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Determination of elastic and viscoplastic material properties obtained from indentation tests using a combined finite element analysis and optimization approach

机译:结合有限元分析和优化方法,通过压痕测试确定弹性和粘塑性材料的性能

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摘要

Conventional indentation tests do not provide an accurate estimation of viscoplastic material properties. In this work, a combined finite element analysis and optimization approach is developed for the determination of elastic–plastic and creep material properties using only a single indentation loading–unloading curve based on a two-layer viscoplasticity model. Utilizing the indentation loading–unloading curve obtained from a finite element-simulated experiment with a spherical and a conical indenter, a set of six key material properties (Young’s modulus, yield stress, work hardening exponent and three creep parameters) can be determined. Non-linear optimization algorithms are used with different sets of initial material properties, leading to good agreements with the numerically simulated target loading–unloading curves.
机译:传统的压痕测试不能提供对粘塑性材料性能的准确估计。在这项工作中,开发了一种结合有限元分析和优化方法的方法,该方法仅使用基于两层粘塑性模型的单个压痕加载-卸载曲线来确定弹塑性和蠕变材料的特性。利用通过球形和锥形压头的有限元模拟实验获得的压痕加载-卸载曲线,可以确定一组六个关键材料属性(杨氏模量,屈服应力,加工硬化指数和三个蠕变参数)。非线性优化算法用于不同的初始材料属性集,从而与数值模拟的目标装卸曲线具有良好的一致性。

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