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1)  chromate prefilming
铬酸盐预膜
2)  chromate film
铬酸盐膜
3)  chromate conversion coating
铬酸盐转化膜
1.
A New method for separating and richening of Cr(Ⅲ) and Cr(Ⅵ) in chromate conversion coatings was studied.
研究了铬酸盐转化膜中Cr(Ⅵ)和Cr(Ⅲ)的分离富集新方法。
2.
The degradation of three finishing systems,carbon steel/paint,magne sium alloy/paint,magnesium/chromate conversion coating(ccc)/paint,was studied by salt spray test.
对镁合金/有机涂层、碳钢/有机涂层及镁合金/铬酸盐转化膜/有机涂层等3种涂装体系进行了盐雾试验,结果表明,镁合金直接涂装的试样涂层失效远比碳钢迅速;铬酸盐处理大大提高了镁合金涂装保护体系的寿命。
3.
Effects of the components of chromating solution and influence of technological parameter on the chromate conversion coating are discussed.
研究了一种以钼酸盐为促进剂的铬酸盐转化处理工艺的配方和成膜机理,讨论了铬酸盐转化处理液中各组分的作用和工艺参数对铬酸盐转化膜层的影响,并对铝合金型材涂装前处理工艺流程和主要工序进行了说明。
4)  chromate passive film
铬酸盐钝化膜
1.
Increasing the thick ness of chromate passive film on tinplating surface of LTS was adopted to solve the problem of cor- rosion resistance decrease, and effects of increasing surface chro- mate passive film thick on the welding performance and coating properties were also introduced.
0g/m2 低锡量镀锡板表面铬酸盐钝化膜厚度方法 ,来弥补由于镀锡层降低带来的耐蚀性下降缺陷。
2.
The applicability of a low concentration chromate passive film to hot dipped zinc aluminum alloy coated steel wires was examined.
探索了低浓度铬酸盐钝化处理在热浸镀锌铝合金镀层上的应用·采用盐雾试验、电化学腐蚀试验和人造海水浸泡试验对锌铝合金镀层表面低浓度铬酸盐钝化膜的耐蚀性进行了测试,并借助XPS和AES对钝化膜的组成进行了分析·结果表明,锌铝合金镀层经低铬酸盐钝化处理后耐蚀性得到了显著提高,钝化膜的元素组成( 原子数分数,% ) 为:S5-5 ,Na 3-4 ,C11-8 , Ti 7-9 ,O41-6 ,Cr 13-7 ,Zn 16-0
5)  chromate conversion film
铬酸盐转化膜
1.
The effect of zinc sulfate on the measuring of chromate conversion film on the surface of galvanized steel sheet and the possibility of avoiding the effect by using special precipitator were studied through testing methods such as ICP and spectrometer etc.
本文利用 ICP、分光光度法等分析检测方法,研究了在检测镀锌钢板表面铬酸盐转化膜中的铬含量时,硫酸锌对 Cr(Ⅵ)检测结果的影响以及用碳酸钠消除硫酸锌影响的可行性。
6)  chromate protective film
铬酸盐保护膜
补充资料:铬酸盐保护膜
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性质:将钢、铁、铝、锌、镁、铜等制件浸在用铬酸盐等配制的溶液中形成耐腐蚀的薄膜的方法。用重铬酸钠和硫酸配制的溶液,可在钢、铁制件表面上形成三氧化二铬水合物薄膜。用重铬酸钠和单宁酸等还原剂配制的溶液,可在铝、锌、镁、铜、钢等制件表面上形成氧化铝·三氧化二铬水合物薄膜。再用涂料饰,可提高耐腐蚀性能。

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