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Additive Manufacturing of Ti-6Al-4V with Added Boron: Microstructure and Hardness Modification

机译:添加硼的Ti-6Al-4V的添加剂制造:微观结构和硬度改性

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Titanium alloy composites with titanium boride (TiB) discontinuous reinforcement have shown improved performance in terms of strength, stiffness, and hardness. Producing this composite through selective laser melting (SLM) can combine the advantages of freeform design with the ability to produce TiB reinforcement in-situ. In this study, SLM was used to consolidate a pre-alloyed Ti-6Al-4V (Ti64) and amorphous boron (B) powder mixture with the intent of producing 1.5wt% TiB reinforcement in a Ti64 matrix. The processing parameters of laser power and scanning speed were investigated for their effect on the density, microstructures, and hardness of the composite material. The results showed that the boron and Ti64 composite could achieve a density greater than 99.4%. Furthermore, it was found that processing parameters changed the microstructural features of the material. The higher the energy density employed the more homogenous the distribution of boron modified material. Macro features were also observed with laser paths being clearly evident in the subsurface microstructure. Micro-hardness testing and density measurement also showed a corresponding increase with increasing energy density. Maximum hardness of 392.4HV was achieved in the composite compared to 354.2HV in SLM fabricated Ti64.
机译:钛合金复合材料与硼化钛(TIB)不连续增强材料在强度,刚度和硬度方面显示出改善的性能。通过选择性激光熔化(SLM)生产该复合材料可以将自由形式设计的优点与原位产生TIB加固的能力结合起来。在该研究中,SLM用于巩固预合金的Ti-6Al-4V(Ti64)和无定形硼(B)粉末混合物,意图在Ti64基质中产生1.5wt%Tib加固。研究了激光功率和扫描速度的加工参数,用于它们对复合材料的密度,微观结构和硬度的影响。结果表明,硼和Ti64复合材料可以达到大于99.4%的密度。此外,发现处理参数改变了材料的微观结构特征。能量密度越高,硼改性材料的分布越均匀。在地下微观结构中,激光路径也观察到宏观特征。微硬度试验和密度测量还显示出相应的增加随着能量密度的增加而增加。与354.2HV在SLM制造的Ti64中,复合材料中实现了392.4HV的最大硬度。

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