joints are arranged between the symmetrically arranged splicing blocks, and the symmetrically arranged mounting assemblies are arranged at the connection between the symmetrically arranged splicing blocks and the two ends of the belt.
[0006] Preferably, the mounting assembly is composed of a movable assembly, a splicing seat and a connecting assembly, the movable assembly is arranged at the side surface connection between one side of the splicing seat and the splicing block, and the connecting assembly is arranged at the end connection between the other side of the splicing seat and the belt.
[0007] Preferably, the active assembly is composed of a vertical rod A, an adjusting assembly, a through groove A, a limiting assembly, a clamping groove A and a limiting column, the through groove A is arranged on the inner side of the splicing block, the vertical rod A penetrates the inner side of the through groove A, the clamping groove A is arranged on the end of the splicing seat, the limiting column is arranged on the inner side of the clamping groove A and the inner side of the through groove A, the adjusting assembly is arranged on the end of the limiting column and the end of the vertical rod A, and the limiting assembly is arranged between the limiting column and the through groove A.
[0008] Preferably, the diameter of the limiting column is consistent with the diameter of the vertical rod A, and the end of the limiting column is in abutting state with the inner wall of the clamping groove A.
[0009] Preferably, the limiting assembly is composed of a rotating block and a rotating groove, the rotating groove is arranged on the inner wall of the through groove A, and the rotating block is fixedly sleeved on the surface of the limiting column.
[0010] Preferably, the adjusting assembly is composed of an adjusting rotating block and an adjusting rotating groove, the adjusting rotating groove is arranged on the end of the vertical rod A, the adjusting rotating block is fixedly connected to the bottom end of the limiting column, and the bottom end of the adjusting rotating block is clamped into the inner side of the adjusting rotating groove and is connected through threads.
[0011] Preferably, the connecting assembly is composed of a through groove B, a vertical rod B and a clamping groove B, the through groove B is arranged on the end of the belt, the clamping groove B is arranged on the end of the splicing seat, and the vertical rod B penetrates the inner side of the clamping groove B and the inner side of the through groove B.
[0012] Preferably, the steel buckle joint is composed of a limiting rod and a plurality of steel buckles, the plurality of steel buckles are arranged on the side of the splicing block in clamping state, and the limiting rod penetrates the inner side of the steel buckle.
[0013] Compared with the prior art, the utility model has the advantages that:
[0014] The installation mechanism is arranged on the splicing part of the belt, so that the end of the belt can be replaced when the splicing part is torn after long-term use, the service life of the belt is prolonged, and the problem that the belt is torn during the running process of the original material telescopic machine is solved. BRIEF DESCRIPTION OF DRAWINGS
[0015] Figure 1 It is a structural schematic view of the utility model;
[0016] Figure 2 It is the enlarged schematic view of the conveying belt splicing position of the utility model;
[0017] Figure 3 It is the enlarged schematic view of A area in the utility model Figure 2 ;
[0018] Figure 4 It is the enlarged schematic view of B area in the utility model Figure 3 ;
[0019] Figure 5 It is the sectional view schematic view of the connecting assembly of the utility model;
[0020] Figure 6 It is the side structure schematic view of the belt splicing position of the utility model;
[0021] In the drawing: 1, logistics telescopic machine; 2, telescopic frame; 3, belt; 31, installation assembly; 311, movable assembly; 3111, vertical rod A; 3112, adjusting assembly; 3112A, adjusting rotary block; 3112B, adjusting rotary groove; 3113, through groove A; 3114, limiting assembly; 3114A, rotary block; 3114B, rotary groove; 3115, clamping groove A; 3116, limiting column; 312, splicing seat; 313, connecting assembly; 3131, through groove B; 3132, vertical rod B; 3133, clamping groove B; 32, splicing block; 33, steel buckle joint; 331, limiting rod; 332, steel buckle. DETAILED DESCRIPTION
[0022] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the utility model.
[0023] Please refer to Figures 1 to 6The utility model provides a technical scheme: a kind of telescopic machine belt structure for logistics sorting and conveying, including the telescopic frame 2 of installation in the end of logistics telescopic machine 1, the belt 3 of surface sleeve in logistics telescopic machine 1 and telescopic frame 2, installation mechanism is provided at the splicing of both ends of belt 3, by installation mechanism, the splicing of belt 3 is connected, and increase durability, to ensure service life, installation mechanism is made of symmetrically arranged installation component 31, symmetrically arranged splicing block 32, steel buckle joint 33 is made of, steel buckle joint 33 is arranged between symmetrically arranged splicing block 32, symmetrically arranged installation component 31 is arranged at the both end connecting place of symmetrically arranged splicing block 32 and belt 3, by the installation mechanism of design, improve the previous material telescopic machine in the process of running, when conveying by belt 3, because there is a certain distance between belt 3 and logistics telescopic machine 1, so that when material is placed on belt 3, the splicing of belt 3 is pulled, and belt 3 is pulled between steel buckle joint and belt 3 in the process of tensioning by tensioning device when running, after long-term use, it is easy to appear tearing phenomenon, to affect normal use problem, by the splicing of belt 3 Setting installation mechanism, under the condition of ensuring normal use, when tearing phenomenon occurs at splicing after long-term use of belt 3, the end of belt 3 can be replaced, increase the service life of belt 3, installation component 31 is made of movable assembly 311, splicing seat 312, connecting component 313, movable assembly 311 is arranged at the side surface connecting place of splicing seat 312 one side and splicing block 32, connecting component 313 is arranged at the end connecting place of splicing seat 312 other side and belt 3, by installation component 31, splicing block 32 is spliced between belt 3, movable assembly 311 is made of vertical rod A3111, adjusting assembly 3112, through groove A3113, limiting component 3114, clamping groove A3115, limiting column 3116, through groove A3113 is opened in the inside of splicing block 32, vertical rod A3111 is penetrated in the inside of through groove A3113, clamping groove A3115 is opened in the end of splicing seat 312, limiting column 3116 is arranged in the inside of clamping groove A3115, the inside of through groove A3113, adjusting assembly 3112 is arranged at the end connecting place of limiting column 3116 and vertical rod A3111, limiting component 3114 is arranged between limiting column 3116 and through groove A3113, by movable assembly 311, splicing block 32 can be replaced according to demand, the diameter size of limiting column 3116 is consistent with the diameter size of vertical rod A3111, the end of limiting column 3116 and the inner wall of clamping groove A3115 are in the state of adhesion, limiting component 3114 is made of rotary block 3114A, rotary groove 3114B, rotary groove 3114B is opened in the inner wall of through groove A3113, rotary block 3114A is fixedly sleeved on the surface of limiting column 3116, adjusting assembly 3112 is made of adjusting rotary block 3112A, adjusting rotary groove 3112B,The adjusting rotating groove 3112B is arranged at the end of the vertical rod A 3111, the adjusting rotating block 3112A is fixed at the bottom end of the limiting column 3116, the bottom end of the adjusting rotating block 3112A is clamped into the inner side of the adjusting rotating groove 3112B and is connected through threads, the connecting assembly 313 is composed of the through groove B 3131, the vertical rod B 3132 and the clamping groove B 3133, the through groove B 3131 is arranged at the end of the belt 3, the clamping groove B 3133 is arranged at the end of the splicing seat 312, the vertical rod B 3132 penetrates into the inner side of the clamping groove B 3133 and the inner side of the through groove B 3131, when the belt 3 passes through the roller, the installation assembly 31 and the splicing block 32 can be bent and attached according to the shape of the roller.
[0024] In the embodiment, preferably, the steel buckle joint 33 is composed of the limiting rod 331 and a plurality of steel buckles 332, the plurality of steel buckles 332 are arranged on the side of the splicing block 32 in a clamping state, the limiting rod 331 penetrates into the inner side of the steel buckle 332, when the splicing part of the belt 3 is spliced through the steel buckle joint 33, the steel buckles 332 on the side of the symmetrically arranged splicing block 32 are clamped first, and then the limiting rod 331 penetrates into the inner side of the steel buckle 332.
[0025] The working principle and use process of the utility model are as follows: in the operation process of the telescopic machine for logistics sorting and conveying, the roller is driven by the driving device, the belt sleeved on the roller is moved, and the tension of the belt is maintained by the tensioning device, when conveying the materials, the materials are placed on the surface of the belt 3, because there is a certain distance between the belt 3 and the logistics telescopic machine 1, the splicing part of the belt 3 is pulled after the materials are placed, and the splicing part of the belt 3 is also pulled when the belt 3 is tensioned by the tensioning device during operation, so that the steel buckle joint of the splicing part of the belt 3 is torn between the belt 3 after long-term use, the splicing block 32 of the torn part is replaced, in operation, the rotating block 3114A is pushed by clamping the inner side of the rotating groove 3114B with fingers, the limiting column 3116 is rotated in the inner side of the clamping groove A 3115 and the inner side of the through groove A 3113, and the adjusting rotating block 3112A is threadedly rotated in the inner side of the adjusting rotating groove 3112B, so that the end of the limiting column 3116 is separated from the clamping groove A 3115, the limiting rod 331 penetrating into the inner side of the steel buckle 332 is pulled out, the splicing part of the belt 3 is separated, and the splicing block 32 is replaced.
[0026] Although the embodiments of the utility model have been shown and described, it can be understood by those skilled in the art that various changes, modifications, replacements and variations can be made to these embodiments without departing from the principles and spirits of the utility model, the scope of the utility model is defined by the appended claims and their equivalents.
Claims
1. A telescopic conveyor belt structure for logistics sorting and conveying, comprising a telescopic frame (2) mounted at the end of a logistics telescopic conveyor (1), and a belt (3) sleeved on the surface of the logistics telescopic conveyor (1) and the telescopic frame (2), characterized in that: The both ends of the belt (3) are provided with mounting mechanisms, which are composed of symmetrically arranged mounting assemblies (31), symmetrically arranged splicing blocks (32) and steel buckle joints (33), the steel buckle joints (33) are arranged between the symmetrically arranged splicing blocks (32), and the symmetrically arranged mounting assemblies (31) are arranged at the connecting positions of the symmetrically arranged splicing blocks (32) and the both ends of the belt (3).
2. The telescopic conveyor belt structure for logistics sorting and conveying according to claim 1, characterized in that: The mounting assembly (31) is composed of a movable assembly (311), a splicing seat (312) and a connecting assembly (313), the movable assembly (311) is arranged at the connecting position of one side of the splicing seat (312) and the side surface of the splicing block (32), and the connecting assembly (313) is arranged at the connecting position of the other side of the splicing seat (312) and the end of the belt (3).
3. The telescopic conveyor belt structure for logistics sorting and conveying according to claim 2, characterized in that: The movable assembly (311) is composed of a vertical rod A (3111), an adjusting assembly (3112), a through groove A (3113), a limiting assembly (3114), a clamping groove A (3115) and a limiting column (3116), the through groove A (3113) is arranged on the inner side of the splicing block (32), the vertical rod A (3111) penetrates the inner side of the through groove A (3113), the clamping groove A (3115) is arranged on the end of the splicing seat (312), the limiting column (3116) is arranged on the inner side of the clamping groove A (3115) and the inner side of the through groove A (3113), the adjusting assembly (3112) is arranged at the connecting position of the end of the limiting column (3116) and the end of the vertical rod A (3111), and the limiting assembly (3114) is arranged between the limiting column (3116) and the through groove A (3113).
4. The telescopic conveyor belt structure for logistics sorting and conveying according to claim 3, characterized in that: The diameter of the limiting column (3116) is consistent with the diameter of the vertical rod A (3111), and the end of the limiting column (3116) is in abutting contact with the inner wall of the clamping groove A (3115).
5. The telescopic conveyor belt structure for logistics sorting and conveying according to claim 3, characterized in that: The limiting assembly (3114) is composed of a rotating block (3114A) and a rotating groove (3114B), the rotating groove (3114B) is arranged on the inner wall of the through groove A (3113), and the rotating block (3114A) is fixedly sleeved on the surface of the limiting column (3116).
6. The telescopic conveyor belt structure for logistics sorting and conveying according to claim 3, characterized in that: The adjusting assembly (3112) is composed of an adjusting rotating block (3112A) and an adjusting rotating groove (3112B), the adjusting rotating groove (3112B) is arranged on the end of the vertical rod A (3111), the adjusting rotating block (3112A) is fixedly arranged on the bottom end of the limiting column (3116), and the bottom end of the adjusting rotating block (3112A) is clamped into the inner side of the adjusting rotating groove (3112B) and is connected through threads.
7. The telescopic conveyor belt structure for logistics sorting and conveying according to claim 2, characterized in that: The connecting assembly (313) is composed of a through groove B (3131), a vertical rod B (3132) and a clamping groove B (3133), the through groove B (3131) is arranged on the end of the belt (3), the clamping groove B (3133) is arranged on the end of the splicing seat (312), and the vertical rod B (3132) penetrates the inner side of the clamping groove B (3133) and the inner side of the through groove B (3131).
8. The telescopic conveyor belt structure for logistics sorting and conveying according to claim 1, characterized in that: The steel buckle joint (33) is composed of a limiting rod (331) and a plurality of steel buckles (332), the plurality of steel buckles (332) are arranged on the side of the splicing block (32) in a clamping state, and the limiting rod (331) penetrates the inner side of the steel buckle (332).