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Selective Laser Melting of Low-Modulus Biomedical Ti-24Nb-4Zr-8Sn Alloy: Effect of Laser Point Distance

机译:低模量生物医学TI-24 ZR-8SN合金选择性激光熔化:激光点距离的影响

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As many complex processing parameters are involved in Selective Laser Melting (SLM), an understanding of the scientific and technical aspects of the production route on the microstructural evolution during SLM process is required in order to obtain parts with near full density and desirable surface finish. Although the effects of the various processing parameters on the density of parts have been well documented, the effect of laser point distance on density and mechanical properties of the SLM-produced parts has not been widely studied. In this paper, we present the results of using SLM to produce biomedical beta Ti-24Nb-4Zr-8Sn components. Both the density and hardness of the material increases with increasing incident laser energy and reaches a near full density value of >99% without any post-processing. When the laser energy density input is high enough to fully melt powder, the laser point distance has no influence on the density or hardness of the samples. In contrast, at low energy densities, large point distances have been shown to be detrimental.
机译:随着许多复合处理参数涉及选择性激光熔化(SLM),需要了解在SLM过程中微观结构演化的生产路线的科学和技术方面是必需的,以获得具有近全密度和理想的表面光洁度的部件。尽管各种处理参数对部件密度的影响已经充分地记录了,但是激光点距离对SLM制造部件的密度和机械性能的影响尚未得到广泛研究。在本文中,我们介绍了使用SLM产生生物医学βTI-24NB-4ZR-8SN组分的结果。材料的密度和硬度随着入射激光能量的增加而增加,并且在没有任何后处理的情况下达到近乎全密度值> 99%。当激光能量密度输入足够高以完全熔化粉末时,激光点距离对样品的密度或硬度没有影响。相比之下,在低能量密度下,大点距离已被证明是有害的。

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