一种高效均匀振动盘装置

By combining the induction rod with the infrared induction point, along with a polyurethane elastic buffer layer and a multi-stage vibrating component with adjustable guide rail height, the problem of uneven feeding of the vibratory feeder is solved, achieving efficient and uniform material conveying, reducing noise and the risk of corner chipping, and improving processing accuracy and efficiency.

CN224512409UActive Publication Date: 2026-07-17CHONGYI ZHANGYUAN TUNGSTEN

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
CHONGYI ZHANGYUAN TUNGSTEN
Filing Date
2025-08-01
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Existing vibratory feeders have uneven feeding, which can easily cause ball teeth to accumulate and chip off edges and corners. In addition, the feeding speed is uncontrollable, making them suitable for low-precision and low-efficiency roughing scenarios.

Method used

The material accumulation degree is dynamically monitored by using a combination of induction rods and infrared sensing points. Combined with a polyurethane elastic buffer layer and an adjustable horizontal guide rail height, the material is conveyed evenly through multi-stage vibration components.

Benefits of technology

It achieves uniform material feeding, reduces noise and the risk of corner chipping, ensures smooth and uniform feeding, and improves processing accuracy and efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

本实用新型涉及自动化送料技术领域,具体为一种高效均匀振动盘装置,主要包括:工作台、料仓、料仓下料口、料盘、水平导轨、调节部件、输料部件以及感应部件。本申请通过感应棒与红外感应点的配合可以动态监测物料堆积程度,进而保证了物料送料均匀,并且通过料盘内壁表面设置聚氨酯弹性缓冲层,可降低噪音与产品掉角风险,水平导轨的高度可调,确保送料时无卡滞现象,保证了物料均速并有序的送料。
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Claims

1. A high efficiency uniform vibrating tray device, characterized by, include: Workbench (18); The hopper (9) is located on the workbench (18); The material discharge port (8) is located at the bottom of the material hopper (9); The material tray (12) is located below the material outlet (8) of the hopper; A horizontal guide rail (5) is provided on the worktable (18); The adjustment component includes a first adjustment member and a second adjustment member. The first adjustment member is disposed at the lower end of the worktable (18) and is used to adjust the levelness of the worktable (18). The second adjustment member is disposed at the bottom of the horizontal guide rail (5) and is used to adjust the height of the horizontal guide rail (5). The material conveying component is located at the bottom of the hopper (9), the tray (12) and the horizontal guide rail (5) and is used to convey the material from the hopper (9) to the tray (12) and then from the tray (12) to the horizontal guide rail (5). A sensing component is disposed within the material tray (12) for adjusting the density of the material conveyed to the material tray (12) by the conveying component.

2. The high efficiency uniform vibrating tray device of claim 1, wherein, The first adjusting component includes a frame foot cup (1), which is located at the bottom of the workbench (18), and a frame level adjusting nut (2) is provided between the frame foot cup (1) and the workbench (18).

3. The high efficiency uniform vibratory bowl apparatus of claim 1, wherein, The second adjusting component includes a fixed base, which is fixed on the workbench (18). A movable plate is provided above the fixed base. A horizontal guide rail (5) is provided at the top of the movable plate. A height adjusting bolt (3) is fixed at the bottom of the movable plate. The bottom of the height adjusting bolt (3) passes through the fixed base.

4. The high efficiency uniform vibratory bowl apparatus of claim 1, wherein, The material conveying component includes a first vibrating element, a second vibrating element, and a third vibrating element. The first vibrating element is disposed at the bottom end of the hopper (9) and is used to convey the material in the hopper (9) to the tray (12). The second vibrating element is disposed at the bottom end of the tray (12) and is used to convey the material in the tray (12) to the horizontal guide rail (5). The third vibrating element is disposed at the bottom end of the horizontal guide rail (5) and is used to convey the material in the horizontal guide rail (5).

5. A high efficiency uniform vibrating tray device as claimed in claim 4, wherein, The first vibrating component includes a hopper-in-place vibrator (11), which is located at the bottom of the hopper (9). The bottom of the hopper (9) is provided with a hopper discharge port (8), which is located above the material tray (12). A hopper controller (16) is provided on the workbench (18).

6. The high efficiency uniform vibratory bowl apparatus of claim 4, wherein, The second vibrating component includes a built-in vibrator (13) in the material tray, which is located at the bottom of the material tray (12), and a circular vibration controller (15) is provided on the material hopper discharge port (8).

7. The high efficiency uniform vibratory bowl apparatus of claim 4, wherein, The third vibrating component includes a horizontal guide rail built-in vibrator (4), which is located at the bottom end of the horizontal guide rail (5), and a direct vibration controller (14) is provided on the hopper discharge port (8).

8. The high efficiency uniform vibratory bowl apparatus of claim 1, wherein, The sensing component includes a support rod (17), which is fixed on the worktable (18). A movable block is slidably arranged on the support rod (17), and a height adjustment bolt (10) is arranged on the movable block.

9. A high efficiency uniform vibratory bowl apparatus as described in claim 8, wherein, A horizontal rod is fixed on the movable block, and a sensing block is provided at the end of the horizontal rod away from the support rod (17). An infrared sensing point (7) is provided on the sensing block.

10. The high efficiency uniform vibratory bowl apparatus of claim 9, wherein, A sensing rod (6) is rotatably mounted on the sensing block. When the sensing rod (6) is vertically downward, the sensing rod (6) covers the infrared sensing point (7).