... 弹性应变张量 Elastic strain tensor 非弹性应变 inelastic strain 超弹性应变 superelastic strain ...
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而在低温保温阶段,应力虽然较高,但温度较低,非弹性应变也不明显。
The reason is that both temperature and stress combine to affect the accumulation of inelastic strain.
实验和研究表明:基于经典弹塑性及蠕变理论的本构方程,非弹性应变在高温下其本质上是时间相关的。
The experimental and research results indicate that non-elasticity strain associate with time in nature according to constitutive equations of the classical elastic-plastic and creep theory.
随着应力的增加,材料模量减小,非弹性应变变大,复合材料的应力-应变行为表现为非线性直至断裂。
The modulus of the material decreases and the inelastic strain increases with the increase of tension stress, and the composite exhibits a largely non-linear stress-strain behavior up to rupture.
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