The Design of Disc Brake for Mine Hoist in Civil Engineering

Author:

Zhang Hai Tao1,Dai Ying Jun1,Jia Yu Jing1,Cheng Guang Zhen1

Affiliation:

1. Huzhou Teachers College

Abstract

This article will describe the research status and the features of control system of the disc brakes of mine hoist. The disc brakes consist of body, outer cylinder, cylinder, piston, ring, disc springs, plunger, gate disk and other components. The disc brakes use the pre-load of disc springs to force the piston to move towards the brake disc, push the brake pads out, then the brake pads and drum brake disc contact and resulting in positive pressure, then the formation of friction produce a braking torque. When the brake system loose pads, the cylinder is filled with the pressure oil, which make the piston compresses the disc springs, and promote the brake pads to move back and then left brake disc, remove the braking force. The hydraulic circuit of the braking system chooses two-way parallel oil and four oil cylinder brake. A slip road set up a one-way throttle, making the slip road brake slightly delayed, which will achieve two stage braking and make work more stable. This disc brake is normally closed, which means when the hoist does not work, the brake is in the state of braking to prevent the occurrence of accidents. This brake is safe, reliable and sensitive in action. The materials of brake pads is rigid asbestos plastic, which have stable friction coefficient, good wear resistance, is not sensitive to the aqueous medium and salt spray,it has flexible installation location, and it is easy to use, adjust and maintain.

Publisher

Trans Tech Publications, Ltd.

Subject

General Engineering

Reference8 articles.

1. R.F. Huang: Mechanical Research & Application Vols. 114 (2009) NO. 1, pp.125-126.

2. C. Zhang: Mechanical Principle (China Machinery Industry Press, China 2011 (in Chinese).

3. L.G. Pu.: Mechanical Design (Higher Education Press, China 2006) (in Chinese).

4. B.J. Qiu, Q. Feng and T. Li: Coal Mine Machinery Vols. 32 (2011) NO. 7, pp.7-9 (in Chinese).

5. Y.J. Jia and G.Z. Cheng: Hydraulic and pneumatic, Vols. 33 (2009) NO. 9, pp.4-6 (in Chinese).

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