AbstractIt is well known that plastic deformations in shape memory alloys stabilize the martensitic ph'/> Numerical Study of the Plasticity-Induced Stabilization Effect on Martensitic Transformations in Shape Memory Alloys
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Numerical Study of the Plasticity-Induced Stabilization Effect on Martensitic Transformations in Shape Memory Alloys

机译:塑性诱导稳定效应对形状记忆合金中马氏体变换的数值研究

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AbstractIt is well known that plastic deformations in shape memory alloys stabilize the martensitic phase. Furthermore, the knowledge concerning the plastic state is crucial for a reliable sustainability analysis of construction parts. Numerical simulations serve as a tool for the realistic investigation of the complex interactions between phase transformations and plastic deformations. To account also for irreversible deformations, we expand an energy-based material model by including a non-linear isotropic hardening plasticity model. An implementation of this material model into commercial finite element programs, e.g., Abaqus, offers the opportunity to analyze entire structural components at low costs and fast computation times. Along with the theoretical derivation and expansion of the model, several simulation results for various boundary value problems are presented and interpreted for improved construction designing.]]>
机译:<![cdata [ <标题>抽象 ara id =“par1”>众所周知,形状记忆合金中的塑性变形稳定马氏体相。此外,关于塑料状态的知识对于建筑部件的可靠性可持续性分析至关重要。数值模拟用作逼真调查相变与塑性变形之间复杂相互作用的工具。为了考虑不可逆变形,我们通过包括非线性各向同性硬化可塑性模型来扩展基于能量的材料模型。将该材料模型实施到商业有限元方案中,例如,ABAQU,提供了以低成本和快速计算时间分析整个结构部件的机会。随着模型的理论推导和扩展,提出和解释了各种边值问题的若干模拟结果,提高了建设设计。 ]]>

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