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Transition from Self-Organized Criticality into Self-Organization during Sliding Si3N4 Balls against Nanocrystalline Diamond Films

机译:在纳米晶金刚石薄膜滑动Si3N4球期间从自我组织的关键性转变为自组织

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摘要

The paper investigates the variation of friction force (Fx) during reciprocating sliding tests on nanocrystalline diamond (NCD) films. The analysis of the friction behavior during the run-in period is the focus of the study. The NCD films were grown using microwave plasma-enhanced chemical vapor deposition (MW-PECVD) on single-crystalline diamond SCD(110) substrates. Reciprocating sliding tests were conducted under 500 and 2000 g of normal load using Si3N4 balls as a counter body. The friction force permanently varies during the test, namely Fx value can locally increase or decrease in each cycle of sliding. The distribution of friction force drops (dFx) was extracted from the experimental data using a specially developed program. The analysis revealed a power-law distribution f−µ of dFx for the early stage of the run-in with the exponent value (µ) in the range from 0.6 to 2.9. In addition, the frequency power spectrum of Fx time series follows power-law distribution f−α with α value in the range of 1.0–2.0, with the highest values (1.6–2.0) for the initial stage of the run-in. No power-law distribution of dFx was found for the later stage of the run-in and the steady-state periods of sliding with the exception for periods where a relatively extended decrease of coefficient of friction (COF) was observed. The asperity interlocking leads to the stick-slip like sliding at the early stage of the run-in. This tribological behavior can be related to the self-organized criticality (SOC). The emergence of dissipative structures at the later stages of the run-in, namely the formation of ripples, carbonaceous tribolayer, etc., can be associated with the self-organization (SO).
机译:本文在纳米晶金刚石(NCD)膜上的往复滑动试验期间研究了摩擦力(FX)的变化。在运行期间的摩擦行为分析是研究的重点。使用微波等离子体增强的化学气相沉积(MW-PECVD)在单晶金刚石SCD(110)基板上生长NCD薄膜。使用Si3N4球作为柜台500和2000g正常载荷进行往复滑动试验。摩擦力在测试期间永久变化,即FX值可以在每个滑动循环中局部增加或减少。使用专门开发的程序从实验数据中提取摩擦力下降(DFX)的分布。该分析揭示了一种动力法分布F-μdFFX的DFX,用于延时的早期阶段,其指数值(μ)为0.6至2.9。此外,FX时间序列的频率谱跟随电源法分布F-α,α值在1.0-2.0的范围内,具有最高值(1.6-2.0),用于运行的初始阶段。没有发现DFX的延续阶段的动力法分布,并且在观察到摩擦系数(COF)的相对延长减少的时间内的例外,稳态期。粗糙的互锁导致在刚刚的早期滑动的粘滑。这种摩擦学行为可能与自组织的关键性(SOC)有关。在润入的后期阶段的耗散结构的出现,即涟漪,碳质骰子等的形成,可以与自组织(SO)相关联。

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