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Effect of fluoride ions modifier and ceramic Al2O3 particles additives on plasma electrolytic oxidation of AZ31

机译:氟离子改性剂和陶瓷Al2O3颗粒添加剂对AZ31等血浆电解氧化的影响

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摘要

Plasma electrolytic oxidation (PEO) process is proved to be an effective technique for forming highly protective oxide film on Mg alloy AZ31. A comparative study has been done to investigate the PEO films deposited from silicate solution with NaF, Al2O3 nano-additives. The surface morphology feature, phase composition and elemental composition were examined by field scanning electron microscope, energy dispersive X-ray, X-ray diffraction. Doping of additives showed an obvious effect mainly on the peak of MgO and the thickness of the PEO films. Fluoride has a promising role and its presence considerably resulted in thicker and compacter films with improved corrosion resistance. Vice versa unexpected negative results had been obtained in the presence of alumina additives. It is assumed that fluoride ions enhanced ions conductivity during PEO process therefore promoted the film growth rate. On the other hand, the bulk Al2O3 particles hindered the ions movement through the coating deposition leading to thinner less compact films formation.
机译:试探等离子体电解氧化(PEO)工艺是在Mg合金AZ31上形成高度保护性氧化膜的有效技术。已经进行了对比较研究来研究与NAF,Al2O3纳米添加剂从硅酸盐溶液中沉积的PEO膜。通过现场扫描电子显微镜,能量分散X射线,X射线衍射检查表面形态特征,相组合物和元素组合物。添加剂的掺杂表现出显而易见的效果,主要是MgO的峰值和PEO膜的厚度。氟化物具有有希望的作用,其存在显着导致具有改善的耐腐蚀性的较厚和组织薄膜。在氧化铝添加剂存在下获得反之亦然意外的阴性结果。假设氟离子增强了PEO过程中的离子电导率,因此促进了膜生长速率。另一方面,散装Al2O3颗粒阻碍了离子的运动,通过涂层沉积导致较薄的紧凑薄膜形成。

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