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首页> 外文期刊>Corrosion Engineering, Science and Technology >Chrome free pigments for corrosion protection in coil coated galvanised steels
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Chrome free pigments for corrosion protection in coil coated galvanised steels

机译:无铬颜料,用于卷材镀锌钢中的腐蚀防护

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A range of bentonite clays such as Wyoming (W), hybond (H), cat litter (CL) and versions exchanged with Ce~(3+), Y~(3+), La~(3+) and Ca~(2+) cations used as the corrosion inhibitors in the 5 mu m polyester primer layer applied to 0.7 mm gauge hot dip zinc (0.15 percent Al) galvanised steel materials, over coated with a 20 mu m architectural polyester coating. Similar primer systems have been prepared containing strontium chromate (Cr), Shieldex (Shd) and titanium dioxide (TiO_2) for the purposes of comparison. The scanning vibrating electrode technique (SVET) was used to probe the corrosion kinetics at sample cut edges immersed in 5 percent NaCl on a limited number of the coatings based on the Wyoming bentonite. The SVET determined zinc losses for the pigments tested over 24 h were as follows: Shd (920 mu g), Cr (740 mu g), W-Y (655 mu g), W-Ce (560 mu g), W (550 mu g) and W-Ca (496 mu g). The same samples together with all of the other pigmented coatings were also subjected to salt spray testing. The average maximum cut edge corrosion delamination distances were: Cr (14 mm), Shd (20 mm), TiO_2 (100 mm), W (13 mm), H (17 mm), CL (14 mm), W-Ca (10 mm), H-Ca (15 mm) W-Ce (9 mm), H-Ce (10 mm), W-Y (13 mm) and H-Y (15 mm). The performance trends over 1000 h of salt spray testing were in broad agreement with the 24 h SVET data for those samples tested in both ways. The ion exchanged and naturally occurring bentonites appear to be promising corrosion inhibitors for coated galvanised steel. In order to maximise performance, a fully formulated system has been developed on a 4-5Al-95-5Zn galvanised substrate which has a PVC plastisol top coat. A bentonite matrix with higher ion exchange capacity (>1 mequiv g~(-1)) and low silica content has been developed (IM-X, where X is Ce~(3+), Ca~(2+) or Zn~(2+)). In this system delamination distances have been reduced to extremely low levels of IM-Ce 0.3 mm, IM-Ca 0.45 mm and IM-Zn 0.37 mm.
机译:一系列的膨润土,如怀俄明州(W),hybond(H),猫砂(CL)以及与Ce〜(3 +),Y〜(3 +),La〜(3+)和Ca〜( 2+)阳离子用作5微米聚酯底漆层中的腐蚀抑制剂,该底漆层涂覆有0.7毫米规格的热浸锌(0.15%Al)镀锌钢板材料,并涂有20微米建筑聚酯涂层。为了比较,已经制备了包含铬酸锶(Cr),Shieldex(Shd)和二氧化钛(TiO_2)的类似底漆体系。扫描振动电极技术(SVET)用于探测浸没在5%NaCl中的样品切割边缘在有限数量的基于怀俄明膨润土的涂层上的腐蚀动力学。 SVET测定的24小时内所测颜料的锌损失如下:Shd(920μg),Cr(740μg),WY(655μg),W-Ce(560μg),W(550μg) g)和W-Ca(496μg)。相同的样品以及所有其他有色涂料也进行了盐雾测试。平均最大切割边缘腐蚀分层距离为:Cr(14毫米),Shd(20毫米),TiO_2(100毫米),W(13毫米),H(17毫米),CL(14毫米),W-Ca( 10毫米),H-Ca(15毫米)W-Ce(9毫米),H-Ce(10毫米),WY(13毫米)和HY(15毫米)。盐雾测试1000小时的性能趋势与以两种方式测试的那些样品的24小时SVET数据基本一致。离子交换的和天然存在的膨润土似乎是涂层镀锌钢的有希望的腐蚀抑制剂。为了使性能最大化,已经在具有PVC增塑溶胶面涂层的4-5Al-95-5Zn镀锌基材上开发了一种全配方系统。已开发出具有较高离子交换容量(> 1 mequiv g〜(-1))和低二氧化硅含量的膨润土基质(IM-X,其中X为Ce〜(3 +),Ca〜(2+)或Zn〜 (2+))。在该系统中,分层距离已降低到IM-Ce 0.3毫米,IM-Ca 0.45毫米和IM-Zn 0.37毫米的极低水平。

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