Affiliation:
1. School of Mechanical and Electrical Engineering, China University of Mining and Technology, Xuzhou 221116, China
2. Department of Mechanical Engineering, University of Washington, Seattle 98195, United States
Abstract
Background:
The brake is an important safety protection device for mine hoists, in which
the performance of the brake shoe affects directly the safe operation of the hoist system. In order to
solve problems such as high wear rate and unstable friction coefficient of brake shoe under high temperature,
this paper indicated that adding magnetic powder to the composite material of traditional
mine hoist’s brake shoe will be a creative and effective approach to improve its properties.
Methods:
Based on relevant China patents of the authors, several new formulas of brake shoe material
were designed in the presence of Nano-Fe3O4 and Nd-Fe-B, and the methods of both preparation and
performance testing of the magnetic brake shoes were introduced. The experiment of formula design
was carried out by uniform prescription design, and the friction coefficient and wear rate of each kind
of brake shoes made through different formulas were measured. Furthermore, the formula was optimized
by application of fuzzy comprehensive evaluation method and analytic hierarchy process.
Results:
Compared with ordinary formulas, the optimized formula is higher totally and changes more
steadily as well. Its wear rate is far lower than the national standard. Namely, its comprehensive properties
are better. Few relevant patents to the topic have been reviewed and cited.
Conclusion:
This paper proved that it is practically valuable and feasible to improve the properties of
hoist brake shoes by adding magnetic powder to its composite material.
Funder
Fundamental Research Funds for the Central Universities
National Natural Science Foundation of China
Publisher
Bentham Science Publishers Ltd.
Subject
General Engineering,Condensed Matter Physics,General Materials Science
Reference28 articles.
1. Bao J.S.; Yin Y.; Lu Y.H.; Hu D.Y.; Lu L.J.; A cusp catastrophe model for the friction catastrophe of mine brake material in continuous repeated brakings. P I Mech Eng J-. J Eng 2013,227(10),1150-1156
2. Bao J.S.; Zhu Z.C.; Yin Y.; Chen G.A.; Influence of initial braking velocity and braking frequency on tribological performance of non-asbestos brake shoe. Ind Lubr Tribol 2009,61(6),332-338
3. Bao J.S.; Zhu Z.C.; Tong M.M.; Yin Y.; Peng Y.X.; Influence of braking pressure on tribological performance of non-asbestos brake shoe for mine hoist during emergency braking. Ind Lubr Tribol 2012,64(4),230-236
4. Chu G.C.; Ruan H.D.; Zhao H.; A preparation method of mine hoist brake shoes China Patent CN2005100174061, 2005
5. Bao J.S.; Yin Y.; Hu D.Y.; Liu J.G.; Liu T.G.; Liu S.J.; Liu Y.; Formulation and manufacturing method of nano superparamagnetic brake shoe for mine hoist China Patent CN2014101838497, 2014
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