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1)  Ni-Cu-P ternary alloy
镍-铜-磷三元合金
1.
Ni-Cu-P ternary alloy was prepared on 45 steel by an electroless deposition and its microstructure,phase structure and properties were studied using optical microscope,energy dispersive analysis,X-ray diffraction and microhardness tester.
对45钢表面用化学镀方法镀镍-铜-磷三元合金层,采用金相显微镜、扫描电镜能谱分析、X射线衍射和显微硬度计研究了镀层的组织、相结构和性能。
2)  Ni-Cu-P alloy coating
镍-铜-磷合金镀层
3)  Ni-Cr-Cu-P alloy
镍-铜-铬-磷合金
4)  Zn–Sn–Ni alloy
锌–锡–镍三元合金
1.
Using sodium stannate, zinc chloride and nickel chloride as main salts, copper was fractally electrodeposited on the surface of top grade electrolytic copper foil used for printed circuitry, then the Zn–Sn–Ni alloy was electrode- posited under alkaline condition.
采用锡酸钠、氯化锌、氯化镍做主盐,对印制电路用高精电解铜箔表面进行分形电沉积铜,再在碱性条件下电镀锌–锡–镍三元合金。
5)  copper-nickel alloy
铜镍合金
1.
This paper describes a fundamental investigation of the corrosion behavior of copper-nickel alloy in cooling water environment, utilizing light optical, scanning electron microscopy and X-ray diffraction.
以某发电厂凝汽器铜镍合金(BFe30_1_1)点腐蚀失效为例,利用扫描电镜、X射线衍射,分析了在循环冷却水环境中BFe30_1_1铜镍合金发生点腐蚀的形貌和腐蚀产物的组成。
2.
By analyzing the costs,purchase times and construction condition,we adopted copper-nickel alloy and plastic coated carbon steel in piping design for a project that is in restricted time and funds;to ensure the project quality.
在海水介质管线设计中 ,通常把管线材质分为 ,铜镍合金、玻璃钢及碳钢涂塑管线。
3.
Investigates Copper-Nickel alloy layers deposited on polyester (PET) fabric by an electroless plating using sodium hypophosphite as reducer, with sweep electron microscope (SEM) and X-ray diffraction (XRD).
选用次亚磷酸钠作还原剂,用化学镀的方法制备了铜镍合金化涤纶织物。
6)  Cu-Ni alloy
铜镍合金
1.
Studies on Cu-Ni alloy electroless plating using sodium hypophosphite as reductant;
次磷酸钠化学镀铜镍合金的研究
2.
Localized corrosion of Cu-Ni alloy in China marine;
铜镍合金在我国实海海域的局部腐蚀
3.
Effects of SRB (sulfate-reducing bacteria) on corrosion of Cu-Ni alloy was studied using electrochemical techniques under laboratory conditions.
利用电化学测试技术,在实验室条件下研究了硫酸盐还原菌(SRB)对铜镍合金腐蚀行为的影响。
补充资料:镍磷合金电镀
分子式:
CAS号:

性质:含磷量大于8%以上的镍磷合金有良好的非晶态结构,其耐蚀性、耐磨性甚佳,经适当温度热处理,维氏硬度可达1100左右,此时镀层的耐磨性与硬铬镀层相媲美。此外,还具有良好的焊接性、电学性能和磁性等。因此,广泛用于电子工业、计算机工业、宇航工业领域。镍磷合金镀层可通过电镀或化学镀的方法得到。电镀溶液主要有镍盐-亚磷酸镀液和镍盐-次磷酸镀液。前者要在低PH值下施镀,其阴极电流效率较低。后者可在较高PH值下电镀,但次磷酸根离子在阳极上易被氧化。两种溶液的稳定性都应采取适当措施加以控制。

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