Corrosion fatigue of die-cast and extruded magnesium alloys

A Eliezer, E.M Gutman, E Abramov, Ya Unigovski
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引用次数: 66

Abstract

To study the fatigue life of die-cast and extruded AZ91D, AM50 and AZ31 magnesium alloys, corrosion fatigue tests were carried out using a rotating beam type fatigue machine. Corrosive environment (3.5% NaCl) significantly decreases fatigue life of alloys, especially for extruded alloys. The fatigue data at high stresses were analyzed using fitting equations. Extruded alloys show a higher sensitivity to the action of NaCl solution in comparison with die-cast alloys; however, their corrosion fatigue life is longer than that of die-cast alloys. Corrosion fatigue behavior of Mg alloys correlates with their mechanochemical behavior. The latter was studied by the polarization measurements of the dissolution rate of strained alloys. TEM observations confirmed that the maximums on the curves of Mg dissolution rate dependence on the strain in NaCl solution appeared at the work-hardening stages due to the creation and destruction of dislocation pile-ups.

压铸和挤压镁合金的腐蚀疲劳
为了研究压铸和挤压AZ91D、AM50和AZ31镁合金的疲劳寿命,使用旋转梁式疲劳机进行了腐蚀疲劳试验。腐蚀性环境(3.5%NaCl)显著降低合金的疲劳寿命,尤其是挤压合金。采用拟合方程对高应力下的疲劳数据进行了分析。与压铸合金相比,挤压合金对NaCl溶液的作用表现出更高的敏感性;然而,它们的腐蚀疲劳寿命比压铸合金长。镁合金的腐蚀疲劳行为与其机械化学行为有关。后者通过应变合金溶解速率的极化测量进行了研究。TEM观察证实,由于位错堆积的产生和破坏,Mg溶解速率依赖于NaCl溶液中应变的曲线上的最大值出现在加工硬化阶段。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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