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磁畴结构 meaning in Chinese

magnetic domain structure

Examples

  1. Study of the formation of twodimensional magnetic domains
    二维磁畴结构形成的蒙特卡洛方法研究
  2. The research work as follow : magnetic domain structure of ferromagnet is systemically analyzed basing on the theory of ferromagnet , and we analyze the microcosmic mechanism of magnetic domain structure
    本文以此为研究背景,开展了以下几方面的研究工作:根据铁磁学的相关理论,系统分析了铁磁材料的磁畴结构
  3. Based on the energy theory of domain structure movement , for the first time this dissertation inquired into the stress - effect of the wire ropes axial mfl theoretically and experimentally
    基于磁畴结构的能量理论,本文首次对钢丝绳周向漏磁密度的应力效应做了深入的理论探讨和试验研究,建立了钢丝绳力磁效应的数学模型。
  4. According to the minimum principle in energy , we analyze the microcosmic mechanism of magnetic domain construction and the main factor that affect the shape , size and connecting of the magnetic domain etc . from the microcosmic mechanism of ferromagnet , we analyze how stress influence the magnetic domain and magnetic domain wall , and discover the increase of stress energy and magnetism elasticity energy which destroy the balance of system energy make up the influence of magnetic domain structure , then set up basic disciplinarian between stress and characteristic of magnetism
    同时根据能量最小原理,从理论上分析了磁畴结构存在的微观机理以及影响磁畴结构运动、变化的主要因素,得出了应力的存在将影响磁畴的形状、大小和搭配方式等结论。从铁磁晶体的微观机理出发,研究了应力对磁畴和磁畴壁的影响,发现应力影响磁畴结构的本质是由于应力的作用使得铁磁晶体增加了应力能和磁弹性能,体系为了达到新的平衡,导致了磁畴结构变化,并研究了应力与铁磁晶体磁特性之间的基本规律。
  5. 1 . based on magnetic domain energy theory , magnetomechanical effect of single cycle load is studied and it is analysed emulationally that magnetic memory characteristic parameters of single cycle load . magnitude and direction of accessional magnetic intensity are made sure of the ferromagnetism material derived from single cycle load
    全文主要研究内容如下: 1 .基于磁畴结构的能量理论,对单周期载荷力磁效应进行了研究,并对单周期载荷磁记忆特征量进行了数值仿真,确定了铁磁性材料单周期载荷的应力附加磁化强度的大小和方向。

Related Words

  1. 封闭畴
  2. 西畴
  3. 小畴
  4. 畴稳定性
  5. 子畴
  6. 模范畴
  7. 兰畴
  8. 基畴
  9. 畴理论
  10. 反向畴
  11. 磁畴磁化强度
  12. 磁畴附件
  13. 磁畴界壁
  14. 磁畴均匀分布
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