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Predicting flow curves of two-phase steels from spherical nanoindentation data of constituent phases: Isostrain method vs. non-isostrain method

机译:从组成相的球形纳米压痕数据预测两相钢的流动曲线:等应变法与非等应变法

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摘要

A procedure is suggested to predict the flow curves of two-phase steels using data from nanoindentation experiments performed with two spherical indenters having different radii. The procedure incorporates two steps: First, the ''macroscopic'' (or size effect corrected) stress-strain relations of each constituent phase are estimated based on the concepts of indentation stress/strain and indentation size effect. Then, the ''overall'' (or composite) flow curve of two-phase steel is extracted in two different ways; an isostrain method (ISM) and a non-isostrain method (NISM). The appropriateness of the proposed procedure was examined by performing a series of spherical nanoindentation tests on various two-phase steels (consisting of ferrite-pearlite or ferrite-bainite). Reasonable accuracy of the prediction was validated by comparing the predicted curves to the tensile curves obtained from standard tests of bulky samples. In addition, interestingly, the predictions made by the simple ISM were almost identical to those by the more sophisticated NISM, though the NISM used more realistic assumptions.
机译:建议使用一种程序,使用来自具有两个半径不同的两个球形压头的纳米压痕实验数据,预测两相钢的流动曲线。该过程包括两个步骤:首先,根据压痕应力/应变和压痕尺寸效应的概念,估算每个组成相的“宏观”(或校正尺寸效应)的应力-应变关系。然后,以两种不同的方式提取两相钢的“整体”(或复合)流动曲线。等应变方法(ISM)和非等应变方法(NISM)。通过对各种两相钢(由铁素体-珠光体或铁素体-贝氏体组成)进行一系列球形纳米压痕测试,检验了所提出程序的适当性。通过将预测曲线与从大体积样品的标准测试中获得的拉伸曲线进行比较,验证了预测的合理准确性。另外,有趣的是,尽管NISM使用了更现实的假设,但简单ISM所做的预测几乎与更复杂的NISM所做的预测相同。

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