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SYSTEMS AND METHODS FOR PREDICTING STRUCTURE AND PROPERTIES OF ATOMIC ELEMENTS AND ALLOY MATERIALS

机译:预测原子元素和合金材料的结构和性能的系统和方法

摘要

Metallic alloy development has been traditionally based on experimental or theoretical equilibrium phase diagrams and the like. The synthesis, processing and mechanical testing of small and large real samples are a challenging task requiring huge amount of effort in terms of time, money, resource, tedious testing and processing equipment and man-hour for which conventional Calphad calculations etc. alone do not help much in their local structure and related property prediction. Embodiments of the present disclosure provide simulation systems and methods for structure evolution and property prediction Molecular Dynamics (MD) combined with accelerated Monte Carlo techniques, wherein information on atomic elements and composition specific to alloy material is obtained to generate a MD potential file that is further used to generate a 3D structure file by executing a structure equilibration technique. An optimized evolved 3D structure file is then generated that has atomic positions output and/or thermodynamic output for predicting properties.
机译:金属合金的开发传统上是基于实验或理论平衡相图等。大小样本的合成,处理和力学测试是一项艰巨的任务,需要大量的时间,金钱,资源,繁琐的测试和处理设备以及工时,而常规的Calphad计算等却无法做到。对它们的局部结构和相关属性预测有很大帮助。本公开的实施例提供了与加速蒙特卡洛技术相结合的用于结构演化和特性预测分子动力学(MD)的仿真系统和方法,其中获得了关于合金材料特有的原子元素和组成的信息以生成MD电势文件,该文件进一步通过执行结构平衡技术来生成3D结构文件。然后生成优化的演化3D结构文件,该文件具有原子位置输出和/或热力学输出,用于预测属性。

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