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High corrosion resistance and weak corrosion anisotropy of an as-rolled Mg-3Al-1Zn (in wt.) alloy with strong crystallographic texture

机译:具有良好晶体学织构的Mg-3Al-1Zn(wt。%)轧制合金的高耐腐蚀性和弱腐蚀各向异性

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摘要

Combining with electrochemical corrosion measurements, immersion and hydrogen evolution testing performed in 0.9 wt.% NaCl solution at 37 °C, the corrosion resistance of an as-rolled Mg-3%Al-1%Zn alloy before and after a 3% compressive strain along the rolling direction was investigated. Results revealed that the corrosion behavior of differently oriented surfaces of the as-rolled samples with a strong basal texture was obviously different. Among them, the corrosion rate of sample surface with the orientation parallel to the normal direction (ND) of the plate was the fastest, the corrosion rate of sample surface with the orientation parallel to the rolling direction (RD) of the plate took the second place and the corrosion rate of sample surface with the orientation parallel to the transverse direction (TD) was the slowest. After being pre-strained, the activation of a high density of {10–12} twins could remarkably reduce the corrosion rate of surrounding α-Mg matrix and simultaneously weaken the corrosion anisotropy between differently oriented samples. The main reason was that similar to grain boundaries, twin boundaries acted as physical barriers to the corrosion attack. Moreover, the activated twins increased the protectiveness of surface films and then suppressed the micro corrosion couples occurred in twinned grains.
机译:结合电化学腐蚀测量,浸入和氢逸出测试,在37%的温度下于0.9 wt。%NaCl溶液中进行测试,得出3%压缩应变前后的Mg-3%Al-1%Zn铸轧合金的耐腐蚀性沿轧制方向进行了研究。结果表明,具有坚硬的基础纹理的轧制样品的不同取向表面的腐蚀行为明显不同。其中,平行于板法线方向(ND)的试样表面腐蚀速率最快,平行于板的轧制方向(RD)的试样表面腐蚀速率第二。方向平行于横向(TD)的样品表面的腐蚀速率最慢。经过预应变后,{10-12}孪晶的高密度活化可以显着降低周围α-Mg基质的腐蚀速率,同时减弱不同取向样品之间的腐蚀各向异性。主要原因是与晶界相似,孪晶界成为腐蚀侵蚀的物理屏障。此外,活化孪晶增加了表面膜的保护性,然后抑制了孪晶晶粒中发生的微腐蚀偶。

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