鐵影壁 的英文怎麼說

中文拼音 [tiěyǐng]
鐵影壁 英文
die eiserne wand
  • : Ⅰ名詞1 (金屬元素) iron (fe) 2 (指刀槍等) arms; weapon 3 (姓氏) a surname Ⅱ形容詞1 (形容...
  • : Ⅰ名詞1 (物體擋住光線后映出的形象) shadow 2 (鏡中、水面等反映出來的物體形象) reflection; image...
  • : 名詞1 (墻) wall (of a house etc ) : 銅墻鐵壁 bastion of iron2 (作用像圍墻的部分) wall of st...
  1. 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

    同時根據能量最小原理,從理論上分析了磁疇結構存在的微觀機理以及響磁疇結構運動、變化的主要因素,得出了應力的存在將響磁疇的形狀、大小和搭配方式等結論。從磁晶體的微觀機理出發,研究了應力對磁疇和磁疇響,發現應力響磁疇結構的本質是由於應力的作用使得磁晶體增加了應力能和磁彈性能,體系為了達到新的平衡,導致了磁疇結構變化,並研究了應力與磁晶體磁特性之間的基本規律。
  2. _ incremental form of evolution law of domain switching is developed by taking the volume fraction of domains as key intrinsic factors. the main factors that have great influence on domain switching are material parameters, domain wall motion, domain volume fraction and the interaction energy between inclusion and matrix. inclusion and its neighbors could be addressed in the description as well

    ? ?建立了以電疇翻轉時的體積分數增量為中心的,基於電疇運動特性的剩餘應變及電位移的增量形式的演化方程,在其中包含有材料參數、疇運動、電疇形式、電疇體積分數及基體與夾雜、夾雜與夾雜等相互間能量作用等響因素。
  3. The field emission property of carbon nanotubes could be increased by substitution of nitrogen for some of carbon, however, however, that of bcn nanotubes was poor. 1. study of disordered multi - wall carbon nanotube carbon nanotubes with different diameter distributions have been produced by thermal decomposition of a ferrocene - xylene mixture under different temperatures and different catalysts in an ar ( or n2 ) / h2 atmosphere

    結合透射電鏡、掃描電鏡及拉曼光譜,系統地研究了以鈷二茂為催化劑時不同溫度下、以及在860時,分別以鈷二茂、鎳二茂、鈷、鎳鈷不同催化劑、不同保護氣體對高溫熱解法制備的多碳納米管結構、產率等的響,對產物的形態、結構進行分析。
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