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1)  Fe(Pd)P alloy
Fe(Pd)P合金
2)  Pd-Fe alloy
Pd-Fe合金
1.
The electrolyte solution composed of FeSO_4·7H_2O,Pd(NH_3)_2Cl_2, sulfosalicylic acid (SSCS) and ammonium sulfate was prepared so as to investigate the effects of various factors on the codepoaition potential of Pd-Fe alloy.
以FeS0_4·7H_2O、Pd(NH_3)_2Cl_2、磺基水杨酸(SSCS)和(NH_4)_2SO_4所组成的溶液体系为研究对象,采用循环伏安法分析了镀液中PdFe配比、电极转速、扫描速度、溶液pH值、pH调整剂和导电盐等因素对Pd-Fe合金共沉积电位的影响规律。
2.
Basing on many former researchful works, the technology and mechanism of electrodeposition on Pd-Fe alloy film are investigated in our experiments, including the following several main aspects:Firstly, potential-pH plots of Fe-H2O.
在查阅大量文献的基础上,研究了电沉积Pd-Fe合金镀层的工艺和机理,主要包括以下几个方面: 1。
3)  Al-Pd-Fe alloy
Al-Pd-Fe合金
1.
Structure analysis of complex alloy phases in as-solidified microstructures of Al-Pd-Fe alloy
Al-Pd-Fe合金凝固组织中复杂合金相的结构分析
4)  Fe-P alloy
Fe-P合金
1.
Study of Fe-P alloy brush plating using soluble anode;
可溶性阳极快速刷镀Fe-P合金的研究
2.
Fe-P alloy was prepared by electroless deposition and the corrosion behavior of electroless Fe-P deposits in 1 mol/L NaOH media was investigated by electrochemical method.
用化学镀的方法制备Fe-P合金,分析化学镀层在1mol/LNaOH介质中的腐蚀行为。
3.
The plating conditions of chemical plating of Fe-P alloy were discussed.
研究了化学镀Fe-P合金中镀液组分和工艺变化对化学沉积速率的影响。
5)  Pd-Ni-P alloy
Pd-Ni-P合金
1.
Amorphous Pd-Ni-P alloy films were electrodeposited.
采用电沉积法制备了Pd-Ni-P合金,采用扫描电子显微镜(SEM)、能量色散谱(EDX)、X射线衍射(XRD)等方法对镀层的形貌、成分和结构进行了分析,研究了PdCl2、NiSO4·6H2O主盐浓度、电流密度等电镀条件对其形貌、组成及性能的影响。
2.
It is very easy to obtain amorphous Pd-Ni-P alloy within a wide composition range.
Pd-Ni-P合金在很宽的组成范围内容易形成非晶态结构,其优异的物理-化学性能在工程、电催化等方面都有良好的应用前景。
6)  Ni-Pd-P alloy
Ni-Pd-P合金
1.
The amorphous Ni-Pd-P alloy films have superior properties of good heat conductivity and wear resistance,thus they are widely used as the protecting coating.
非晶态Ni-Pd-P合金薄膜具有非常好的热传导性和耐磨性,因而被广泛用作防护镀层。
补充资料:Au-Pd-Cr-Pt-Fe-Al-Y alloys
分子式:
CAS号:

性质:金基与钯、铬、铂、铁、铝和钇的多元合金,电阻系数最高。生产方法参见金钯铬合金。可用作高温应变材料。

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