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1)  intergranular exchange coupling
颗粒间相互交换耦合
1.
Numerical results showed that the intergranular exchange coupling increased the coercivity and the remanance magnetization loop squareness,also it shortened the transition length while enlarged the cross track correlation length.
结果还表明,粒径为Voronoi分布的介质的过渡区噪声高于粒径为一致分布的介质,且随着颗粒间相互交换耦合作用增加和记录密度的提高,噪声的差值也会变大。
2)  intergranular exchange@P1coupling interaction
晶粒交换耦合相互作用
3)  exchange-coupling interaction
交换耦合相互作用
1.
Effect of exchange-coupling interaction on the effective anisotropy for magnetic hard Nd_2Fe_(14)B grain was investigated.
 以纳米Nd2Fe14B永磁材料为例,研究了硬磁晶粒间交换耦合相互作用对磁体有效各向异性的影响。
2.
Effects of the exchange-coupling interaction between the grains on the effective anisotropy and the coercive field in nano-composite permanent magnets were investigated by establishing a model of globosity.
通过建立球状晶粒模型,研究了纳米硬磁相晶粒之间的交换耦合相互作用对晶粒有效各向异性和矫顽力的影响,结果表明随着晶粒直径的减小,晶粒之间的交换耦合相互作用将随之增强,而材料的有效各向异性和矫顽力将逐渐下降。
3.
Taking nanocrystalline Nd_2Fe_(14)B as a typical sample, based on Herzer′s random anisotropy theory and adopting the cubic grain model, the partial exchange-coupling interaction model was established and the dependence of effective anisotropy constant K_(eff) on grain size was investigated.
结果表明:晶粒之间的交换耦合相互作用随晶粒尺寸的减小而增强,材料的有效各向异性Keff随晶粒尺寸的减小逐渐下降。
4)  exchange coupling interaction
交换耦合相互作用
1.
The intergrain interactions can be distinguished as the long rang magnetostatic interaction and the exchange coupling interaction.
晶粒相互作用可区分为长程静磁相互作用及近邻晶粒的交换耦合相互作用。
2.
The interactions can be classified as the longrange magnetostatic interaction between the grains and the exchange coupling interaction of the neighboring grains.
相互作用可分为晶粒之间的长程静磁相互作用和近邻晶粒之间的交换耦合相互作用。
3.
The effects of exchange coupling interactions between grains on the effective anisotropy and the variation in Nd 2Fe 14 B/α Fe nanocomposite permanent materials were investigated.
研究了纳米Nd2 Fe1 4B α Fe复合永磁材料中晶粒交换耦合相互作用对有效各向异性的影响和变化规律 。
5)  particle interaction
颗粒间相互作用
1.
The simu- lations of particle interactions by the new force model agreed well with the experimental results.
对微米、近亚微米尺度的细颗粒间相互作用过程的显微观察发现,细颗粒间具有"吸引-旋绕-排斥"的相互作用行为。
6)  indirect exchange interaction
间接交换相互酌
补充资料:系统间耦合
分子式:
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性质:在一个生产装置中,往往需要设置若干个控制回路来稳定各个被控变量。在这种情况下,几个回路之间就可能出现相互关联,相互耦合,相互影响,构成一个多输入、多输出的相关(耦合)控制系统,使系统比较难以控制,必须通过关联分析来设计解耦控制来改善控制品质。

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