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A New Method Developed for Brittle and Ductile Materials to Evaluate Mechanical Properties of a Lump Specimen in the Use of Indentation Test

机译:开发了一种用于脆性和韧性材料的新方法,用于在压痕测试中评估块状试样的力学性能

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摘要

In this study, the load-depth (P-h) relationships matching the experimental results of the nanoindentation tests exhibited at the subregions of small and large depths are obtained, respectively. The relationships associated with these two subregions are then linked by the hyperbolic logarithm function to attain a single expression that is applied in the evaluation of the specimen's elastic recovery ability, as shown in the unloading process. A new method is developed in the present study to evaluate both Young's modulus and the yield strength of either a ductile or brittle material through the uses of the appropriate P-h relationships developed in the load and unloading processes. The results of the Young's modulus and the yield strength achieved by the present method are compared to those obtained from the conventional material tests for a lump material. The scattering of the experimental data shown in the loading and unloading processes are also interpreted by different causes.
机译:在这项研究中,分别获得了与小深度和大深度的子区域中显示的纳米压痕测试的实验结果相匹配的载荷-深度(P-h)关系。然后,通过双曲线对数函数将与这两个子区域关联的关系联系起来,以获得一个用于评估样品弹性回复能力的单一表达式,如卸载过程所示。本研究中开发了一种新方法,通过使用在加载和卸载过程中开发的适当P-h关系来评估弹性材料或脆性材料的杨氏模量和屈服强度。将通过本方法获得的杨氏模量和屈服强度的结果与从用于块状材料的常规材料测试中获得的结果进行比较。加载和卸载过程中显示的实验数据的散布也可以通过不同的原因来解释。

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