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首页> 外文期刊>Diamond and Related Materials >Frictional properties of diamond and fullerene nanoparticles sprayed by a high-velocity argon gas on stainless steel substrate
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Frictional properties of diamond and fullerene nanoparticles sprayed by a high-velocity argon gas on stainless steel substrate

机译:高速氩气在不锈钢基体上喷涂金刚石和富勒烯纳米颗粒的摩擦性能

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摘要

Lubricating abilities of diamond nanoparticles with size between 50 nm and 200 nm were studied in vacuum and in air to clarify the effective use of diamond fine powders for tribological purposes. Spraying of powders with a high-velocity argon gas jet was performed to form deposits on stainless steel (SUS304) substrates. For sliding in vacuum against SiC and A1_2O_3 balls under a 0.5 N applied load and 3.5 mm/s sliding speed, the deposits of microcrystalline diamond powders with a mean particle size of 50 nm and detonation nanodiamond with a mean aggregate size of around 75 nm demonstrated friction coefficients of less than 0.01 and 0.03. respectively, and ball wear rates of less than 2 10~(-6) mm~3/(Nm). This means that diamond fine powders smaller than 100 nm can be considered as good solid lubricants in vacuum, because they demonstrate not only a low friction coefficient, but also wear rate of SiC ball lower than non-lubricated SUS304 does. AC_(60) deposit, formed by the same method on the SUS304, was readily scratched from the substrate in vacuum; however, under open-air conditions, a friction coefficient of around 0.1 and a SiC ball wear rate of about 2 o 10~(-6)6 mm~3/(Nm) were observed. This fact calls attention to the influence of the deposition method on C_(60) frictional properties.
机译:在真空和空气中研究了尺寸在50 nm至200 nm之间的金刚石纳米粒子的润滑能力,以阐明将金刚石细粉有效地用于摩擦学目的。用高速氩气喷嘴喷射粉末以在不锈钢(SUS304)基板上形成沉积物。为了在0.5 N的施加载荷和3.5 mm / s的滑动速度下在SiC和A1_2O_3球上真空滑动,显示出平均粒径为50 nm的微晶金刚石粉末和平均聚集体尺寸为约75 nm的爆轰纳米金刚石的沉积摩擦系数小于0.01和0.03。球磨损率分别小于2 10〜(-6)mm〜3 /(Nm)。这意味着小于100 nm的金刚石细粉可以被认为是真空中良好的固体润滑剂,因为它们不仅显示出低摩擦系数,而且比未润滑的SUS304更低的SiC球磨损率。通过同样的方法在SUS304上形成的AC_(60)沉积物很容易在真空中从基板上刮下来;然而,在露天条件下,摩擦系数约为0.1,SiC球的磨损率约为2 o 10〜(-6)6 mm〜3 /(Nm)。这一事实引起人们对沉积方法对C_(60)摩擦性能的影响的关注。

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