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Deformation of adaptive materials. Part I. Constrained deformation of polydomain crystals

机译:自适应材料的变形。第一部分多晶域晶体的受约束变形

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Deformation of an adaptive heterophase crystal with variable microstructure is considered. Under mechanical constraint the phase transformation in single component systems result in an equilibrium two-phase mixture. A typical equilibrium microstructure of a constrained crystal is a polydomain, i.e. an alternation of the plane-parallel layers, or domains, of the parent and product phases with a special crystallographic orientation of interfaces between domains. The relative fractions of the domains are determined by the external conditions. The free energy of a polydomain is a non-convex function of constrained strain. Therefore, the stress strain relation at displacement controlled deformation of the polydomain is characterized by a negative Young's modulus. If deformation proceeds under stress control, a hysteretic stress--strain curve on loading and unloading should be observed instead of a negative stress--strain slope. Besides this thermodynamic hysteresis, anelastic hysteresis appears at a constant strain-rate deformation, if the microstructure relaxes more slowly than the strain changes.
机译:考虑了具有可变微结构的自适应异相晶体的变形。在机械约束下,单组分系统中的相变导致平衡的两相混合物。受约束的晶体的典型平衡微观结构是多畴,即母相和产物相的平面平行层或畴的交替,并且畴之间的界面具有特殊的晶体学取向。域的相对分数由外部条件确定。多畴的自由能是约束应变的非凸函数。因此,多畴的位移控制变形时的应力应变关系以负杨氏模量为特征。如果在应力控制下发生变形,则应观察到滞后应力-加载和卸载时的应变曲线,而不是负应力-应变斜率。除了这种热力学滞后,如果微观结构的松弛速度比应变变化慢,则非弹性滞后会以恒定的应变率变形出现。

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