首页> 外文期刊>Proceedings of the National Academy of Sciences, India >Laser Surface Melting of AISI 316L Stainless Steel for Bio-implant Application
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Laser Surface Melting of AISI 316L Stainless Steel for Bio-implant Application

机译:AISI 316L不锈钢的激光表面熔化,用于生物植入物应用

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摘要

Implants made of AISI 316L stainless steel enjoy promising position because of their higher strength as compared to polymer based materials, and higher toughness as compared to the ceramic based implant. However, AISI 316L based implants often fail due to wear, corrosion, fatigue and bacterial infection in the human body. As most of the failures described above are surface dependent, they can be circumvented by tailorment of surface by modifying microstructure an/or composition of the near surface region of a component. Surface tailorment may be achieved by microstructural modification or application of another layer on the surface which may be termed as cladding or coating. High power laser beam may be used as a source of heat to melt the surface of solid substrate and improve its mechanical and chemical properties by grain refinement. The process may also be extended to modify surface composition by applying reactive gas. In the present contribution, a detailed overview of laser surface melting of AISI 316 L stainless steel with the possible application as bio-implant has been presented and the effect of shrouding environment on its characteristics, mechanical and chemical properties has been elaborated in details.
机译:由AISI 316L不锈钢制成的植入物享有广阔的地位,因为与聚合物基材料相比,它们具有更高的强度,并且与陶瓷基植入物相比具有更高的韧性。然而,基于AISI 316L的植入物经常因人体磨损、腐蚀、疲劳和细菌感染而失效。由于上述大多数故障都与表面有关,因此可以通过修改组件近表面区域的微观结构和/或组成来规避它们。表面定制可以通过微观结构修改或在表面上应用另一层来实现,这可称为包层或涂层。高功率激光束可作为热源,熔化固体基体表面,通过晶粒细化改善其机械和化学性能。该工艺还可以扩展为通过施加活性气体来改变表面成分。在本文稿中,详细介绍了AISI 316 L不锈钢的激光表面熔化及其作为生物植入物的可能应用,并详细阐述了遮罩环境对其特性、机械和化学性能的影响。

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