Improvement in the nanoindentation technique for investigation of the time-dependent material properties

Y. Golovin, V. I. Ivolgin, V. V. Korenkov, N. V. Korenkova, B. Farber
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引用次数: 2

Abstract

Abstract An improved nanoindentation technique was developed for dynamic investigation of the time-dependent properties of materials under conditions close to real nanocontact interaction during dry friction, abrasive wear, milling, mechanical alloying and so on. For these purposes the duration of the loading- unloading cycle was reduced to 20ms and a nanocontact fatigue test was performed with the number of reloading cycles reaching 103-105.
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纳米压痕技术在研究材料时变特性中的改进
提出了一种改进的纳米压痕技术,用于动态研究材料在干摩擦、磨粒磨损、铣削、机械合金化等接近真实纳米接触相互作用条件下的随时间变化特性。为此,将加载-卸载循环的持续时间缩短至20ms,并进行了纳米接触疲劳试验,重新加载循环次数达到103-105次。
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