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Phenomenological 3D and 1D consistent models for shape-memory alloy materials

机译:形状记忆合金材料的现象学3D和1D一致模型

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The paper deals with the modeling and the development of a numerical procedure for the analysis of shape-memory alloy (SMA) elements in order to predict the main features of SMA devices. A 3D SMA model in the framework of small strain theory is developed starting from the thermo-mechanical model proposed by Souza et al. (Eur J Mech A/Solids 17:789–806, 1998) and modified by Auricchio and Petrini (Int J Numer Methods Eng 55:1255–1284, 2002). The aim of this paper is to propose some more modifications to the original model, to derive its consistent 1D formulation, to clarify the mechanical meaning of the material parameters governing the constitutive model. A robust time integration algorithm is developed in the framework of the finite element method and a new beam finite element is proposed. Some numerical applications and a comparison with experimental data available in literature are carried out in order to assess the ability of the proposed model to describe the SMA behavior.
机译:为了处理形状记忆合金(SMA)元素的主要特征,本文研究了形状记忆合金(SMA)元素分析的建模方法和数值程序的发展。从Souza等人提出的热力学模型开始,在小应变理论框架内开发了3D SMA模型。 (Eur J Mech A / Solids 17:789–806,1998)和Auricchio和Petrini修改(Int J Numer Methods Eng 55:1255–1284,2002)。本文的目的是提出对原始模型的更多修改,以得出其一致的一维公式,以阐明控制本构模型的材料参数的机械含义。在有限元方法的框架内开发了一种鲁棒的时间积分算法,并提出了一种新的梁有限元。为了评估所提出模型描述SMA行为的能力,进行了一些数值应用并与文献中的实验数据进行了比较。

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