Assembly type conveying module

By using modularly designed conveyor modules, the problems of low length adjustability and maintenance efficiency of conveyor modules are solved, enabling flexible adjustment of conveyor line length and efficient maintenance, and improving the stability and protection effect of the conveyor belt.

CN223751678UActive Publication Date: 2026-01-02HEBEI YIMENG PACKAGING SPECIAL EQUIP CO LTD
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Patent Information

Application Number
CN202520161581.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-23
Publication Date
2026-01-02
Estimated Expiration
2035-01-23

AI Technical Summary

Technical Problem

The existing conveyor modules have low length adjustability and low maintenance and adjustment efficiency, resulting in high equipment costs and difficult maintenance.

Method used

The modular design divides the conveyor line into a rear module, a middle module, and a front module. A complete conveyor line is formed by splicing multiple middle modules and combining the front and rear modules. The stability and protection of the mesh belt are improved by using structures such as support plates, pressure plates, and partitions.

Benefits of technology

It enables flexible adjustment of the conveyor line length, improves assembly and maintenance efficiency, reduces belt wear and connection instability, and ensures the stability and reliability of belt operation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an assembly type conveying module, and relates to the technical field of conveying devices, and the assembly type conveying module comprises a middle module, a rear module and a front module; the multiple middle modules are located in the middle section of the conveying line and connected end to end. The rear module can be mounted at the front end of the middle module, and the front module can be mounted at the rear end of the middle module, so that a complete conveying line is formed; a pressing plate is mounted at one end of the rear module, and the other end is a mounting end; one end of the front module is a pressing plate, and the other end is a mounting end; the motor is mounted on the front module and drives the mesh belt to move through the speed reducer; one ends of the pressing plates of the rear module and the front module are mutually mounted and combined to form a middle module; the mounting ends can be mutually connected, and the mesh belts at the mounting ends can be connected into one mesh belt. The conveying line has the effect of improving the length adjustability and the maintenance efficiency of the conveying line.
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Description

TECHNICAL FIELD

[0001] The application relates to the technical field of conveying devices, in particular to an assembled conveying module. BACKGROUND

[0002] In production enterprises, conveying belts are the most common conveying modules, which can automatically convey products or parts between various production devices.

[0003] The conveying belts applied to some production lines are relatively long, and generally, a conveying line is customized or a whole conveying belt is used for conveying. Regardless of the mode, the device cost is high and the assembly efficiency is low. On the other hand, if a whole conveying belt is used for conveying, the maintenance and belt replacement efficiency is low. After the production line is updated and replaced, the conveying belt also needs to be adjusted in the corresponding distance, and the length adjustment efficiency is low and difficult on the existing conveying device.

[0004] Therefore, the length adjustability of the existing conveying module is low, and the maintenance and adjustment efficiency is low. CONTENT OF THE INVENTION

[0005] The application provides an assembled conveying module to improve the length adjustability of the existing conveying module and the low maintenance and adjustment efficiency.

[0006] The application provides an assembled conveying module, which adopts the following technical scheme:

[0007] The assembled conveying module comprises

[0008] a middle module, a rear module and a front module;

[0009] The middle module is multiple and located at the middle section of the conveying line and connected at the head and tail;

[0010] The rear module can be installed at the front end of the middle module, and the front module can be installed at the rear end of the middle module to form a complete conveying line;

[0011] The rear module comprises a rear frame and a rear roller;

[0012] The rear roller is multiple and rotationally connected to the rear frame, one end of the rear frame facing the specified conveying direction is an installation end, and the other end of the rear frame away from the installation end is provided with a pressing plate, the pressing plate is single-link chain plate-shaped, and the other end of the pressing plate away from the installation end is arc-shaped;

[0013] The rear frame is provided with multiple support plates between the pressing plate and the installation end, and the mesh belt is arranged on the pressing plate, the support plates and the rear roller;

[0014] The front module comprises a front frame, a front roller and a motor;

[0015] The front rollers are rotatably connected to the front frame, and the front frame has an installation end away from the conveying direction; the pressing plates are also installed on the end of the front frame away from the installation end; the supporting plates are also installed between the pressing plates and the installation end of the front frame, and the mesh belt is arranged on the pressing plates, the supporting plates and the front rollers;

[0016] The motor is installed on the front frame and drives one of the rear rollers to rotate through the speed reducer, thereby driving the mesh belt to move;

[0017] The pressing plates of the rear mold module and the front mold module are combined with each other at one end to form a middle mold module;

[0018] The installation ends can be connected to each other, and the mesh belts at the installation ends can be connected to form one mesh belt.

[0019] Optionally, the supporting plates are arranged in parallel to the moving direction of the mesh belt.

[0020] Optionally, a protective belt is installed on the top of the supporting plate, and the protective belt is made of plastic and has an upper surface flush with the upper surface of the pressing plate.

[0021] Optionally, a rotating rod is rotatably connected to the pressing plate, a plurality of rotating holes are arranged in the arc end of the pressing plate, a rotating plate is fixedly arranged on the rotating rod at the rotating holes, and the rotating plate is in abutment with the mesh belt.

[0022] Optionally, a middle partition plate is fixedly arranged at the middle position of the frame of the middle mold module, the middle partition plate is arranged between the two pressing plates, a connecting plate is fixedly arranged on the top of the middle partition plate, the upper surface of the connecting plate is flush with and adjacent to the upper surface of the mesh belt, and the two side walls of the connecting plate are inclined surfaces.

[0023] Optionally, a top side plate is arranged on the frame of the middle mold module, the rear mold module and the front mold module, the two ends of the top side plate are arranged in an inclined manner, and the top side plate is used to abut against the side wall of the mesh belt on the supporting plate.

[0024] Optionally, an inner side plate is arranged on the frame of the middle mold module, the rear mold module and the front mold module, the two ends of the inner side plate are arranged in an inclined manner, and the inner side plate is used to abut against the side wall of the mesh belt below the supporting plate.

[0025] Optionally, a sink is arranged on the lower surface of the pressing plate, and the sink is in abutment with the cross beam at the installation position of the pressing plate.

[0026] Optionally, a clamping groove is arranged at the middle position of the frame of the middle mold module, and the two ends of the middle partition plate are inserted into the clamping groove.

[0027] Optionally, the middle position of the frame of the middle mold module is arranged to be avoided at the pressing plate, and the avoiding space is sufficient for a hand to pass through.

[0028] In summary, the present application has at least one of the following beneficial technical effects:

[0029] 1. According to the length requirement of the field conveying belt design, the safety ends of the plurality of middle die groups are spliced and installed with each other, and are spliced and installed through a rear die group and a front die group at both ends, and finally the mesh belt is lap jointed to realize the modular assembly of the conveying belt, and the mesh belt is divided into multiple parts through the plurality of die groups, which not only facilitates assembly and disassembly, but also facilitates maintenance and replacement;

[0030] 2. The setting of the pressing plate cooperates with the material setting of the protective belt to effectively improve the movement stability of the mesh belt and effectively improve the protection effect on the mesh belt;

[0031] 3. The setting of the middle partition plate can effectively improve the protection effect of the bending part of the two sections of the mesh belt, and realize the separation protection of the two sections of the conveying belt, and improve the stability of the transportation and transmission of the articles on the two sections of the mesh belt through the link plate;

[0032] 4. The rotating hole on the pressing plate can effectively provide installation space for the rotating wheel, and the rotating wheel can effectively cooperate with the arc surface setting of the pressing plate to support the mesh belt, thereby reducing the wear of the mesh belt at the pressing plate and improving the stability of the mesh belt operation;

[0033] 5. The setting of the top side plate and the inner side plate can effectively abut against the sidewall of the mesh belt, thereby limiting the running position of the mesh belt and improving the stability of the mesh belt operation. BRIEF DESCRIPTION OF DRAWINGS

[0034] Figure 1 is a structural schematic diagram of the embodiment of the present application;

[0035] Figure 2 is a structural schematic diagram of the middle die group hidden behind the mesh belt;

[0036] Figure 3 is Figure 2 is an enlarged view of the installation relationship of the support plate and the protective belt of the middle rear die group part;

[0037] Figure 4 is a partial sectional view showing the structure of the pressing plate on the middle die plate;

[0038] Figure 5 is a partial sectional view showing the mesh belt lap joint relationship.

[0039] In the figure, 1, rear die group; 11, rear frame; 111, installation end; 12, rear roller; 2, front die group; 21, front frame; 22, front roller; 23, motor; 3, middle die group; 31, pressing plate; 311, sink groove; 312, rotating rod; 3121, rotating plate; 313, rotating hole; 32, support plate; 321, protective belt; 33, clamping groove; 34, middle partition plate; 341, link plate; 4, top side plate; 5, inner side plate. DETAILED DESCRIPTION

[0040] The application will be further described in detail below with reference to the accompanying drawings. Figures 1-5 The application will be further described in detail below with reference to the accompanying drawings.

[0041] The application discloses an assembled conveying module.

[0042] Referring to Figure 1 and Figure 2 , the assembled conveying module comprises a rear module 1, a middle module 3 and a front module 2. The middle module 3 is multiple and located at the middle section of the conveying line and connected at the head and tail. The rear module 1 can be installed at the rear end of the middle module 3, and the front module 2 can be installed at the front end of the middle module 3 to form a complete conveying line. Wherein:

[0043] The rear module 1 comprises a rear frame 11 and a plurality of rear rollers 12. The rear rollers 12 are all rotationally connected to the rear frame 11. One end of the rear frame 11 towards the specified conveying direction is an installation end 111, and a pressing plate 31 is installed at the end of the rear frame 11 away from the installation end 111. In combination Figure 2 and Figure 3 , a plurality of support plates 32 are installed at the top of the rear frame 11 between the installation end 111 and the pressing plate 31, and a protective belt 321 is installed at the top of the support plate 32. The protective belt 321 is made of plastic material and the upper surface is flush with the upper surface of the pressing plate 31. The material of the protective belt 321 is high molecular polyethylene in this embodiment. The mesh belt is placed on the pressing plate 31, the support plate 32 and the rear roller 12 and is tensioned by the rear roller 12.

[0044] Referring to Figure 1 and Figure 2 , the front module 2 comprises a front frame 21, a plurality of front rollers 22 and a motor 23. The front rollers 22 are rotationally connected to the front frame 21, and the end of the front frame 21 away from the specified conveying direction is an installation end 111. The pressing plate 31 is also installed at the end of the front frame 21 away from the installation end 111. The support plate 32 is also installed at the position between the installation end 111 of the front frame 21 and the pressing plate 31. The mesh belt is placed on the pressing plate 31, the support plate 32 and the front roller 22 of the front frame 21. The motor 23 is installed on the front frame 21 and drives one of the rear rollers 12 to rotate through a speed reducer to drive the mesh belt to move. The pressing plate 31 of the rear module 1 and the front module 2 is installed and combined with each other to form a middle module 3. The installation end 111 can be connected to each other, and the mesh belt at the installation end 111 can be connected to form a mesh belt.

[0045] Referring to Figure 4 and Figure 5The pressing plate 31 is single-link chain plate-shaped, and one end of the pressing plate 31 away from the mounting end 111 is arc-shaped and protruding. The arc-shaped protruding part in the pressing plate 31 is rotationally connected with a rotating rod 312, and the arc-shaped end of the pressing plate 31 is provided with a plurality of rotating holes 313, and the rotating rod 312 is fixedly provided with a rotating plate 3121 at the rotating hole 313, and the rotating plate 3121 is in abutment with the mesh belt. The lower surface of the pressing plate 31 is provided with a sunken groove 311, and the crossbeam at the mounting position of the pressing plate 31 is in abutment with the sunken groove 311. The material of the pressing plate 31 is the same as that of the protective belt 321. The support plates 32 are arranged at intervals, and the length direction of the support plate 32 is parallel to the specified conveying direction, that is, parallel to the moving direction of the mesh belt.

[0046] The design of the middle mold group 3, the rear mold group 1 and the front mold group 2 can make the conveying line be assembled and combined according to the conveying length required by the production line, form a complete conveying line through the splicing of a plurality of middle mold groups 3 and the combination of the rear mold group 1 and the front mold group 2 at the two ends, and set up the mesh belt. In this way, not only the adjustability of the length of the conveying line is improved to facilitate the upgrading of the subsequent production line, but also the efficiency of the combination of the mold groups of the conveying line is improved, which can be achieved through the mutual installation and connection of the mounting ends 111. The support plates 32 support the mesh belt through the protective belt 321, and the material of the protective belt 321 effectively improves the protection effect on the mesh belt. The arrangement of the pressing plate 31 not only enables the mesh belt to stably rotate and bend downward, but also improves the support effect on the mesh belt through the arrangement of the rotating wheel, thereby reducing the wear of the mesh belt at the pressing plate 31. The sunken groove 311 structure of the pressing plate 31 can effectively improve the stability of the installation of the pressing plate 31.

[0047] Reference Figure 4 and Figure 5 The middle mold group 3 is provided with a clamping groove 33 at the middle position of the frame body, and a middle partition plate 34 is inserted and mounted in the clamping groove 33. Only the two end parts of the middle partition plate 34 are located in the clamping groove 33, and the middle partition plate 34 is located between the two pressing plates 31. The top of the middle partition plate 34 is fixedly provided with a connecting plate 341, and the upper surface of the connecting plate 341 is flush with the upper surface of the mesh belt. The connecting plate 341 is adjacent to the mesh belt, and the two side walls of the connecting plate 341 are inclined surfaces inclined to the middle partition plate 34 and do not contact the mesh belt. The middle position of the frame body of the middle mold group 3 is arranged to be avoided at the pressing plate 31, and the avoiding space is sufficient for the hand to pass through. Further, the installation and disassembly and maintenance of the pressing plate 31 are facilitated. The frame bodies of the middle mold group 3, the rear mold group 1 and the front mold group 2 are all provided with a top side plate 4 and an inner side plate 5. The two ends of the top side plate 4 are arranged to be excessively inclined, and the top side plate 4 is used to abut against the side wall of the mesh belt on the support plate 32. The two ends of the inner side plate 5 are arranged to be excessively inclined, and the inner side plate 5 is in abutment with the side wall of the mesh belt below the support plate 32. The materials of the inner side plate 5 and the top side plate 4 are the same as that of the protective belt 321.

[0048] The middle slot 33 can provide effective installation space for the installation of the middle partition plate 34, and can effectively separate the two mesh belts through the installation of the middle partition plate 34, thereby improving the stability of the mesh belt operation. The middle partition plate 34 also provides installation space for the adapter plate 341, which effectively improves the stability of the articles on the mesh belt being transferred to the next mesh belt. The top side plate 4 and the inner side plate 5 effectively improve the stability of the mesh belt movement and improve the protection of the mesh belt.

[0049] The implementation principle of the assembled conveying module is: through the modular design, the conveying line is divided into three parts: the rear module 1, the middle module 3 and the front module 2, and the length of the conveying line is extended through the mutual installation of multiple middle modules 3. The rear module 1 and the front module 2 are installed at both ends of the middle module 3, and then the mesh belt is installed to form a complete conveying line. Thus, the length adjustment and local maintenance and disassembly of the conveying line can be conveniently realized. The setting of the support plate 32 and the pressing plate 31 can effectively improve the stability of the mesh belt moving on the top, and the part of the mesh belt line bent downward is supported by the rotating plate 3121 on the pressing plate 31, thereby reducing the wear of the mesh belt. The setting of the bending part of the two mesh belts installed at the middle part of the middle module 3 can effectively reduce the increase of the gap or the instability of the connection of the mesh belt caused by the vibration and other factors generated after the installation of the installation end 111, and also effectively reduces the wear or jamming phenomenon of the mesh belt, thereby improving the stability of the mesh belt operation. When the above-mentioned situation occurs in the current connection mode, it can be offset by the stretchability of the multiple mesh belts, and will not affect the normal operation of the mesh belt.

[0050] The embodiments of the specific embodiment are the preferred embodiments of the application, but do not limit the protection scope of the application, so that: any equivalent changes made according to the structure, shape, principle of the application should be covered within the protection scope of the application.

Claims

1. A modular conveyor module, characterized by: The utility model relates to a kind of conveying line, including Middle die group (3), rear die group (1) and front die group (2); Middle die group (3) is multiple, located in the middle section of conveying line, head-to-tail; Rear die group (1) can be installed at the front end of middle die group (3), and front die group (2) can be installed at the rear end of middle die group (3), to form a complete conveying line; Rear die group (1) includes rear frame (11), rear roller (12); Rear roller (12) is multiple, rotatably connected on rear frame (11), and the end of rear frame (11) towards specified conveying direction is mounting end (111), and pressure plate (31) is installed on the end of rear frame (11) away from mounting end (111), and pressure plate (31) is single section chain plate, and the end of pressure plate (31) away from mounting end (111) is arc-shaped; Rear frame (11) is installed with multiple support plates (32) between pressure plate (31) and mounting end (111), and mesh belt is lapped on pressure plate (31), support plate (32) and rear roller (12); Front die group (2) includes front frame (21), front roller (22) and motor (23); Front roller (22) is multiple, rotatably connected on front frame (21), and the end of front frame (21) away from specified conveying direction is mounting end (111), and pressure plate (31) is also installed on the end of front frame (21) away from mounting end (111), and support plate (32) is also multiple, and also installed between pressure plate (31) and mounting end (111) of front frame (21), and mesh belt is lapped on pressure plate (31), support plate (32) and front roller (22); Motor (23) is installed on front frame (21), and one of rear roller (12) is driven to rotate by speed reducer, to drive mesh belt to move; The end of pressure plate (31) of rear die group (1) and front die group (2) is mutually installed and combined to form a middle die group (3); Mounting end (111) can be mutually connected, and mesh belt at mounting end (111) can be connected as one mesh belt.

2. The modular conveyor assembly of claim 1, wherein: The length direction of support plate (32) is parallel to the moving direction of mesh belt, and is arranged at intervals.

3. The modular conveyor assembly of claim 2, wherein: Protective belt (321) is installed on the top of support plate (32), and protective belt (321) is plastic material, and upper surface is flush with the upper surface of pressure plate (31).

4. The modular conveyor assembly of claim 1, wherein: Rotating rod (312) is rotatably connected in pressure plate (31), and arc-shaped end of pressure plate (31) is provided with multiple rotating holes (313), and rotating rod (312) is fixed with rotating plate (3121) at rotating hole (313), and rotating plate (3121) is tightly contacted with mesh belt.

5. The modular conveyor assembly of claim 1, wherein: Middle partition (34) is fixed in the middle position of the frame body of middle die group (3), and middle partition (34) is located between two pressure plates (31), and top of middle partition (34) is fixed with link plate (341), and the upper surface of link plate (341) is flush with the upper surface of mesh belt and adjacent to mesh belt, and the side wall of link plate (341) is inclined surface.

6. The modular conveyor assembly of claim 1, wherein: Top side plate (4) is installed on the frame body of middle die group (3), rear die group (1) and front die group (2), and the both ends of top side plate (4) are arranged with inclination, and top side plate (4) is used to abut with the side wall of mesh belt on support plate (32).

7. The modular conveyor assembly of claim 1, wherein: The inner side plate (5) is installed on the frame of the middle die set (3), the rear die set (1) and the front die set (2), and the inner side plate (5) is provided with an excessive inclination at both ends and abuts against the side wall of the mesh belt below the supporting plate (32).

8. The modular conveyor assembly of claim 1, wherein: The lower surface of the pressing plate (31) is provided with a sunken groove (311), and the cross beam at the installation position of the pressing plate (31) abuts against the sunken groove (311).

9. The modular conveyor assembly of claim 5, wherein: The middle die set (3) is provided with a clamping groove (33) at the middle position of the frame, and the two ends of the middle partition plate (34) are inserted and fixed in the clamping groove (33).

10. The modular conveyor assembly of claim 5, wherein: The middle position of the frame of the middle die set (3) is provided with an avoiding space at the position of the pressing plate (31), and the avoiding space is sufficient for the hand to pass through.