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The Role Played by Computation in Understanding Hard Materials

机译:计算在理解硬质材料中扮演的角色

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摘要

In the last decade, computation has played a valuable role in the understanding of materials. Hard materials, in particular, are only part of the application. Although materials involving B, C, N or O remain the most valued atomic component of hard materials, with diamond retaining its distinct superiority as the hardest, other materials involving a wide variety of metals are proving important. In the present work the importance of both ab-initio approaches and molecular dynamics aspects will be discussed with application to quite different systems. On one hand, ab-initio methods are applied to lightweight systems and advanced nitrides. Following, the use of molecular dynamics will be considered with application to strong metals that are used for high temperature applications.
机译:在过去的十年中,计算在理解材料方面发挥了重要作用。特别是硬质材料仅是应用程序的一部分。尽管涉及B,C,N或O的材料仍然是硬质材料中最有价值的原子成分,而金刚石作为最硬的材料仍保留其独特的优势,但其他涉及多种金属的材料也被证明很重要。在当前的工作中,从头开始方法和分子动力学方面的重要性都将在应用到完全不同的系统中进行讨论。一方面,从头开始方法应用于轻量级系统和高级氮化物。接下来,将考虑将分子动力学应用于高温应用中的强金属。

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