Conveying braid for multi-dimensional organization of special-shaped structural part

By designing a multi-dimensional transmission webbing with special-shaped structural parts and using renewable materials to weave it, the problems of environmental pollution and complex processing of the conveyor belt are solved, and the processing is simplified, cost reduction and material recycling rate is improved.

CN223215675UActive Publication Date: 2025-08-12XIAMEN QIUTE NEW MATERIAL CO LTD
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Patent Information

Application Number
CN202422600797.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-28
Publication Date
2025-08-12
Estimated Expiration
2034-10-28

AI Technical Summary

Technical Problem

Most of the existing conveyor belt materials are rubber, which leads to environmental pollution, complex processing, high cost, and difficult to degrade waste.

Method used

The webbing body, convex webbing, convex webbing, convex webbing, warp thread, webbing weft thread and fixed ribs are designed, and the webbing is weaved with renewable materials to form a transmission webbing with multi-dimensional structures.

Benefits of technology

Simplify processing processes, reduce costs, reduce environmental pollution, improve material recyclability and use stability, and have high strength and good mechanical properties.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of transmission belts, and discloses a transmission braid of a multi-dimensional structure of a special-shaped structural part. The woven tape comprises a woven tape body, an outwards-protruding woven tape, an inwards-protruding woven tape, woven tape warps, woven tape wefts and fixing ribs, the woven tape body is arranged in a closed annular shape, the woven tape warps and the woven tape wefts are interwoven to form the woven tape body, cavities are formed in the two opposite edges of the woven tape body, the fixing ribs are arranged in the cavities, and the woven tape warps and the woven tape wefts are arranged in the cavities. The fixing rib is wrapped by the braid body of the braid warp and the braid weft, an outwards-protruding braid is arranged on the outer surface of the braid body in the direction perpendicular to the fixing rib, and an inwards-protruding braid is arranged on the inner surface of the braid body in the direction perpendicular to the fixing rib. Through reasonable design of the conveying belt technology, the woven belt body, the outwards-protruding woven belt, the inwards-protruding woven belt, the woven belt warp, the woven belt weft and the fixing ribs are adopted, machining simplification, cost reduction and the like can be achieved, renewable materials are adopted for weaving, environment pollution can be reduced, and the materials can be fully utilized.
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Description

Technical Field

[0001] The utility model relates to the technical field of transmission belts, in particular to a transmission belt with a multi-dimensional structure of special-shaped structural parts. Background Art

[0002] Belt drive, also known as "belt transmission," is a type of mechanical transmission. It consists of one or more belts tightly wrapped around two pulleys (called "pulleys"), mounted on the driving and driven shafts, respectively. The friction between the belt and the pulleys transmits motion and power. Most gear belts in commercial transmissions are made primarily of rubber. Rubber products release harmful substances during use, such as additives and stabilizers. Discarded rubber is not easily degraded, causing long-term environmental pollution. Furthermore, the processing of rubber transmission belts is cumbersome and complex, generating numerous harmful impurities.

[0003] Therefore, in view of the above problems, the existing conveyor belt technology needs to be further improved. Utility Model Content

[0004] The purpose of the utility model is to solve the problems of existing transmission belt technology that it is easy to pollute the environment, the processing is cumbersome and the processing cost is high; through the rational design of the transmission belt technology, the use of a ribbon body, an outer convex ribbon, an inner convex ribbon, a ribbon warp, a ribbon weft and fixed ribs can achieve simplified processing and reduced costs, and the use of renewable materials for weaving can reduce environmental pollution and fully utilize materials.

[0005] The technical solutions of the present utility model are as follows:

[0006] A transmission webbing of a multi-dimensional structure of a special-shaped structural part, the transmission webbing comprising: a webbing body, an outward convex webbing, an inward convex webbing, webbing warp, webbing weft and fixing ribs, the webbing body being arranged in a closed ring shape, the webbing warp and webbing weft being interwoven to form the webbing body, cavities being provided at two opposite edges of the webbing body, the fixing ribs being disposed in the cavities, the fixing ribs being covered by the webbing body of the webbing warp and weft, the outward convex webbing being provided perpendicular to the fixing ribs and on the outer surface of the webbing body, and the inward convex webbing being provided perpendicular to the fixing ribs and on the inner surface of the webbing body.

[0007] Furthermore, the outwardly convex webbing and the inwardly convex webbing are both woven integrally with the webbing body.

[0008] Furthermore, the outwardly convex webbing and the inwardly convex webbing are symmetrically arranged with respect to the center plane of the webbing body.

[0009] Furthermore, the outwardly protruding webbing is selected from an outwardly protruding webbing of a right quadrangular prism with a square bottom surface or an outwardly protruding webbing of a right quadrangular prism with a trapezoidal bottom surface.

[0010] Furthermore, the inwardly convex webbing is selected from an inwardly convex webbing of a right quadrangular prism with a square bottom surface or an inwardly convex webbing of a right quadrangular prism with a trapezoidal bottom surface.

[0011] Furthermore, the fixing ribs are selected from plastic fixing ribs or carbon fiber fixing ribs.

[0012] Furthermore, at least two warps of the webbing are selected, and at least two wefts of the webbing are selected, and the warps of the webbing are interwoven with each other and interwoven on the wefts.

[0013] Furthermore, the two webbing warps are woven in the form of a "standing wave", and a webbing weft is arranged in the wave cavity of the "standing wave"; the two webbing wefts are woven in the form of a "standing wave", and a webbing warp is arranged in the wave cavity of the "standing wave".

[0014] Furthermore, the fixing ribs are arranged along the direction of the webbing warp.

[0015] Furthermore, the weft threads of the webbing are interwoven with the warp threads of the webbing and are wound around the fixing ribs.

[0016] Furthermore, the webbing body, the outward convex webbing, the inward convex webbing, the webbing warp and the weft are all made of nylon, polyester, nylon or aramid.

[0017] Furthermore, the webbing body, the outer convex webbing, the inner convex webbing, the webbing warp and the weft are all made of recycled nylon material, recycled polyester fiber material, recycled nylon material or recycled aramid material.

[0018] Furthermore, the fixing ribs are concave-convex wave-shaped fixing ribs, that is, the convex fixing ribs are consistent with the shape of the outer convex webbing and the inner convex webbing; the concave fixing ribs are consistent with the shape of the webbing body.

[0019] Furthermore, two fixing ribs are provided in each of the cavities, which respectively correspond to the directions of the outward convex webbing and the inward convex webbing.

[0020] Furthermore, the webbing warp threads wrap around the webbing weft threads.

[0021] Beneficial effects

[0022] This utility model utilizes a rationalized design of transmission belt technology, employing a webbing body, externally convex webbing, internally convex webbing, webbing warp, weft, and retaining ribs. This simplifies processing and reduces costs. Furthermore, the use of renewable materials for weaving reduces environmental pollution and maximizes material utilization. The multi-dimensional webbing, a special-shaped structural component made from recycled materials, is relatively stable during use and is less likely to release harmful substances. Furthermore, the recycled materials are highly recyclable, reducing resource waste and environmental pollution through recycling. This type of webbing offers high strength, a large specific modulus, excellent special mechanical coupling properties, and excellent designability, facilitating production. BRIEF DESCRIPTION OF THE DRAWINGS

[0023] Figure 1 This is a schematic structural diagram of a transmission webbing with a multi-dimensional structure of a special-shaped structural part in the utility model.

[0024] Figure 2 This is another structural schematic diagram of a transmission webbing with a multi-dimensional structure of a special-shaped structural part of the present invention.

[0025] Figure 3 This is a structural schematic diagram of the outward convex webbing of a local webbing of a transmission webbing with a multi-dimensional structure of a special-shaped structural part of the utility model.

[0026] Figure 4 This is a structural schematic diagram of an inwardly convex webbing of a local webbing of a transmission webbing with a multi-dimensional structure of a special-shaped structural part of the utility model.

[0027] Figure 5 This is a structural schematic diagram of an inwardly convex webbing of another local webbing of a transmission webbing with a multi-dimensional structure of a special-shaped structural part of the utility model.

[0028] Figure 6 This is a partially enlarged structural schematic diagram of the fixed ribs of a multi-dimensional transmission webbing with a special-shaped structural component of the utility model.

[0029] Figure 7 This is a side view structural diagram of a transmission webbing with a multi-dimensional structure of a special-shaped structural part of the utility model.

[0030] Figure numbers: 01, ribbon body; 02, external convex ribbon; 03, internal convex single ribbon; 04, internal convex ribbon; 11, fixing rib; 12, ribbon warp; 13, ribbon weft. DETAILED DESCRIPTION

[0031] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0032] See Figure 1-Figure 7 As shown, the utility model provides a transmission belt with a multi-dimensional structure of a special-shaped structure, which includes: a belt body 01, an outer convex belt 02, an inner convex belt 04, a belt warp 12, a belt weft 13 and a fixing rib 11, wherein the fixing rib 11 is made of plastic; the belt body 01, the outer convex belt 02, the inner convex belt 04, the belt warp 12 and the belt weft 13 are all made of recycled nylon;

[0033] The webbing body 01 is arranged in a closed ring shape, and the webbing warp 12 and the webbing weft 13 are interwoven to form the webbing body 01. A cavity is provided at two opposite edges of the webbing body 01, and a fixing rib 11 is placed in the cavity. The fixing rib 11 is covered by the webbing body 01 of the webbing warp 12 and the webbing weft 13. An outward convex webbing 02 is provided on the outer surface of the webbing body 01 in a direction perpendicular to the fixing rib 11, and an inward convex webbing 04 is provided on the inner surface of the webbing body 01 in a direction perpendicular to the fixing rib 11.

[0034] The outer convex webbing 02 and the inner convex webbing 04 are both woven integrally with the webbing body 01; the outer convex webbing 02 and the inner convex webbing 04 are symmetrically arranged with respect to the center plane of the webbing body 01; and the outer convex webbing 02 is a right quadrangular prism outer convex webbing with a trapezoidal bottom surface, and the inner convex webbing 04 is a right quadrangular prism inner convex webbing with a trapezoidal bottom surface;

[0035] Among them, the webbing warp 12 is provided in two, the webbing weft 13 is provided in two, and the two webbing warp 12 are interlaced with each other and interwoven on the webbing weft 13; the fixing rib 11 is provided along the direction of the webbing warp 12; the webbing weft 13 is interwoven with the webbing warp 12 and wound on the fixing rib 11; the fixing rib 11 is a concave-convex waveform fixing rib, that is: the convex fixing rib 11 is consistent with the shape of the outer convex webbing 02 and the inner convex webbing 04; the concave fixing rib 11 is consistent with the shape of the webbing body 01; two fixing ribs 11 are provided in each cavity, which respectively correspond to the outer convex webbing The direction of the belt 02 and the inner convex belt 04; the belt warp 12 wraps the belt weft 13; the two belt warps 12 are woven in the form of "standing waves", and the belt weft 13 is arranged in the wave cavity of the "standing wave"; the two belt weft 13 are woven in the form of "standing waves", and the belt warp 12 is arranged in the wave cavity of the "standing wave". At the outer convex belt 02 and the inner convex belt 04, the two belt warps 12 and the two belt wefts 13 are divided into two groups and each group has one belt warp 12 and one belt weft 13 to weave the corresponding outer convex belt 02 and the inner convex belt 04.

[0036] Based on the above, see Figure 2 and Figure 5 The inward convex webbing can be in the form of an inward convex single webbing 03, which is divided into two inward convex single webbings 03 by an inward convex webbing 04. Here, fixed ribs are also used at the inner edge of the inward convex single webbing 03. The fixed ribs here are set in the same way as the fixed ribs on the two edges of the webbing body.

[0037] The specific implementation principle of this utility model patent is as follows: the transmission webbing is woven by a webbing weaving machine, and two warp threads of recycled nylon material, two weft threads of recycled nylon material and four fixed ribs of hard plastic material are selected. Two fixed ribs are respectively provided in the cavities on both sides of the webbing body. The fixed ribs will advance as the webbing warp and weft threads are woven. The two webbing warps are interwoven on the two weft threads in the "standing wave" type. The weft threads are wrapped around the webbing warps with the fixed ribs. When they reach the convex webbing and the inward webbing, the two webbing warps and the two weft threads are each combined into a warp and a weft to complete the convex webbing and the inward webbing that cooperate with the fixed ribs. After weaving the convex webbing and the inward webbing, they continue to be gathered together to weave the webbing body, and this is carried out in sequence. Then the head and tail of the webbing body are woven to complete the production of the transmission webbing.

[0038] Although the embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and variations may be made to these embodiments without departing from the principles and spirit of the present invention, and the scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A transmission webbing with a multi-dimensional structure of a special-shaped structure, characterized in that: The transmission webbing includes: a webbing body, an outward convex webbing, an inward convex webbing, a webbing warp, a webbing weft and a fixing rib. The webbing body is arranged in a closed ring shape, and the webbing warp and webbing weft are interwoven to form the webbing body. A cavity is provided at the two opposite edges of the webbing body, and the fixing rib is placed in the cavity. The fixing rib is covered by the webbing body of the webbing warp and webbing weft. The outward convex webbing is provided on the outer surface of the webbing body perpendicular to the direction of the fixing rib, and the inward convex webbing is provided on the inner surface of the webbing body perpendicular to the direction of the fixing rib.

2. The transmission belt of a multi-dimensional structure of a special-shaped structural part according to claim 1, characterized in that: The outer convex webbing and the inner convex webbing are both woven integrally with the webbing body.

3. The transmission belt of a multi-dimensional structure of a special-shaped structural part according to claim 2, characterized in that: The outwardly convex webbing and the inwardly convex webbing are symmetrically arranged with respect to the center plane of the webbing body.

4. The transmission webbing of a multi-dimensional structure of a special-shaped structural part according to claim 1, characterized in that: The outwardly convex webbing is selected from an outwardly convex webbing of a right quadrangular prism with a square bottom surface or an outwardly convex webbing of a right quadrangular prism with a trapezoidal bottom surface.

5. The transmission webbing with multi-dimensional structure of special-shaped structural parts according to claim 1, characterized in that: The fixing ribs are made of plastic or carbon fiber.

6. The transmission webbing with multi-dimensional structure of special-shaped structural parts according to claim 1, characterized in that: At least two warps of the webbing are selected, and at least two wefts of the webbing are selected. The warps of the webbing are interwoven with each other and interwoven on the wefts.

7. The transmission webbing with multi-dimensional structure of special-shaped structural parts according to claim 5, characterized in that: The fixing ribs are arranged along the direction of the webbing warp.

8. The transmission webbing with multi-dimensional structure of special-shaped structural parts according to claim 7, characterized in that: The webbing weft threads are interwoven with the webbing warp threads and wound around the fixing ribs.

9. The transmission webbing with multi-dimensional structure of special-shaped structural parts according to claim 1, characterized in that: The inward convex webbing is selected from an inward convex webbing of a right quadrangular prism with a square bottom surface or an inward convex webbing of a right quadrangular prism with a trapezoidal bottom surface.

10. The transmission webbing with multi-dimensional structure of special-shaped structural parts according to claim 1, characterized in that: The webbing body, the outer convex webbing, the inner convex webbing, the webbing warp and the weft are all made of nylon, polyester, nylon or aramid.