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Measurement and characterization of porosity in aluminium selective laser melting parts using X-ray CT

机译:使用 X 射线 CT 测量和表征铝选择性激光熔化部件的孔隙率

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Selective laser melting (SLM) is an additive manufacturing technique which has the capability to produce complex metal parts with almost 100 density and good mechanical properties. Despite the potential benefits of SLM technology, there are technical challenges relating to the qualification and certification of the manufactured parts that limits its application in safety-critical industries, such as aerospace. Material porosity in SLM parts is detrimental for aerospace applications since it compromises structural integrity and could result in premature structural failure of parts. This paper describes the application of the non-destructive X-ray computed tomography (XCT) method to characterize the internal structure to enhance the understanding of the process parameters on material porosity and thus provide quality control of the SLM AlSi10Mg parts. An efficient and reliable XCT image processing procedure that involves image enhancement and ring artefact removal prior to image segmentation is presented. The obtained porosity level is compared with the conventional Archimedes method, showing good agreement. The characteristics of pores, such as shapes and sizes, are also discussed.
机译:选择性激光熔化 (SLM) 是一种增材制造技术,能够生产具有几乎 100% 密度和良好机械性能的复杂金属零件。尽管SLM技术具有潜在的优势,但与制造零件的资格和认证相关的技术挑战限制了其在航空航天等安全关键行业的应用。SLM零件中的材料孔隙率对航空航天应用有害,因为它会损害结构完整性,并可能导致零件过早的结构失效。本文介绍了应用无损X射线计算机断层扫描(XCT)方法表征其内部结构,以增强对材料孔隙率工艺参数的理解,从而为SLM AlSi10Mg零件提供质量控制。提出了一种高效可靠的XCT图像处理程序,该程序涉及图像分割前的图像增强和环形伪影去除。将得到的孔隙度水平与传统的阿基米德方法进行了比较,显示出良好的一致性。还讨论了孔的特征,例如形状和大小。

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