含塑性变形机制的NiTi SMA热力学模型

P. Sedlák, M. Frost, H. Seiner, L. Heller, P. Šittner
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引用次数: 0

摘要

本文提出了一个已建立的镍钛本构模型的扩展,该模型涵盖了可逆(弹性、马氏体转变、马氏体再取向)和不可逆(塑性)变形机制。除了独立地包含奥氏体和马氏体相的塑性变形机制外,该模型还捕获了马氏体相变和塑性变形更复杂的耦合现象,如相变诱导塑性、塑性变形对马氏体的稳定或塑性诱导的微应变非均质性导致的功能疲劳。尽管该模型涉及大量不同的机制,这反映在为描述材料微观结构演变而引入的大量内部参数上,但该模型仍然对NiTi中耦合相变-塑性过程提供了基本的、简单的现象学理解。该模型在有限元软件上成功实现后,为镍钛构件的行为和加工过程的仿真提供了新的可能性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Thermodynamical Model of NiTi SMA Including Plastic Deformation Mechanisms
This paper presents an extension of a well-established constitutive model for NiTi covering both reversible (elastic, martensitic transformation, martensite reorientation) and irreversible (plastic) deformation mechanisms. Besides the inclusion of mechanisms of plastic deformation in both austenitic and martensitic phases in an independent manner, the model also newly captures more complex coupled phenomena of martensitic transformation and plastic deformation, such as transformation-induced plasticity, stabilization of martensite by plastic deformation, or plasticity-induced microstrain heterogeneity leading to functional fatigue. Despite a large number of different mechanisms involved in the model, which is reflected by a considerable number of internal parameters introduced for the description of the evolving microstructure of the material, the model still brings a basic, simple phenomenological understanding of the coupled transformation-plasticity proceeding in NiTi. After successful implementation to FEM software, the model provides new possibilities for simulations of NiTi components' behavior and processing.
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