首页> 外文会议>THERMEC 2011;International conference on processing manufacturing of advanced materials >Improving Corrosion Resistance of MRI 230D Mg Alloy by Hybrid Coating of Laser Surface Alloying and Plasma Electrolytic Oxidation
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Improving Corrosion Resistance of MRI 230D Mg Alloy by Hybrid Coating of Laser Surface Alloying and Plasma Electrolytic Oxidation

机译:通过激光表面合金化和等离子体电解氧化的混合涂层提高MRI 230D镁合金的耐蚀性

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A permanent mould cast creep resistant MRI 230D Mg alloy was laser surface alloyed (LSA) with Al and Al_2O_3 in order to improve its wear and corrosion resistance. However, this treatment was successful only in improving wear resistance but not corrosion resistance due to the presence of micro-cracks in the coated layer, which has been discussed in an earlier paper. The LSA coated Mg alloy has been further subjected to plasma electrolytic oxidation (PEO) treatment in alkaline silicate electrolyte in order to cover those micro-cracks and improve corrosion resistance, which is discussed in the present manuscript. For comparison, the PEO coating has also been applied on the as-cast MRI 230D Mg alloy. The microstructural characterization of coatings and corroded surfaces was carried out by scanning electron microscope and X-ray diffraction. Electrochemical corrosion tests were conducted in 3.5 wt% NaCl solution having neutral pH to investigate the corrosion behavior. The LSA coatings consisted mainly of β (Mg_(17)Al_(12)) phase, the coatings produced by PEO treatment on MRI 230D Mg alloy consisted mainly of Mg_2SiO_4 phase, and hybrid coatings of PEO on LSA consisted of Mg_2SiO_4 and MgAl_2O_4 phases in the PEO layer. Scanning electron micrographs of the cross-section revealed that the PEO treatment covered the micro-cracks present in the LSA and corrosion tests revealed that it improved the corrosion resistance, though not to the extent of the corrosion resistance of the PEO coated MRI 230D Mg alloy. All the samples exhibited localized form of corrosion.
机译:将永久铸模抗蠕变MRI 230D Mg合金与Al和Al_2O_3进行激光表面合金化(LSA),以提高其耐磨性和耐腐蚀性。但是,这种处理仅在改善耐磨性方面是成功的,但由于在涂层中存在微裂纹而不能成功地改善耐腐蚀性,这在较早的论文中已有讨论。为了覆盖那些微裂纹并提高耐腐蚀性,已在碱性硅酸盐电解质中对LSA涂层的Mg合金进行了进一步的等离子电解氧化(PEO)处理,这已在本手稿中进行了讨论。为了比较,PEO涂层也已应用在铸态MRI 230D镁合金上。涂层和腐蚀表面的微观结构表征是通过扫描电子显微镜和X射线衍射进行的。在具有中性pH的3.5 wt%NaCl溶液中进行电化学腐蚀测试,以研究腐蚀行为。 LSA涂层主要由β(Mg_(17)Al_(12))相组成,PEO处理在MRI 230D Mg合金上产生的涂层主要由Mg_2SiO_4相组成,而LSA上PEO的杂化涂层由Mg_2SiO_4和MgAl_2O_4相组成。 PEO层。横截面的扫描电子显微镜照片显示,PEO处理覆盖了LSA中存在的微裂纹,腐蚀测试表明,尽管未达到PEO涂层MRI 230D Mg合金的耐蚀性,但PEO处理提高了耐蚀性。 。所有样品均表现出局部腐蚀形式。

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