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Effects of Electropolishing on Mechanical Properties and Bio-Corrosion of Ti6Al4V Fabricated by Electron Beam Melting Additive Manufacturing

机译:电抛光对电子束熔融增材制造Ti6Al4V力学性能和生物腐蚀的影响

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摘要

Electron beam melting (EBM) has become one of the most promising additive manufacturing (AM) technologies. However, EBM tends to result in products with rougher surfaces due to the melt pool which causes adjacent powder particles to be sintered to the surface without being melted. Hence, it is necessary to improve the surface quality by post processing. The current study evaluates the tensile response of Ti6Al4V EBMed samples subject to various electropolishing (EP) treatments. The surface roughness Ra readings can be improved from over 24 µm down to about 4.5 µm by proper EP, resulting in apparent tensile elongation improvement from 7.6% to 11.6%, or a tensile plasticity increment of 53%, without any loss of elastic modulus or tensile strength. Moreover, the in-vitro bio-corrosion test in simulating body fluid (SBF) of the as-EBMed and EP-processed samples is also conducted. The potentiodynamic polarization reveals that the bio-corrosion resistance is improved by the lower Ra through proper EP treatments. This is due to the formation of a denser and more completely passivated oxide layer with less defects after proper EP duration. But when the EBMed samples are over-electropolished, nano pitting would induce a degraded bio-corrosion performance.
机译:电子束熔化(EBM)已成为最有前途的增材制造(AM)技术之一。但是,由于熔池的存在,EBM往往会导致产品的表面更粗糙,这会导致相邻的粉末颗粒烧结到表面而不会熔化。因此,有必要通过后处理来改善表面质量。当前的研究评估了经过各种电抛光(EP)处理的Ti6Al4V EBMed样品的拉伸响应。通过适当的EP,可以将表面粗糙度Ra读数从超过24 µm降低到约4.5 µm,从而使表观拉伸伸长率从7.6%提高到11.6%,或者拉伸可塑性提高53%,而不会损失任何弹性模量或抗拉强度。此外,还进行了体外生物腐蚀测试,以模拟经EBM处理和EP处理的样品的体液(SBF)。电位动力学极化表明,通过适当的EP处理,较低的Ra可以提高抗生物腐蚀性。这是由于在适当的EP持续时间之后,形成了具有更少缺陷的致密且更完全钝化的氧化物层。但是,如果将EBMed样品过度电抛光,则纳米点蚀会导致生物腐蚀性能下降。

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