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Characterization of Metal Powders Used for Additive Manufacturing

机译:用于增材制造的金属粉末的表征

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摘要

Additive manufacturing (AM) techniques can produce complex, high-value metal parts, with potential applications as critical parts, such as those found in aerospace components. The production of AM parts with consistent and predictable properties requires input materials (e.g., metal powders) with known and repeatable characteristics, which in turn requires standardized measurement methods for powder properties. First, based on our previous work, we assess the applicability of current standardized methods for powder characterization for metal AM powders. Then we present the results of systematic studies carried out on two different powder materials used for additive manufacturing: stainless steel and cobalt-chrome. The characterization of these powders is important in NIST efforts to develop appropriate measurements and standards for additive materials and to document the property of powders used in a NIST-led additive manufacturing material round robin. An extensive array of characterization techniques was applied to these two powders, in both virgin and recycled states. The physical techniques included laser diffraction particle size analysis, X-ray computed tomography for size and shape analysis, and optical and scanning electron microscopy. Techniques sensitive to structure and chemistry, including X-ray diffraction, energy dispersive analytical X-ray analysis using the X-rays generated during scanning electron microscopy, and X-Ray photoelectron spectroscopy were also employed. The results of these analyses show how virgin powder changes after being exposed to and recycled from one or more Direct Metal Laser Sintering (DMLS) additive manufacturing build cycles. In addition, these findings can give insight into the actual additive manufacturing process.
机译:增材制造(AM)技术 可以生产复杂的高价值金属零件,并将其潜在地用作关键零件,例如航空航天零件中的零件。具有一致且可预测的特性的AM零件的生产需要具有已知和可重复特性的输入材料(例如金属粉末),这又需要用于粉末特性的标准化测量方法。首先,基于我们以前的工作,我们评估了用于金属AM粉末的粉末表征的当前标准化方法的适用性。然后,我们介绍了对两种用于增材制造的粉末材料进行的系统研究的结果:不锈钢和钴铬合金。这些粉末的表征对于NIST努力开发添加剂材料的适当测量方法和标准,以及证明NIST主导的添加剂制造材料循环法中所用粉末的特性非常重要。在原始状态和回收状态下,对这两种粉末都应用了大量的表征技术。物理技术包括激光衍射粒度分析,用于尺寸和形状分析的X射线计算机断层扫描以及光学和扫描电子显微镜。还使用了对结构和化学敏感的技术,包括X射线衍射,使用扫描电子显微镜过程中生成的X射线进行能量色散分析X射线分析以及X射线光电子能谱。这些分析的结果表明,原始粉末在暴露于一个或多个直接金属激光烧结(DMLS)增材制造制造周期并从中回收后如何变化。此外,这些发现可以深入了解实际的增材制造过程。

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