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Porosity Measurements and Analysis for Metal Additive Manufacturing Process Control

机译:金属增材制造过程控制的孔隙度测量与分析

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摘要

Additive manufacturing techniques can produce complex, high-value metal parts, with potential applications as critical metal components such as those found in aerospace engines and as customized biomedical implants. Material porosity in these parts is undesirable for aerospace parts - since porosity could lead to premature failure - and desirable for some biomedical implants - since surface-breaking pores allows for better integration with biological tissue. Changes in a part’s porosity during an additive manufacturing build may also be an indication of an undesired change in the build process. Here, we present efforts to develop an ultrasonic sensor for monitoring changes in the porosity in metal parts during fabrication on a metal powder bed fusion system. The development of well-characterized reference samples, measurements of the porosity of these samples with multiple techniques, and correlation of ultrasonic measurements with the degree of porosity are presented. A proposed sensor design, measurement strategy, and future experimental plans on a metal powder bed fusion system are also presented.
机译:增材制造技术可以生产复杂的高价值金属零件,并将其作为关键金属零件(如航空发动机中使用的金属零件)和定制的生物医学植入物的潜在应用。这些零件的材料孔隙度对于航空航天零件是不希望的-因为孔隙度可能会导致过早失效-并且对于某些生物医学植入物来说是理想的-因为破损的孔可以更好地与生物组织整合。增材制造过程中零件孔隙率的变化也可能表明制造过程中发生了不希望的变化。在这里,我们目前正在努力开发一种超声波传感器,用于监测在金属粉末床熔融系统上制造过程中金属零件中孔隙率的变化。介绍了表征良好的参考样品的开发,使用多种技术测量这些样品的孔隙率以及超声测量值与孔隙度的相关性。还介绍了在金属粉末床融合系统上提出的传感器设计,测量策略和未来的实验计划。

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