Optimization of shearer sliding boots by plasma cladding with Cr4MnTi

Liu Hongtao , Wang Luping , Ge Shirong , Cao Shoufan , Jin Jing , Gao Jiping
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引用次数: 3

Abstract

Severe production conditions in coal mines cause damage and failure problems with the oriented sliding boots of the mechanical shearer. Wear has been an especially vexing problem. Plasma cladding methods were used to study optimized sliding boot design. By cladding the substrate steel the surface may be made of a material more resistant to wear. The iron based alloy Cr4MnTi was coated onto a modified 45 steel matrix material in these tests. The results show that the alloy cladding layer is high strength, has high hardness, and is highly resistant to wear. After hardening and tempering, 45 steel substrate has great tenacity so the combined structure meets the performance requirements for the construction of shearer sliding boots.

等离子熔覆Cr4MnTi优化采煤机滑靴
煤矿恶劣的生产条件造成了机械采煤机定向滑靴的损坏和失效问题。磨损一直是一个特别令人烦恼的问题。采用等离子熔覆方法研究滑靴的优化设计。通过包覆基体钢,表面可以由更耐磨损的材料制成。在这些试验中,铁基合金Cr4MnTi被涂覆在改性45钢基体材料上。结果表明:合金熔覆层具有高强度、高硬度和高耐磨性。45钢基材经淬火回火后韧性大,组合结构满足采煤机滑靴构造的性能要求。
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