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Effects of Powder Variation on the Microstructure and Tensile Strength of Ti6Al4V Parts Fabricated by Selective Laser Melting

机译:粉末变化对选择性激光熔炼Ti6Al4V零件组织和拉伸强度的影响

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Metallic powders are used as raw materials in the Selective Laser Melting (SLM) process. These metal powders are typically available from more than one powder vendor. Even when powders have the same nominal chemical compositions, powders produced by different companies typically result in different powder particle size distributions and morphologies. These powder differences result in different powder bed thermophysical properties, which affect how the powder melts and solidifies. This paper studies the effect of powder variation on the microstructure and tensile strength of as-built SLM Ti6Al4V parts. Ti6Al4V powders from different vendors were used to fabricate parts via SLM. Powder characteristics, such as particle size distribution, morphology, and flowability, were obtained. Powder bed densities and thermal conductivities were measured and compared. The microstructures and tensile strengths were investigated by standard metallographic and tensile testing methods. Based on the experimental results, a correlation between the powder characteristics and part properties are discussed.
机译:在选择性激光熔化(SLM)工艺中,金属粉末被用作原材料。这些金属粉末通常可以从多个粉末供应商处获得。即使粉末具有相同的标称化学组成,不同公司生产的粉末通常也会导致不同的粉末粒度分布和形貌。这些粉末差异会导致不同的粉末床热物理性质,从而影响粉末的熔化和固化方式。本文研究了粉末变化对制成的SLM Ti6Al4V零件的显微组织和拉伸强度的影响。来自不同供应商的Ti6Al4V粉末用于通过SLM制造零件。获得了粉末特征,例如粒度分布,形态和流动性。测量并比较了粉末床的密度和热导率。通过标准金相和拉伸测试方法研究了显微组织和拉伸强度。基于实验结果,讨论了粉末特性与零件性能之间的相关性。

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