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Specific Hardening Function Definition and Characterization of a Multimechanism Generalized Potential-based Viscoelastoplasticity Model

机译:基于广义势能的多机理粘弹塑性模型的特定硬化函数定义和表征

摘要

Given the previous complete-potential structure framework together with the notion of strain- and stress-partitioning in terms of separate contributions of several submechanisms (viscoelastic and viscoplastic) to the thermodynamic functions (stored energy and dissipation) a detailed viscoelastoplastic multimechanism characterization of a specific hardening functional form of the model is presented and discussed. TIMETAL 21S is the material of choice as a comprehensive test matrix, including creep, relaxation, constant strain-rate tension tests, etc. are available at various temperatures. Discussion of these correlations tests, together with comparisons to several other experimental results, are given to assess the performance and predictive capabilities of the present model particularly with regard to the notion of hardening saturation as well as the interaction of multiplicity of dissipative (reversible/irreversible) mechanisms.
机译:鉴于先前的完全势能结构框架以及应变和应力划分的概念,根据几个子机制(粘弹性和粘塑性)对热力学函数(存储的能量和耗散)的单独贡献,详细描述了特定的粘弹塑性多机制特征提出并讨论了模型的强化功能形式。 TIMETAL 21S是综合测试矩阵的选择材料,包括在各种温度下的蠕变,松弛,恒定应变率拉伸测试等。讨论了这些相关性测试,并与其他几个实验结果进行了比较,以评估本模型的性能和预测能力,特别是在硬化饱和的概念以及耗散(可逆/不可逆)的相互作用方面。 )机制。

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    Saleeb A. F.; Arnold S. M.;

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  • 年度 2003
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