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Phase-field simulation of effects of normal strain on the morphology and kinetics evolution of nanoscale phase

机译:正常应变对纳米级阶段形态学和动力学演化影响的相场模拟

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This is the first investigation on the morphology and kinetics evolution of nanoscale precipitates under normal strain with the three-dimensional phase-field simulation. The volume fraction, particle number density and average particle radius of the precipitates are clarified for uniaxial, biaxial and triaxial strain, combining the free energy and shape change of nanoscale precipitates. For the anisotropic elasticity, uniaxial, biaxial and triaxial strain promote phase decomposition compared with strain-free state, except that triaxial compressive strain retards the early-stage precipitation. Nanoscale precipitates under mixed biaxial or triaxial strain display strip-like shape, especially for the biaxial tensile with uniaxial compressive strain. Triaxial tensile and compressive strain do not change the shape of precipitates, while the particle size is reduced under triaxial compressive strain. The results demonstrate that normal strain affects the morphology and kinetics of the nanoscale phase to different degrees.
机译:这是第一次调查纳米级沉淀物在正常应变下纳米级沉淀物的演变研究,三维相场模拟。为单轴,双轴和三轴应变澄清了沉淀物的体积分数,颗粒数密度和平均粒径,组合了纳米级沉淀物的自由能和形状变化。对于各向异性弹性,单轴,双轴和三轴菌株促进相位分解与无应变状态,除了三轴压缩应变延迟早期沉淀。纳米级沉淀在混合双轴或三轴应变显示带状形状下,特别是对于具有单轴压缩菌株的双轴拉伸。三轴拉伸和压缩菌株不会改变沉淀物的形状,而在三轴压缩菌株下颗粒尺寸降低。结果表明,正常应变会影响纳米级相的形态和动力学到不同程度。

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