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过饱和固溶体的英文

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"过饱和固溶体"怎么读用"过饱和固溶体"造句

英文翻译手机手机版

  • supersaturated solid solution
  • supersaturatedsolidsolution

例句与用法

  • Cu - fe thin films were fabricated by a direction - current ( dc ) magnetron sputtering system
    本文首先采用直流磁控溅射镀膜方法制备了cu - fe过饱和固溶体薄膜。
  • The materials with metastable structures , e . g . , nanostructure and supersaturated solid solutions , have unique physic , chemical and mechanical properties , and get extensive application in many fields
    具有纳米晶、过饱和固溶体等亚稳态结构的材料具有独特的物理、化学及机械性能,因而在诸多领域获得了广泛的应用。
  • The main conclusions are summarized as follows : classical nucleation and growth mechanism only occurs near the phase boundary of the disordered phase , by which 8 " phase precipitates from supersaturated solid solution directly
    主要研究发现:只有处在无序相界附近的合金沉淀机制基本为经典形核长大,相直接从过饱和固溶体中沉淀,序列为:过饱和固溶体化学计量比相长大。
  • Afm measurement indicates that the surface roughness of films is different with difference of fe content , and the films all represent self - assembly phenomenon . the results of the magnetic properties measurement reveal that in the assputtered films , the more fe content in the film , the higher the magnetic properties of the film
    利用振动样品磁强计测量不同cu - fe过饱和固溶体薄膜的磁性能,结合eds及xrf对薄膜成分标定的结果,表明沉积态薄膜的磁性能随薄膜中的fe含量的增加而增强。
  • The precipitation sequence in instable region is as follows : supersaturated solid solution congruent ordering spinodal decomposition stoicheometric phase it is found for the first time that with the increase of compositions , congruent ordering is enhanced , incubation period is shortened , spinodal decomposition is decreased , and volume fraction of ordered phase is increased
    失稳区合金沉淀序列为:过饱和固溶体( ? )非化学计量比有序相( ? )化学计量比相等成分有序化也需要孕育期,首次发现随初始浓度的增加,孕育期缩短,等成分有序化速度加快,而失稳分解的速度相对减慢,有序相体积分数增加。
  • The precipitation sequence is . - supersaturated solid solution - stoicheometric " phase - growth . with the increase of the composition there is more characteristic of non - classical nucleation and growth , and the order parameter values of critical ordered nucleus decrease . the precipitation sequence is : supersaturated solid solution - nonstoicheometric ordered phase - stoicheometric " phase - growth
    随浓度增加,大部分亚稳区合金沉淀非经典形核长大的特征增强,有序相临界晶核序参数分布曲线降低,且分布更加平缓,沉淀序列为:过饱和固溶体非化学计量比有序相化学计量比相长大,非化学计量比有序相并非热力学意义上的亚稳相,研究工作明确了这一点。
  • Moreover , the investigation for the ma of cu - cr indicates that : with using of protective atmosphere , active carbon has a good effect on the oxidation control during milling ; the structure refining and increasing of interface and defect result in the formation of non - equilibrium phase
    此外,对cu - cr难互溶体系的ma研究表明:粉末的结构细化及界面、缺陷的产生导致了ma过程中亚稳相(氧化物非晶、过饱和固溶体)的转变与形成;与保护性气氛相比较,活性炭对ma过程中的氧化现象有良好的控制作用。
  • The phase structure of different cu - fe thin films were studied by using grazing incidence x - ray analysis ( gixa ) . the texture and residual stress of different cu - fe thin films were measured by scan of x - ray diffraction ( xrd ) and 2 scan with different . the thicknesses of different thin films were characterized by means of small angle x - ray scattering ( saxs ) technique . by using atomic force microscope ( afm ) measured surface roughness of thin films . the component of different thin film was characterized by energy disperse spectrum ( eds ) and x - ray fluorescence ( xrf ) . the magnetic properties of cu - fe thin films were measured by means of vibrating sample magnetometer ( vsm ) . in addition , the giant magnetoresistance ( gmr ) effects of different films were also measured . the original resistance of the film fabricated by a direction - current magnetron sputtering system is directly affected by bias voltage
    利用掠入射x射线分析( gixa )技术对不同cu - fe薄膜的相结构进行了研究;利用xrd扫描及不同角度的2扫描对薄膜进行了结晶织构及残余应力分析;运用小角x射线散射( saxs )技术测量了薄膜的厚度;采用原子力显微镜( afm )观察了薄膜的表面形貌;运用能量损失谱( eds )及x射线荧光光谱( xrf )对薄膜进行了成分标定;使用振动样品磁强计测量了不同cu - fe过饱和固溶体薄膜的磁性能;最后利用自制的磁阻性能测试设备测量了真空磁场热处理前后不同薄膜的巨磁阻值。
  • Being fine , homogeneous and free of melting , the powder prepared by mechanical alloying has applied to develop scattering strengthen - material , magnetic material , high - temperature material , superconductivity material , amorphous , and non - equilibrium material , compound material etc . as a high - tech technology to prepare alloying powder , ma has become a more and more important method for preparing new materials
    机械合金化法制备的粉末晶粒细小、成分均匀,且能避免熔化过程,已用于开发研制弥散强化材料、磁性材料、高温材料、超导材料、非晶、准晶、纳米晶等各种状态的非平衡材料、复合材料、轻金属高比强材料、储氢材料、过饱和固溶体等。作为制备合金粉末的非平衡高新技术,越来越成为一种制备新材料的重要方法。
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