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飞秒激光低能量脉冲冲击处理可实现生物可降解镁合金的高性能表面。

Enabling High-Performance Surfaces of Biodegradable Magnesium Alloys via Femtosecond Laser Shock Peening with Ultralow Pulse Energy.

机构信息

Department of Materials Science and Engineering, Virginia Polytechnic Institute and State University, Blacksburg, Virginia 24061, United States.

Department of Physics and Center for Soft Matter and Biological Physics, Virginia Polytechnic Institute and State University, Blacksburg, Virginia 24061, United States.

出版信息

ACS Appl Bio Mater. 2021 Nov 15;4(11):7903-7912. doi: 10.1021/acsabm.1c00826. Epub 2021 Oct 26.

Abstract

The fast degradation rate and poor wear resistance of magnesium (Mg) alloys in physiological environments have limited their potential usage as next-generation biodegradable orthopedic implant materials. In this work, femtosecond laser shock peening (fs-LSP) was successfully applied to simultaneously improve the surface mechanical, corrosion, and tribocorrosion properties of WE43 Mg alloys in blood bank buffered saline solution at body temperature. Specifically, the treated surfaces of WE43 Mg alloys via fs-LSP with ultralow pulse energy were investigated under different power densities, confining mediums, and absorbent materials. It was found that the combination of a black tape and a quartz layer gave the optimum peening effect under a power density of 28 GW/cm, which simultaneously strengthened the surface and reduced the corrosion kinetics. In addition, a rapid self-repassivation was observed in fs-LSP-treated WE43 surfaces during tribocorrosion, promising sustained corrosion resistance under mechanical loading, critical to the reliability of load-bearing implants. Finally, the subsurface microstructural evolution and residual stress development in WE43 after fs-LSP were discussed based on the results from transmission electron microscopy analysis and finite element simulations.

摘要

在生理环境中,镁(Mg)合金快速降解率和较差的耐磨性限制了它们作为下一代可生物降解骨科植入材料的潜在用途。在这项工作中,飞秒激光冲击喷丸(fs-LSP)成功地应用于同时提高 WE43 镁合金在体温下的血库缓冲盐溶液中的表面机械、腐蚀和摩擦腐蚀性能。具体来说,通过 fs-LSP 用超低脉冲能量处理 WE43 镁合金的表面在不同的功率密度、约束介质和吸收材料下进行了研究。结果发现,在功率密度为 28GW/cm 时,黑带和石英层的组合产生了最佳的喷丸效果,同时增强了表面并降低了腐蚀动力学。此外,在摩擦腐蚀过程中,fs-LSP 处理的 WE43 表面观察到快速的自钝化,这在机械加载下有望持续耐腐蚀,这对承载植入物的可靠性至关重要。最后,根据透射电子显微镜分析和有限元模拟的结果,讨论了 WE43 经过 fs-LSP 后的亚表面微观结构演变和残余应力发展。

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