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1)  Ag-Cd alloy
Ag-Cd合金
1.
Electrodepositing technology of Ag-Cd alloy from cyanide bath was investigated.
研究表明,提高镀液Cd~(2+)和Ag~+浓度比、提高电流密度、降低温度、增加镀液中络合剂和辅助络合剂的浓度都能使镀层镉含量提高,从而确定了电沉积含镉15%~18%的Ag-Cd合金镀层的最佳镀液组成和工艺条件。
2)  Ag-IN-Cd Alloy with nuclear grade
核级Ag-In-Cd合金
3)  Cd-Sb alloy
Cd-Sb合金
4)  Cd-Zn alloy
Cd-Zn合金
5)  lead-cadmium alloy
Pb-Cd合金
6)  Al-Ag alloy
Al-Ag合金
1.
The kinetic Monte Carlo method based on the Multi-States Ising Model,was applied to simulate the effect of microelements on the microstructural evolution of Al-Ag alloys during initial aging stage.
采用基于Multi-States Ising Model的Kinetic Monte Carlo算法,模拟研究了添加微量元素对Al-Ag合金时效初期微观结构的演变过程的影响。
2.
Taking into account the influence on the lattice constant from temperature,the valence electronic structures of GP zones of η-form in the Al-Ag alloy,and the interfacial energy between GP zones of η-form and matrix were calculated by using empirical electron theory in solid and molecules(EET) and the extension of Becker model.
考虑温度对晶格常数的影响,运用固体与分子经验电子理论,对Al-Ag合金的η型GP区的价电子结构进行计算;在此基础上,运用Becker推广模型,对该体系的η型GP区与基体之间的界面能进行预测。
3.
The valence electron structure of GP zone ? phase in Al-Ag alloy was calculated according to the “empirical electronic theory in solid”(EET), and the interface energy based on the information of the valence electron structure was calculated also.
运用固体经验电子理论,对Al-Ag合金GP区?相的价电子结构进行计算,并且在此基础上计算了GP区和基体的界面能。
补充资料:东北轻合金加工厂生产的铝合金挤压管材和空心材


东北轻合金加工厂生产的铝合金挤压管材和空心材


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