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The effect of laser surface treatment on stress corrosion cracking behaviour of 7075 aluminium alloy

机译:激光表面处理对7075铝合金应力腐蚀开裂行为的影响

摘要

Excimer surface treatment was conducted on 7075-T651 aluminium alloy with the aim of improving the alloy's resistance to stress corrosion cracking (SCC) when tested in a NaCl solution. Using a pulse energy of 8 J/cm2, a laser-melted layer of about 8 μm thick was formed. Within the re-solidified laser-melted layer, the original grain boundaries of the wrought structure and most of the coarse constituent particles were removed. The grain boundaries of the re-solidified structure were found to be free from precipitates. The results of the SCC tests showed that after the 30-day immersion test, the untreated specimen was severely attacked with intergranular cracks that reached deep into the specimen; by contrast, no intergranular cracks were found in the laser-treated specimen. The form of corrosion attack in the laser-treated specimen took the form of corrosion pits instead. The electrochemical impedance measurements taken during the SCC test showed that the film resistance of the laser-treated specimen was always higher than that of the untreated specimen.
机译:在7075-T651铝合金上进行准分子表面处理,目的是提高在NaCl溶液中测试时合金的抗应力腐蚀开裂性(SCC)。使用8J / cm 2的脉冲能量,形成约8μm厚的激光熔融层。在重新凝固的激光熔融层中,去除了变形结构的原始晶界和大多数粗大的组成颗粒。发现重新凝固的组织的晶界没有沉淀。 SCC测试的结果表明,在30天的浸没测试后,未经处理的样品受到了深入到样品深处的晶间裂纹的严重侵蚀;相反,在经激光处理的样品中未发现晶间裂纹。经激光处理的试样中腐蚀侵蚀的形式取而代之的是腐蚀坑的形式。在SCC测试期间进行的电化学阻抗测量表明,激光处理过的样品的薄膜电阻始终高于未处理过的样品。

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