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首页> 外文期刊>Journal of Tribology >Effect of Laser Shock Peening on the Wear-Corrosion Synergistic Behavior of an AZ31B Magnesium Alloy
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Effect of Laser Shock Peening on the Wear-Corrosion Synergistic Behavior of an AZ31B Magnesium Alloy

机译:激光冲击喷丸对AZ31B镁合金耐磨腐蚀协同行为的影响

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摘要

Laser shock peening (LSP) is one of the widely used surface processing techniques for tailoring functional behavior of surfaces. LSP has been used to enhance friction, wear, and mechanical properties. However, understanding of LSP-treated surfaces involving tribological contacts in electrochemically active environments is limited because the mechanism of wear-corrosion interactions (tribocorrosion) for such surfaces is still unclear. In the present study, the effect of LSP on the wear-corrosion behavior of an AZ31B Mg alloy is investigated. A zero-resistance ammeter (ZRA) method is utilized to examine the evolution of open circuit potential (OCP) during wear-corrosion analysis. The study finds that the LSP processing can decrease the corrosion potential difference between worn and unworn regions of the surface, thereby mitigating the effect of wear-accelerated corrosion during sliding. The effect of wear-accelerated corrosion is evident from the change in average surface roughness (Sa) of the unworn areas. It is found that understanding the change in surface roughness due to wear-corrosion interactions is necessary to investigate the onset and propagation of galvanic corrosion. Based on these results, the study details the mechanism of wear-corrosion interactions during sliding.
机译:激光冲击喷丸(LSP)是用于裁缝表面功能行为的广泛使用的表面处理技术之一。 LSP已被用于增强摩擦,磨损和机械性能。然而,理解涉及电化学活性环境中的摩擦学触点的LSP处理表面是有限的,因为这种表面的耐磨性相互作用(Tribocorlosion)的机制仍不清楚。在本研究中,研究了LSP对AZ31B Mg合金耐磨行为的影响。利用零电阻电流表(ZRA)方法来检查耐磨腐蚀分析期间开路电位(OCP)的演变。该研究发现,LSP处理可以降低表面的磨损和未磨损区域之间的腐蚀电位差,从而减轻滑动过程中耐磨腐蚀的效果。耐磨性腐蚀的效果是从未磨损区域的平均表面粗糙度(SA)的变化中明显的。发现理解由于耐磨腐蚀相互作用引起的表面粗糙度的变化是研究电抗腐蚀的发作和传播所必需的。基于这些结果,研究详述了滑动过程中耐磨腐蚀相互作用的机制。

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