Module splicing type flat belt conveyor

By using modular design and power transmission gear meshing, the problem of inconvenient length adjustment of existing flat belt conveyors has been solved, enabling rapid splicing and efficient transmission.

CN224046178UActive Publication Date: 2026-03-27DONGGUAN YIHEDA AUTOMATION CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-25
Publication Date
2026-03-27

AI Technical Summary

Technical Problem

Existing flat belt conveyors are difficult to adjust the length of their conveyor belts quickly according to actual needs, and the splicing process is cumbersome and inefficient.

Method used

The main and secondary conveyor modules, which adopt a modular design, can be quickly lengthened through splicing structure and meshing of two power transmission gears, simplifying the power transmission structure. They are driven by servo motors and synchronously operated through synchronous belt transmission.

Benefits of technology

It enables rapid lengthening and adjustment of the conveyor, simplifies the splicing process, and improves efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a belt conveyor, in particular to a module splicing type flat belt conveyor. Comprising a main section conveyor module, and the main section conveyor module is modularly designed; the driving mechanism is mounted at the lower part of the right side of the main section conveyor module; the secondary section conveyor module is mounted at the left end of the primary section conveyor module; and the splicing structure is connected between the main section conveyor module and the secondary section conveyor module. According to the utility model, the conveying belt part of the conveyor is changed into modular design, and the rapid lengthening and adjustment of the conveyor are realized through a splicing structure. The mode that the two power transmission gears are meshed with each other is adopted, the power transmission structure is simplified, the secondary section conveyor modules can be rapidly connected and synchronously run, and the problems that a traditional conveyor is tedious in splicing and low in efficiency are solved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a belt conveyor, especially a module splicing type flat belt conveyor. BACKGROUND

[0002] The flat belt conveyor is a continuous conveying equipment taking the flat belt as the bearing and conveying medium, and is widely applied to material conveying in industrial production. The core structure includes driving device, belt, roller tensioning device and rack, and the belt is driven to circulate by friction, so as to realize horizontal or inclined conveying of materials.

[0003] The existing part flat belt conveyor is spliced by bolt fixation or welding, and the length and structure are determined during installation, so it is difficult to adjust flexibly according to actual production requirements. UTILITY MODEL CONTENT

[0004] In order to overcome the shortcoming that the existing part flat belt conveyor cannot adjust the length of the transmission belt quickly according to actual requirements in the above background technology, the utility model aims at providing a module splicing type flat belt conveyor.

[0005] The technical scheme of the utility model is as follows: a module splicing type flat belt conveyor, comprising:

[0006] The main section conveyor module is modular design.

[0007] The driving mechanism is installed at the right lower part of the main section conveyor module.

[0008] The secondary section conveyor module is installed at the left end of the main section conveyor module.

[0009] The splicing structure is connected between the main section conveyor module and the secondary section conveyor module.

[0010] Further, the main section conveyor module comprises:

[0011] The conveying rack is H-shaped frame.

[0012] The belt supporting plate is installed at the top end of the conveying rack.

[0013] The bearing seat is installed on the front and rear end faces of the left and right sides of the conveying rack.

[0014] The roller is installed on the bearing seat of the left and right sides.

[0015] A flat belt is sleeved on the conveying frame, and left and right sides of the flat belt are in contact with left and right rollers respectively, and an inner top end of the belt supporting plate is in contact with the flat belt.

[0016] Synchronous wheels are installed on rear sides of the rollers.

[0017] A synchronous belt is installed between left and right synchronous wheels.

[0018] Further, the driving mechanism comprises:

[0019] An installation plate is installed on a front right side of the main section conveyor module.

[0020] A protective shell is installed on a front end of the installation plate.

[0021] A driving motor is installed on a rear end of the installation plate.

[0022] A pulley transmission is connected between the rollers and the driving motor.

[0023] Further, the main section conveyor module and the secondary section conveyor module are of the same structure.

[0024] Further, the splicing structure comprises:

[0025] Power transmission gears are installed on front ends of right rollers of the main section conveyor module and front ends of rollers of the secondary section conveyor module respectively, and two power transmission gears on close sides of the secondary section conveyor module and the main section conveyor module are engaged with each other.

[0026] Further, the splicing structure comprises:

[0027] A connecting plate is connected between the secondary section conveyor module and the main section conveyor module.

[0028] Further, the connecting plate is a U-shaped plate.

[0029] Further, the splicing structure comprises:

[0030] Frames are installed at bottom ends of the main section conveyor module and the secondary section conveyor module.

[0031] Further, the splicing structure comprises:

[0032] Pads are installed on front and rear sides of bottom ends of the frames, and bottom ends of the pads are sleeved with rubber pads.

[0033] Further, the driving motor is a servo motor.

[0034] The utility model discloses the beneficial effect is: the utility model discloses the transmission belt part of conveyor becomes the modular design, realizes the quick lengthening and adjustment of conveyor through splicing structure. The way of two power transmission gears intermeshing is adopted, simplifies the power transmission structure, makes the secondary conveyor module can be quickly connected and runs synchronously, solves the problem of traditional conveyor splicing complicated, low efficiency. BRIEF DESCRIPTION OF DRAWINGS

[0035] Figure 1 It is the three-dimensional structure schematic diagram of the utility model.

[0036] Figure 2 It is the three-dimensional structure schematic diagram of the utility model connecting plate etc. component.

[0037] Figure 3 It is the explosion drawing of the utility model main section conveyor module.

[0038] Figure 4 It is the three-dimensional structure schematic diagram of the utility model mounting plate etc. component.

[0039] Mark in drawing: 1: drive mechanism, 101: protective shell, 102: drive motor, 103: mounting plate, 104: pulley transmission piece, 2: splicing structure, 201: power transmission gear, 202: connecting plate, 3: rack, 301: pad foot, 4: main section conveyor module, 41: secondary conveyor module, 401: bearing seat, 402: roller, 403: flat belt, 404: synchronous wheel, 405: synchronous belt, 406: belt supporting plate, 407: conveying frame. DETAILED DESCRIPTION

[0040] First, it is pointed out that in the different described embodiments, the same components are provided with the same reference signs or the same component names, wherein the disclosure contained in the entire specification can be transferred to the same components with the same reference signs or the same component names in the meaning. The selected position description in the specification, for example, upper, lower, lateral, etc. also refers to the directly described and shown drawings and is transferred to the new position in the meaning when the position changes.

[0041] A module splicing type flat belt conveyor, as shown in Figures 1-4 , comprising:

[0042] The main section conveyor module 4 is modular design;

[0043] The drive mechanism 1 is installed on the right lower part of the main section conveyor module 4.

[0044] A secondary section conveyor module 41 is installed at the left end of the primary section conveyor module 4, and the primary section conveyor module 4 and the secondary section conveyor module 41 have the same structure.

[0045] A splicing structure 2 is connected between the primary section conveyor module 4 and the secondary section conveyor module 41.

[0046] As shown in Figure 3 The primary section conveyor module 4 comprises:

[0047] A conveying frame 407 is an H-shaped frame, which is used to support the whole module structure and provide a rigid base.

[0048] A belt supporting plate 406 is installed at the top end of the conveying frame 407.

[0049] Bearing seats 401 are installed on the front and rear end faces of the left and right sides of the conveying frame 407.

[0050] Rollers 402 are installed on the bearing seats 401 of the left and right sides.

[0051] A flat belt 403 is sleeved on the conveying frame 407, and the left and right sides of the flat belt 403 are in contact with the rollers 402 of the left and right sides, respectively. The inner top end of the belt supporting plate 406 is in contact with the flat belt 403. The rollers 402 drive the flat belt 403 to slide, and the belt supporting plate 406 is used to support the flat belt 403.

[0052] Synchronous wheels 404 are installed on the rear sides of the rollers 402.

[0053] A synchronous belt 405 is installed between the synchronous wheels 404 of the left and right sides. The synchronous wheels 404 drive the synchronous belt 405 to rotate, and the synchronous belt 405 is used for power transmission.

[0054] As shown in Figure 1 and Figure 2 The driving mechanism 1 comprises:

[0055] An installation plate 103 is installed at the front right side of the primary section conveyor module 4, and the installation plate 103 is a fixed component.

[0056] A protective shell 101 is installed at the front end of the installation plate 103.

[0057] A driving motor 102 is mounted at the rear end of the mounting plate 103, and the driving motor 102 is a servo motor.

[0058] A pulley transmission 104 is connected between the roller shaft 402 and the driving motor 102, and the protective shell 101 can prevent people from directly contacting the pulley transmission 104 and prevent accidents from occurring. The protective shell 101 also protects the driving motor 102 and the pulley transmission 104 from direct contact with foreign objects.

[0059] As shown in Figure 2 The splicing structure 2 comprises:

[0060] A power transmission gear 201 is mounted at the front end of the roller shaft 402 of the main section conveyor module 4 and the front end of the roller shaft 402 of the secondary section conveyor module 41, and the two power transmission gears 201 on the side close to the main section conveyor module 4 of the secondary section conveyor module 41 are engaged with each other, and the power transmission gear 201 is used for power transmission.

[0061] As shown in Figure 2 It further comprises:

[0062] A connecting plate 202 is connected between the secondary section conveyor module 41 and the main section conveyor module 4, and the connecting plate 202 is a U-shaped plate, which can prevent the splicing part of the secondary section conveyor module 41 and the main section conveyor module 4 from shaking.

[0063] As shown in Figure 1 and Figure 4 It further comprises:

[0064] A rack 3 is spaced apart and mounted at the bottom end of the main section conveyor module 4 and the secondary section conveyor module 41, and the rack 3 is used to support the entire conveyor.

[0065] As shown in Figure 4 It further comprises:

[0066] A foot pad 301 is mounted at the front and rear sides of the bottom end of the rack 3, and the bottom end of the foot pad 301 is provided with a rubber pad, and the foot pad 301 has the functions of shock absorption and anti-skid.

[0067] The driving motor 102 is started, the driving motor 102 drives the roller 402 (the roller 402 on the right side of the main section conveyor module 4) to rotate through the pulley transmission 104, the roller 402 drives the synchronous wheel 404 on it to rotate, the synchronous wheel 404 drives the synchronous belt 405 on it to move, the synchronous belt 405 drives the synchronous wheel 404 on the left side of the conveying frame 407 to rotate, the roller 402 on the left and right sides of the main section conveyor module 4 drives the flat belt 403 to move together, the flat belt 403 rotates around the conveying frame 407, the flat belt 403 slides on the belt supporting plate 406, the roller 402 on the left side of the main section conveyor module 4 drives the power transmission gear 201 on it to rotate, another power transmission gear 201 meshing with the power transmission gear 201 also rotates, at this time, power is transmitted from the main section conveyor module 4 to the roller 402 on the right side of the secondary section conveyor module 41 through the two power transmission gears 201, since the main section conveyor module 4 and the secondary section conveyor module 41 are consistent in structure, the flat belt 403 on the secondary section conveyor module 41 will also move through the driving of the roller 402 on the right side of the secondary section conveyor module 41, the operation of each component in the secondary section conveyor module 41 is consistent with that in the main section conveyor module 4, objects placed on the flat belt 403 of the main section conveyor module 4 will be conveyed from the main section conveyor module 4 to the secondary section conveyor module 41, and then leave the conveyor, when it is necessary to lengthen the length of the conveyor, another secondary section conveyor module 41 can be placed on the left side of the secondary section conveyor module 41, so that the power transmission gears 201 on the two secondary section conveyor modules 41 mesh with each other, the connecting plate 202 is used to connect the two secondary section conveyor modules 41 together, to prevent the added secondary section conveyor module 41 from shaking, that is, the lengthening of the conveyor is completed, according to the above method, the number of secondary section conveyors can be increased according to the use requirements.

[0068] It should be understood that the above description is only for exemplary purposes and does not mean to limit the present application. Those skilled in the art will understand that variations of the present application will be included within the scope of the claims herein.

Claims

1. A modular flat belt conveyor characterized in that, The utility model relates to a kind of modularized main section conveyor module (4) and its drive mechanism (1) and the secondary section conveyor module (41) and the splicing structure (2) between them. The utility model relates to a kind of modularized main section conveyor module (4) and its drive mechanism (1) and the secondary section conveyor module (41) and the splicing structure (2) between them. The utility model relates to a kind of modularized main section conveyor module (4) and its drive mechanism (1) and the secondary section conveyor module (41) and the splicing structure (2) between them. The utility model relates to a kind of modularized main section conveyor module (4) and its drive mechanism (1) and the secondary section conveyor module (41) and the splicing structure (2) between them. The utility model relates to a kind of modularized main section conveyor module (4) and its drive mechanism (1) and the secondary section conveyor module (41) and the splicing structure (2) between them.

2. A modular, spliced flat belt conveyor as claimed in claim 1, characterized in that The utility model relates to a kind of modularized main section conveyor module (4) and its drive mechanism (1) and the secondary section conveyor module (41) and the splicing structure (2) between them. The utility model relates to a kind of modularized main section conveyor module (4) and its drive mechanism (1) and the secondary section conveyor module (41) and the splicing structure (2) between them. The utility model relates to a kind of modularized main section conveyor module (4) and its drive mechanism (1) and the secondary section conveyor module (41) and the splicing structure (2) between them. The utility model relates to a kind of modularized main section conveyor module (4) and its drive mechanism (1) and the secondary section conveyor module (41) and the splicing structure (2) between them. The utility model relates to a kind of modularized main section conveyor module (4) and its drive mechanism (1) and the secondary section conveyor module (41) and the splicing structure (2) between them. The utility model relates to a kind of modularized main section conveyor module (4) and its drive mechanism (1) and the secondary section conveyor module (41) and the splicing structure (2) between them. The utility model relates to a kind of modularized main section conveyor module (4) and its drive mechanism (1) and the secondary section conveyor module (41) and the splicing structure (2) between them. The utility model relates to a kind of modularized main section conveyor module (4) and its drive mechanism (1) and the secondary section conveyor module (41) and the splicing structure (2) between them.

3. A modular, spliced flat belt conveyor as claimed in claim 2, characterized in that The utility model relates to a kind of modularized main section conveyor module (4) and its drive mechanism (1) and the secondary section conveyor module (41) and the splicing structure (2) between them. The utility model relates to a kind of modularized main section conveyor module (4) and its drive mechanism (1) and the secondary section conveyor module (41) and the splicing structure (2) between them. The utility model relates to a kind of modularized main section conveyor module (4) and its drive mechanism (1) and the secondary section conveyor module (41) and the splicing structure (2) between them. The utility model relates to a kind of modularized main section conveyor module (4) and its drive mechanism (1) and the secondary section conveyor module (41) and the splicing structure (2) between them. The utility model relates to a kind of modularized main section conveyor module (4) and its drive mechanism (1) and the secondary section conveyor module (41) and the splicing structure (2) between them.

4. A modular, spliced flat belt conveyor as claimed in claim 3, characterized in that The utility model relates to a kind of modularized main section conveyor module (4) and its drive mechanism (1) and the secondary section conveyor module (41) and the splicing structure (2) between them.

5. A modular, spliced flat belt conveyor as claimed in claim 4, characterized in that The utility model relates to a kind of modularized main section conveyor module (4) and its drive mechanism (1) and the secondary section conveyor module (41) and the splicing structure (2) between them. The utility model relates to a kind of modularized main section conveyor module (4) and its drive mechanism (1) and the secondary section conveyor module (41) and the splicing structure (2) between them.

6. A modular, spliced flat belt conveyor as claimed in claim 5, further characterized by The utility model relates to a kind of modularized main section conveyor module (4) and its drive mechanism (1) and the secondary section conveyor module (41) and the splicing structure (2) between them. The utility model relates to a kind of modularized main section conveyor module (4) and its drive mechanism (1) and the secondary section conveyor module (41) and the splicing structure (2) between them.

7. A modular, spliced flat belt conveyor as claimed in claim 6, characterized in that The utility model relates to a kind of modularized main section conveyor module (4) and its drive mechanism (1) and the secondary section conveyor module (41) and the splicing structure (2) between them.

8. A modular, spliced flat belt conveyor as claimed in claim 7, further characterized by The utility model relates to a kind of modularized main section conveyor module (4) and its drive mechanism (1) and the secondary section conveyor module (41) and the splicing structure (2) between them. The utility model relates to a kind of modularized main section conveyor module (4) and its drive mechanism (1) and the secondary section conveyor module (41) and the splicing structure (2) between them.

9. A modular, spliced flat belt conveyor as claimed in claim 8, further characterized by The utility model relates to a kind of modularized main section conveyor module (4) and its drive mechanism (1) and the secondary section conveyor module (41) and the splicing structure (2) between them. The utility model relates to a kind of modularized main section conveyor module (4) and its drive mechanism (1) and the secondary section conveyor module (41) and the splicing structure (2) between them. The utility model relates to a kind of modularized main section conveyor module (4) and its drive mechanism (1) and the secondary section conveyor module (41) and the splicing structure (2) between them. The utility model relates to a kind of modularized main section conveyor module (4) and its drive mechanism (1) and the secondary section conveyor module (41) and the splicing structure (2) between them. The utility model relates to a kind of modularized main section conveyor module (4) and its drive mechanism (1) and the secondary section conveyor module (41) and the splicing structure (2) between them. The utility model relates to a kind of modularized main section conveyor module (4) and its drive mechanism (1) and the secondary section conveyor module (41) and the splicing structure (2) between them. The utility model relates to a kind of modularized main section conveyor module (4) and its drive mechanism (1) and the secondary section conveyor module (41) and the splicing structure (2) between them. The utility model relates to a kind of modularized main section conveyor module (4) and its drive mechanism (1) and the secondary section conveyor module (41) and the splicing structure (2) between them. The utility model relates to a kind of modularized main section conveyor module (4) and its drive mechanism (1) and the secondary section conveyor module (41) and the splicing structure (2) between them. The utility model relates to a kind of modularized main section conveyor module (4) and its drive mechanism (1) and the secondary section conveyor module (41) and the splicing structure (2) between them. The utility model relates to a kind of modularized main section conveyor module (4) and its drive mechanism (1) and the secondary section conveyor module (41) and the splicing structure (2) between them. The utility model relates to a kind of modularized main section conveyor module (4) and its drive mechanism (1) and the secondary section conveyor module (41) and the splicing structure (2) between them. The utility model relates to a kind of modularized main section conveyor module (4) and its drive mechanism (1) and the secondary section conveyor module (41) and the splicing structure (2) between them. The utility model relates to a kind of modularized main section conveyor module (4) and its drive mechanism (1) and the secondary section conveyor module (41) and the splicing structure (2) between them. The utility model relates to a kind of modularized main section conveyor module (4) and its drive mechanism (1) and the secondary section conveyor module (41) and the splicing structure (2) between them. The utility model relates to a kind of modularized main section conveyor module (4) and its drive mechanism (1) and the secondary section conveyor module (41) and the splicing structure (2) between them. The utility model relates to a kind of modularized main section conveyor module (4) and its drive mechanism (1) and the secondary section conveyor module (41) and the splicing structure (2) between them. The utility model relates to a kind of modularized main section conveyor module (4) and its drive mechanism (1) and the secondary section conveyor module (41) and the splicing structure (2) between them. The utility model relates to a kind of modularized main section conveyor module (4) and its drive mechanism (1) and the secondary section conveyor module (41) and the splicing structure (2) between them. The utility model relates to a kind of modularized main section conveyor module (4) and its drive mechanism (1) and the secondary section conveyor module (41) and the splicing structure (2) between them. The utility model relates to a kind of modularized main section conveyor module (4) and its drive mechanism (1) The bottom end of the foot pad (301) is sleeved with a rubber pad.

10. A modular, spliced flat belt conveyor as claimed in claim 9, characterized in that The driving motor (102) is a servo motor.