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Effect of Poisson's ratio on material property characterization by nanoindentation with a cylindrical flat-tip indenter

机译:泊松比对圆柱形平头压头纳米压痕表征材料性能的影响

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Nanoindentation is commonly used to determine the mechanical properties of the engineering materials. Young's modulus of a bulk material can be extracted from the load-depth data obtained from an indentation test with a prescribed Poisson's ratio that is unknown for a new material. The effect of Poisson's ratio on material's mechanical property characterization remains unknown. In this paper, finite element analysis was used to simulate nanoindentation testing on specimens of low-carbon steel AISI1018, steel alloy AISI4340, and aluminum alloy 6061T6 with a cylindrical flat-tip indenter. The effects of Poisson's ratio on measurements of indentation load versus depth curves, Young's modulus, hardness, and pile-up of the specimens were investigated and formulated. The Poisson ratio ranging from 0 to 0.49 was considered. It was found that the linear part at the beginning of the indentation loading process from the load versus depth curve was proportional to the Young's modulus and significantly affected by the Poisson's ratio. The indentation pile-up was also sensitive to the Poisson's ratio. Combining the formulas from this work with the Hertzian contact equation, the Young's modulus and the Poisson's ratio can be determined simultaneously.
机译:纳米压痕通常用于确定工程材料的机械性能。可以从压痕测试获得的载荷深度数据中提取散装材料的杨氏模量,该载荷深度数据具有新材料未知的规定的泊松比。泊松比对材料力学性能表征的影响仍然未知。在本文中,使用有限元分析来模拟对带有圆柱型平头压头的低碳钢AISI1018,钢合金AISI4340和铝合金6061T6的样品进行纳米压痕测试。研究并制定了泊松比对压痕载荷与深度曲线,杨氏模量,硬度和试样堆积的测量结果的影响。泊松比在0到0.49之间。已经发现,在压痕加载过程开始时,载荷与深度的关系曲线中的线性部分与杨氏模量成正比,并且受泊松比的影响很大。压痕堆积对泊松比也很敏感。将这项工作的公式与赫兹接触方程相结合,可以同时确定杨氏模量和泊松比。

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