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首页> 外文期刊>Materials Science and Engineering >Selective laser melting of Ti-35Nb composite from elemental powder mixture: Microstructure, mechanical behavior and corrosion behavior
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Selective laser melting of Ti-35Nb composite from elemental powder mixture: Microstructure, mechanical behavior and corrosion behavior

机译:来自元素粉末混合物的Ti-35NB复合材料的选择性激光熔化:微观结构,机械性能和腐蚀行为

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The availability of alloyed powder feedstock and chemical inhomogeneity, which often occur when using elemental mixed powder, have been long-term concerns of selective laser melting (SLM) of metallic materials. In this work, a Ti-35Nb alloy (in wt.%) was manufactured using SLM from elemental mixed powder to study the microstructure, mechanical behavior, and corrosion properties of the resultant parts. Microstructural characterizations show that the SLM-produced Ti-35Nb is composed of fine near beta phase dendrites and undissolved Nb particles, which produces in a relatively low Young's modulus (84.7 +/- 1.2 GPa). The chemical homogeneity and microstructural homogeneity are improved by heat treatment, resulting in a more homogeneous microstructure and smaller Nb particles. The undissolved large Nb particles play an important role in the overall performance of the SLM-produced materials, because the boundaries of undissolved large Nb particles in the asSLMed part act as initiation sites for slip bands. The compressive fracture mechanism illustrates the propagation, arrest and merge of shear bands, thereby revealing the effects on the yield strength and plasticity. The electrochemical experiments show the stable corrosion resistance of as-SLMed sample and the improved corrosion resistance of the heat-treated counterparts. This work sheds insight into the SLM of Ti-Nb powder mixtures for biomedical applications. In particular, the relatively low cost and easy manufacture of elemental powder as feedstock offer significant advantages to the additive manufacturing industry.
机译:合金粉末原料和化学不均匀性的可用性通常在使用元素混合粉末时经常发生,这是金属材料选择性激光熔化(SLM)的长期关注。在这项工作中,使用来自元素混合粉末的SLM制造Ti-35NB合金(WT.%),以研究所得部件的微观结构,力学行为和腐蚀性。微结构表征表明,SLM制作的Ti-35nb由近β相树突和未溶解的Nb颗粒组成,其在相对低的杨氏模量(84.7 +/- 1.2GPa)中产生。通过热处理改善了化学均匀性和微观结构均匀性,导致更均匀的微观结构和更小的Nb颗粒。未溶解的大型NB颗粒在SLM制造材料的整体性能中起重要作用,因为ASSLMED部分中未溶解的大NB颗粒的界限充当滑动带的起始位点。压缩骨折机构说明了剪切带的繁殖,停滞和合并,从而揭示了对产量强度和可塑性的影响。电化学实验表明了尽可能稳定的耐热处理对应物的耐腐蚀性稳定的耐腐蚀性。这项工作揭示了对生物医学应用的Ti-NB粉末混合物的SLM的洞察力。特别是,作为原料的元素粉末的相对较低的成本和易于制造的用于添加剂制造业具有显着的优势。

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