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Effects of Mg Additions on Surface Morphology and Corrosion Resistance of Hot-Dipped Zn Coatings

机译:镁的添加对热浸镀锌层表面形貌和耐蚀性的影响

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摘要

Steel is still the main construction material for automobiles, general equipment and industrial machinery. Hot dipping has been proven to be an excellent method of corrosion protection of steels for a wide range of applications worldwide. Coatings of Zn-Al alloys on steel sheet have high corrosion resistance due to the corrosion prevention ability from Zn and the passivation of Al Bath composition, immersion velocity/time and substrate composition are the hot dipping parameters that more influence on the thickness and corrosion resistance of the deposited coating. In order to study their influence small amounts of magnesium were added. Experiments were performed in a hot dipping simulator using different substrates, bath compositions and hot dipping parameters. Surface layers were characterised by: Scanning Electron Microscopy (SEM) and Energy dispersive X-Ray spectroscopy (EDX or EDS). Cyclic corrosion tests were performed in order to observe the corrosion resistance for different Zn-Al-Mg coatings. Results show that the microstructure and composition of the substrate strongly affect the desired coating properties. Nevertheless, the influence of the magnesium on coating thickness is relevant, increasing when added in small quantities in a molten bath of Zn-5wt %Al. The quality and microstructure of the coating is affected by the amount of Mg in the bath. Cyclic corrosion tests results show that the quality of the coating is affected by the amount of Mg in the bath.
机译:钢铁仍然是汽车,通用设备和工业机械的主要建筑材料。事实证明,热浸镀是钢在全球范围内广泛应用的一种出色的防腐蚀方法。钢板上的Zn-Al合金涂层由于具有Zn的防腐蚀能力和Al Bath成分的钝化作用,因此具有较高的耐腐蚀性,浸入速度/时间和基体成分是热浸参数,对厚度和耐蚀性的影响更大。沉积涂层的数量。为了研究其影响,添加了少量的镁。实验是在热浸模拟器中使用不同的基材,浴液成分和热浸参数进行的。表面层的特征在于:扫描电子显微镜(SEM)和能量色散X射线光谱(EDX或EDS)。为了观察不同的Zn-Al-Mg涂层的耐腐蚀性,进行了循环腐蚀试验。结果表明,基材的微观结构和组成强烈影响所需的涂层性能。然而,镁对涂层厚度的影响是相关的,当少量添加到Zn-5wt%Al的熔池中时,镁的影响会增加。镀层中镁的含量会影响涂层的质量和微观结构。循环腐蚀测试结果表明,镀液的质量受镀液中镁含量的影响。

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