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A constitutive model of cyclic viscoplasticity considering changes in subsequent viscoplastic deformation due to the evolution of dislocation structures

机译:考虑位错结构演变而引起的后续粘塑性变形变化的循环粘塑性本构模型

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摘要

This paper presents a unified constitutive model for cyclic viscoplasticity and changes occurring in subsequent viscoplastic deformation due to the evolution of dislocation structures. The model considers the viscoplastic potential and a modified Ramberg–Osgood law. Stress is assumed to divide into three components: back stress (the center of the yield surface), flow stress (the radius of the yield surface), and viscous stress (overstress). The modification of the Ramberg–Osgood law is carried out employing memorized back stress. The applicability of the model to monotonic loading, pure creep, tension–compression cyclic loading, subsequent creep, and subsequent stress-relaxation were verified by comparing the predictions with experiments of Type 316L stainless steel at room temperature. The relationships between the internal variables in the model and the dislocation structures organized by cyclic deformations are also discussed.
机译:本文提出了一个统一的本构模型,用于循环粘塑性和由于位错结构的演化而在随后的粘塑性变形中发生的变化。该模型考虑了粘塑性势和修正的Ramberg-Osgood定律。假定应力分为三部分:背应力(屈服面的中心),流应力(屈服面的半径)和粘性应力(过应力)。 Ramberg-Osgood定律的修改是通过记忆背应力进行的。通过将预测与316L不锈钢在室温下的实验进行比较,验证了该模型对单调载荷,纯蠕变,拉压循环载荷,随后的蠕变和随后的应力松弛的适用性。还讨论了模型中的内部变量与由周期性变形组织的位错结构之间的关系。

著录项

  • 作者单位
  • 年度 2007
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
  • 中图分类
  • 入库时间 2022-08-20 20:45:26

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