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Selective laser melting of Ti6Al7Nb with hydroxyapatite addition

机译:添加羟基磷灰石的选择性激光熔化Ti6Al7Nb

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Purpose - The purpose of this paper was to obtain by means of selective laser melting and then characterize biocomposites of medical-grade Ti6Al7Nb with hydroxyapatite (2 and 5 vol.%) and without hydroxyapatite, as reference. Design/methodology/approach - Rectangular samples were manufactured with the same scanning strategy; the laser power was between 50 W and 200 W. Processed samples were analysed by means of optical microscopy, scanning electron microscopy and microhardness. Findings - The results showed that despite the very short processing times, hydroxyapatite decomposed and interacted with the base Ti6Al7Nb material. The decomposition degree was found to depend on the applied laser power. From the porosity and bulk microstructure point of view, the most appropriate materials for the purposed medical applications were Ti6Al7Nb with hydroxyapatite processed with a laser power of 50 W. Originality/value - The originality of the present work consists in the study of the behaviour and interaction of hydroxyapatite additive with the Ti6Al7Nb base powder under selective laser melting conditions, as depending on the applied laser power.
机译:目的-本文的目的是通过选择性激光熔融获得,然后表征以羟基磷灰石(2%和5%(体积))和不含羟基磷灰石作为参考的医用级Ti6Al7Nb的生物复合材料。设计/方法/方法-使用相同的扫描策略制造矩形样品;激光功率在50 W至200 W之间。通过光学显微镜,扫描电子显微镜和显微硬度分析处理后的样品。结果-结果表明,尽管处理时间非常短,但羟基磷灰石仍会分解并与基础Ti6Al7Nb材料相互作用。发现分解程度取决于所施加的激光功率。从孔隙率和整体微观结构的角度来看,最适合用于医疗用途的材料是Ti6Al7Nb和羟基磷灰石,激光功率为50W。原创性/价值-本工作的原创性在于对行为和行为的研究。取决于所施加的激光功率,在选择性激光熔化条件下,羟基磷灰石添加剂与Ti6Al7Nb基础粉末之间的相互作用。

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