Conveying track integration device
By introducing a material conveying mechanism and a lifting mechanism into the conveying track device, the materials of multiple discharge layers are stored and transferred sequentially, solving the problem of low transmission efficiency, improving material conveying efficiency and enhancing applicability.
Patent Information
- Application Number
- CN202421839013.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-30
- Publication Date
- 2025-07-08
- Estimated Expiration
- 2034-07-30
AI Technical Summary
The existing conveying track devices have low material transfer efficiency and cannot meet the requirements of efficient material transfer and transportation.
A conveying track integration device is designed, including a material conveying mechanism and a lifting mechanism. The material discharge unit is equipped with a plurality of discharge layers. The material is lifted to the conveying position and is transmitted by the conveying component, so as to realize the simultaneous storage and transmission of multiple materials.
It greatly improves the efficiency of material transfer and transportation, realizes the simultaneous storage and sequential transmission of multiple materials, adapts to materials of different widths, and enhances the scope of application.
Smart Images

Figure CN223073328U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the technical field of material transportation devices, and particularly to a conveyor track integration device. Background Art
[0002] Existing conveyor track devices generally include a mounting frame, a plurality of driving wheels mounted on the mounting frame, and a driving belt drivingly connected between the plurality of driving wheels. There are two driving belts, and the topmost regions of the two driving belts form a support region for placing materials. The materials are conveyed away as the driving belts operate. At the top of the mounting frame, a placing frame for placing materials is provided corresponding to the support region. The placing frame is fixed relative to the mounting frame, and the placing frame is for single-layer material placement, that is, only one material can be placed on one placing member. The material conveying efficiency is relatively low and can no longer meet the increasingly high requirements for material conveying and transportation. Based on this, it is necessary to improve the structure of the existing conveyor track device to solve the above problems. Summary of the Invention
[0003] In view of this, this application provides a conveyor track integration device that can effectively solve the above problems.
[0004] This application provides a conveyor track integration device, including a material conveying mechanism and a lifting mechanism. The material conveying mechanism includes a workbench, a feeding unit, and a conveying component mounted on the workbench. The conveying component has a conveying position. The feeding unit is provided with a plurality of feeding layers. The lifting mechanism is used to lift the feeding unit so that the materials located on each feeding layer can be lifted to the conveying position and conveyed away by the conveying component.
[0005] In one embodiment, the conveying component includes two spaced-apart mounting plates, a plurality of driving wheels provided on the inner side walls of the mounting plates, a conveyor belt drivingly connected between the plurality of driving wheels, and a driving motor for driving the driving wheels to rotate. The conveyor belt includes a conveying portion, and the two conveying portions together form a conveying platform for supporting the materials. The region of the conveying platform corresponding to the feeding unit forms the conveying position.
[0006] In one embodiment, the lifting mechanism includes a support base, a lifting motor connected to the bottom of the support base, a fixed rod connected to the top of the support base, a lead screw drivingly connected to the lifting motor, a lifting platform drivingly sleeved on the lead screw, a support platform for supporting the feeding unit, and a connecting rod connected between the lifting platform and the support platform. The top end of the fixed rod is fixedly connected to the workbench. The lifting platform is located below the workbench, and the support platform is located above the workbench. The connecting rod passes through the workbench. The rotation of the lead screw can drive the lifting platform to move up and down and drive the support platform to move up and down.
[0007] In one embodiment, the support platform is located between the two mounting plates.
[0008] In one embodiment, the feeding unit includes four feeding members arranged at square intervals. Each feeding member includes a support plate, a feeding substrate vertically connected to one side of the support plate, and a plurality of partition plates spaced apart on the inner sidewall of each feeding substrate. A feeding layer is formed between two adjacent partition plates in the vertical direction. The material is supported on the four partition plates in the lateral direction, and the support plate is fixedly supported on the support platform.
[0009] In one embodiment, a chute is provided at the top end of the inner wall of the mounting plate, and the feeding substrate is slidably disposed in the chute.
[0010] In one embodiment, the end of the partition plate away from the mounting plate is located between the inner wall surface of the mounting plate and the adjacent conveyor belt to support the material.
[0011] In one embodiment, each mounting plate is configured with a set of transmission systems. The transmission systems include the transmission wheels, the conveyor belts, and the drive motors, such that the two sets of transmission systems can operate independently.
[0012] In one embodiment, at least one of the two mounting plates is slidably disposed on the workbench, such that the distance between the two mounting plates is adjustable.
[0013] In one embodiment, a slide rail is provided on the workbench. The slide rail is arranged along the interval direction of the two mounting plates. A sliding connection portion is provided at the bottom of at least one mounting plate, and the sliding connection portion is slidably connected to the slide rail.
[0014] In summary, the present application provides a conveying track integration device, including a material conveying mechanism and a lifting mechanism. The material conveying mechanism includes a workbench, a feeding unit, and a conveying component installed on the workbench. The conveying component has a conveying position. The feeding unit is provided with a plurality of feeding layers. The lifting mechanism is used to lift the feeding unit such that the materials located on each feeding layer can be lifted to the conveying position and conveyed away by the conveying component. The feeding unit of the present application is provided with a plurality of feeding layers, and can place a plurality of materials at the same time to realize the storage of materials. By lifting the feeding unit by the lifting mechanism, the materials on each feeding layer can be sequentially placed on the conveying position and conveyed away by the conveying component, greatly improving the material conveying and transportation efficiency. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 is a perspective schematic view of the conveying track integration device of the present application at an angle.
[0016] Figure 2 isFigure 1 Schematic three-dimensional view of the transfer track integration device in
[0017] Figure 3 is Figure 1 Partial structural schematic view of the transfer track integration device in
[0018] Figure 4 is Figure 1 Schematic three-dimensional view of the material placing member in Detailed implementation manners
[0019] Before describing the embodiments in detail, it should be understood that the present application is not limited to the detailed structures or element arrangements described hereinafter or in the drawings of the present application. The present application can be implemented in other ways. Moreover, it should be understood that the wording and terms used herein are only for descriptive purposes and should not be construed restrictively. The terms "including", "comprising", "having" and the like used herein are intended to include the matters listed thereafter, their equivalents and other additional matters. In particular, when describing "a certain element", the present application does not limit the number of such elements to one, and multiple elements can also be included.
[0020] Please refer to Figures 1 to 4 As shown, the present application provides a transfer track integration device 10, which can be used to transfer and transport materials 11, and the materials 11 are, for example, electronic components and the like. The transfer track integration device 10 includes a material transfer mechanism and a lifting mechanism 12. The material transfer mechanism includes a workbench 14, a material placing unit 16 and a transfer assembly 18 installed on the workbench 14. The transfer assembly 18 has a transfer position 20. The material placing unit 16 is provided with a plurality of material placing layers 22. The lifting mechanism 12 is used to lift the material placing unit 16 so that the materials 11 located on each material placing layer 22 can be lifted and placed at the transfer position 20 and then transported away by the transfer assembly 18. The material placing unit 16 of the present application is provided with a plurality of material placing layers 22, and a plurality of materials 11 can be placed simultaneously, realizing simple storage of the materials 11. By lifting the material placing unit 16 by the lifting mechanism 12, the materials 11 on each material placing layer 22 can be sequentially placed at the transfer position 20 and then transported away by the transfer assembly 18, greatly improving the material transfer and transportation efficiency.
[0021] In the illustrated embodiment, the conveying assembly 18 includes two mounting plates 24 spaced apart and arranged in parallel on the workbench 14, a plurality of transmission wheels 26 arranged on the inner side wall of the mounting plate 24, a conveyor belt 28 connected between the plurality of transmission wheels 26, and a driving motor 30 for driving the transmission wheels 26 to rotate. A plurality of driving motors 30 may be provided, which can drive the plurality of transmission wheels 26 to rotate, so as to provide a greater driving force, thereby driving the conveyor belt 28 to operate and transport the conveying material 11. The conveyor belt 28 includes a conveying portion 32, which is located at the top of the conveying assembly 18. The two conveying portions 32 together form a conveying platform for supporting the material 11, and the conveying platform corresponds to the area of the material discharge unit 16 to form a conveying position 20.
[0022] Among them, the driving motor 30 can be installed and fixed on the workbench 14, and can also be installed and fixed on the outer wall of the mounting plate 24. The interval area between the two mounting plates 24 is the transmission mounting space 34. The outer wall of the mounting plate 24 is the side wall of the mounting plate 24 facing away from the transmission mounting space 34, and the inner wall of the mounting plate 24 is the side wall of the mounting plate 24 located on the side of the transmission mounting space 34.
[0023] In the present application, each mounting plate 24 is equipped with a transmission system, and the transmission system includes a plurality of transmission wheels 26, a conveyor belt 28 and a drive motor 30, so that the two transmission systems can operate independently, thereby increasing the mobility of the conveyor track integration device 10. In the illustrated embodiment, the mounting plate 24 is L-shaped, and the mounting plate 24 includes a first portion 36 and a second portion 38 that are vertically connected to each other. The second portions 38 of the two mounting plates 24 are arranged in opposite directions, and the two first portions 36 are arranged parallel to each other, and the axial direction of the transmission wheel 26 is perpendicular to the first portion 36. The transmission wheel 26 and part of the drive motor 30 are mounted on the first portion 36, and the second portion 38 is fixedly connected or slidably connected to the workbench 14. For example, a slide rail 40 is provided on the workbench 14 corresponding to one of the mounting plates 24, and the other mounting plate 24 is fixedly mounted on the workbench 14, for example, by screws. The slide rail 40 is arranged along the spacing direction of the two mounting plates 24. The bottom of the second part 38 corresponding to the slide rail 40 is provided with a sliding connection part (not shown) that slides with the slide rail 40. The sliding connection part is, for example, a slide groove, so that the mounting plate 24 can slide relative to the workbench 14 to adjust the spacing distance between the two mounting plates 24, so as to adjust the width of the discharge unit 16 and the conveying position 20, increase or decrease the spacing distance between the two conveyor belts 28, and thus adapt to a variety of materials 11 of different widths, increase the applicable scope of the conveying track integration device 10, and make it more functional. In other embodiments, it can also be arranged that both mounting plates 24 can be slidably arranged on the workbench 14.
[0024] In the illustrated embodiment, the lifting mechanism 12 includes a support base 44, a lifting motor 46 connected to the bottom of the support base 44, a fixed rod 48 connected to the top of the support base 44, a lead screw 50 drivingly connected to the lifting motor 46, a lifting platform 52 sleeved on the lead screw 50 in a transmission manner, a support platform 54 for supporting the material discharging unit 16, and a connecting rod 56 connected between the lifting platform 52 and the support platform 54. The bottom end of the fixed rod 48 is fixedly connected to the support base 44, and the top end of the fixed rod 48 is fixedly connected to the bottom of the workbench 14. Among them, the support base 44 includes a top plate, two side plates fixedly connected to the bottom wall of the top plate and arranged at intervals, and a bottom plate fixedly connected between the bottom ends of the two side plates. The two side plates, the top plate and the bottom plate jointly enclose an enclosed space. For example, four fixed rods 48 are provided, and the four fixed rods 48 are respectively fixedly connected to the four corner parts of the top plate. The lifting motor 46 is fixedly arranged at the bottom of the bottom plate. The lifting motor 46 is provided with a driving shaft. Both the driving shaft and the lead screw 50 extend in the up and down directions. The driving shaft and the lead screw 50 are drivingly connected through a coupling 58. The coupling 58 is located in the enclosed space. When the lifting motor 46 operates, it drives the driving shaft to rotate. The rotation of the driving shaft drives the lead screw 50 to rotate through the coupling 58. The lead screw 50 penetrates upward through the top plate. The lifting platform 52 is located below the workbench 14 and between the four fixed rods 48. The support platform 54 is located above the workbench 14 and between the two mounting plates 24. The connecting rod 56 is movably penetrated through the workbench 14 in the up and down direction. The rotation of the lead screw 50 can drive the lifting platform 52 to move up and down and drive the support platform 54 to move up and down, and finally drive the material discharging unit 16 to move up and down. The support platform 54 and the connecting rod 56 complete the up and down movement between the two mounting plates 24, which will not affect the normal operation of the conveying assembly and will not occupy other spaces of the conveying track integrating device 10. The structure is compact and the space occupancy rate is reduced.
[0025] In the illustrated embodiment, the material discharging unit 16 includes four material discharging members 60 arranged at intervals in a square shape. Two material discharging members 60 are respectively arranged on the two mounting plates 24. Each material discharging member 60 includes a support plate 62, a material discharging substrate 64 vertically connected to the outer end of the support plate 62, and a plurality of partition plates 66 arranged at intervals on the inner side wall of the material discharging substrate 64. A material discharging layer 22 is formed between two adjacent partition plates 66 in the vertical direction. The material 11 is supported on the four partition plates 66 in the horizontal direction. The support plate 62 is fixedly supported on the support platform 54, for example, fixed by screws. At the top end of the inner wall of the central part of the mounting plate 24, a chute 68 with an open top end is provided. The material discharging substrate 64 is slidably arranged in the chute 68.
[0026] Further, one end of the partition plate 66 away from the mounting plate 24 is located between the inner wall surface of the mounting plate 24 and the adjacent conveyor belt 28 to support the material 11.
[0027] In this embodiment, three partition plates 66 are provided to form two material placing layers 22, and two materials 11 can be placed. In other embodiments, according to actual design requirements, the number of partition plates 66 can also be set to other values, and the present application does not limit this. For example, when the lifting mechanism 12 drives the material placing unit 16 to move downward for discharging materials, first drive the support platform 54 to move downward by a first preset distance, so that the materials 11 in the lowermost material placing layer 22 move downward and are supported on the two conveyor belts 28 and are transported away. Then drive the support platform 54 to move downward by a second preset distance, so that the materials 11 in the uppermost material placing layer 22 move downward and are supported on the two conveyor belts 28 and are transported away. Finally, drive the support platform 54 and the material placing unit 16 to move upward to reset, place new materials 11 in the material placing layer 22, and repeat the above operations.
[0028] In summary, the present application provides a conveying track integration device, including a material conveying mechanism and a lifting mechanism. The material conveying mechanism includes a workbench, a material placing unit, and a conveying component installed on the workbench. The conveying component has a conveying position. The material placing unit is provided with a plurality of material placing layers. The lifting mechanism is used to lift and lower the material placing unit so that the materials located in each material placing layer can be lifted to the conveying position and be conveyed away by the conveying component. The material placing unit of the present application is provided with a plurality of material placing layers, and multiple materials can be placed simultaneously to achieve the storage of materials. By lifting and lowering the material placing unit by the lifting mechanism, the materials in each material placing layer can be sequentially placed on the conveying position and be conveyed and transported away by the conveying component, greatly improving the material conveying and transporting efficiency.
[0029] The concepts described herein can be implemented in other forms without departing from their spirit and characteristics. The specific embodiments disclosed should be considered illustrative rather than restrictive. Therefore, the scope of the present application is determined by the appended claims, rather than by the previous descriptions. Any changes within the literal meaning and equivalent scope of the claims should fall within the scope of these claims.
Claims
1. A transfer track integration device, characterized in that, It includes a material conveying mechanism and a lifting mechanism. The material conveying mechanism includes a workbench, a feeding unit, and a conveying assembly installed on the workbench. The conveying assembly has a conveying position. The feeding unit is provided with a plurality of feeding layers. The lifting mechanism is used to lift the feeding unit so that the materials located on each feeding layer can be lifted to the conveying position and conveyed away by the conveying assembly.
2. The transfer track integration device according to claim 1, characterized in that, The conveying assembly includes two spaced-apart mounting plates, a plurality of driving wheels provided on the inner side walls of the mounting plates, a conveyor belt drivingly connected between the plurality of driving wheels, and a driving motor for driving the driving wheels to rotate. The conveyor belt includes a conveying portion. The two conveying portions together form a conveying platform for supporting the materials. The area of the conveying platform corresponding to the feeding unit forms the conveying position.
3. The transfer track integration device according to claim 2, characterized in that, The lifting mechanism includes a support base, a lifting motor connected to the bottom of the support base, a fixed rod connected to the top of the support base, a lead screw drivingly connected to the lifting motor, a lifting platform sleeved on the lead screw in a driving manner, a support platform for supporting the feeding unit, and a connecting rod connected between the lifting platform and the support platform. The top end of the fixed rod is fixedly connected to the workbench. The lifting platform is located below the workbench. The support platform is located above the workbench. The connecting rod passes through the workbench. The rotation of the lead screw can drive the lifting platform to move up and down and drive the support platform to move up and down.
4. The transfer track integration device according to claim 3, characterized in that The support platform is located between the two mounting plates.
5. The transfer track integration device according to claim 3, wherein The feeding unit includes four feeding members arranged at intervals in a square shape. Each feeding member includes a support plate, a feeding substrate vertically connected to one side of the support plate, and a plurality of partitions arranged at intervals on the inner side wall of each feeding substrate. The space between two adjacent partitions in the vertical direction forms the feeding layer. The materials are supported on the four partitions in the lateral direction. The support plate is fixedly supported on the support platform.
6. The transfer track integration device according to claim 5, characterized in that, A chute is provided at the top end of the inner wall of the mounting plate. The feeding substrate is slidably arranged in the chute.
7. The transfer track integration device according to claim 6, wherein, One end of the partition away from the mounting plate is located between the inner wall surface of the mounting plate and the adjacent conveyor belt to support the materials.
8. The transfer track integration device according to claim 2, characterized in that, Each mounting plate is configured with a set of transmission systems. The transmission systems include the driving wheels, the conveyor belt, and the driving motor, so that the two sets of transmission systems can operate independently.
9. The transfer track integration device according to claim 8, wherein, At least one of the two mounting plates is slidably arranged on the workbench, so that the distance between the two mounting plates can be adjusted.
10. The transfer track integration device according to claim 9, characterized in that, A slide rail is provided on the workbench. The slide rail is arranged along the interval direction of the two mounting plates. A sliding connection portion is provided at the bottom of at least one mounting plate. The sliding connection portion is slidably connected to the slide rail.