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Effect of laser surface hardening on pitting corrosion resistance of AM50 magnesium alloy

机译:激光表面硬化对AM50镁合金耐点蚀性能的影响

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The influence of laser shock processing (LSP) on pitting corrosion of AM50 magnesium alloy in chloride solution was evaluated. Bright shallow dimples were formed after laser shock processing, and surface changes were accompanied by small roughening effects. Plastic deformation occurred and compressive residual stress formed in the surface layer. The compressive residual stress on the surface reached 146MPa with laser power density of about 3GW/cm2. The electrochemical polarization curve showed that the corrosion potential and pitting potential of the LSP sample increased 85mV and 153mV as compared to the untreated sample, respectively, while the corrosion current density was about one order of magnitude lower. After 5 hours immersing in the chloride solution, many pits appeared on the surface of untreated samples, while few pits appeared in the LSP samples. The pitting corrosion resistance of the LSP AM50 was improved significantly; a beneficial influence of laser surface hardening has been demonstrated.
机译:评估了激光冲击处理(LSP)对AM50镁合金在氯化物溶液中点蚀的影响。激光冲击处理后形成浅浅浅浅的凹窝,表面变化伴随着较小的粗糙化效果。发生塑性变形,并在表层形成压缩残余应力。表面的压缩残余应力达到146MPa,激光功率密度约为3GW / cm2。电化学极化曲线表明,与未处理的样品相比,LSP样品的腐蚀电位和点蚀电位分别增加了85mV和153mV,而腐蚀电流密度则降低了约一个数量级。在氯化物溶液中浸泡5小时后,未处理样品的表面出现许多凹坑,而LSP样品中几乎没有凹坑。 LSP AM50的抗点蚀性能得到了显着提高;已经证明了激光表面硬化的有益影响。

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