Lubricating device of tire dynamic balance uniformity compound machine
By designing a lubrication device of tire dynamic balance uniformity composite machine combining brush lifting cylinder and lubricating fluid storage barrel, the problem of uneven lubrication effect in the prior art is solved, and more efficient lubrication effect and authenticity of detection data are achieved.
Patent Information
- Application Number
- CN202422341614.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-25
- Publication Date
- 2025-06-17
- Estimated Expiration
- 2034-09-25
AI Technical Summary
The lubrication device of the existing tire dynamic balance uniformity composite machine has uneven lubrication effect, resulting in distortion of the tire dynamic balance uniformity detection data.
A lubrication device of tire dynamic balance uniformity composite machine is designed, using a combination structure of a brush lifting cylinder and a lubricating liquid storage barrel. After use, the lubricating brush falls back into the lubricating liquid storage barrel to soak it to ensure that the lubricating liquid fully immerse the brush, and the lubricating liquid is timely replenished through the transparent lubricating liquid position detection window.
It effectively improves the lubrication quality of the tire toe and ensures the authenticity and accuracy of the tire dynamic balance uniformity detection data.
Smart Images

Figure CN222992646U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of tire dynamic balance and uniformity detection equipment, and more specifically to a lubrication device for a tire dynamic balance and uniformity compound machine. Background Art
[0002] As is well known, a tire dynamic balance and uniformity compound machine is divided into three parts, namely a lubrication device, a detection device, and a printing device. The lubrication device is mainly used to apply lubricating fluid to the toe part of the tire, so that the contact and fitting degree between the toe part of the tire and the rim of the detection part is closer. If the lubrication of the toe part of the tire is uneven, the rim cannot be fully inserted, resulting in distortion of the detection data of the tire dynamic balance and uniformity, and the actual detection data of the tire cannot be truly reflected. The existing lubrication device uses an electric pump to extract lubricating fluid and drip it on the brush, resulting in poor lubrication effect. Summary of the Invention
[0003] In order to overcome the deficiencies of the prior art, the utility model provides a lubrication device for a tire dynamic balance and uniformity compound machine, which can effectively improve the lubrication quality.
[0004] The technical solution adopted by the utility model to solve its technical problems is: a lubrication device for a tire dynamic balance and uniformity compound machine, which is provided with a frame. A tire-supporting lifting cylinder is vertically installed on the frame through a horizontal slide rail. The cylinder rod of the tire-supporting lifting cylinder is connected to a vertically arranged tire-supporting rotating drum through a connecting mechanism. The lower part of the tire-supporting rotating drum is connected to a horizontally arranged tire-supporting advancing and retreating cylinder. The feature is that a brush lifting cylinder is vertically installed on the frame. A lubricating brush is fixed on the telescopic rod at the upper part of the brush lifting cylinder. A lubricating fluid storage barrel is installed on the frame below the lubricating brush. A brush immersion barrel is fixed in the lubricating fluid storage barrel directly below the lubricating brush. A guiding groove is processed vertically on the barrel wall of the brush immersion barrel. The lubricating brush is in sliding fit with the guiding groove. A lubricating fluid equal-position barrel communicated with the inner cavity of the lubricating fluid storage barrel is installed on the outer wall of the lubricating fluid storage barrel. A transparent lubricating fluid position detection window is installed on one side of the lubricating fluid equal-position barrel.
[0005] The beneficial effect of the utility model is that the liquid level of the lubricating fluid storage barrel can be observed through the detection window on the lubricating fluid equal-position barrel and the lubricating fluid can be replenished in time. The brush is immersed in the lubricating barrel, so that the lubrication is more sufficient, ensuring that the lubricating liquid level reaches an ideal lubrication effect. Brief Description of the Drawings
[0006] The following further illustrates the utility model with reference to the drawings and embodiments.
[0007] Figure 1 Structural schematic diagram of the utility model.
[0008] In the figure, 1. lubricating fluid position detection window, 2. lubricating fluid equal-position barrel, 3. lubricating fluid storage barrel, 4. brush dipping barrel, 5. tire-supporting rotating drum, 6. tire-supporting lifting cylinder, 7. tire-supporting advancing and retracting cylinder, 8. lubricating brush, 9. brush lifting cylinder, 10. frame. Detailed implementation mode
[0009] In the figure, the utility model is provided with a frame 10. A tire-supporting lifting cylinder 6 is vertically installed on the frame 10 through a horizontal slide rail. The cylinder rod of the tire-supporting lifting cylinder 6 is connected to a vertically arranged tire-supporting rotating drum 5 through a connecting mechanism. The lower part of the tire-supporting rotating drum 5 is connected to a horizontally arranged tire-supporting advancing and retracting cylinder 7. A brush lifting cylinder 9 is vertically installed on the frame 10. A lubricating brush 8 is fixed on the telescopic rod at the upper part of the brush lifting cylinder 9. A lubricating fluid storage barrel 3 is installed on the frame 10 below the lubricating brush 8. A brush dipping barrel 4 is fixed in the lubricating fluid storage barrel 3 directly below the lubricating brush 8. Guide grooves are processed vertically on the barrel wall of the brush dipping barrel 4. The lubricating brush 8 is in sliding fit with the guide grooves. A lubricating fluid equal-position barrel 2 communicating with its inner cavity is installed on the outer wall of the lubricating fluid storage barrel 3. A transparent lubricating fluid position detection window 1 is installed on one side of the lubricating fluid equal-position barrel 2.
[0010] After the tire enters the platform, the tire-supporting lifting cylinder 6 drives the tire-supporting rotating drum 5 to rise, and the brush lifting cylinder 9 drives the lubricating brush 8 to rise from the brush dipping barrel 4 at the same time. The tire-supporting advancing and retracting cylinder 7 drives the tire-supporting rotating drum 5 to expand outward along the horizontal slide rail to support the tire. The tire-supporting rotating drum 5 rotates to drive the tire to rotate. While rotating, the lubricating fluid on the lubricating brush 8 lubricates the toe part of the tire. Each time a cycle action is completed, driven by the brush lifting cylinder 9, the lubricating brush 8 falls back into the brush dipping barrel 4 immersed in the lubricating fluid storage barrel 3. The lubricating fluid in the lubricating fluid storage barrel 3 can enter the barrel cavity through the guide grooves on the lubricating fluid storage barrel 3 to infiltrate the lubricating brush 8. The liquid level of the lubricating fluid in the lubricating fluid storage barrel 3 can be observed through the lubricating fluid position detection window 1 on the lubricating fluid equal-position barrel 2, and the lubricating fluid can be replenished into the lubricating fluid storage barrel 3 in time through the barrel mouth of the lubricating fluid equal-position barrel 2 to ensure that the lubricating liquid level reaches an ideal lubrication effect.
Claims
1. A tire dynamic balancing uniformity compound machine lubrication device, comprising a frame, on which a tire support lifting cylinder is vertically mounted via a horizontal slide rail, the cylinder rod of the tire support lifting cylinder is connected to a vertically arranged tire support rotating drum via a connecting mechanism, and the lower part of the tire support rotating drum is connected to a horizontally arranged tire support advancing and retreating cylinder, wherein: A brush lifting cylinder is vertically installed on the frame, a lubricating brush is fixed on the telescopic rod on the upper part of the brush lifting cylinder, a lubricating liquid storage barrel is installed on the frame below the lubricating brush, a brush immersion cylinder is fixed in the lubricating liquid storage barrel just below the lubricating brush, a guide groove is processed vertically on the barrel wall of the brush immersion cylinder, the lubricating brush slides in the guide groove, a lubricating liquid isoposition barrel connected with its inner cavity is installed on the outer wall of the lubricating liquid storage barrel, and a transparent lubricating liquid position detection window is installed on one side of the lubricating liquid isoposition barrel.