Comparative Analysis Carried Out on Modern Indentation Techniques for the Measurement of Mechanical Properties: A Review

Saquib Rouf, S. Altaf, S. Malik, K. Najar
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引用次数: 1

Abstract

Nowadays many indentation techniques are being commonly employed for determining some mechanical properties (harness, elastic modulus, toughness, etc.) using simple method of measuring the indentation depth. On the basis of measurement of depth of penetration, indentation technique has be classified into major categories i.e. microindentation and nanoindentation. Nanoindentation technique uses indirect method of determining the contact area as the depth of penetration is measured in nanometers, while in conventional indentation the area in contact is measured by elementary measurement of the residual area after the indenter is removed from the specimen. Dynamic hardness is the best result of dynamic indentation which can be expressed as the ratio of energy consumed during a rapid indentation to the volume of indentation. The parameter which are taken into consideration are indentation depth, contact force, contact area, mean contact pressure.
现代压痕力学性能测量技术的比较分析综述
目前,常用压痕技术通过测量压痕深度的简单方法来测定某些机械性能(线束、弹性模量、韧性等)。在测量渗透深度的基础上,将压痕技术分为微压痕和纳米压痕两大类。纳米压痕技术采用以纳米为单位测量穿透深度时的间接方法来确定接触面积,而传统压痕技术采用从试样中取出压痕后的残余面积的初等测量方法来确定接触面积。动态硬度是动态压痕的最佳结果,可以用快速压痕过程中消耗的能量与压痕体积的比值来表示。所考虑的参数有压痕深度、接触力、接触面积、平均接触压力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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