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1)  interface layer
界面层
1.
Effect of Process Parameters on Interface Layer and Properties of Liquid Aluminum/Steel;
工艺参数对液态铝与钢界面层及其性能的影响
2.
Mechanics model in consideration of interface layer effects on fiber reinforced ceramic composites;
考虑界面层效应的纤维增强陶瓷材料的力学模型
3.
Correlation models of site evaluation on heat factors in the interface layer of northern mountain areas in Hebei Province.;
冀北山地界面层立地评价热量因子相关模型的研究
2)  interphase [英]['intəfeiz]  [美]['ɪntɚ,fez]
界面层
1.
The relationship between the structure and property of this kind of materials ,especially for their interphase and property were expounded and analyzed .
阐述了玻璃纤维增强聚氯乙烯复合材料的制备方法及工艺现状,对该类材料的结构与性能的关系,特别是其界面层性质与材料性能的关系进行了叙述和分析,指出了该类复合材料的研究趋
2.
An aqueous suspension impregnation technique has been developed and extended to prepare rigid polyvinyl chloride/glass fiber composites, and the effects of the interphase on properties were investigated.
并研究了水悬浮法制备GF/PVC复合材料的界面层设计及其对材料性能的影
3.
he past decade has seen a renewed interest in fiber composite interphase as approaches to interfacial engineering.
系统地评述了纤维复合材料界面层结构、性质及其对宏观性能影响的研究工作,针对不同体系中形成的界面层,总结了用不同表征手段考察其结构的工作;通过简要回顾界面应力传递机理并比较不同界面性质评价方法的意义,根据模型复合材料实验结果,讨论了界面性质对界面层结构的依赖性,提出了控制界面层形态和性质的原则和方法。
3)  interlayer ['intə(:),leiə]
界面层
1.
Numerical examples are given to show the effects of material properties, interlayer thickness, and especially the distribution parameter k on the stress intensity factor.
给出了双材料间界面层区域的广义模型,并对承受扭转载荷的界面间硬币形裂纹进行了分析与计算。
2.
Interlayer(or interphase) fracture constitutes an important issue of the micromechanics of composite materials,The present paper studies the fracture behavior of a crack penetrating vertically to an interlayer where the stiffness varies monotonically from one material phase to another material phase.
界面层(或界面相)断裂行为是复合材料细观力学的一个重要问题。
3.
GeOxNy interlayer is grown on Ge substrate by surface passivation,followed by HfTiN film deposited by reactive co-sputtering,and wet N2 annealing is applied to transform HfTiN to HfTiON high-κ gate dielectric.
通过NO、N2O对Ge衬底进行表面钝化,生长GeOxNy界面层,然后采用反应磁控共溅射方法制备HfTiN薄膜,并利用湿N2气氛退火,将HfTiN转化为HfTiON高κ栅介质。
4)  interface [英]['ɪntəfeɪs]  [美]['ɪntɚ'fes]
界面层
1.
The adhesive effect on the short fibre/rubber interface in short fibre/rubber composite(SFRC) was evaluated by DTMA based on the principle that tanδ of SFRC was determined by DTMA tester,and the parameter α for characterizing the adhesive effect was calculated from tanδ.
采用动态热力学分析法评估短纤维/橡胶复合材料(SFRC)界面层的粘合效果。
2.
The effect of nano SiC(N) absorber contents, hot-pressing temperatures, and the carbon-rich layer at the absorber/matrix interface on microwave permittivity and microwave absorbing ability of the RAM were studied.
研究了由SiC(N)纳米吸收剂制备的SiC(N)/LAS吸波材料的介电性能,对影响介电性能的吸收剂的含量、吸波材料烧结温度和碳界面层等因素进行了较为全面的研究。
3.
The importance of interface and it's optimum design in inorganic particle/polymer composites were summarized, the interface theory was expounded.
阐述了聚合物/无机粒子复合材料界面层及其优化设计的重要性;总结了复合材料的界面理论;介绍了玻璃微珠表面处理常用的几种方法,包括偶联剂处理、等离子体辐射引发聚合及弹性体包覆,并对其表面化学接枝聚合进行了评述。
5)  interface/interphase
界面/界面层
6)  formation boundary
地层界面
1.
Introduces responses of LWD electromagnetic resistivity tool used in dipping beds and laminated formations;Analyses resistivity curves of the tool penetrating through formation boundaries,and further proposes two methods,one is for accurate orientation of formation layerings,the other is for correct before-bit formation boundary prediction to geosteering the wells to a specific target.
研究了倾斜分层非均匀介质条件下随钻电磁波电阻率测井的电磁响应,分析了测量工具在穿越地层界面时的特征,进而提出了水平井条件下利用电阻率曲线准确划分地层界面和进行地质前向预测的方法。
2.
The response characteristics of formation boundary in horizontal well logging are studied.
研究了水平井测井在地层界面的响应特征,探讨了水平井油水层判别方法。
3.
In logging interpretation,it is suggested that apart from the resistivity data as a priority other logging data should be taken into analysis on the relationship between the well track and the formation and the angle sizes so as to clarify the formation boundary.
在比较了水平井中随钻测井和电缆测井感应电阻率曲线之间的区别后,得出以下结论:两者在储层内部相差较小;在界面处及其附近的响应特征受地层界面表面电荷、钻井液侵入深度大小及井眼与地层夹角大小的影响较大。
补充资料:界面层
分子式:
CAS号:

性质:构成两相边界有一定厚度的空间区域称为界面层或表面层。界面层很薄,可以是单分子层或几个分子层的厚度。界面层有许多与相邻二体相不同的性质和作用,如表面压、表面张力、表面黏度等。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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