A material adjusting device of a feeder suitable for different materials

CN224603994UActive Publication Date: 2026-08-07DALIAN SANFENG PORT MACHINERY
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
DALIAN SANFENG PORT MACHINERY
Filing Date
2025-11-27
Publication Date
2026-08-07

AI Technical Summary

Technical Problem

如,只能满足单一物料,且多是固定的,不能适应长期运行中变化带来的调整

Benefits of technology

1、调料板一和调料板二可以独立旋转运动,或协同动作,适应不同物料的灵活调整。

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a kind of material adjusting device of feeder suitable for different materials. Including seasoning plate one component and seasoning plate two components, each seasoning plate component includes driving device, driving arm and pull rod etc. Seasoning plate one is installed on chute through support hinge point one, driving device one is fixed on chute, seasoning plate two is installed on chute through support hinge point two, and driving device two is fixed on chute. Seasoning plate one and seasoning plate two can independently rotate motion, do not affect each other, can also independently guide material, realize blanking point in the middle of belt conveyor, or collaborative action, realize the automatic control of adaptation to different materials, so that material finally falls in the middle of belt conveyor, reach not running off, safe operation.
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Description

Technical Field

[0001] This utility model relates to key equipment for bulk material conveying, and in particular to a feeder adjustment device that is adaptable to different materials. Background Technology

[0002] Feeders and material handling devices adapted to different materials are key equipment for bulk material conveying.

[0003] Since the conveyor belt has a fixed conveying capacity, when the feeder is transporting different materials, the feeder speed needs to be adjusted due to the different densities. This results in different material throwing angles, making it impossible to ensure that the material landing point is always in the middle of the conveyor belt receiving port. This causes the conveyor belt to deviate when changing materials, creating a safety hazard.

[0004] In existing technologies, when feeders and belt conveyors are arranged vertically, they are mostly used to transport one type of material, which cannot meet the needs of transporting multiple materials, thus presenting certain technical limitations. Currently, traditional feeder adjustment devices often face numerous challenges in the material conveying process. For example, they can only handle a single material, and are mostly fixed, unable to adapt to adjustments needed for changes during long-term operation. This can easily cause belt conveyor misalignment, resulting in equipment damage and reduced production efficiency; material spillage affects clean production and increases production costs, and may even cause fires, leading to production safety risks.

[0005] In conclusion, it is essential to research and develop a new type of feeder and material control device that can adapt to different materials. Utility Model Content

[0006] The present invention aims to improve the shortcomings and deficiencies of the above-mentioned technology and provide a feeder and adjusting device that can adapt to different materials. The feeder is not only scientifically and rationally designed and interlocked with the tipper operation to greatly improve safety, but also has the advantages of compact structure, low cost, safety and reliability, convenient use and simple maintenance.

[0007] The purpose of this utility model is achieved through the following technical solution: a feeding and seasoning device for a feeder adapted to different materials, comprising a seasoning plate assembly one and a seasoning plate assembly two. Seasoning plate assembly one includes a seasoning plate one, a driving device one, a driving arm one, and a pull rod one; seasoning plate assembly two includes a seasoning plate two, a driving device two, a driving arm two, and a pull rod two. Seasoning plate one is mounted on a chute via a support hinge point one. The driving device one is fixed to the chute. Seasoning plate one and driving device one are connected to pull rod one via the driving arm one, forming a linkage mechanism. Rotation of the output shaft of driving device one drives the driving arm one to rotate, thereby pulling pull rod one. Pull rod one drives seasoning plate one to rotate with the support hinge point one. The movement of seasoning plate two is similar to that of seasoning plate one. The second seasoning plate is mounted on the chute via a second supporting hinge point. The second drive device is fixed to the chute. The second seasoning plate and the second drive device are connected to the second pull rod via a second drive arm, forming a linkage mechanism. Rotation of the output shaft of the second drive device drives the second drive arm to rotate, thereby pulling the second pull rod. The second pull rod then drives the second seasoning plate to rotate with the second supporting hinge point. Furthermore, both the first and second seasoning plates have reinforcing ribs on one side to increase their rigidity and strength. Material moves from right to left in the chute under the transport of the feeder, falling onto the first seasoning plate. Guided by the first seasoning plate, the material falls onto the second seasoning plate, and finally into the receiving port of the conveyor belt. The first and second seasoning plates can rotate independently without affecting each other, or independently guide material flow, allowing the material to fall in the middle of the conveyor belt, or they can work together to achieve automated control adaptable to different materials, ensuring the material ultimately falls in the middle of the conveyor belt, preventing deviation and ensuring safe operation.

[0008] Compared with the prior art, the present invention has the following advantages: 1. Seasoning plate one and seasoning plate two can rotate independently or move in concert to adapt to the flexible adjustment of different materials.

[0009] 2. It achieves automated control, eliminating the need for frequent manual adjustments and greatly improving safety. Attached Figure Description

[0010] Figure 1 This is a structural schematic diagram of a specific embodiment of the present utility model; Figure 2 This is a structural diagram of the condiment board assembly; Figure 3 This is a structural diagram of the second component of the seasoning plate assembly.

[0011] In the diagram: 1. Seasoning plate one; 2. Drive device one; 3. Drive arm one; 4. Tie rod one; 5. Support hinge point one; 6. Seasoning plate two; 7. Drive device two; 8. Drive arm two; 9. Tie rod two; 10. Support hinge point two; 11. Chute; 12. Feeder; 13. Belt conveyor; 14. Reinforcing rib. Detailed Implementation

[0012] like Figure 1-3 As shown, a feeding and seasoning device for a feeder that can adapt to different materials includes a seasoning plate assembly one and a seasoning plate assembly two.

[0013] The seasoning plate assembly includes a seasoning plate 1, a drive device 3, a drive arm 4, and a pull rod 5. The seasoning plate 1 is mounted on the chute 11 via a support hinge point 2. The drive device 3 is fixed on the chute 11. The seasoning plate 1 and the drive device 3 are connected to the pull rod 5 via the drive arm 4 to form a linkage mechanism. The output shaft of the drive device 3 rotates, which drives the drive arm 4 to rotate, thereby pulling the pull rod 5. The pull rod 5 drives the seasoning plate 1 to rotate with the support hinge point 2.

[0014] The second seasoning plate assembly includes a second seasoning plate 6, a second drive device 8, a second drive arm 9, and a second pull rod 10. The movement of the second seasoning plate 6 is similar to that of the first seasoning plate 1. The second seasoning plate 6 is mounted on the chute 11 via a second support hinge point 7. The second drive device 8 is fixed to the chute 11. The second seasoning plate 1 and the second drive device 8 are connected to the second pull rod 10 via the second drive arm 9, forming a linkage mechanism. The rotation of the output shaft of the second drive device 8 drives the second drive arm 9 to rotate, thereby pulling the second pull rod 10. The second pull rod 10 drives the second seasoning plate 6 to rotate with the second support hinge point 7.

[0015] Reinforcing ribs 14 can be added to one side of seasoning plate 1 and seasoning plate 2 to increase the rigidity and strength of the seasoning plate.

[0016] Material is transported from right to left by feeder 12 and falls into chute 11, landing on adjusting plate 1. Guided by adjusting plate 1, the material falls onto adjusting plate 6, and finally into the receiving port of belt conveyor 13. Adjusting plates 1 and 6 can rotate independently without affecting each other, and can also independently guide material flow, ensuring the material falls in the middle of the belt conveyor. Alternatively, they can work together to achieve automated control adaptable to different materials, ensuring the material ultimately falls in the middle of belt conveyor 13 without deviation and for safe operation. All these components together constitute a feeder adjusting device adapted to different materials.

[0017] The above description is only a preferred embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. All equivalent substitutions or changes made by those skilled in the art within the scope of the technology disclosed in the present utility model, based on the technical solution and concept of the present utility model, should be covered within the protection scope of the present utility model.

Claims

1. A feeding and adjusting device for different materials, characterized in that, The system includes a seasoning plate assembly 1 and a seasoning plate assembly 2. Seasoning plate assembly 1 includes a seasoning plate 1, a driving device 1, a driving arm 1, and a pull rod 1. Seasoning plate 1 is mounted on a chute via a support hinge point 1. The driving device 1 is fixed on the chute. Seasoning plate 1 and driving device 1 are connected to pull rod 1 via driving arm 1 to form a linkage mechanism. Rotation of the output shaft of driving device 1 drives driving arm 1 to rotate, thereby pulling pull rod 1. Pull rod 1 causes seasoning plate 1 to rotate with support hinge point 1. Seasoning plate assembly 2 includes a seasoning plate 2, driving device 2, driving arm 2, and pull rod 2. It is mounted on a chute via support hinge point 2. Driving device 2 is fixed on the chute. Seasoning plate 2 and driving device 2 are connected to pull rod 2 via driving arm 2 to form a linkage mechanism. Rotation of the output shaft of driving device 2 drives driving arm 2 to rotate, thereby pulling pull rod 2. Pull rod 2 causes seasoning plate 2 to rotate with support hinge point 2.

2. The feeder and material control device adaptable to different materials according to claim 1, characterized in that, Both seasoning plates have reinforcing ribs on one side.