On continuum damage mechanics

Q4 Engineering
K. Santaoja
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引用次数: 0

Abstract

A material containing spherical microvoids with a Hookean matrix response was shown to take the appearance usually applied in continuum damage mechanics. However, the commonly used variable damage D was replaced with the void volume fraction f , which has a clear physical meaning, and the elastic strain tensor \Bold {ε}^e with the damage-elastic strain tensor \Bold {ε}^{de}. The postulate of strain equivalence with the effective stress concept was reformulated and applied to a case where the response of the matrix obeys Hooke’s law. In contrast to many other studies, in the derived relation between the effective stress tensor \Bold {\Tilde{σ}} and the stress tensor \Bold {σ}, the tensor \Bold {\Tilde{σ}} is symmetric. A uniaxial bar model was introduce for clarifying the derived results. Other candidates for damage were demonstrated by studying the effect of carbide coarsening on creep rate.
论连续损伤力学
含有具有胡克矩阵响应的球形微孔的材料显示出通常应用于连续损伤力学的外观。然而,常用的可变损伤D被替换为具有明确物理意义的空隙体积分数f,弹性应变张量\Bold{ε}^e被替换为损伤弹性应变张量\Bold{ε}^{de}。重新表述了应变等效假设和有效应力概念,并将其应用于矩阵响应服从胡克定律的情况。与许多其他研究相反,在有效应力张量和应力张量之间的推导关系中,张量是对称的。引入了一个单轴杆模型来澄清导出的结果。通过研究碳化物粗化对蠕变速率的影响,证明了其他损伤候选者。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Rakenteiden Mekaniikka
Rakenteiden Mekaniikka Engineering-Mechanical Engineering
CiteScore
0.50
自引率
0.00%
发文量
2
审稿时长
16 weeks
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