Transferring equipment with angle rollers

By designing a load transfer device with angle rollers, non-unidirectional load transfer of materials is achieved by using alternately installed roller modules, the problems of single-directional load transfer and cumbersome actions of traditional load transfer and sorting structures are solved, the sorting efficiency and versatility are improved, and the logistics transportation cost is reduced.

CN223015730UActive Publication Date: 2025-06-24FOSHAN JINJIA ELECTROMECHANICAL
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Patent Information

Application Number
CN202421753327.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-23
Publication Date
2025-06-24
Estimated Expiration
2034-07-23

AI Technical Summary

Technical Problem

The traditional load transfer and sorting structure can only be moved in one direction, and the actions are cumbersome and the parts are easily damaged, resulting in low sorting efficiency and high logistics and transportation costs.

Method used

A load transfer device with an angle roller is designed, and the first conveying mechanism and the second conveying mechanism are arranged perpendicularly to each other, and the first roller module and the second roller module are alternately installed to realize non-unidirectional load transfer of materials.

Benefits of technology

This equipment can realize non-unidirectional transfer of materials, improve practicality and versatility, simplify structure and control actions, extend the service life of parts, improve sorting efficiency and reduce logistics and transportation costs.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model provides transferring equipment with angle rollers. The transferring equipment comprises a first conveying mechanism, a second conveying mechanism and a transferring mechanism, the transferring mechanism is in butt joint with the first conveying mechanism and the second conveying mechanism, and the first conveying mechanism and the second conveying mechanism are perpendicular to each other. The transferring mechanism comprises a frame body, a plurality of first roller modules, a plurality of second roller modules, a first driving assembly and a second driving assembly; the first rolling wheel module comprises a plurality of first rolling wheels, and each first rolling wheel is provided with a first roller which is installed in a leftward inclined mode; the second rolling wheel module comprises a plurality of second rolling wheels, and each second rolling wheel is provided with a second roller which is obliquely installed rightwards; and the first roller modules and the second roller modules are alternately mounted on the frame body through bearings. The non-one-way material transfer device can transfer materials in a non-one-way mode, and therefore practicability and universality are improved. In addition, the transferring equipment is simple in structure, so that the sorting efficiency is improved, and the logistics conveying cost is reduced.
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Description

Technical Field

[0001] The utility model relates to the technical field of transfer, and more specifically, to a transfer device with angled rollers. Background Art

[0002] Material conveying equipment is widely used in automated material conveying lines such as warehousing logistics and manufacturing, to convey materials from one end of the conveying equipment to the other end, and the material conveying process also needs to have the functions of transfer and sorting.

[0003] The traditional transfer and sorting structure is characterized by a conveyor composed of multiple conveyor rollers distributed at equal intervals, and liftable rollers are embedded between adjacent conveyor rollers. Materials are conveyed through the conveyor rollers. When transfer and sorting are required, the rollers in the original state are lower than the conveying surface of the conveyor rollers. When the materials are conveyed to the predetermined sorting position, the liftable rollers rise above the conveying surface of the conveyor rollers, contact the materials, and drive the materials to transfer in the output direction of the rollers, completing the conveying and sorting of the materials.

[0004] However, most of these conveyors can only transfer in one direction, and can only meet the transfer and sorting in a certain direction, which has certain limitations. In addition, controlling the lifting and lowering of the rollers makes the material sorting operation cumbersome, and the components are easily damaged, resulting in low sorting efficiency and increased logistics conveying costs. Summary of the Utility Model

[0005] The purpose of the utility model is to overcome the deficiencies in the prior art, and provide a transfer device with angled rollers. This transfer device can perform non-unidirectional transfer of materials, thereby improving the practicability and versatility; at the same time, the structure of this transfer device is simple, solving the problem that the existing material sorting mechanism has cumbersome actions and easy damage to components, thereby improving the sorting efficiency and reducing the logistics conveying cost.

[0006] To achieve the above purpose, the utility model is realized through the following technical solutions: A transfer device with angled rollers, characterized in that: it includes a first conveying mechanism, a second conveying mechanism and a transfer mechanism; the transfer mechanism is respectively connected to the first conveying mechanism and the second conveying mechanism, and the first conveying mechanism and the second conveying mechanism are arranged perpendicular to each other;

[0007] The transfer mechanism includes a frame body, a plurality of first roller modules, a plurality of second roller modules, a first driving component and a second driving component; each first roller module includes a plurality of first rollers, and each first roller is provided with a first roller inclined to the left; each second roller module includes a plurality of second rollers, and each second roller is provided with a second roller inclined to the right; the first roller modules and the second roller modules are alternately installed on the frame body through bearings;

[0008] During operation, after the materials conveyed by the first conveying mechanism or the second conveying mechanism enter the transfer mechanism, the first driving component is connected to a plurality of first roller modules to drive the plurality of first roller modules to rotate, and the second driving component is connected to a plurality of second roller modules to drive the plurality of second roller modules to rotate in the opposite direction to the first roller modules, so as to convey the materials to the transfer mechanism; driving the first roller modules and the second roller modules to rotate in the same direction realizes transferring the materials of the transfer mechanism to the second conveying mechanism or the first conveying mechanism.

[0009] In the above solution, each first roller of the present utility model is provided with a first roller installed obliquely to the left, and each second roller is provided with a second roller installed obliquely to the right. Therefore, the present utility model can transfer the materials of the first conveying mechanism or the second conveying mechanism to the transfer mechanism by driving the first roller modules and the second roller modules that rotate in the opposite direction, and then stop the rotation of the first roller modules and the second roller modules; then, by driving the first roller modules and the second roller modules that rotate in the same direction, the materials can be transferred to the second conveying mechanism or the first conveying mechanism, so that non-unidirectional transfer of the materials can be realized, improving the practicability and versatility. In addition, compared with the transfer structure of lifting and jacking, the transfer mechanism of the present utility model adopts the installation method of alternately arranging the first roller modules and the second roller modules, with simple structure and control actions, solving the problem that the actions of the existing material sorting mechanism are cumbersome and the components are easily damaged, thereby improving the sorting efficiency and reducing the logistics conveying cost.

[0010] The first roller further includes a first roller frame, and a plurality of first rollers are installed obliquely to the left along the circumferential direction of the first roller frame.

[0011] The second roller further includes a second roller frame, and a plurality of second rollers are installed obliquely to the right along the circumferential direction of the second roller frame.

[0012] The first roller module further includes a first rotating shaft and a first spacer; the first rotating shaft is arranged in the first spacer, and both ends of the first rotating shaft are installed on the frame through bearings; a plurality of first rollers are installed at intervals on the first spacer.

[0013] The first driving component includes a first driving roller component, a first multi-wedge belt and a plurality of first multi-wedge belt pulleys; the first multi-wedge belt pulley is connected to the first rotating shaft, and adjacent first multi-wedge belt pulleys are connected by the first multi-wedge belt; the first driving roller component is arranged on the frame and is connected to one of the first multi-wedge belt pulleys through the first multi-wedge belt to drive the plurality of first roller modules to rotate.

[0014] The first driving roller component includes a first electric roller and a first electric roller driving clamp; the first electric roller is arranged on the frame and is connected to one of the first multi-wedge belt pulleys through the first multi-wedge belt, and the first electric roller driving clamp is connected to the first electric roller to drive the first electric roller to rotate.

[0015] The second roller module further includes a second rotating shaft and a second spacer sleeve; the second rotating shaft is disposed through the second spacer sleeve, and both ends of the second rotating shaft are mounted on the frame body through bearings; a plurality of second rollers are spacedly mounted on the second spacer sleeve.

[0016] The second driving assembly includes a second driving roller assembly, a second multi-wedge belt, and a plurality of second multi-wedge belt pulleys; the second multi-wedge belt pulleys are connected to the second rotating shaft, and adjacent second multi-wedge belt pulleys are connected by the second multi-wedge belt; the second driving roller assembly is disposed on the frame body and is connected to one of the second multi-wedge belt pulleys through the second multi-wedge belt to drive the plurality of second roller modules to rotate.

[0017] The second driving roller assembly includes a second electric roller and a second electric roller driving clamp; the second electric roller is disposed on the frame body and is connected to one of the second multi-wedge belt pulleys through the second multi-wedge belt, and the second electric roller driving clamp is connected to the second electric roller to drive the second electric roller to rotate.

[0018] The transfer device further includes a third conveying mechanism; the third conveying mechanism is docked with the transfer mechanism and is disposed opposite to the second conveying mechanism; the first conveying mechanism serves as the input end of the material, and the second conveying mechanism and the third conveying mechanism respectively serve as the output ends of the material.

[0019] The first conveying mechanism of the present utility model serves as the input end of the material. By controlling the forward / reverse rotation of the first rollers inclined to the left on the first rollers and the forward / reverse rotation of the second rollers inclined to the right on the second rollers, the material is transferred to the second conveying mechanism / the third conveying mechanism.

[0020] Compared with the prior art, the present utility model has the following advantages and beneficial effects:

[0021] 1. The transfer device with angle rollers of the present utility model can perform non-unidirectional transfer of materials, thereby improving the practicability and versatility.

[0022] 2. The transfer device with angle rollers of the present utility model has a simple structure, solves the problem that the existing material sorting mechanism has cumbersome actions and the components are easily damaged, thereby improving the sorting efficiency and reducing the logistics conveying cost. Description of the Drawings

[0023] Figure 1 is a schematic diagram of the transfer device of the present utility model;

[0024] Figure 2 is a schematic view of the transfer mechanism in the transfer device of the present utility model Figure 1 ;

[0025] Figure 3 is a schematic view of the transfer mechanism in the transfer device of the present utility modelFigure 2 ;

[0026] Figure 4 is a schematic diagram of the transfer mechanism in the transfer device of the present utility model Figure 3 ;

[0027] Figure 5 is a schematic diagram of the transfer mechanism in the second embodiment Figure 1 ;

[0028] Figure 6 is a schematic diagram of the transfer mechanism in the second embodiment Figure 2 ;

[0029] Among them, 1 is the first conveying mechanism, 2 is the second conveying mechanism, 3 is the transfer mechanism, 4 is the frame body, 5 is the first roller module, 6 is the second roller module, 7 is the first roller, 7.1 is the first roller, 7.2 is the first roller frame, 8 is the second roller, 8.1 is the second roller, 8.2 is the second roller frame, 9 is the first spacer, 10 is the first multi-wedge belt, 11 is the first multi-wedge belt pulley, 12 is the first electric roller, 13 is the first electric roller drive card, 14 is the second spacer, 15 is the second multi-wedge belt, 16 is the second multi-wedge belt pulley, 17 is the second electric roller, and 18 is the second electric roller drive card. Specific embodiments

[0030] The present utility model will be further described in detail below in conjunction with the accompanying drawings and specific embodiments.

[0031] Embodiment 1

[0032] As Figures 1 to 4 shown, the transfer device with angle rollers of the present utility model includes a first conveying mechanism 1, a second conveying mechanism 2, and a transfer mechanism 3. Among them, the transfer mechanism 3 is respectively docked with the first conveying mechanism 1 and the second conveying mechanism 2, and the first conveying mechanism 1 and the second conveying mechanism 2 are arranged perpendicular to each other.

[0033] Specifically, the transfer mechanism 3 includes a frame body 4, a plurality of first roller modules 5, a plurality of second roller modules 6, a first driving component, and a second driving component. The first roller module 5 includes a plurality of first rollers 7, and each first roller 7 is provided with a first roller 7.1 installed obliquely to the left. The second roller module 6 includes a plurality of second rollers 8, and each second roller 8 is provided with a second roller 8.1 installed obliquely to the right. The first roller module 5 and the second roller module 6 are alternately installed on the frame body 4 through bearings.

[0034] During operation, after the materials conveyed by the first conveying mechanism 1 or the second conveying mechanism 2 enter the transfer mechanism, the first driving assembly is connected to a plurality of first roller modules 5 to drive the plurality of first roller modules 5 to rotate, and the second driving assembly is connected to a plurality of second roller modules 6 to drive the plurality of second roller modules 6 to rotate in the opposite direction to the first roller modules 5, so as to convey the materials to the transfer mechanism; driving the first roller modules 5 and the second roller modules 6 to rotate in the same direction to transfer the materials of the transfer mechanism 3 to the second conveying mechanism 2 or the first conveying mechanism 1.

[0035] The first roller further includes a first roller frame 7.2, and a plurality of first rollers 7.1 are installed obliquely to the left along the circumferential direction of the first roller frame 7.2. The first roller module 5 further includes a first rotating shaft and a first spacer 9. The first rotating shaft is arranged in the first spacer 9, and both ends of the first rotating shaft are installed on the frame body 4 through bearings, while a plurality of first rollers 7 are installed at intervals on the first spacer 9.

[0036] The first driving assembly includes a first driving roller assembly, a first multi-wedge belt 10 and a plurality of first multi-wedge belt pulleys 11. Among them, the first driving roller assembly includes a first electric roller 12 and a first electric roller driving clamp 13. The first multi-wedge belt pulley 11 is connected to the first rotating shaft, adjacent first multi-wedge belt pulleys 11 are connected by the first multi-wedge belt 10, the first electric roller 12 is arranged on the frame body 4 and is connected to one of the first multi-wedge belt pulleys 11 through the first multi-wedge belt 10, and the first electric roller driving clamp 13 is connected to the first electric roller 12 to drive the first electric roller 12 to rotate so as to drive a plurality of first roller modules 5 to rotate.

[0037] The second roller 8 further includes a second roller frame 8.2, and a plurality of second rollers 8.1 are installed obliquely to the right along the circumferential direction of the second roller frame 8.2. The second roller module 6 further includes a second rotating shaft and a second spacer 14. The second rotating shaft is arranged in the second spacer 14, and both ends of the second rotating shaft are installed on the frame body 4 through bearings, and a plurality of second rollers 8 are installed at intervals on the second spacer 14.

[0038] The second driving assembly includes a second driving roller assembly, a second multi-wedge belt 15 and a plurality of second multi-wedge belt pulleys 16. Among them, the second driving roller assembly includes a second electric roller 17 and a second electric roller driving clamp 18. The second electric roller 17 is arranged on the frame body 4 and is connected to one of the second multi-wedge belt pulleys 16 through the second multi-wedge belt 15, and the second electric roller driving clamp 18 is connected to the second electric roller 17 to drive the second electric roller 17 to rotate so as to drive a plurality of second roller modules 6 to rotate.

[0039] On each first roller 7 of this embodiment, a first roller 7.1 is installed with a leftward inclination, and on each second roller 8, a second roller 8.1 is installed with a rightward inclination. When the material enters the transfer mechanism 3 from the first conveying mechanism 1, the present utility model drives the first roller 7 of the first roller module 5 and the second roller 8 of the second roller module 6 to rotate in opposite directions, and then the material is conveyed to the transfer mechanism 3. In this embodiment, by driving the first roller 7 of the first roller module 5 to rotate forward and driving the second roller 8 of the second roller module 6 to rotate forward, the material in the transfer mechanism 3 is transferred to the output of the second conveying mechanism 2.

[0040] When the material enters the transfer mechanism 3 from the second conveying mechanism 2, the present utility model drives the first roller 7 of the first roller module 5 and the second roller 8 of the second roller module 6 to rotate in opposite directions, and then the material is conveyed to the transfer mechanism 3. The present utility model drives the first roller 7 of the first roller module 5 to rotate reversely and drives the second roller 8 of the second roller module 6 to rotate reversely to transfer the material in the transfer mechanism 3 to the output of the first conveying mechanism 1.

[0041] Embodiment Two

[0042] The difference between this embodiment and the previous embodiment is only that: the transfer device of this embodiment further includes a third conveying mechanism, which is docked with the transfer mechanism and is disposed opposite to the second conveying mechanism. The first conveying mechanism serves as the input end of the material, and the second conveying mechanism and the third conveying mechanism respectively serve as the output ends of the material. When the material enters the transfer mechanism from the first conveying mechanism 1, in this embodiment, by driving the first roller 7 of the first roller module and the second roller 8 of the second roller module to rotate in opposite directions, the material is conveyed to the transfer mechanism.

[0043] The first conveying mechanism of this embodiment serves as the input end of the material. As Figure 5 shown, by controlling the first roller 7.1 installed with a leftward inclination on the first roller 7 to rotate forward and controlling the second roller 8.1 installed with a rightward inclination on the second roller 8 to rotate forward, the material in the transfer mechanism is transferred to the second conveying mechanism. As Figure 6 shown, by controlling the first roller 7.1 installed with a leftward inclination on the first roller 7 to rotate reversely and controlling the second roller 8.1 installed with a rightward inclination on the second roller 8 to rotate reversely, the material in the transfer mechanism is transferred to the third conveying mechanism.

[0044] Other structures of this embodiment are the same as those of Embodiment One.

[0045] The above embodiments are the preferred embodiments of the present utility model, but the embodiments of the present utility model are not limited to the above embodiments. Any other changes, modifications, substitutions, combinations, and simplifications made without departing from the spirit and principle of the present utility model shall be equivalent replacement methods and are all included in the protection scope of the present utility model.

Claims

1. A transfer device with angle rollers, characterized in that: It includes a first conveying mechanism, a second conveying mechanism and a transfer mechanism; the transfer mechanism is connected to the first conveying mechanism and the second conveying mechanism respectively, and the first conveying mechanism and the second conveying mechanism are arranged perpendicular to each other; The transfer mechanism includes a frame, a plurality of first roller modules, a plurality of second roller modules, a first drive assembly and a second drive assembly; the first roller module includes a plurality of first rollers, each of which is provided with a first roller installed obliquely to the left; the second roller module includes a plurality of second rollers, each of which is provided with a second roller installed obliquely to the right; the first roller modules and the second roller modules are respectively installed on the frame alternately through bearings; During operation, after the material transported by the first conveying mechanism or the material transported by the second conveying mechanism enters the transfer mechanism, the first drive component is connected to a plurality of first roller modules to drive a plurality of first roller modules to rotate, and the second drive component is connected to a plurality of second roller modules to drive a plurality of second roller modules to rotate in the opposite direction to the first roller module, thereby transferring the material transported by the first conveying mechanism or the second conveying mechanism to the transfer mechanism; the first roller module and the second roller module are driven to rotate in the same direction, thereby transferring the material of the transfer mechanism to the second conveying mechanism or the first conveying mechanism.

2. The transfer device with angle rollers according to claim 1, characterized in that: The first roller also includes a first roller frame, and a plurality of first rollers are installed along the circumference of the first roller frame and tilted toward the left.

3. The transfer device with angle rollers according to claim 1, characterized in that: The second roller also includes a second roller frame, and a plurality of second rollers are installed along the circumference of the second roller frame and tilted toward the right.

4. The transfer device with angle rollers according to claim 1, characterized in that: The first roller module also includes a first rotating shaft and a first spacer sleeve; the first rotating shaft is inserted into the first spacer sleeve, and both ends of the first rotating shaft are installed on the frame through bearings; a plurality of first rollers are installed on the first spacer sleeve at intervals.

5. The transfer device with angle rollers according to claim 4, characterized in that: The first driving assembly includes a first driving roller assembly, a first multi-V belt and a plurality of first multi-V belt pulleys; the first multi-V belt pulley is connected to the first rotating shaft, and adjacent first multi-V belt pulleys are connected by the first multi-V belt; the first driving roller assembly is arranged on the frame and is connected to one of the first multi-V belt pulleys by the first multi-V belt, so as to drive the plurality of first roller modules to rotate.

6. The transfer device with angle rollers according to claim 5, characterized in that: The first driving roller assembly includes a first electric roller and a first electric roller driving card; the first electric roller is arranged on a frame and connected to one of the first multi-V belt pulleys through a first multi-V belt, and the first electric roller driving card is connected to the first electric roller to drive the first electric roller to rotate.

7. The transfer device with angle rollers according to claim 1, characterized in that: The second roller module also includes a second rotating shaft and a second spacer sleeve; the second rotating shaft is inserted into the second spacer sleeve, and both ends of the second rotating shaft are installed on the frame through bearings; a plurality of second rollers are installed on the second spacer sleeve at intervals.

8. The transfer device with angle rollers according to claim 7, characterized in that: The second driving assembly includes a second driving roller assembly, a second poly-V belt and a plurality of second poly-V belt pulleys; the second poly-V belt pulley is connected to the second rotating shaft, and adjacent second poly-V belt pulleys are connected by the second poly-V belt; the second driving roller assembly is arranged on the frame and is connected to one of the second poly-V belt pulleys by the second poly-V belt to drive the plurality of second roller modules to rotate.

9. The transfer device with angle rollers according to claim 8, characterized in that: The second driving roller assembly includes a second electric roller and a second electric roller driving card; the second electric roller is arranged on the frame and connected to one of the second multi-V belt wheels through a second multi-V belt, and the second electric roller driving card is connected to the second electric roller to drive the second electric roller to rotate.

10. The transfer device with angle rollers according to claim 1, characterized in that: The transfer device also includes a third conveying mechanism; the third conveying mechanism is connected to the transfer mechanism and is arranged opposite to the second conveying mechanism; the first conveying mechanism serves as the input end of the material, and the second conveying mechanism and the third conveying mechanism serve as the output ends of the material respectively.