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首页> 外文期刊>Lasers in engineering >Laser Surface Cladding of Ti-6Al-4V on AISI 316L Stainless Steel for Bio-implant Application
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Laser Surface Cladding of Ti-6Al-4V on AISI 316L Stainless Steel for Bio-implant Application

机译:用于生物植入物的AISI 316L不锈钢上的Ti-6Al-4V激光表面熔覆

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摘要

The present study concerns an in-depth investigation of the influence of laser surface cladding of Ti-6Al-4V on the microstructure (both the top surface, cross-section and interface), wear resistance, corrosion resistance and bio-activity of AISI 316L stainless steel. Laser surface cladding has been carried out using a 5 kW continuous wave (CW) fibber optics delivery Nd: YAG laser with a beam diameter of 4 mm. Microstructure of the surface clad layer consists of acicular α' -phase and the microstructure of the interface consists of equiaxed grains of α-phase and white precipitates of FeTi intermetallic phase at the grain boundaries. The average microhardness of the clad zone and the interface increases to 240 and 531 VHN, respectively as compared to 220 VHN for as-received AISI 316L stainless steel. Fretting wear behaviour against hardened steel ball showed a marginal improvement in fretting wear resistance due to laser surface cladding. On the other hand, the wear resistance of the interface increases significantly. An improvement in corrosion resistance with improved bio-activity is also noticed due to laser surface cladding.
机译:本研究涉及对Ti-6Al-4V激光表面熔覆对AISI 316L的显微组织(顶表面,横截面和界面),耐磨性,耐腐蚀性和生物活性的影响的深入研究。不锈钢。激光表面熔覆是使用5 kW连续波(CW)光纤传输的Nd:YAG激光进行的,光束直径为4 mm。表面包覆层的微观结构由针状α'相组成,界面的微观结构由α相的等轴晶粒和晶界处的FeTi金属间相的白色沉淀物组成。包层区域和界面的平均显微硬度分别增加到240和531 VHN,而AISI 316L不锈钢的原始显微硬度为220 VHN。由于激光表面熔覆,对硬化钢球的微动磨损行为显示出微弱的抗磨性。另一方面,界面的耐磨性显着增加。由于激光表面熔覆,还注意到具有改善的生物活性的耐腐蚀性的改善。

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