Transportation device with multiple material channels
By designing a multi-channel transport device, and utilizing the combination of main transport lines and branch transport lines and transfer mechanisms, the problem of multi-directional material diversion is solved, improving production efficiency and conveying stability, preventing material deviation, and making it suitable for various industrial scenarios.
Patent Information
- Application Number
- CN202520438841.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-13
- Publication Date
- 2026-02-06
- Estimated Expiration
- 2035-03-13
AI Technical Summary
Traditional conveying devices struggle to achieve multi-directional material diversion, resulting in low production efficiency. Furthermore, materials are prone to shifting or jamming during conveying, affecting stability and reliability.
Design a multi-channel conveying device, including a main conveying line and vertically arranged branch conveying lines. The device achieves efficient material diversion through a transfer mechanism, and uses cylinders and push plates to transfer materials to the corresponding branch conveying lines. The device also incorporates a guard plate design to prevent material deviation.
It achieves efficient material diversion, improves production efficiency, ensures the stability and accuracy of conveying, and has a simple structure that is easy to install and maintain.
Smart Images

Figure CN223878911U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to transportation line technical field especially a kind of multi-material lane transport device. BACKGROUND
[0002] In industrial production, material conveying device is widely used in material transfer and distribution on production line. The traditional conveying device usually adopts single conveying line, which is difficult to realize multi-directional shunting of materials, resulting in low production efficiency. In addition, the material in the conveying process in the prior art is prone to deviation or jam, which affects the stability and reliability of conveying. Therefore, a multi-material lane transport device capable of realizing multi-directional shunting and stable structure is urgently needed. SUMMARY
[0003] The technical problem to be solved by the utility model is to provide a multi-material lane transport device to realize efficient conveying and shunting of materials.
[0004] To solve the above technical problems, the technical scheme of the utility model is as follows: a multi-material lane transport device, comprising a main conveying line and a branch conveying line arranged perpendicularly to the main conveying line, a first branch conveying line is arranged at the end of the main conveying line, a plurality of second branch conveying lines are arranged on one side of the main conveying line along the conveying direction, the input end of the first branch conveying line is connected to the output end of the main conveying line, a transfer mechanism is arranged between the input end of the second branch conveying line and the main conveying line, the transfer mechanism comprises a support plate, a first cylinder arranged on the support plate and facing the second branch conveying line, a first push plate connected to the extension rod of the first cylinder, a second cylinder arranged on one side of the main conveying line and facing the support plate, and a second push plate connected to the extension rod of the second cylinder. The principle of the utility model is as follows: the material is conveyed forward through the main conveying line; when the material needs to be shunted to the first branch conveying line, the material directly enters the second conveying belt of the first branch conveying line from the output end of the main conveying line; when the material needs to be shunted to the second branch conveying line, the second cylinder is started, and the material is pushed from the main conveying line to the support plate through the second push plate; then, the first cylinder is started, and the material is pushed from the support plate into the third conveying belt of the second branch conveying line through the first push plate.
[0005] As an improvement, the main conveying line comprises a first conveying belt and a first driving mechanism for driving the first conveying belt, the first branch conveying line comprises a second conveying belt and a second driving mechanism for driving the second conveying belt, and the second branch conveying line comprises a third conveying belt and a third driving mechanism for driving the third conveying belt.
[0006] As an improvement, first guard plates are arranged on both sides of the first conveying belt, second guard plates are arranged on both sides of the second conveying belt, and third guard plates are arranged on both sides of the third conveying line.
[0007] As an improvement, the first conveyor belt is flush with a support plate, which is higher than the third conveyor belt.
[0008] As an improvement, the first guard plate on the side of the first conveyor belt close to the support plate is provided with a gap, and the second cylinder is aligned with the gap.
[0009] The beneficial effects brought by the present utility model compared with the prior art are:
[0010] Through the combination of the main transport line and the multiple branch transport lines, efficient material distribution is realized, and the production efficiency is improved; the design of the transfer mechanism ensures the stability and reliability of the material in the conveying process; the design of the guard plate effectively prevents material deviation and improves the conveying precision; the device has a simple structure, is easy to install and maintain, and is suitable for various industrial scenes. BRIEF DESCRIPTION OF DRAWINGS
[0011] Figure 1 The present utility model is a schematic diagram. DETAILED DESCRIPTION
[0012] The present utility model will be further described below in conjunction with the drawings of the specification.
[0013] As Figure 1As shown, a kind of multi-channel conveying device, including main conveying line 1 and the branch conveying line vertically arranged with main conveying line 1.The end of the main conveying line 1 is equipped with first branch conveying line 2, and the input end of the first branch conveying line 2 is connected with the output end of main conveying line 1.The side of the main conveying line 1 is equipped with several second branch conveying lines 3 along the direction of conveyance, and the second branch conveying line 3 is equipped with transfer mechanism 4 between input end and main conveying line 1.The transfer mechanism 4 includes support plate 41, first cylinder 42 being equipped on support plate 41 and being towards second branch conveying line 3, first push plate being connected with the telescopic rod of first cylinder 42, second cylinder 43 being equipped on the side of main conveying line 1 and being towards support plate 41 and second push plate being connected with the telescopic rod of second cylinder 43.The main conveying line 1 includes first conveying belt 11 and first drive mechanism driving first conveying belt 11, the first branch conveying line 2 includes second conveying belt 21 and second drive mechanism driving second conveying belt 21, and the second branch conveying line 3 includes third conveying belt 31 and third drive mechanism driving third conveying belt 31.The both sides of the first conveying belt 11 are equipped with first guard plate, the both sides of the second conveying belt 21 are equipped with second guard plate, and the both sides of the third conveying line are equipped with third guard plate.The first conveying belt 11 is flush with support plate 41, and the support plate 41 is higher than third conveying belt 31, and the first conveying belt 11 is higher than second conveying belt 21.The first guard plate of the side of the first conveying belt 11 close to support plate 41 is equipped with notch, and the second cylinder 43 is aligned with the notch.The side of the support plate 41 is equipped with baffle, and the baffle is arranged opposite to second push plate, and when second push plate pushes material 5 to support plate 41, baffle can prevent material 5 from falling due to inertia being too large.
[0014] The utility model principle: material is forwarded to main conveying line 1;When material needs to be shunted to first branch conveying line 2, material directly enters the second conveying belt 21 of first branch conveying line 2 from the output end of main conveying line 1;When material needs to be shunted to second branch conveying line 3, second cylinder 43 is started, and material is pushed to support plate 41 from main conveying line 1 by second push plate;Then, first cylinder 42 is started, and material is pushed into the third conveying belt 31 of second branch conveying line 3 from support plate 41 by first push plate.
Claims
1. A multi-channel conveying device, comprising a main conveying line and branch conveying lines arranged perpendicular to the main conveying line, characterized in that: The main transport line has a first branch transport line at its end, and a plurality of second branch transport lines are provided on one side of the main transport line along the transport direction. The input end of the first branch transport line is connected to the output end of the main transport line. A transfer mechanism is provided between the input end of the second branch transport line and the main transport line. The transfer mechanism includes a support plate, a first cylinder disposed on the support plate and facing the second branch transport line, a first push plate connected to the telescopic rod of the first cylinder, a second cylinder disposed on one side of the main transport line and facing the support plate, and a second push plate connected to the telescopic rod of the second cylinder.
2. The multi-channel conveying device according to claim 1, characterized in that: The main transport line includes a first conveyor belt and a first drive mechanism for driving the first conveyor belt; the first branch transport line includes a second conveyor belt and a second drive mechanism for driving the second conveyor belt; and the second branch transport line includes a third conveyor belt and a third drive mechanism for driving the third conveyor belt.
3. The multi-channel conveying device according to claim 2, characterized in that: The first conveyor belt has a first guard plate on both sides, the second conveyor belt has a second guard plate on both sides, and the third conveyor belt has a third guard plate on both sides.
4. The multi-channel conveying device according to claim 3, characterized in that: The first conveyor belt is at the same height as the support plate, and the support plate is higher than the third conveyor belt.
5. A multi-channel conveying device according to claim 4, characterized in that: The first guard plate on the first conveyor belt near the support plate has a notch, and the second cylinder is aligned with the notch.