1) nickel-chromium alloy coating

Ni-Cr合金镀层
2) Fe-Cr-Ni plating layer

Fe-Cr-Ni合金镀层
3) Ni-Cr composite coating

Ni-Cr复合镀层
1.
The oxidation results at 750 ℃ show that the ENCCs have a superior oxidation resistance compared to EMCC, for the as-codeposited Ni-Cr composite coatings of a given Cr particles content, the finer the Cr particles, the better the .
采用复合电镀技术,通过向普通电镀溶液中分别加入平均粒度约40nm和1~5μmCr粉的方法,在Ni基材上制备了2种金属Ni基纳米Cr粒子弥散的Ni-Cr复合镀层(简称为ENCCsNi-Cr)和1种微米Cr粒子弥散的Ni-Cr复合镀层(简称为EMCCsNi-Cr)。
2.
05mol/L H2SO4 was investigated by using potentiodynamic polarization and capacitance measurement in order to investigate the effect of Cr particle sizen on the corrosion behavior of Ni-Cr composite coatings.
为了对Cr颗粒尺寸如何影响Ni-Cr复合镀层的电化学腐蚀性能有更深的认识,采用复合电镀技术,通过向普通电镀溶液中分别加入平均粒度约为40nm和1~5μm Cr粉的方法,在Ni基材上制备了2种Cr含量相近的Ni-Cr复合镀层。
4) Fe-Cr-Ni coating

Fe-Cr-Ni镀层
5) Zn-Cr alloy coating

Zn-Cr合金镀层
6) Zn-Al-Cr alloy coating

Zn-Al-Cr合金镀层
1.
In order to obtain chromium containing zinc alloy coating with excellent performance,mechanical plating technologies of Zn-Cr and Zn-Al-Cr alloy coatings were developed through varying the kind and amount of activator and promoter on the basis of mechanical plating technologies of Zn and Zn-Al coatings.
利用该工艺在钢基表面获得了Zn-Cr及Zn-Al-Cr合金镀层。
补充资料:ZG4Cr25Ni35WNb合金中的共晶组织
ZG4Cr25Ni35WNb合金中的共晶组织
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说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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