Layered fabric core conveying belt structure
By using a detachable reinforcing plate design and fixing components, the problem of having to replace the entire conveyor belt when the reinforcing plate is damaged in the existing technology is solved. This allows for individual replacement and improves the efficiency of the conveyor belt, thereby enhancing the stability and friction of material conveying.
Patent Information
- Application Number
- CN202422815022.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-18
- Publication Date
- 2025-10-21
- Estimated Expiration
- 2034-11-18
AI Technical Summary
The existing layered fabric core conveyor belts have a fixed reinforcing plate that requires the entire conveyor belt to be replaced when damaged, resulting in material waste and reduced efficiency.
It features a detachable reinforcing plate design, which can be replaced individually through a fixing component. The reinforcing plate is connected to the edge adhesive layer through a sliding groove and a pin, and the cover plate and spring enable easy disassembly and installation.
It enables the individual replacement of reinforcing plates, reduces material waste, improves the operating efficiency and work efficiency of the conveyor belt, and increases material friction through anti-slip plates to ensure smooth operation of the conveyor belt.
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Figure CN223457549U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the technical field of conveying belt, in particular to a layered fabric core conveying belt structure. BACKGROUND
[0002] The layered fabric core conveying belt is a commonly used conveying belt type, which is composed of multiple layers of fabric and rubber or other covering materials. The multiple layers of fabric in the layered fabric core conveying belt provide high tensile strength and can withstand large tension, making it suitable for long-distance and heavy-load material conveying. However, the edge parts of the multiple layers of fabric may delaminate during the conveying process, so protective measures need to be added to the layered fabric core conveying belt.
[0003] In the prior art, a multiple-layer fabric core framework layer is provided between the upper and lower covering rubber layers, two edge rubber layers are bonded on both sides of the multiple-layer fabric core framework layer, and a reinforcing plate is provided in the middle of the multiple-layer fabric core framework layer to protect the two ends and the middle of the conveying belt. However, in this way, the reinforcing plate is fixedly arranged in the middle of the multiple-layer fabric core framework layer and cannot be replaced individually, resulting in the need to replace the entire conveying belt when some reinforcing plates are damaged, causing material waste and reducing conveying efficiency. SUMMARY
[0004] Therefore, the utility model provides a layered fabric core conveying belt structure, which can not only protect the two ends and the middle of the multiple-layer fabric core framework layer through the edge rubber layers and the reinforcing plate, but also can replace the damaged reinforcing plate individually through the fixing assembly, improving the operation efficiency of the conveying belt.
[0005] To solve the above technical problems, the utility model adopts the technical scheme of a layered fabric core conveying belt structure, which comprises a frame body, a driving roller rotatably arranged at the left end of the frame body, a driven roller arranged at the right end of the frame body, a plurality of fabric core layers connected between the driving roller and the driven roller, a driving mechanism arranged at the front end of the frame body for driving the driving roller to rotate, an output end of the driving mechanism connected with the driving roller, and a protective layer arranged at the top of the fabric core layer.
[0006] As a further improvement of the utility model, the protective layer comprises a reinforcing layer arranged at the top of the fabric core layer, a plurality of placing grooves uniformly arranged in the reinforcing layer, a reinforcing plate detachably arranged in each placing groove, an anti-static layer arranged at the top of the reinforcing layer, two edge rubber layers bonded on both sides of the fabric core layer and the protective layer, a fixing assembly arranged at the front end of the reinforcing plate for fixing the edge rubber layer, and the fixing assembly comprising a sliding groove symmetrically arranged at the front end of the reinforcing plate, a pin column symmetrically and slidingly arranged in the sliding groove, a through hole arranged at the upper end of the sliding groove, a fixing plate arranged at the upper end of the pin column and penetrating through the through hole, and a spring fixedly connected between every two adjacent fixing plates.
[0007] As a further improvement of the utility model, the side wall of the edge rubber layer is provided with a slot matched with the pin.
[0008] As a further improvement of the utility model, the end of the fixing plate away from the pin is provided with a cover plate.
[0009] As a further improvement of the utility model, the upper end of the anti-static layer is uniformly provided with an anti-skid plate, and the material of the anti-skid plate is rubber.
[0010] As a further improvement of the utility model, the top middle position of the frame body is uniformly provided with a plurality of conveying rollers.
[0011] Compared with the prior art, the utility model has the beneficial effects as follows:
[0012] Firstly, when the reinforcing plate needs to be disassembled, the cover plates are pushed to the middle part respectively, the fixing plates are moved by the cover plates, the pins are moved to the middle part with the fixing plates, and then the pins are separated from the slots in the edge rubber layer, so that the reinforcing plate can be pulled out from the placing groove of the reinforcing layer.
[0013] Secondly, the end of the fixing plate away from the pin is provided with a cover plate, the cover plate facilitates the movement of the fixing plate, facilitates the operation of the staff, and improves the work efficiency.
[0014] Thirdly, the upper end of the anti-static layer is uniformly provided with an anti-skid plate, the anti-skid plate can significantly increase the friction between the material and the conveying belt, and prevent the material from sliding or slipping during the conveying process.
[0015] Fourthly, the top middle position of the frame body is uniformly provided with a plurality of conveying rollers, the top of the conveying roller abuts against the bottom of the conveying belt, can provide uniform support for the conveying belt, and ensures that the conveying belt is more stable during the operation process. BRIEF DESCRIPTION OF DRAWINGS
[0016] The utility model will be further described in detail in combination with the drawings and specific embodiments.
[0017] Figure 1 It is a structural schematic view of the utility model;
[0018] Figure 2 It is a structural schematic view of the internal mechanism of the utility model;
[0019] Figure 3 It is a structural schematic view of the fixing assembly of the utility model;
[0020] Figure 4 It is a front view structural schematic view of the utility model.
[0021] In the figure: 101, frame body; 102, driving roller; 103, driven roller; 104, fabric core layer; 105, reinforcing layer; 106, reinforcing plate; 107, anti-static layer; 108, edge rubber layer; 109, anti-skid plate; 110, conveying roller; 201, chute; 202, pin column; 203, fixed plate; 204, spring; 205, slot; 206, cover plate. DETAILED DESCRIPTION
[0022] In order to better understand the present application, the content of the present application will be further clearly described below in conjunction with examples, but the protection content of the present application is not limited to the following examples only. In the following description, a large number of specific details are given in order to provide a more thorough understanding of the present application. However, it is obvious to those skilled in the art that the present application can be implemented without one or more of these details.
[0023] As shown in Figure 1 , 2 , 3, a layered fabric core conveying belt structure, comprising a frame body 101, the left end of the frame body 101 is rotatably provided with a driving roller 102, and the right end is provided with a driven roller 103, a plurality of fabric core layers 104 are connected between the driving roller 102 and the driven roller 103, the front end of the frame body 101 is provided with a driving mechanism for driving the driving roller 102 to rotate, the output end of the driving mechanism is connected with the driving roller 102, and the top of the fabric core layer 104 is provided with a protective layer.
[0024] As shown in Figure 1 , 2 , the protective layer comprises a reinforcing layer 105 arranged on the top of the fabric core layer 104, a plurality of placing grooves are uniformly arranged in the reinforcing layer 105, the reinforcing plate 106 is detachably arranged in the placing groove, the top of the reinforcing layer 105 is provided with an anti-static layer 107, two edge rubber layers 108 are respectively adhered on the two sides of the fabric core layer 104 and the protective layer, and the front end of the reinforcing plate 106 is provided with a fixing assembly for fixing the edge rubber layer 108.
[0025] As shown in Figure 1 , 3As shown, the fixing assembly comprises a sliding groove 201 symmetrically formed at the front end of the reinforcing plate 106, a pin 202 symmetrically slidingly arranged in the sliding groove 201, a through hole formed at the upper end of the sliding groove 201, a fixing plate 203 penetrating through the through hole and arranged at the upper end of the pin 202, a spring 204 fixedly connected between every two adjacent fixing plates 203, and an insertion slot 205 formed on the sidewall of the edge rubber layer 108 and matched with the pin 202. When the reinforcing plate 106 needs to be disassembled, the cover plate 206 is pushed to the middle part, the fixing plate 203 is driven to move, the pin 202 moves to the middle part along with the fixing plate 203, and then the pin 202 is separated from the insertion slot 205 in the edge rubber layer 108, so that the reinforcing plate 106 can be pulled out from the placing groove in the reinforcing layer 105.
[0026] As shown in Figure 4 , one end of the fixing plate 203 away from the pin 202 is provided with a cover plate 206, which facilitates the movement of the fixing plate 203 and improves the work efficiency.
[0027] As shown in Figure 1 , 2 , the upper end of the anti-static layer 107 is uniformly provided with an anti-skid plate 109, which can significantly increase the friction between the material and the conveying belt and prevent the material from sliding or slipping during the conveying process.
[0028] In use, the driving mechanism is used to drive the driving roller 102 to rotate, and then the conveying belt rotates under the auxiliary action of the driven roller 103. The reinforcing layer 105 is uniformly provided with the reinforcing plate 106, which can enhance the conveying strength of the conveying belt. During the conveying process, the reinforcing plate 106 may be damaged. When the reinforcing plate 106 needs to be replaced, the cover plate 206 is pushed to the middle part of the reinforcing plate 106, the fixing plate 203 is driven to move, the pin 202 is driven to move to the middle part of the reinforcing plate 106 along with the fixing plate 203, and then the pin 202 is separated from the insertion slot 205 in the edge rubber layer 108. Then the reinforcing plate 106 can be taken out from the placing groove in the reinforcing layer 105. After replacing the appropriate reinforcing plate 106, one end of the reinforcing plate 106 not provided with the fixing assembly is inserted into the placing groove, and then gradually pushed into the placing groove. When the fixing assembly approaches the insertion slot 205, the cover plate 206 is slightly moved to the middle part of the reinforcing plate 106, the fixing plate 203 pulls the pin 202 to move to the middle part of the sliding groove 201, and then the sidewall of the pin 202 abuts against the sidewall of the edge rubber layer 108. The cover plate 206 is loosened, the reinforcing plate 106 is continuously pushed into the placing groove, and the pin 202 is inserted into the insertion slot 205 under the action of the spring 204, so that the replacement of the reinforcing plate 106 is completed.
[0029] According to another embodiment of the present application, as Figure 2As shown, the top middle positions of the frame body 101 are uniformly provided with a plurality of conveying rollers 110, the top of the conveying rollers 110 abuts against the bottom of the conveying belt, which can provide uniform support for the conveying belt, and ensure that the conveying belt is more stable during operation.
[0030] Finally, it should be pointed out that the above embodiments are only used to illustrate the technical solutions of the present application and are not limiting, and other modifications or equivalent replacements of the technical solutions of the present application made by those skilled in the art should be covered in the scope of the claims of the present application as long as they do not deviate from the spirit and scope of the technical solutions of the present application.
Claims
1. A layered fabric core conveyor belt structure comprising a carcass (101), characterised in that: The left end of the frame body (101) is rotatably provided with a driving roller (102), and the right end is provided with a driven roller (103), a plurality of fabric core layers (104) are connected between the driving roller (102) and the driven roller (103), the front end of the frame body (101) is provided with a driving mechanism for driving the driving roller (102) to rotate, the output end of the driving mechanism is connected with the driving roller (102), the top of the fabric core layer (104) is provided with a protective layer, the protective layer includes a reinforcing layer (105) arranged on the top of the fabric core layer (104), a plurality of placing grooves are uniformly arranged in the reinforcing layer (105), and a reinforcing plate (106) is detachably arranged in each placing groove, the top of the reinforcing layer (105) is provided with an anti-static layer (107), the two sides of the fabric core layer (104) and the protective layer are respectively bonded with two edge rubber layers (108), the front end of the reinforcing plate (106) is provided with a fixing assembly for fixing the edge rubber layer (108), the fixing assembly includes a sliding groove (201) symmetrically opened at the front end of the reinforcing plate (106), a pin column (202) is symmetrically and slidably arranged in the sliding groove (201), a through hole is formed in the upper end of the sliding groove (201), a fixing plate (203) penetrating through the through hole is arranged at the upper end of the pin column (202), and a spring (204) is fixedly connected between every two adjacent fixing plates (203).
2. The layered fabric core conveyor belt structure of claim 1, wherein: The side wall of the edge rubber layer (108) is provided with an insertion slot (205) matched with the pin column (202).
3. The layered fabric core conveyor belt structure of claim 1, wherein: The end of the fixing plate (203) away from the pin column (202) is provided with a cover plate (206).
4. The layered fabric core conveyor belt structure of claim 1, wherein: The upper end of the anti-static layer (107) is uniformly provided with an anti-skid plate (109).
5. The layered fabric core conveyor belt structure of claim 1, wherein: A plurality of conveying rollers (110) are rotatably arranged at the top of the frame body (101).