Spliced mesh belt chain

By designing a splicing mesh belt chain, the problems of deformation and wear of traditional mesh belt chains under high temperature environments have been solved. This enables rapid splicing and adjustment, improves the applicability and stability of the equipment, reduces maintenance costs, extends service life, and ensures the continuity and quality of bread production.

CN224046199UActive Publication Date: 2026-03-27SHANGHAI LILAI CHAIN CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-27
Publication Date
2026-03-27

AI Technical Summary

Technical Problem

Traditional mesh belt chains are prone to deformation and wear under high temperature environments, making them difficult to quickly assemble and adjust. This leads to positional shifts and production stoppages during bread production, making maintenance difficult and affecting production efficiency and quality.

Method used

A splicing mesh belt chain was designed, including a chain body, a protective mechanism, and a splicing mechanism. The installation groove and protective shell prevent the sprocket from rubbing against the chain body. The slot and connecting block realize the lateral splicing and disassembly of the chain body. The positioning block and positioning shaft ensure accurate splicing. The protective shell is fixed with fixing bolts and slot blocks. The compression spring and slide groove stabilize the movement of the limit block.

Benefits of technology

It reduces chain wear, improves equipment applicability and flexibility, lowers maintenance costs and time, extends equipment lifespan, and ensures the stability and efficiency of the bread production process.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224046199U_ABST
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Abstract

The utility model relates to the technical field of production equipment, and discloses a splicing type mesh belt chain which comprises chain bodies, a protection mechanism and a splicing mechanism. The protection mechanism comprises two mounting grooves and two protection shells, the two mounting grooves are formed in the two sides of the bottom of the chain body correspondingly, and the two protection shells are detachably connected to the inner side walls of the two mounting grooves correspondingly; the splicing mechanism comprises inserting grooves, limiting blocks and connecting blocks, and the two inserting grooves are formed in the two ends of the outer surface of the chain body correspondingly. According to the spliced mesh belt chain, the bottom of the chain body can be protected through cooperative arrangement of the mounting groove and the protective shell, so that when the spliced mesh belt chain is meshed with a chain wheel, direct transmission friction between the chain wheel and the chain body is avoided, damage to the chain body can be reduced during heavy load and long-term use, and the protective shell can be prevented from being damaged after regular use. Therefore, the service life of the device is prolonged.
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Description

TECHNICAL FIELD

[0001] The utility model relates to production equipment technical field, concretely is a spliced net belt chain. BACKGROUND

[0002] In the modern bread production process, efficient, stable and strong adaptability conveying equipment is crucial to ensure the smooth operation of the production process, bread production covers multiple links from dough preparation, molding, baking to cooling, packaging, each link has a specific requirement for conveying equipment.

[0003] In the baking link, the high temperature environment puts forward strict test to the material and structure of the net belt chain, when the traditional net belt chain is in the high temperature state for a long time, the chain body is easy to deform and wear, especially the part of the chain body and the sprocket frequent meshing, the wear problem is more prominent, after a period of use, the chain body surface appears obvious wear marks, not only affects the service life of the net belt chain, but also may lead to the position deviation, falling and other problems of the bread in the conveying process, and further affect the product quality and production efficiency.

[0004] In addition, in the food industry, in order to meet different production needs, conveying equipment often needs to be flexibly adjusted and expanded, and the traditional net belt chain is often single in splicing mode, which is difficult to splice and adjust quickly and conveniently, and cannot meet the requirements of bread production enterprises on equipment flexibility and expandability, once the net belt chain is damaged, due to its splicing and dismounting difficulty, the maintenance personnel need to spend a lot of time and effort to replace, leading to production stagnation, causing economic loss to the enterprise. UTILITY MODEL CONTENT

[0005] (I) technical problem solved

[0006] In order to overcome the above defects of the prior art, the utility model provides a spliced net belt chain, which solves the problems of the prior art that the chain body is difficult to splice and adjust quickly and conveniently and the chain body is easy to deform and wear.

[0007] The chain body is difficult to splice and adjust quickly and conveniently, and the chain body is easy to deform and wear.

[0008] (II) technical scheme

[0009] In order to achieve the above purpose, the utility model realizes the following technical scheme: a spliced net belt chain, comprising a chain body, a protection mechanism and a splicing mechanism, wherein:

[0010] A plurality of chain bodies are rotatably connected between them;

[0011] The protection mechanism comprises two mounting grooves and two protection shells, two mounting grooves are respectively arranged on the two sides of the bottom of the chain body, and two protection shells are respectively detachably connected to the inner side walls of the two mounting grooves;

[0012] The splicing mechanism comprises a slot, a limiting block and a connecting block, two slots are respectively arranged at two ends of the outer surface of the chain body, two limiting blocks are respectively slidably connected to the inner side walls of the two slots, and two connecting blocks are respectively slidably connected to the inner side walls of the two slots.

[0013] Optionally, the outer wall of the chain body is provided with a connecting mechanism, the connecting mechanism comprises a positioning block, a positioning slot and a positioning shaft, two positioning blocks are respectively fixedly installed on one side of the outer surface of the chain body, two positioning slots are respectively arranged on the other side of the outer surface of the chain body and are matched with the positioning blocks, and the positioning shaft is arranged in the inner wall of the positioning slot and is rotatably connected with the outer surface of the positioning block.

[0014] Optionally, the protection mechanism further comprises a clamping groove and a clamping block, two clamping grooves are respectively arranged between the two mounting grooves, and two clamping blocks are respectively fixedly installed on the outer surfaces of the two protective shells.

[0015] Optionally, the protection mechanism further comprises a plurality of fixing bolts, the plurality of fixing bolts are threadedly arranged at the top of the two clamping blocks, and the ends of the fixing bolts that are arranged outside the two clamping blocks are respectively threadedly connected with the inner bottom walls of the two clamping grooves.

[0016] Optionally, the splicing mechanism further comprises a sliding groove and a compression spring, two sliding grooves are respectively arranged in the inner side walls of the two slots, one end of the compression spring is fixedly connected with the inner side wall of the slot, and the other end of the compression spring is fixedly connected with the end of the limiting block.

[0017] Optionally, the splicing mechanism further comprises an anti-skid block, a plurality of anti-skid blocks are respectively fixedly installed at the top of the two limiting blocks, and the bottom of the limiting block is in contact with the top of the connecting block.

[0018] (Three) beneficial effects

[0019] The utility model provides a splicing type net belt chain has the following beneficial effects:

[0020] 1、 this splicing type net belt chain, through the cooperation and protection of installation groove and shell, can protect the bottom of chain body, further when meshing with chain wheel, avoid the transmission friction of chain wheel and chain body, further in heavy load and long -term use, can reduce the damage to chain body, and the shell can be individually replaced after regular use, further prolong the service life of the device.

[0021] 2、The spliced mesh belt chain can horizontally connect and fix multiple chain bodies through the cooperation of the insertion slots and the connecting blocks, so that the device can be suitable for different conveying needs, improves the applicability of the device, and when the chain body is damaged, the damaged chain body can be replaced individually, reduces the maintenance cost of the device, and improves the practicality of the device. BRIEF DESCRIPTION OF DRAWINGS

[0022] Figure 1 It is a front overall installation structure schematic view of the utility model;

[0023] Figure 2 It is a back overall installation structure schematic view of the utility model;

[0024] Figure 3 It is an explosion structure schematic view of the connecting mechanism and the protection mechanism of the utility model;

[0025] Figure 4 It is a protection shell installation structure schematic view of the utility model;

[0026] Figure 5 It is an explosion structure schematic view of the splicing mechanism of the utility model.

[0027] In the figure: 1, chain body; 2, connecting mechanism; 201, positioning block; 202, positioning slot; 203, positioning shaft; 3, protection mechanism; 301, installation slot; 302, protection shell; 303, clamping slot; 304, clamping block; 305, fixing bolt; 4, splicing mechanism; 401, insertion slot; 402, sliding slot; 403, limiting block; 404, compression spring; 405, anti-skid block; 406, connecting block. DETAILED DESCRIPTION

[0028] The technical solutions in the embodiments of the utility model will be described clearly and completely below with reference to the drawings in the embodiments of the utility model. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the utility model.

[0029] Please refer to Figures 1 to 5 The utility model embodiment provides a mesh belt chain, the mesh belt chain is applied to the scene of conveying in bread production process, in the embodiment, the structure of the mesh belt chain is improved, so that it has the advantages of splicing and reducing wear. Specifically, taking the bread production process as an example, as a preferred scheme in the embodiment, the mesh belt chain is a spliced mesh belt chain, which can convey the produced bread.

[0030] Please refer to Figures 1 to 5The utility model provides a technical scheme: a spliced mesh belt chain, which is mainly applied to the conveying scene in the bread production process.

[0031] The mesh belt chain comprises a chain body 1, a protection mechanism 3 and a splicing mechanism 4.

[0032] The plurality of chain bodies 1 are rotatably connected.

[0033] The protection mechanism 3 comprises two mounting grooves 301 and two protective shells 302.

[0034] The splicing mechanism 4 comprises two insertion grooves 401, two limiting blocks 403 and two connecting blocks 406.

[0035] In the embodiment, the chain body 1 is used as the basic bearing unit of the mesh belt chain and is used for bearing and conveying products such as bread, and is also the base body for mounting and connecting other components. The plurality of chain bodies 1 are rotatably connected to form the mesh belt chain as a whole, thereby realizing the continuous and stable conveying function. The structure design determines the basic form and bearing capacity of the mesh belt chain and provides basic guarantee for bread production and conveying. The mounting grooves 301 are arranged on the two sides of the bottom of the chain body 1 to provide mounting space for the protective shells 302 and limit the mounting position of the protective shells 302. The protective shells 302 are detachably connected to the inner side walls of the mounting grooves 301 and cover the meshing part of the chain wheel at the bottom of the chain body 1 to prevent direct friction between the chain wheel and the chain body 1. The insertion grooves 401 are arranged at the two ends of the outer surface of the chain body 1 to provide sliding space for the limiting blocks 403 and the connecting blocks 406 and are the basic structure for realizing the transverse splicing of the chain body 1. The limiting blocks 403 are slidably connected to the inner side walls of the insertion grooves 401 and are extended out of the insertion grooves 401 to clamp the connecting blocks 406 under the action of the compression springs 404, thereby limiting the movement of the connecting blocks 406 and fixing the adjacent chain bodies 1. The connecting blocks 406 are slidably connected to the inner side walls of the insertion grooves 401 and are inserted into the insertion grooves 401 of the adjacent chain bodies 1 to realize the transverse connection of the chain bodies 1.

[0036] In the above embodiment, as a preferred solution, the outer wall of the chain body 1 is provided with a connecting mechanism 2, which comprises positioning blocks 201, positioning grooves 202 and positioning shafts 203, two positioning blocks 201 are fixedly installed on one side of the outer surface of the chain body 1, two positioning grooves 202 are respectively formed on the other side of the outer surface of the chain body 1 and are matched with the positioning blocks 201, and the positioning shafts 203 are rotatably connected with the outer surface of the positioning blocks 201 and are arranged in the inner wall of the positioning grooves 202. The positioning blocks 201 are fixedly installed on one side of the outer surface of the chain body 1 and matched with the positioning grooves 202 on the other side, which plays a role of positioning and guiding and assists the accurate splicing between the chain bodies 1. The positioning grooves 202 are formed on the other side of the outer surface of the chain body 1 and are used for accommodating the positioning blocks 201, which realizes the accurate alignment between the chain bodies 1 in cooperation with the positioning blocks 201. The positioning shafts 203 are arranged in the inner wall of the positioning grooves 202 and are rotatably connected with the outer surface of the positioning blocks 201, which connects the adjacent chain bodies 1 together, so that the chain bodies 1 can not only rotate relative to each other but also be stably connected. Through the cooperation of the positioning blocks 201, the positioning grooves 202 and the positioning shafts 203, the chain bodies 1 can be quickly and accurately spliced, which ensures that the mesh belt chain is flexible in rotation and stable in connection after splicing, avoids the misalignment or disconnection of the chain bodies 1 during the bread conveying process, and improves the conveying stability.

[0037] In the above embodiment, as a preferred solution, the protection mechanism 3 further comprises clamping grooves 303 and clamping blocks 304, two clamping grooves 303 are respectively formed between the two mounting grooves 301, and two clamping blocks 304 are respectively fixedly installed on the outer surface of the two protection shells 302. The clamping grooves 303 are formed between the two mounting grooves 301 and are used for cooperating with the clamping blocks 304 on the protection shell 302 for positioning. The clamping blocks 304 are fixedly installed on the outer surface of the protection shell 302 and are inserted into the clamping grooves 303 to realize the preliminary positioning of the protection shell 302.

[0038] In the above embodiment, as a preferred solution, the protection mechanism 3 further comprises a plurality of fixing bolts 305, the fixing bolts 305 are threadedly arranged on the top of the two clamping blocks 304, the ends of the fixing bolts 305 that are arranged outside the two clamping blocks 304 are respectively threadedly connected with the inner bottom walls of the two clamping grooves 303, the fixing bolts 305 are threadedly arranged on the top of the clamping blocks 304 and are threadedly connected with the inner bottom walls of the clamping grooves 303, the protection shell 302 is firmly fixed in the mounting groove 301, the protection shell 302 effectively isolates the chain wheel and the chain body 1, reduces the wear of the bottom of the chain body 1, prolongs the service life of the chain body 1, the detachable design facilitates the regular replacement of the worn protection shell 302, reduces the maintenance cost, and the combination of the clamping grooves 303, the clamping blocks 304 and the fixing bolts 305 ensures that the protection shell 302 is firmly installed and is not easy to loosen and fall off in high-temperature and heavy-load bread production environments.

[0039] In the above embodiment, as a preferred solution, the splicing mechanism 4 further comprises a sliding groove 402 and a compression spring 404, two sliding grooves 402 are respectively arranged in the inner side walls of the two insertion grooves 401, one end of the compression spring 404 is fixedly connected with the inner side wall of the insertion groove 401, and the other end of the compression spring 404 is fixedly connected with the end of the limiting block 403, the sliding groove 402 arranged in the inner side wall of the insertion groove 401 is used for sliding guide of the limiting block 403, so that the movement track of the limiting block 403 is stable, one end of the compression spring 404 is fixed to the inner side wall of the insertion groove 401, and the other end is connected with the end of the limiting block 403, so as to provide a reset elastic force for the limiting block 403, so that the limiting block 403 can automatically clamp the connecting block 406, through cooperation of the insertion groove 401, the limiting block 403 and the connecting block 406, the chain body 1 can be quickly spliced and disassembled in the transverse direction, different conveying lengths and widths in the bread production are met, the compression spring 404 and the sliding groove 402 ensure reliable limiting of the limiting block 403, the clamping block 304 enhances the structural stability, so that the spliced mesh belt chain is firmly connected during operation, when a chain body 1 is damaged, it can be quickly replaced alone, and the maintenance time and cost are reduced.

[0040] In the above embodiment, as a preferred solution, the splicing mechanism 4 further comprises a sliding groove 402 and a compression spring 404, two sliding grooves 402 are respectively arranged in the inner side walls of the two insertion grooves 401, one end of the compression spring 404 is fixedly connected with the inner side wall of the insertion groove 401, and the other end of the compression spring 404 is fixedly connected with the end of the limiting block 403, the sliding groove 402 arranged in the inner side wall of the insertion groove 401 is used for sliding guide of the limiting block 403, so that the movement track of the limiting block 403 is stable, one end of the compression spring 404 is fixed to the inner side wall of the insertion groove 401, and the other end is connected with the end of the limiting block 403, so as to provide a reset elastic force for the limiting block 403, so that the limiting block 403 can automatically clamp the connecting block 406, through cooperation of the insertion groove 401, the limiting block 403 and the connecting block 406, the chain body 1 can be quickly spliced and disassembled in the transverse direction, different conveying lengths and widths in the bread production are met, the compression spring 404 and the sliding groove 402 ensure reliable limiting of the limiting block 403, the clamping block 304 enhances the structural stability, so that the spliced mesh belt chain is firmly connected during operation, when a chain body 1 is damaged, it can be quickly replaced alone, and the maintenance time and cost are reduced.

[0041] In the utility model, the working steps of the device are as follows:

[0042] 1, chain body 1 connection: the positioning block 201 is inserted into the positioning groove 202 of the adjacent chain body 1 by using the connecting mechanism 2, the positioning shaft 203 is arranged in the inner wall of the positioning groove 202 and is rotatably connected with the outer surface of the positioning block 201, the rotatable connection between the multiple chain bodies 1 is realized, the mesh belt chain whole is formed, and the continuous and stable conveying function is realized.

[0043] 2, the shell 302 installation: the shell 302 on the card block 304 between the two installation slot 301 on the chain body 1 card slot 303 insertion, realize the shell 302 preliminary positioning, then use a plurality of fixed bolt 305 threaded through the top of the card block 304, and make its threaded connection with the bottom wall of the card slot 303 from the end of the card block 304, so as to firmly fixed in the shell 302 installation slot 301, the shell 302 covers the chain body 1 bottom and sprocket meshing part, prevent the sprocket and chain body 1 directly rub.

[0044] 3, the chain body 1 transverse splice: the connecting block 406 of a chain body 1 is inserted into the slot 401 of the adjacent chain body 1, at this time the limiting block 403 is slid out of the sliding groove 402 in the inner wall of the slot 401 under the action of the compression spring 404, clamping the connecting block 406, limiting the movement of the connecting block 406, so as to fix the adjacent chain body 1, realize the transverse connection of the chain body 1, meet the different transmission needs.

[0045] 4, the chain body 1 disassembly and replacement: when it is necessary to disassemble or replace a chain body 1, push the anti-skid block 405 on the top of the limiting block 403, so that the limiting block 403 overcomes the elastic force of the compression spring 404 and slides out of the slot 401, thereby releasing the limitation on the connecting block 406, that is, the connecting block 406 can be pulled out of the slot 401, so as to realize the disassembly of the chain body 1. After the damaged chain body 1 is replaced, the above splicing steps can be repeated.

[0046] 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, and the scope of the utility model is defined by the appended claims and their equivalents.

Claims

1. A modular mesh belt chain, characterized by: Including chain body (1), protection mechanism (3) and splicing mechanism (4), wherein: A plurality of chain bodies (1) are rotatably connected respectively; The protection mechanism (3) includes two mounting grooves (301) and two protection shells (302), two mounting grooves (301) are respectively arranged on the two sides of the bottom of the chain body (1), and two protection shells (302) are respectively detachably connected to the inner side walls of the two mounting grooves (301); The splicing mechanism (4) includes a slot (401), a limiting block (403) and a connecting block (406), two slots (401) are respectively arranged at the two ends of the outer surface of the chain body (1), two limiting blocks (403) are respectively slidably connected with the inner side walls of the two slots (401), and two connecting blocks (406) are respectively slidably connected with the inner side walls of the two slots (401).

2. A modular mesh belt chain according to claim 1, wherein: The outer wall of the chain body (1) is provided with a connecting mechanism (2), the connecting mechanism (2) includes a positioning block (201), a positioning groove (202) and a positioning shaft (203), two positioning blocks (201) are respectively fixedly installed on one side of the outer surface of the chain body (1), two positioning grooves (202) are respectively arranged on the other side of the outer surface of the chain body (1) and matched with the positioning blocks (201), and the positioning shaft (203) is arranged in the inner wall of the positioning groove (202) and rotatably connected with the outer surface of the positioning block (201).

3. The modular mesh belt chain of claim 1, wherein: The protection mechanism (3) further includes a clamping groove (303) and a clamping block (304), two clamping grooves (303) are respectively arranged between the two mounting grooves (301), and two clamping blocks (304) are respectively fixedly installed on the outer surfaces of the two protection shells (302).

4. A modular mesh belt chain according to claim 3, wherein: The protection mechanism (3) further includes a plurality of fixing bolts (305), a plurality of fixing bolts (305) are threadedly arranged on the top of the two clamping blocks (304), and one end of each of the fixing bolts (305) passing through the two clamping blocks (304) is threadedly connected with the inner bottom wall of the two clamping grooves (303).

5. The modular mesh belt chain of claim 1, wherein: The splicing mechanism (4) further includes a sliding groove (402) and a compression spring (404), two sliding grooves (402) are respectively arranged in the inner side walls of the two slots (401), one end of the compression spring (404) is fixedly connected with the inner side wall of the slot (401), and the other end of the compression spring (404) is fixedly connected with the end of the limiting block (403).

6. A modular mesh belt chain according to claim 5, wherein: The splicing mechanism (4) further includes an anti-skid block (405), a plurality of anti-skid blocks (405) are respectively fixedly installed on the top of the two limiting blocks (403), and the bottom of the limiting block (403) is in contact with the top of the connecting block (406).