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1)  Cu-matrix electrical contact material
铜基电接触材料
1.
The effects of solution treatment and aging treatment on the microstructure of Cu-matrix electrical contact material were discussed.
探讨了固溶、时效热处理工艺对一种新型铜基电接触材料微观组织与结构的影响。
2)  copper based electrical contact materials
铜基电触头材料
3)  silver-based electrical contact material
银基电接触材料
1.
In view of the importance of silver-based electrical contact material in electrical power system and electrical appliance industry,the progress in the research and application of the above material was summarized and discussed based on the literatures and research experience.
鉴于银基电接触材料在电力系统、电器工业中的重要性,综合近年多种文献资料与研究体会,对此类材料的研究与应用进展进行了扼要归纳与阐述。
4)  Copper-based alloy electrical contact material
铜合金电接触材料
5)  electrical contact materials
电接触材料
1.
Microstructure and physical performances of silver rare earth oxide electrical contact materials prepared by internal oxidation;
银稀土氧化物电接触材料的组织与物理性能
2.
The Ag-ZnO electrical contact materials fabricated by AF method(atomization powder and hot forging;) and PM method(powder metallurgy) were studied in the present paper.
研究了AF法(雾化粉末热锻法)和PM法(粉末冶金法)制备的Ag-ZnO电接触材料。
3.
The wettability greatly affects the distribution of ceramic in the silver base and at the same time affects the service performance of the electrical contact materials.
75O3陶瓷并加入少量添加物作为改性剂,对其与Ag的浸润性,材料的电阻率以及Ag/陶瓷复合电接触材料的电性能分别进行了研究,结果显示,改性剂使陶瓷材料与Ag之间的浸润性发生明显的变化,且作用效果与改性剂的加入方式有关,添加剂的加入使材料的电阻率增大,同时一定程度上改变了陶瓷在银基体中的分布状态,从而对电接触材料的使用性能产生较大的影响。
6)  electrical contact material
电接触材料
1.
Optimization design for the preparation process of copper-based electrical contact materials reinforced by carbon nanotube
纳米碳管增强铜基电接触材料制备的优化设计
2.
Silver tin oxide electrical contact material is prepared with powder metallurgic method.
采用粉末冶金法制备出银氧化锡电接触材料,研究了不同含量的氧化锡对材料组织性能的影响,随着氧化锡含量的增加,材料的导电率和抗熔蚀性能越来越差。
3.
After a comparison between the development situation of contact material industry in China and foreign countries, we give an exploring discussion on the research and development tendency of electrical contact material.
分析了AgSnO_2电接触材料替代有毒的AgCdO材料进程中存在的主要问题。
补充资料:电致发光显示材料(见电致发光材料)


电致发光显示材料(见电致发光材料)
electroluminescent display materials

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