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1)  layer compound film
层状复合镀层
2)  composite coating
复合镀层
1.
Study on technology of brush electroplating Ni-PTFE composite coating;
电刷镀Ni-PTFE复合镀层工艺研究
2.
Spectrophotometric determination of total precipitated quantities of nano-sized aluminium oxide in composite coatings with chrome azurol S;
铬天青S分光光度法测定复合镀层中纳米粉体氧化铝共析量
3.
Study on preparation and properties of nano Ni-SiC amorphous composite coatings;
纳米Ni-SiC非晶态复合镀层的制备工艺及性能研究
3)  composite coatings
复合镀层
1.
Microtensile property of nano WC and PTFE composite coatings;
纳米WC和纳米PTFE的复合镀层微拉伸研究
2.
Study on properties of electrodeposited RE-Ni-W-B composite coatings;
电沉积RE-Ni-W-B多元复合镀层性能研究
3.
Study on preparation of Ni-P-SiC(C) composite coatings by electroless deposition;
化学沉积法制备Ni-P-SiC(C)复合镀层的研究
4)  composite plating
复合镀层
1.
Study on microstructure and properties of electroless RE-Ni-Mo-P-WC composite plating;
化学沉积RE-Ni-Mo-P-WC复合镀层组织结构及性能研究
2.
The Effect of P Content in Ni-P-Si_3N_4 Composite plating on Remanent Stress and Wear Performance;
Ni-P-Si_3N_4复合镀层中P含量对残余应力和磨损性能的影响
3.
The performance and quality of taps before and after composite plating were compared separately.
介绍了国内机用丝锥和挤牙丝锥上化学镀覆(Ni-P)-SiC-PTFE复合镀层的应用情况。
5)  composite layer
复合镀层
1.
Plus-deposited nanometer Ni-TiN composite layers;
脉冲电沉积纳米Ni-TiN复合镀层
2.
Study on Microstructure and Properties of Ultrasonic-electrodeposited Ni-TiN Composite Layer
超声-电沉积Ni-TiN复合镀层组织和性能研究
3.
Adhension and conductivity of the composite layer were studied.
 采用化学复合镀技术在尼龙塑料PA66表面沉积PANI/Cu复合镀层。
6)  composite deposit
复合镀层
1.
Study on corrosion behavious or of Ni-P/Si_3N_4 composite deposit in acetic acid;
Ni-P/Si_3N_4复合镀层在醋酸溶液中腐蚀行为的研究
2.
Study on photocatalytic antibacterial performance of Ni/TiO_2composite deposits;
Ni/TiO_2复合镀层光催化抗菌性能的研究
3.
The size and size distribution of SiC particles in bath and the distribution of SiC particles in composite deposits were tested by TEM and SEM.
通过沉降实验观察分散体系的悬浮稳定性,利用透射电镜(TEM)及扫描电镜(SEM)分别测定了镀液中SiC颗粒的粒度及粒度分布,以及观察了纳米颗粒在复合镀层表面的分布。
补充资料:层状结构催化剂
分子式:
CAS号:

性质:在层状结构物中层与层之间引进有机或无机的基因,从而具有催化作用的催化剂。其优点是可通过控制层间距(如0.5~4.0nm),使反应物定向,以达到独特的反应物和产物选择性。层状结构材料可以用天然层状黏土或水滑石等改性,也可以用K2La2Ti3O10等起始层板材料分步交换制得。提高柱层状结构物的热稳定性和水热稳定性,目前还比较困难。

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