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Titanium Ti6Al4V alloy reinforced by the addition of nano yttria stabilized zirconia fabricated by selective additive manufacturing: microstructure and mechanical investigations

机译:通过选择添加剂制造制造的纳米ytTRIA稳定氧化锆加强钛Ti6Al4V合金:微观结构和机械研究

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Additive manufactured Ti6Al4V reinforced with nano yttria-zirconia (nYSZ) parts were fabricated using selective laser melting technology (SLM). The as-received Ti6AI4V powder and two powder mixtures of Ti6Al4V mixed with several nYSZ contents (lwt% and 2.5wt%) were prepared and then SLM processed. Parts were further subjected to a stress relief heat treatment. Besides, hot isostatic pressure (HIP) was used in order to eliminate residual porosities. The pycnometer-based technique was used to measure the mass density. XRD and EBSD analysis were performed to investigate the influence of nYSZ additions on the microstructure and subsequent mechanical properties via microhardness and compression tests. It was found that addition of nYSZ increases the density of the reinforced parts and produces a fine a martensite phase. Besides, the grain size was refined compared to that of heat treated Ti6Al4V. As a consequence, a significant increase in both the hardness and the compressive strength for the reinforced Ti6Al4V were obtained while the elongation to failure was kept. These improved mechanical properties are discussed in relation to the effect of nYSZ addition, which includes lattice distortions and strengthening from grain size refinement and/or a formation.
机译:使用选择性激光熔化技术(SLM)制造加强用纳米钇 - 氧化锆(NYSZ)零件的添加剂制造的Ti6Al4V。制备接收的Ti6ai4V粉末和两种粉末混合物与几种NYSZ含量(LWT%和2.5wt%)混合,然后加工。零件进一步进行应力释放热处理。此外,使用热等静压(臀部)以消除残留孔隙座。基于Pycnometer的技术用于测量质量密度。进行XRD和EBSD分析以研究NYSZ添加对通过微硬度和压缩试验的微观结构和随后的机械性能的影响。发现NYSZ的添加增加了增强部分的密度并产生了良好的马氏体相。此外,与热处理的Ti6Al4V相比,晶粒尺寸得到了精制。结果,在保持对破坏的伸长率的同时获得了增强Ti6Al4V的硬度和抗压强度的显着增加。这些改善的机械性能是关于NYSZ添加的效果讨论的,该机械性能包括晶格畸变和从晶粒尺寸细化和/或形成的强化。

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