首页> 外文期刊>Journal of Materials Science >Effect of martensitic transformation in Ti-15 at % V beta-phase particles on lamellar boundary decohesion in gamma-TiAl - Part I - Derivation of interface decohesion potentials
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Effect of martensitic transformation in Ti-15 at % V beta-phase particles on lamellar boundary decohesion in gamma-TiAl - Part I - Derivation of interface decohesion potentials

机译:Ti-15中%Vβ相颗粒中的马氏体相变对γ-TiAl中层状边界脱粘的影响-第一部分-界面脱粘电位的推导

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摘要

Molecular statics atomistic simulations of the Ti-15 at % V body-centred cubic (bcc) beta-phase-gamma-TiAl interface and gamma-gamma lamellar boundary decohesion processes have been carried out to determine the corresponding decohesion potentials. The potentials are subsequently related to the dislocation structure of the interface-boundary. Atom ic interactions have been represented using the appropriate embedded atom method (EAM) interatomic potential functions. The results obtained show that the decohesion potential functions are quite complex because they have to account for the instabilities that occur under some modes of interface decohesion and for the periodic character of the interfacial shear. Lastly, the use of decohesion potentials to derive constitutive relations for continuum-type interfacial elements and their implementation in the finite element method are presented. (C) 1998 Kluwer Academic Publishers. [References: 28]
机译:已经进行了Ti-15在%V体心立方(bcc)β-相-γ-TiAl界面和γ-γ层状边界脱粘过程的分子静力学原子模拟,以确定相应的脱粘潜力。电位随后与界面边界的位错结构有关。原子相互作用已使用适当的嵌入式原子方法(EAM)原子间势函数表示。获得的结果表明,脱粘势函数非常复杂,因为它们必须考虑在某些界面脱粘模式下发生的不稳定性以及界面剪切的周期性特征。最后,提出了利用去内聚势来推导连续型界面元素的本构关系及其在有限元方法中的实现方法。 (C)1998 Kluwer学术出版社。 [参考:28]

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