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1)  nickel–phosphorous
Ni–P
1.
Comparing with nickel-phosphorous alloy coating the microstructure, friction and wear characteristics of brush-plated nickel–phosphorous composite coatings containing nano alumina particles(n-Al2O3/Ni-P) were studied.
研究了镍磷基纳米Al2O3复合电刷镀层(n–Al2O3/Ni–P)的组织特征及摩擦磨损特性,并与镍磷合金刷镀层进行了比较。
2)  Ni-P and Ni-W-P alloy
Ni-P、Ni-W-P合金
3)  Ni-Mo-P/Ni-P alloy
Ni-Mo-P/Ni-P合金
4)  Ni-P alloy
Ni-P合金
1.
Research progress of electroless Ni-P alloys plating on aluminum alloy;
铝合金化学镀Ni-P合金的研究进展
2.
Study of magnetic Ni-P alloy on hollow glass microspheres by electroless plating technique;
空心玻璃微珠表面化学镀Ni-P合金磁性涂层的研究
3.
The electrochemical corrosion behavior of function gradient Ni-P alloy deposit in acidic and alkaline media;
功能梯度Ni-P合金镀层在酸性和碱性介质中的电化学腐蚀行为
5)  Ni-P plating
Ni-P镀层
1.
In this paper the properties of electroless Ni-P plating are briefly described,and the application of this process in industry is fairly minutely introduced.
简述了化学镀Ni-P镀层的性能,并较详细地介绍了该工艺在工业生产中的应用。
2.
The Ni-P plating and Ni-P-SiC composite coating were prepared using electroless deposite method on the surface of low-alloy cast iron.
作者利用化学沉积法在低合金铸铁表面分别制取了Ni-P镀层和Ni-P-SiC复合镀层,并就两者的耐磨性与铸铁、磷化处理表面及Cr镀层的进行了对比试验研究。
3.
The acidic-alkaline composite deposits composed of alkaline Ni-P plating as bottom film and acidic Ni-P plating as top film could provide the best protection,and the corrosion resistance of single acidic Ni-P deposit was better than that of single alkaline Ni-P deposit.
5%NaCl溶液中的极化曲线,对比分析了酸性和酸碱复合条件下所得Ni-P镀层的表面形貌。
6)  Ni-P coating
Ni-P镀层
1.
Effect of mechanical attrition on microstructure and property of electroless plating Ni-P coatings on magnesium alloy;
机械研磨对镁合金化学镀Ni-P镀层结构及性能的影响
2.
Effect of a Ni-P coating on the tensile strength of carbon fibers evaluated by a Weibull statistical method;
用Weibull统计方法评价Ni-P镀层对炭纤维抗拉强度的影响
3.
The impact of NH_4Cl,NaF and organic compound M on the deposition rate of Ni-P coating is discussed,and the surface morphology,adhesion and corrosion resistance against nitric acid of the coatings are investigated.
结果表明:三种物质都可以作为镀液的加速剂,合理控制它们的比例所形成的复合加速剂可以使加速效果达到最佳状态,而且此时的Ni-P镀层具有良好的表面质量、结合强度和耐蚀性。
补充资料:(E)-4-Chloro 2-p-ni-trobenzyloxycarbonylmethoxyimino 3 oxo-butric acid
分子式 C13H11ClN2O8 
分子量 358.69 
CAS号 108908-54-9
    (E)-4-氯-2-对硝基苄氧羰基甲氧亚胺基乙酰乙酸熔点117~118℃。溶于乙酸乙酯,几乎不溶于水,红外特征峰1R(νmax,cm-1) ;1755,1730,1H-NMR(DMSO-d6),δ(ppm) ;4.76(s,2H,OCH2),5.35(s,2H,CO2CH2),7.07~8.27(q,J=9HZ,4H,Ar-H) 。
    用途;(E)-4-氯-2-对硝基苄氧羰基甲氧亚胺基乙酰乙酸用于合成头孢克肟(Cefixime)等β-内酰胺类抗菌素。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条