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首页> 外文期刊>Proceedings of the Society for Experimental Mechanics >Effect of Varying Test Parameters on Elastic-plastic Properties Extracted by Nanoindentation Tests
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Effect of Varying Test Parameters on Elastic-plastic Properties Extracted by Nanoindentation Tests

机译:不同的测试参数的影响弹塑性特性提取的Nanoindentation测试

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A systematic experiment was performed in an effort to investigate how the levels of certain test parameters affect the values of elastic modulus, hardness, yield stress, and strain hardening constant obtained using nanoindentation test. Maximum applied load, loading (unloading) rate, and hold time at maximum load were varied at three levels. The effects of these testing parameters were investigated through a threelevel, full factorial design of experiment. The experiments were conducted on ultrafine Al-Mg specimens that were mechanically extruded. Both longitudinal and transverse extrusion directions were examined to investigate effects of anisotropy on mechanical properties and evaluate the persistence of observed variations due to test parameters on different materials orientations. An indentation size effect (ISE) was observed demonstrating that maximum load - and thereby maximum indentation depth - can have a significant effect on values of hardness and elastic modulus. Hardness values decreased with higher loading rates, and higher rates of unloading resulted in higher values of elastic modulus (5-10 GPa increases). Strain-hardening exponent showed a decreasing trend with increasing loading rate while yield stress exhibited a consistent correlation to hardness across all studied parameters. The material exhibited very little creep during the hold period, and values of the calculated properties were not significantly altered by varying the length of the hold time. Anisotropy effect was observed, particularly in the values of yield strength. This is attributed to the preferred grain orientation due to extrusion.
机译:系统的实验是为了执行调查某些测试的水平如何参数影响弹性模量的值,硬度、屈服应力和应变硬化不断获得使用nanoindentation测试。最大外加负载、装(卸)率、并在最大负载在不同保存时间三个层次。参数通过一个调查threelevel,全因子设计实验。超细Al-Mg实验机械挤压的标本。纵向和横向挤压方向进行调查的影响各向异性力学性能和评价由于观察到变化的持久性测试在不同的材料参数取向。观察证明最大负载-从而最大压痕深度,可以有硬度值和显著的影响弹性模量。高加载率,更高的利率卸货导致更高的弹性值模量(5 - 10 GPa增加)。指数与呈下降趋势加载速率增加而屈服应力表现出一致的相关性硬度在所有研究参数。展出期间很少蠕变期,计算属性的值没有显著改变通过改变保持时间的长度。观察到,尤其是在收益率的值的力量。由于挤压晶粒取向。

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