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Corrosion Behaviors of Fluoride Treated Cast Magnesium Alloy in Hank's Solution

机译:氟化处理的铸造镁合金在汉克溶液中的腐蚀行为

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Fluoride conversion films were synthesized on cast magnesium alloy AZ31 by immersion in hydrofluoric acid for different days to improve the corrosion resistance of Mg alloys as degradable implant material. The effects of the films on the corrosion behavior of the mg substrates were investigated by immersion tests. The results showed the fluoride conversion film was affected by the distribution of the chemical component of cast AZ31 alloy and the film on the second phases has more pores and micro-crack, but the bottoms of the pores were also covered by the conversion film and the substrate was not exposed through the pores. The fluoride conversion coatings significantly improved the corrosion resistance of cast AZ31 alloy. The film on the second phase with more pores is the first to dissolve. The most improved corrosion protection was achieved by 15 days treatment with the thickest film in terms of hydrogen evolution rate and damage morphology.
机译:通过将镁合金铸件AZ31浸入氢氟酸中不同天数来合成氟化物转化膜,以提高作为可降解植入材料的Mg合金的耐蚀性。通过浸没试验研究了膜对镁基体腐蚀行为的影响。结果表明,氟转化膜受铸态AZ31合金化学成分分布的影响,第二相膜上有较多的气孔和微裂纹,但气孔的底部也被转化膜和碳纳米管覆盖。底物未通过孔暴露。氟化物转化膜显着提高了铸造AZ31合金的耐腐蚀性。第二相上​​具有更多孔的膜是第一个溶解的膜。就氢析出速率和损伤形态而言,用最厚的膜进行15天的处理可以最大程度地提高防腐性能。

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