1) interlaminar interface bonding
层间界面结合
1.
Structure composition,structure forms,structure mechanical characteristics and advantages,interlaminar interface bonding technology and engineering application of composite pavement of CRC + AC were discussed.
论述了CRC+AC复合式路面的结构组成、结构形式、结构力学特点与优点、层间界面结合技术以及近年来的工程应用等,阐明了CRC+AC的结构受力特性、端部变形特性、层间结构与材料以及其适用条件。
2) film binding interface
涂层结合界面
1.
Study on the determination of interfacial binding strength of coatings (Ⅰ):theorctical analysis of stress in thin film binding interface;
涂层界面结合强度检测研究(Ⅰ):涂层结合界面应力的理论分析
3) interlaminar interface
层间界面
1.
The effects of non-woven nanofibrous membranes as interlaminar interfaces on the mechanical perfor-(mance) of laminated composites were investigated.
应用静电纺丝技术制备环氧纳米纤维,将收集的纳米纤维无纺布薄膜插入层合板的层间界面并固化成型,研究其对层合板力学性能的影响。
2.
The effects of compound ultrafine fibrous membranes as interlaminar interfaces on the mechanical(performances) of laminated composites were investigated.
应用同轴静电纺丝技术制备环氧包覆纳米SiC复合微/纳米纤维,将该复合微/纳米纤维收集成无纺布薄膜引入层合板层间界面并固化成型,研究其对层合板力学性能的影响。
4) interlayer
['intə(:),leiə]
层间界面
1.
Test Study on Mechanics Properties of Bridge Deck Interlayer
桥面铺装层间界面力学性能试验研究
2.
The article has studied the influential factors for the shear characteristics of the bridge deck interlayer through laboratory test and numerical analysis.
针对影响桥面铺装层间界面剪切特性的因素开展了试验研究和数值模拟研究。
5) interfacial bonding
界面结合
1.
The reason is believed to be the improved interfacial bonding.
研究表明,在碳化硅复合材料表面化学镀一层镍,能够较好地改善增强体与基体的界面结合,使得碳化硅复合材料的抗弯强度、冲击韧性及宏观硬度均有了明显的提高。
2.
The fracture surface of the wires studied by scanning electron microscopy (SEM) shows a suitable interfacial bonding between the fiber and aluminum.
复合丝拉伸断口的扫描电镜(SEM) 观察可见断面有一定起伏,部分纤维拔出但长度较短,表明纤维与基体具有适当的界面结合。
3.
Al/Diamond composites were fabricated by Spark Plasma Sintering(SPS) under Solid-phase sintering,changes of interfacial bonding during sintering process were investigated mainly.
使用放电等离子烧结(SPS)固相烧结条件下制备Al/Diamond复合材料,重点研究烧结过程中基体与增强体两相界面结合状态随烧结时间的变化规律。
6) interface
[英]['ɪntəfeɪs] [美]['ɪntɚ'fes]
结合界面
1.
The interface between Ga_(95.
15Sn合金与Cu基体的结合界面进行了分析。
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。
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。
参考词条