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首页> 外文期刊>Modelling and simulation in materials science and engineering >First-principles approaches to intrinsic strength and deformation of materials: perfect crystals, nano-structures, surfaces and interfaces
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First-principles approaches to intrinsic strength and deformation of materials: perfect crystals, nano-structures, surfaces and interfaces

机译:材料固有强度和变形的第一性原理:完美的晶体,纳米结构,表面和界面

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摘要

First-principles studies on the intrinsic mechanical properties of various materials and systems through ab initio tensile and shear testing simulations based on density-functional theory are reviewed. For various materials, ideal tensile and shear strength and features of the deformation of bulk crystals without any defects have been examined, and the relation with the bonding nature has been analyzed. The surfaces or low-dimensional nano-structures reveal peculiar strength and deformation behavior due to local different bonding nature. For grain boundaries and metal/ceramic interfaces, tensile and shear behaviors depend on the interface bonding, which impacts on the research of real engineering materials. Remaining problems and future directions in this research field are discussed.
机译:回顾了基于密度泛函理论从头开始的拉伸和剪切测试模拟对各种材料和系统的固有力学性能的第一性原理的研究。对于各种材料,已经检验了理想的拉伸和剪切强度以及没有任何缺陷的块状晶体的变形特征,并分析了其与键合性质的关系。由于局部不同的键合性质,表面或低维纳米结构显示出独特的强度和变形行为。对于晶界和金属/陶瓷界面,拉伸和剪切行为取决于界面结合,这影响了实际工程材料的研究。讨论了该研究领域中仍然存在的问题和未来的方向。

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