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首页> 外文期刊>Materials Science and Engineering. A, Structural Materials: Properties, Microstructure and Processing >Ni-based alloy/submicron WS_2 self-lubricating composite coating synthesized by Nd:YAG laser cladding
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Ni-based alloy/submicron WS_2 self-lubricating composite coating synthesized by Nd:YAG laser cladding

机译:Nd:YAG激光熔覆合成Ni基合金/亚微米WS_2自润滑复合涂层

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Ni-based alloy matrix submicron WS_2 self-lubricant composite coatings were synthesized by Nd:YAG laser cladding in the present study. A novel high-energy ball milling method was adopted to encapsulate nano-Ni onto submicron WS_2 with an aim to prevent the mass loss of WS_2 during laser cladding process. Microstructure and phases of the laser-clad coatings were investigated to understand laser-cladding behaviors of two kinds of coating materials, i.e., Ni45-WS_2-CaF_2 and Ni60-WS_2 (nano-Ni-encapsulated). The bare submicron WS_2 and micron CaF_2 were hardly to compose into Ni45 matrix coatings even if increasing the weight percentage of both WS_2 and CaF_2 from 7.5 to 17.5%. Ni-based alloy matrix submicron WS_2 self-lubricant composite coatings were successfully synthesized through laser cladding of the Ni60-WS_2 (nano-Ni-encapsulated) coating, since the high-energy ball milling of nano-Ni onto submicron WS_2 significantly prevented the oxidization, reaction and vaporization of WS_2 and improved the interfacial compatibility between WS_2 and Ni60 matrix. The friction coefficient of the laser-clad Ni60-WS_2 (nano-Ni-encapsulated) coating was reduced to about 0.36 in comparison with that of the laser-clad Ni45-WS_2-CaF_2 and Ni60 coatings (about 0.5-0.6) as well as the wear resistance of the laser-clad Ni60-WS_2 (nano-Ni-encapsulated) was three times higher than that of the laser-clad Ni60 coating, respectively.
机译:本文通过Nd:YAG激光熔覆合成了Ni基合金基亚微米WS_2自润滑复合涂层。为了防止纳米熔覆过程中WS_2的质量损失,采用了一种新型的高能球磨法将纳米Ni封装在亚微米级WS_2上。研究了激光熔覆涂层的微观结构和相,以了解两种涂层材料,即Ni45-WS_2-CaF_2和Ni60-WS_2(纳米镍封装)的激光熔覆行为。即使将WS_2和CaF_2的重量百分比从7.5增加到17.5%,也几乎没有将裸露的亚微米WS_2和微米CaF_2组成Ni45基体涂层。通过对Ni60-WS_2(纳米镍封装)涂层进行激光熔覆,成功合成了Ni基合金基亚微米WS_2自润滑复合涂层,这是因为将纳米Ni进行高能球磨可以显着防止氧化, ,WS_2的反应和汽化,并改善了WS_2与Ni60基体之间的界面相容性。与激光熔覆的Ni45-WS_2-CaF_2和Ni60熔覆层(约0.5-0.6)以及激光熔覆的Ni60-WS_2(纳米镍封装)涂层的摩擦系数降低至约0.36。激光熔覆的Ni60-WS_2(纳米镍封装)的耐磨性分别是激光熔覆的Ni60涂层的耐磨性的三倍。

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