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影响层的英文

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"影响层"怎么读用"影响层"造句

英文翻译手机手机版

  • affected layer

例句与用法

  • The investigation of various effects on cooling effectiveness has been made , the results presented in this paper will be useful for the actual lamilloy design
    影响层板冷却有效性的因素进行分析,为层板的设计起到指导作用。
  • Abstract : this paper deals with the regularities of the thickness of thermal damage surface and effect of all of the mechanisms in edm of structural ceramics
    文摘:研究了结构陶瓷电火花加工热影响层厚随脉冲参数变化的规律以及蚀除机理的各种分离方式作用效应的变化规律。
  • Moreover , the medium film affected the coupling effect , weakening its leading effect on the microwave - absorbing properties of materials , increasing the absorption quantity and decreasing the matching thickness , the density of area and the lodb bandwidth
    介质膜的加入则会影响层间耦合作用,减弱层间耦合作用对材料吸波性能的主导作用,提高吸收量,降低匹配厚度、面密度与10db带宽。
  • In this research , the factors which influence the intercalation and exfoliation of layered silicates have been analyzed . the dispersion of layered silicates into rubber and the mechanism of improving mechanical properties of rubber due to the addition of layered silicates have been theoretically analyzed
    本课题结合研究结果,分析了制备纳米复合材料过程中影响层状硅酸盐插层和剥离的主要因素,对层状硅酸盐在橡胶基体中的分散机理和增强机理进行了理论分析。
  • The distortion of in - plane fibers is considered to be the main reason for the effect of stitching on the in - plane mechanical properties , and the fiber distortion region , the resin - rich pocket and the through - thickness reinforcement section are taken into account . the fiber misalignment angle and the inhomogeneous fiber volume fraction caused by stitching have been determined within the lamina . the elastic constants of a lamina are calculated using a micromechanical model , then the constitutive equations of the stitched composite laminates can be composed
    从缝纫孔附近纤维变形的细观结构出发,建立的纤维弯曲模型,以面内纤维的弯曲变形作为缝纫影响层合板面内力学性能的主要原因,同时考虑了纤维变形区、厚度增强区以及树脂富集区的影响,得到单向板内任意一点处的纤维偏转角和纤维体积百分含量。
  • In this project , the actual three - tier architecture was realized and the business logic was packed into ejb components , which acted as an agent between presentation tier and resource tier ; the separation between business logic and system service was realized , which enabled developers to devote their mind to the realization of business logic and improved the software quality and efficiency ; the stretchable enterprise application was realized through tier - dispatched pattern , which has relax coupling relationship between tiers and each tier has its own role and the methods inside the tier will be changed without affection to the call - up relationship between tiers
    主要成果是: ( 1 )实现了真正意义上的三层体系结构,将业务逻辑封装在ejb组件中, ejb组件作为表现层的代理对数据层进行数据操作; ( 2 )使用ejb技术,实现了业务逻辑和系统服务之间的分离,使得开发人员可以专注于业务逻辑的开发,从而提高软件的质量和开发效率; ( 3 )通过分层模式,实现了可伸缩的企业应用程序。层与层之间松散耦合,每个层针对特定的角色,每一层内部实现方法的变化不影响层与层之间的调用关系,可以更好地适应客户需求的变化。
  • It is common considered that the more the half width is high , the more its hardness is based on the fact that the half high width of the shot peening affected layer in hard state decreases many scholars engaged in investigation of shot peening technology proposed that the shot peening affected layer is work softened
    许多从事喷丸研究的学者从硬状态材料喷丸影响层半高宽减小的实验事实提出喷丸影响层发生了“加工软化”的观点,实验选用超高强度钢为实验材料,对其不同硬度的实验结果发现,喷丸使硬状态表面的半高宽大幅度减小,但使它们的表面屈服强度得到了提高。
  • Using v2 & 5 and alkylamines ( cs - cao alkyl chain ) as precursor , vanadium oxide nanotubes which have an unique structure that alkylamines intercalate into layers of tubes wall affecting the layer spacing were prepared . their layers spacing ranges from 1 . 25 nm to 3 . 82 nm according to the length of alkyl chain . moreover , the growth mechanism of vanadium oxide nanotubes have been investigated and 3 - 2 - id model was established to interpret the vanadium oxide nanotubes growth process . potassium niobate is a functional materials which can be used as photochemical catalysts . lt is well known that the catalytic activites are affected greatly by the surface area of catalyst particles on which the reaction take place
    以系列烷基胺和五氧化二钒为原材料,通过简单的水热反应合成出了氧化钒纳米管,这种纳米管结构独特,烷基胺作为模板剂内嵌入纳米管管壁层间,成为支持纳米管的骨架,并影响层间距大小,纳米管管壁层间距随着烷基胺碳链长度的不同在很大范围内变化,通过采用不同碳链长度的烷基胺( c _ nh _ ( 2n + 1 ) nh _ 23 n 20 )作为模板,来控制氧化钒纳米管的层间距,层间距可调控范围从1 . 25nm到3 . 82nm 。
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