改善aisi316l不锈钢机械性能和表面性能的复合表面处理

B. Arifvianto, Suyitno, M. Mahardika
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引用次数: 2

摘要

骨接骨板的失效通常是超载和疲劳断裂。为了提高钢板的强度,已经作出了努力。此外,表面粗糙度也是一个值得关注的问题,它关系到板的生物相容性。采用表面机械摩擦处理(SMAT)和电抛光相结合的复合表面处理方法,提高了AISI 316L不锈钢的强度和表面性能;用于接骨板的典型生物材料。SMAT采用直径为4.36 mm的250个钢球,持续0 ~ 20分钟。SMAT后进行0 - 20分钟的电抛光处理。测定了aisi316l的亚表面显微硬度和表面粗糙度,分别评价了处理后aisi316l的力学性能和表面性能的变化。结果表明,SMAT使表面显微硬度从Hv =±1.4 GPa提高到±2.9 GPa,但表面粗糙度仍为±1µm。表面粗糙度和亚表面显微硬度分别从Ra =±1.0µm和Hv =±2.9 GPa降低到±2.2 GPa。综上所述,本研究的复合表面处理能够同时改善AISI 316L不锈钢的表面性能和力学性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Hybrid surface treatment for improving mechanical and surface properties of AISI 316L stainless steel
Failures of osteosynthesis plate are often dealing with overloading and fatigue fracture. Efforts have been made to improve the strength of the plate. In addition, surface roughness is also a matter of concern which relates to biocompatibitlity of the plate. In this study, a hybrid surface treatment consisting of surface mechanical attrition treatment (SMAT) and electropolishing is used to improve the strength and surface properties of AISI 316L stainless steel; a typical biomaterial used for osteosynthesis plate. The SMAT was performed using 250 steel balls with diameter of 4.36 mm for 0 – 20 minutes. The following electropolishing treatment was conducted after the SMAT for 0 – 20 minutes. The subsurface microhardness and surface roughness were measured to evaluate the change in mechanical and surface properties of AISI 316L after the treatment, respectively. The result shows that the SMAT enhanced surface microhardness from Hv = ±1.4 GPa to ±2.9 GPa, but remained to yield a rough surface (Ra = ±1 µm). The roughness and subsurface microhardness decreased from Ra = ±1.0 µm to ±0.1 µm and from Hv = ±2.9 GPa to ±2.2 GPa, respectively. In conclusion, the hybrid surface treatment in this study is able to improve both surface and mechanical properties of AISI 316L stainless steel.
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