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IRRADIATION-INDUCED DEFECT SELF-ORGANIZATION

机译:辐照诱导的缺陷自组织

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Experiments show that vacancies in a solid may coalesce into voids and self-organize into a super-lattice. The voids have diameters around 10 nm and spacing of tens of nanometers. This paper develops a thermodynamic model to explain and simulate the remarkable phenomena. We incorporate free energy of mixing, interface energy and elasticity into a continuous phase field model. It is well known that the total interface energy reduces when the voids grow larger. Simulations show that elastic anisotropy may limit the coarsening. Starting from randomly distributed vacancies, the process of coalescence and void lattice formation demonstrates rich dynamics. Long-range elastic interaction and elastic anisotropy are found to play a significant role that determines the self-assembled super-lattice.
机译:实验表明,固体中的空位可能会对空隙进行合并,并将自组织成超级格子。空隙的直径约为10nm,并且数十纳米间距。本文开发了一种热力学模型来解释和模拟显着的现象。我们将混合,界面能量和弹性的自由能量纳入连续的相位场模型。众所周知,当空隙变大时,总接口能量会减少。模拟表明弹性各向异性可能限制粗化。从随机分布的空缺开始,聚结和空隙格形成的过程表明了丰富的动态。发现远程弹性相互作用和弹性各向异性起到重要作用,确定自组装的超格子。

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