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1)  Nickel coating
镀镍层
1.
The stripping rate and matrix corrosion condition of three kinds of stripping technology of nickel coatings on NdFeB,were investigated.
研究对比了三种钕铁硼镀镍层退除工艺的退除速度及基体腐蚀情况。
2)  Nickel-nickel-plating layer
镍镍铬镀层
3)  Nickel coating
镍镀层
1.
Research on formulation of aqueous phase stripping nickel coating on NdFeB permanent magnet;
钕铁硼永磁体镍镀层水相退除配方研究
2.
Effect of plating voltage on friction and wear properties of nickel coating
刷镀电压对镍镀层摩擦磨损性能的影响
3.
Electroplated nickel coatings were prepared respectively under conditions with ultrasonic and without ultrasonic.
分别在超声波和无超声波条件下,制备了镍镀层。
4)  Ni-P coating
镍磷镀层
1.
Study on CO_2 corrosion resistance Of oil steel J55 and it's Ni-P coating;
J55油管钢及其镍磷镀层的抗CO_2腐蚀性能研究
2.
The influences of electroless Ni-P coating on fatigue property of spring steel were studied by comparative tests,and the mechanism was analyzed.
采用三点弯曲疲劳试验法研究化学镀镍磷镀层对70弹簧钢疲劳性能的影响。
3.
In comparison to the conventional Ni-P coating,the co-deposited nano-coating has denser microstructure,higher micro-hardness and wearability.
结果表明:与传统镍磷镀层相比较,纳米颗粒的加入使复合镀层中的组织结构更加致密,显微硬度有较大程度的提高,耐磨性增强,其中Ni-P/WC镀层的性能优于Ni-P/SiC镀层。
5)  nickel plate surface
镍镀层
1.
A study of colored coordination compound films of molybdate-inorganic phosphates on nickel plate surface;
镍镀层在钼酸盐-磷酸盐溶液中的阴极彩色配合物着色膜的研究
2.
The experiment shows that the films formed by stearic acid on nick plate surface possess the most effective anticorrosive if accelerated chemical and electrochemical corrosion tests (LSV) are carried out to compare the anticorrosive effects of the coordination compound films formed by a series of organic inhibitors such as long-chain fat acids and heterocyclic compounds on nickel plate surface.
通过加速化学和电化学腐蚀实验(LSV)比较了长链脂肪酸和杂环化合物等一系列有机缓蚀剂在镍镀层材料表面形成的配合物膜的耐蚀性,结果表明,硬脂酸在镍镀层材料表面形成的膜耐蚀效果最佳。
6)  Ni coating
镍镀层
1.
Pulse-electroplated Ni coating was prepared on the surface of depleted uranium.
结果表明,在含50μg/gCl-的KCl溶液中,镍的腐蚀电位高于贫铀,镍镀层对贫铀是一种阴极性镀层;与直流电镀镍相比,铀表面脉冲电镀镍腐蚀电位更高,极化电阻更大,腐蚀电流更小,电化学阻抗幅值更大,对铀基体具有良好的防腐蚀性能;随着浸泡时间的推移,脉冲电镀镍腐蚀电位下降,极化电阻减小,腐蚀电流增大,电化学阻抗幅值降低,电极过程由一个时间常数向两个时间常数转变,腐蚀特性由点蚀向电偶腐蚀转变。
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