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Influence of the Mechanical Properties of Elastoplastic Materials on the Nanoindentation Loading Response

机译:弹塑性材料力学性能对纳米茚满负荷响应的影响

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摘要

The nanoindentation loading response of elastoplastic materials was simulated by the finite element method (FEM). The influence of the Young’s modulus E, yield stress σy, strain hardening exponent n and Poisson’s ratio ν on the loading response was investigated. Based on an equivalent model, an equation with physical meaning was proposed to quantitatively describe the influence. The calculations agree well with the FEM simulations and experimental results in literature. Comparisons with the predictions using equations in the literature also show the reliability of the proposed equation. The investigations show that the loading curvature C increases with increasing E, σy, n and ν. The increase rates of C with E, σy, n and ν are different for their different influences on the flow stress after yielding. It is also found that the influence of one of the four mechanical parameters on C can be affected by the other mechanical parameters.
机译:通过有限元法(FEM)模拟弹性塑料材料的纳米狭窄响应。研究了杨氏模量E,屈服应力σy,应变硬化指数N和泊松比ν对装载响应的影响。基于同等模型,提出了一种具有物理意义的等式来定量描述影响。计算对文献的有限元模拟和实验结果很好。使用文献中的方程的预测的比较也显示了所提出的方程的可靠性。调查表明,加载曲率C随着e,σy,n和ψ增加而增加。 C的C与E,ΣY,n和ν的增加率不同,因为屈服后对流量应力的不同影响。还发现,C上的四个机械参数之一的影响可能受到其他机械参数的影响。

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