微纳米结构间隙磁体的应力和应变

R. Skomski
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引用次数: 2

摘要

巫术和磁力很强Emphasis是穿spherical and plate-like Sm2Fe17Nx带continuous particles and discontinuous interstitial concentration profiles, hypothetical high-performance Sm2Fe17N3−δ/ FeCo composites,与自然”multilayers找as Nd6Fe13CuHx, where the recently discovered大型anisotropic lattice扩张是明白arise要从二十世纪水晶的.胡克定律(又称“虎克定律”)是用来计算一道形成格子状磁铁的弹性应力和舒展力的。调查主要是冲出肤浅和Sm2Fe17Nx Teil-chen不断和diskontinuierlichen Zwischengitterkonzentrations-profilen,假设的Sm2 Fe17N3−δ/ FeCo Hochleistungskomposite和天然Vielfachschichten正如Nd6Fe13CuHx,他们最近发现着火β,anisotrope Gitteraufweitung归咎于Kristallstruktur将.
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Stress and strain in micro- and nano-structured interstitial magnets

Hooke's law is used to calculate the elastic stress and strain in interstitial magnets. Emphasis is put on spherical and plate-like Sm2Fe17Nx particles with continuous and discontinuous interstitial concentration profiles, hypothetical high-performance Sm2Fe17N3−δ/FeCo composites, and ‘natural’ multilayers such as Nd6Fe13CuHx, where the recently discovered large anisotropic lattice expansion is shown to arise from the crystal structure.

Das Hookesche Gesetz wird benutzt, um elastische Spannungen und Dehnungen in Zwischengittermagneten zu berechnen. Hauptgegenstand der Untersuchung sind kugelförmige und flache Sm2Fe17Nx Teil-chen mit kontinuierlichen und diskontinuierlichen Zwischengitterkonzentrations-profilen, hypothetische Sm2 Fe17N3−δ/FeCo Hochleistungskomposite und natürliche Vielfachschichten wie Nd6Fe13CuHx, deren unlängst entdeckte groβe anisotrope Gitteraufweitung auf die Kristallstruktur zurückgeführt wird.

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