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A multiplicative plastic hardening model in consideration of strain softening and strain rate: Theoretical derivation and characterization of model parameters with simple tension and creep test

机译:一种乘法塑性硬化模型考虑应变软化和应变率:简单张力和蠕变试验的理论推导与模型参数的表征

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摘要

Hardening behavior with its ultimate deterioration (or softening) after uniform deformation limit and strain rate sensitivity of metals at elevated temperatures are characterized. To avoid non-uniqueness in the identification procedure based on only simple tension test, an inverse identification procedure involving not only the simple tension test, but also the creep test is newly proposed. Moreover, for better understanding of creep behavior, analytical and numerical creep models are developed for the generalized multiplicative constitutive law accounting for hardening, softening, and strain rate sensitivity. Robust parametric studies are presented to explore the effect of material and process parameters on creep deformation behavior, which is also effectively used for the two-step characterization procedure of the proposed hardening model. The identification procedure for the multiplicative constitutive model is demonstrated using AZ61 Mg alloy sheet, which provides good correlations between calculated and measured stress-strain curves and creep strains under different strain rates and prior-creep strains.
机译:特征在于,在升高温度下均匀变形极限和金属的应变速率敏感性后的最终劣化(或软化)的硬化行为。为了避免基于仅简单的张力测试的识别过程中的非唯一性,不仅涉及简单的张力测试,还可以新提出蠕变测试。此外,为了更好地理解蠕变行为,开发了分析和数值蠕变模型,用于扩展乘法本质概况,用于硬化,软化和应变率灵敏度。提出了鲁棒参数研究以探讨材料和工艺参数对蠕变变形行为的影响,这也有效地用于所提出的硬化模型的两步表征过程。使用AZ61 Mg合金板证明了乘法本构模型的鉴定过程,其在不同应变率和先前蠕变菌株下提供计算和测量的应力 - 应变曲线和蠕变菌株之间提供良好的相关性。

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