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Friction and Wear Characteristics of Microporous Interface Filled with Mixed Lubricants of M50 Steel at Different Loads

机译:微孔界面的摩擦和磨损特性填充M50钢混合润滑剂的不同载荷

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摘要

Improving the tribological performance of M50 steel under the conditions of wide load range is of great significance. In this study, the interfacial structure of surface micropores filled with Sn–Ag–Cu or Sn–Ag–Cu/whisker carbon nanotubes (whiskerCNT) of M50 material was prepared by laser additive manufacturing and high-temperature infiltration. From 2 to 22 N, the lubrication characteristics of Sn–Ag–Cu and whiskerCNT in surface micropores of M50 was investigated. Results indicate that Sn–Ag–Cu can precipitate to the worn surface and form a lubricating layer, which has a good lubricating effect. Moreover, the flow behavior of Sn–Ag–Cu on a worn surface can play the role of crack healing. At higher load, the strength of the lubricating film is enhanced by whiskerCNT, which renders the lubricating film not vulnerable to premature rupture.
机译:在宽负载范围内提高M50钢的摩擦学性能具有重要意义。在该研究中,通过激光添加剂制造和高温渗透来制备填充有Sn-Ag-Cu或Sn-Ag-Cu /晶须填充的Sn-Ag-Cu或Sn-Ag-Cu /晶须碳纳米管(Whiskercnt)的界面结构。研究了2至22 n,研究了Sn-Ag-Cu和Whiskercnt在M50的表面微孔中的润滑特性。结果表明,Sn-Ag-Cu可以沉淀到磨损的表面并形成润滑层,其具有良好的润滑效果。此外,磨损表面上的Sn-Ag-Cu的流动性能可以起到裂纹愈合的作用。在较高的载荷时,WHISKERNNT增强了润滑膜的强度,这使得润滑膜不易发生过早破裂。

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