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首页> 外文期刊>Mechanics of materials >A new long-term indentation relaxation method to measure creep properties at the micro-scale with application to fused silica and PMMA
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A new long-term indentation relaxation method to measure creep properties at the micro-scale with application to fused silica and PMMA

机译:一种新的长期压痕松弛方法,可用于微尺度测量蠕变性能,并应用于熔融石英和PMMA

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摘要

A new procedure is developed to measure strain rate sensitivity m and apparent activation volume V* using nanoindentation relaxation experiments. This procedure is based on the control of the dynamic contact stiffness as measured by the continuous stiffness measurement module (CSM). Load decrease is monitored while maintaining the contact stiffness constant. It allows for very stable measurements of load relaxation (up to 10 h) since the contact area between the tip and the sample surface is kept constant. This improvement is significant as it increases by two orders of magnitude the measurement time compared to classical constant displacement experiments. The load relaxation data are interpreted using an analogy to uniaxial tests in order to extract representative material's parameters. An excellent agreement with literature data is found for fused silica and PMMA. Nanoindentation relaxation experiment is proved to be an accurate procedure to extract viscoplastic parameters of materials under very low strain rates.
机译:使用纳米压痕松弛实验,开发了一种新的程序来测量应变速率灵敏度m和表观活化体积V *。此过程基于对连续刚度测量模块(CSM)所测量的动态接触刚度的控制。在保持接触刚度恒定的同时监控负载的减少。由于尖端与样品表面之间的接触面积保持恒定,因此可以非常稳定地测量负载松弛(长达10小时)。与传统的恒定位移实验相比,此改进显着,因为它使测量时间增加了两个数量级。使用类似于单轴测试的方法解释载荷松弛数据,以提取代表性材料的参数。发现与熔融石英和PMMA的文献数据非常吻合。纳米压痕松弛实验被证明是在非常低的应变速率下提取材料粘塑性参数的准确程序。

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