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首页> 外文期刊>Crystal Research and Technology: Journal of Experimental and Industrial Crystallography >Inference of mechanical properties from instrumented depth sensing indentation at tiny loads and indentation depths
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Inference of mechanical properties from instrumented depth sensing indentation at tiny loads and indentation depths

机译:通过在很小的载荷和压痕深度下的仪器化深度感应压痕来推断机械性能

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摘要

Different hardness measures as Vickers, Brinell and Meyer hardness are discussed with respect to their physical interpretation. Meyer hardness is found to be best suited as a measure of plastic properties. The outline of a depth sensing nanoindentation experiment is described, and particular emphasis is given to the correct deduction of the contact area from indenter penetration data. Experimental complications, as phase transformations, finite machine compliance, thermal and piece drift, and sample creep are detailed with, and their impact on the calculation of hardness and elastic modulus is shown. Furthermore the onset of yielding in dependence on critical load, indenter curvature and yield strength is discussed. [References: 54]
机译:关于维氏,布氏硬度和迈尔硬度的不同硬度度量在物理解释方面进行了讨论。发现迈耶硬度最适合作为塑性性能的量度。描述了深度感测纳米压痕实验的概述,并特别强调了从压头穿透数据正确推断出接触面积。详细介绍了实验复杂性,包括相变,有限的机器顺应性,热和件漂移以及样品蠕变,并显示了它们对硬度和弹性模量计算的影响。此外,还讨论了取决于临界载荷,压头曲率和屈服强度的屈服开始。 [参考:54]

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