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首页> 外文期刊>International Journal of Plasticity >A general hereditary multimechanism-based deformation model with application to the viscoelastoplastic response of titanium alloys
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A general hereditary multimechanism-based deformation model with application to the viscoelastoplastic response of titanium alloys

机译:基于通用遗传多机理的变形模型及其在钛合金粘弹塑性响应中的应用

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摘要

The formulation of a general model for the hereditary behavior of materials, in the viscoelastic and viscoplastic regimes, is presented. In this, we utilize the complete-potential structure as a general 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). Detailed numerical treatments are given for both (i) the implicit integration algorithm for the governing flow and evolutionary rate equations of the model, and (ii) the automated parameter-estimation methodology (using the software code COMPARE) for characterization. For illustration, a specific form of the model presented is characterized for the TIMETAL 21S material using a very comprehensive test matrix, including creep, relaxation, constant strain-rate tension tests, etc. 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 as well as the effectiveness and practical utility of the algorithms proposed. (C) 2001 Published by Elsevier Science Ltd. [References: 44]
机译:介绍了在粘弹性和粘塑性状态下材料遗传行为的通用模型的制定。在本文中,我们将完全势能结构作为通用框架,并结合了应变和应力分配的概念,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。针对(i)模型的控制流和演化速率方程的隐式积分算法,以及(ii)用于参数化的自动参数估计方法(使用软件代码COMPARE),均给出了详细的数值处理。为了说明起见,使用非常全面的测试矩阵对TIMETAL 21S材料表征了一种特定形式的模型,包括蠕变,松弛,恒定应变率拉力测试等。这些相关性测试的讨论以及与其他几种测试的比较实验结果被用来评估当前模型的性能和预测能力,以及所提出算法的有效性和实用性。 (C)2001年由Elsevier Science Ltd.发布。[参考:44]

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