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Mg_(1-x)Sc_(x)合金理想强度的第一性原理计算 被引量:1
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作者 孙霖评 周游 +1 位作者 那日苏 武晓霞 《内蒙古师范大学学报(自然科学版)》 CAS 2022年第2期116-120,共5页
采用第一性原理计算方法研究了Mg_(1-x)Sc_(x)(0.10<x<0.25)合金bcc和hcp两相分别在[001]和[0001]晶向上的理想拉伸强度。结果表明:MgSc合金bcc[001]和hcp[0001]理想强度随Sc组分的增加显著增加;合金bcc[001]理想强度在Sc组分从15... 采用第一性原理计算方法研究了Mg_(1-x)Sc_(x)(0.10<x<0.25)合金bcc和hcp两相分别在[001]和[0001]晶向上的理想拉伸强度。结果表明:MgSc合金bcc[001]和hcp[0001]理想强度随Sc组分的增加显著增加;合金bcc[001]理想强度在Sc组分从15at.%增加至25at.%时增加了25%,而hcp[0001]理想拉伸强度增加8.6%,说明Sc合金化对Mg的bcc相稳定化效果显著。MgSc合金hcp[0001]的理想强度约为bcc[001]的10倍,对应hcp[0001]理想强度的应变约为bcc[001]的3倍,说明hcp相结构稳定性显著强于bcc相。Mg和Sc基态均为hcp结构,Sc合金化对hcp合金理想强度的影响略小。 展开更多
关键词 MgSc合金 理想强度 第一性原理计算
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Analysis of film strain and stress in a film-substrate cantilever system
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作者 bai narsu 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS 2008年第9期1357-1366,共10页
The bending problem of a magnetic film-nonmagnetic substrate cantilever system is studied by using the principle of energy minimization. Emphasis is placed on the analysis of geometrical and physical parameter depende... The bending problem of a magnetic film-nonmagnetic substrate cantilever system is studied by using the principle of energy minimization. Emphasis is placed on the analysis of geometrical and physical parameter dependence of the neutral plane,internal film stress and strain of the cantilever system,and then the influence of such a parameter on the bending characteristic is presented. The results indicate,owing to the anisotropic expanding feature of the magnetostriction,that the neutral plane is generally anisotropic,and moves downwards rapidly with the increasing thickness ratio. Meanwhile,the bounding rigidity of substrate on the film will de-crease with the increasing thickness ratio,and thus release the film stress,i.e.,it decreases,but the film strain increases. The effect of Poisson’s ratio of the materi-als on the film strain,the stress and the neutral plane in the direction transverse to the magnetization is prominent. For the strain and the stress in the magnetization,however,the role of Poisson’s ratio is inconspicuous. This property is due to the initiative elongating (or contracting) feature of the magnetic film along its mag-netization. 展开更多
关键词 magnetic film-substrate SYSTEM STRAIN stress NEUTRAL PLANE
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