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1)  butt interface
对接界面
2)  interface object
界面对象
1.
Adaptability of software in SAS with interface object and template file are enhanced.
运用界面对象和模板文件增强了界面的适应性。
2.
Concepts of Interface Object and its relations,Task Space,Agent Interface Designing Organ and etc are defined,and basing on it,the generalized Agent Based Object Oriented Interface Designing model is proposed.
本文用Agent和面向对象的方法 ,将人机界面的设计问题作为整个软件系统设计的有机组成部分 ,定义了界面对象及其关系、任务空间、Agent界面设计器等概念 ,并在此基础上提出了一般化的基于Agent的面向对象的界面设计模
3.
Concepts of interface object and its relations, task space, Agent interface designing organ are defined.
用Agent和面向对象的方法 ,将人机界面的设计问题作为整个软件系统设计的有机组成部分 ,定义了界面对象及其关系、任务空间、Agent界面设计器等概念 ,并在此基础上提出了一般化的基于Agent的面向对象的界面设计模
3)  object interface
对象界面
4)  interfacial adhesion
界面粘接
1.
Surface performance and effects on interfacial adhesion of several high performance fibers;
几种高性能纤维的表面性能及其对界面粘接的影响
2.
Study on interfacial adhesion of PE and UPR based composite material;
PE/UPR玻璃钢界面粘接研究
3.
A new method of improving the interfacial adhesion of incompatible polymer blend is introduced.
介绍了改善不相容聚合物共混物界面粘接的一种崭新方法,应用SEM技术以动态热力学进行研究。
5)  bonding interface
粘接界面
1.
The present measuring methods of the mechanical properties of the propellant/liner bonding interface are compared.
比较了目前测试推进剂/衬层粘接界面性能的方法。
2.
Three acetone-based wet bonding systems, Gluma One-Bond, Bond-1 and One-Step, were used to bond Chrisma composite resin to dry or moist dentin surface, and the bonding interface was observed with Bio-Rad MRC-1024 laser scanning confocal microcope; Microtensile strengths of different groups were measured with Instro 1 195.
目的研究干燥或湿润的牙本质表面状态对丙酮基粘接剂粘接强度和粘接界面微观结构的影响,并探讨粘接强度和粘接界面微观结构之间的内在联系。
3.
The bonding interface were observed with Bio-Rad MRC-1024 laser scanning confocal microscope and microtensile bonding strengths of different groups were measured with Instro 1195.
目的 :研究干燥或湿润的牙本质表面状态对酒精 -水基粘接剂粘接强度和粘接界面微观结构的影响 ,并探讨粘接强度和粘接界面微观结构之间的内在联系。
6)  welding interface
焊接界面
1.
Properties and welding interface characterization of new-type Au-Ag-Ge brazing alloy;
新型Au-Ag-Ge钎料的性能及焊接界面特征
2.
The SEM and EDS were used in this paper to analysis the welding interface of the specimens of tungsten and copper, copper and stainless steel made by HIP welding.
用扫描电子显微镜和能谱仪对钨和铜以及不锈钢的热等静压焊接试样的焊接界面进行了分析研究。
补充资料:电子对接受体
分子式:
CAS号:

性质:按路易斯(Lewis)酸碱理论,电子对接受体是酸,而电子对给予体是碱。若用A和:B分别表示路易斯酸和碱,则酸碱反应的一般表示式为:A+:B=A-B。在产物A-B配位化合物分子中,A和:B靠共享由碱提供的电子对形成化学键。例如:BF3(酸)+:NH3(碱)=F3B—NH3(配位化合物)。

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