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The Effect of Aluminum Cold Spray Coating on Corrosion Protection and Corrosion Fatigue Life Enhancement of Magnesium Alloy, AZ31B

机译:铝冷喷涂层对镁合金AZ31B的腐蚀防护和腐蚀疲劳寿命提高的影响

摘要

Magnesium alloys are of a recent interest for the transportation industry due to their excellent properties such as high strength and low density which will save energy and reduce gas emission and it will also improve the vehicle performance. However due to their high chemical activity, magnesium and magnesium alloys have unsatisfactory corrosion resistance and high tendency to corrode in humid and aqueous environments. Although alloying elements provides some improvement in magnesium against corrosion, further protection for these alloys is needed against the corrosion in different corrosive environments. Aluminum powder cold spray is a new coating technology with very promising results in corrosion protection of magnesium alloys. The effect of applying pure aluminum cold spray coating on wrought AZ31B Mg alloy from the corrosion and corrosion fatigue point of view is studied. This research comprises two parts. The first part is studying the corrosion behavior of AZ31B cold spray coated and uncoated coupons by performing an accelerated corrosion testing in a corrosion chamber. The results for both types of coupons have been compared to each other. The second part of this research is to study the fatigue strength by rotating bending machine of stress relieved and stress relieved/coated specimens in salt water environment. S-N curves for the two groups of specimens were plotted. After the analysis and comparison of all the testing results, it was revealed that pure Al cold spray coating considerably improved the corrosion resistance of Mg alloy AZ31B in 5% NaCl fog environment. The microstructural analysis revealed the presence of some secondary phases which act as a cathode and accelerate the corrosion of the anode, Mg alloy. Comparison of corrosion-fatigue S-N curves of stress relieved and stress relieved/coated specimens show fatigue life reduction after cold spray coating to a maximum percentage of 87.6%. The reason for that is the fact that the pure Al powder has much lower ultimate tensile strength than Mg alloy AZ31B. This fact will lead to an earlier crack on the Al coating surface during the fatigue cycles, from which the electrolyte will penetrate to the Mg substrate and cause a localize corrosion and failure.
机译:镁合金由于其优异的特性(例如高强度和低密度)而在交通运输行业中引起了人们的关注,这些特性可以节省能源并减少气体排放,还可以改善车辆性能。然而,由于镁和镁合金的高化学活性,其耐腐蚀性不令人满意,并且在潮湿和水性环境中容易腐蚀。尽管合金元素对镁的抗腐蚀性能有所改善,但仍需要对这些合金进行进一步保护,以防止在不同腐蚀环境下的腐蚀。铝粉冷喷涂是一种新的涂层技术,在镁合金的腐蚀防护方面取得了非常可喜的成果。从腐蚀和腐蚀疲劳角度出发,研究了在变形AZ31B Mg合金上施加纯铝冷喷涂层的效果。这项研究包括两个部分。第一部分是通过在腐蚀室内进行加速腐蚀测试来研究AZ31B冷喷涂和未涂覆试样的腐蚀行为。两种优惠券的结果已相互比较。本研究的第二部分是通过旋转弯曲机研究应力释放和应力释放/涂层样品在盐水环境中的疲劳强度。绘制两组样本的S-N曲线。经过对所有测试结果的分析和比较,发现纯Al冷喷涂涂层在5%NaCl雾环境中显着提高了Mg合金AZ31B的耐腐蚀性。显微组织分析表明,存在一些次级相,它们充当阴极并加速阳极镁合金的腐蚀。应力消除和应力消除/涂层试样的腐蚀疲劳S-N曲线比较表明,冷喷涂后的疲劳寿命降低到最大百分比为87.6%。这是因为,纯铝粉的极限抗拉强度比镁合金AZ31B低得多。这一事实将导致在疲劳循环过程中,Al涂层表面出现较早的裂纹,电解质将从该裂纹渗入Mg基材并引起局部腐蚀和失效。

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    Diab Mohammad;

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  • 年度 2015
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  • 原文格式 PDF
  • 正文语种 en
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