Universal joint device applied to cleaning of water quenching alloy chute
Through the design of the universal joint device, the problem of unstable movement of the water-quench alloy chute cleaning tool is solved, and the stable and accurate movement of the tool is achieved, which improves cleaning efficiency and reduces safety risks.
Patent Information
- Application Number
- CN202422207668.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-10
- Publication Date
- 2025-07-22
- Estimated Expiration
- 2034-09-10
AI Technical Summary
The movement direction and distance of the water-quenched alloy chute cleaning tool are difficult to control, resulting in unstable cleaning and posing a safety risk.
A universal joint device is designed, including a base, bearing seat and spindle structure. The multi-directional movement of the tool is achieved through bearing connections, and the guide groove and gap design is combined to achieve stable adjustment of the tool.
The stable and accurate movement of the water-quench alloy chute cleaning tool is achieved, which improves cleaning efficiency and reduces safety risks.
Smart Images

Figure CN223136758U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to an auxiliary device for chute cleaning, specifically a universal joint device applied to the cleaning of water-quenched alloy chutes. Background Technique
[0002] During the production process of water-quenched alloy, it is necessary to slowly introduce the high-temperature melt of water-quenched alloy into the fixed chute through a ladle. A high-pressure water nozzle is installed below the end of the chute. When the high-temperature melt of water-quenched alloy flows through the chute into the area of the high-pressure water nozzle, the high-pressure water breaks up the water-quenched alloy melt and then enters the lower water tank. However, during this process, the high-temperature melt at the end of the chute is prone to adhesion and needs to be cleaned in time. If the cleaning is not timely, the adhesion will increase and falling into the lower water tank will cause a blasting phenomenon. Due to the safety risk, when cleaning the adhesion of the chute, the operator needs to stand far away from the chute and use tools such as long wooden sticks to clean the adhesion of the chute. Because the cleaning tool is long, it is difficult for the operator to control the moving direction and distance of the tool. Therefore, this device is specifically designed to solve this problem. Content of the Utility Model
[0003] In view of the problems existing in the above background technique, the utility model discloses a universal joint device applied to the cleaning of water-quenched alloy chutes to solve the problems of adhesion of water-quenched alloy chutes and difficult control of the moving direction and distance of the cleaning tool.
[0004] To achieve the above object, the utility model adopts the following technical scheme:
[0005] A universal joint device applied to the cleaning of water-quenched alloy chutes includes a base. A bearing seat B is fixed on the base. A bearing C is installed in the bearing seat B. A vertical main shaft B is fixedly connected to the bearing C. The main shaft B is rotationally connected to the bearing seat B through the bearing C. A bearing seat A is fixed on the top of the main shaft B. A main shaft A is horizontally penetrated inside the bearing seat A. Both ends of the main shaft A are sleeved with a bearing A and a bearing B respectively. The bearing A and the bearing B are respectively fixed to the bearing seat A through a gland A and a gland B. The main shaft A is rotationally connected to the bearing seat A through the bearing A and the bearing B. A vertical main shaft C is fixed in the middle of the main shaft A. A guide groove is fixed on the top of the main shaft C. A notch for the main shaft C to move is also opened in the middle of the bearing seat A.
[0006] Advantages of the Utility Model:
[0007] 1. It is applicable to the position adjustment of the cleaning tool for the adhesion of water-quenched alloy chutes, realizes the up, down, left, and right movement of the cleaning tool for water-quenched alloy chutes, and at the same time plays a supporting role for the cleaning tool of the chute, realizing the stable, accurate, and fast cleaning of the adhesion of water-quenched alloy chutes, and can provide a wide range of applications in the cleaning of adhesion of similar chutes;
[0008] 2. The problem of difficult control of the moving direction and distance of the cleaning tool for the adhered material on the water-quenched alloy chute is successfully solved, providing good guarantee for the cleaning of the adhered material on the water-quenched alloy chute and greatly improving the cleaning efficiency of the chute. BRIEF DESCRIPTION OF THE DRAWINGS
[0009] Figure 1 It is a schematic structural view of the present utility model.
[0010] In the figure, 1 - guiding groove, 2 - bearing seat A, 3 - gland A, 4 - main shaft A, 5 - bearing A, 6 - main shaft B, 7 - main shaft C, 8 - gland B, 9 - bearing B, 10 - bearing seat B, 11 - bearing C, 12 - base. DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENT
[0011] The present utility model will be further explained below with reference to the drawings.
[0012] As Figure 1 shown, a universal joint device applied to the cleaning of the adhered material on the water-quenched alloy chute includes a base, on which a bearing seat B is fixed. A bearing C is installed in the bearing seat B, and a vertical main shaft B is fixedly connected to the bearing C. The main shaft B is rotatably connected to the bearing seat B through the bearing C; a bearing seat A is fixed on the top of the main shaft B, and a main shaft A is horizontally penetrated through the interior of the bearing seat A. Both ends of the main shaft A are sleeved with a bearing A and a bearing B, and the bearing A and the bearing B are respectively fixed to the bearing seat A through a gland A and a gland B. The main shaft A is rotatably connected to the bearing seat A through the bearing A and the bearing B; a vertical main shaft C is fixed in the middle of the main shaft A, and a guiding groove is fixed on the top of the main shaft C; a notch for the movement of the main shaft C is also formed in the middle of the bearing seat A.
[0013] During the cleaning process of the adhered material on the water-quenched alloy chute, first place the cleaning tool into the guiding groove 1. When the cleaning tool rotates back and forth in the guiding groove 1, the main shaft C drives the main shaft A to rotate around the axis of the main shaft A; when the cleaning tool rotates left and right in the guiding groove 1, the main shaft C drives the main shaft B to rotate around the axis of the main shaft B. The entire universal joint rotating device is fixed on the base, realizing that the cleaning tool for the chute can move forward, backward, left and right easily, and the adhered material can be cleaned stably, accurately and quickly.
Claims
1. A universal joint device applied to the cleaning of water-quenched alloy chutes, characterized in that, It includes a base, on which a bearing housing B is fixed. A bearing C is installed inside the bearing housing B. A vertical main shaft B is fixedly connected to the bearing C, and the main shaft B is rotatably connected to the bearing housing B through the bearing C. At the top of the main shaft B, a bearing housing A is fixed. A main shaft A is horizontally penetrated inside the bearing housing A. Both ends of the main shaft A are sleeved with a bearing A and a bearing B. The bearing A and the bearing B are respectively fixed to the bearing housing A through gland A and gland B, and the main shaft A is rotatably connected to the bearing housing A through the bearing A and the bearing B. A vertical main shaft C is fixed in the middle of the main shaft A, and a guide groove is fixed at the top of the main shaft C. A notch for the main shaft C to move is also formed in the middle of the bearing housing A.