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Anisotropic Constitutive Model of Strain-induced Phenomena in Stainless Steels at Cryogenic Temperatures

机译:低温下不锈钢中应变诱发现象的各向异性本构模型

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摘要

A majority of the thin-walled components subjected to intensive plastic straining at cryogenic temperatures are made of stainless steels. The examples of such components can be found in the interconnections of particle accelerators, containing the superconducting magnets, where the thermal contraction is absorbed by thin-walled, axisymetric shells called bellows expansion joints. The stainless steels show three main phenomena induced by plastic strains at cryogenic temperatures: serrated (discontinuous) yielding, gamma->alpha' phase transformation and anisotropic ductile damage. In the present paper, a coupled constitutive model of gamma->alpha' phase transformation and orthotropic ductile damage is presented. A kinetic law of phase transformation, and a kinetic law of evolution of orthotropic damage are presented. The model is extended to anisotropic plasticity comprising a constant anisotropy (texture effect), which can be classically taken into account by the Hill yield surface, and plastic strain induced anisotropy. For such a model the shape of the yield surface in the stress space varies as a function of the plastic strains. The constitutive model creates a bridge between material science (experiments) and structural analysis. It has been used to predict the response of beam vacuum and cryogenic bellows to monotonic and cyclic loads developed in the interconnections of the Large Hadron Collider at CERN.
机译:在低温下承受强烈塑性变形的大多数薄壁部件都是由不锈钢制成。可以在包含超导磁体的粒子加速器的互连中找到此类组件的示例,其中的热收缩被称为波纹管膨胀节的薄壁轴心壳吸收。不锈钢在低温下表现出由塑性应变引起的三个主要现象:锯齿状(不连续)屈服,γ->α'相变和各向异性延性破坏。本文提出了一种γ->α'相变与正交各向异性延性损伤的耦合本构模型。提出了相变的动力学定律和正交各向异性损伤演化的动力学定律。该模型扩展到各向异性塑性,该各向异性包括恒定的各向异性(纹理效应),Hill屈服面可以经典地考虑到各向异性,塑性应变诱发的各向异性。对于这种模型,应力空间中屈服面的形状随塑性应变而变化。本构模型在材料科学(实验)和结构分析之间架起了一座桥梁。它已被用于预测束真空和低温波纹管对CERN大型强子对撞机互连中产生的单调和循环载荷的响应。

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  • 作者

    Garion, C; Skoczen, Blazej;

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  • 年度 2004
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  • 原文格式 PDF
  • 正文语种 eng
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