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Inspection of additive manufactured parts using laser ultrasonics

机译:使用激光超声波检查增材制造的零件

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摘要

Additive manufacturing is a novel technology of high importance for global sustainability of resources. As additive manufacturing involves typically layer-by-layer fusion of the feedstock (wire or powder), an important characteristic of the fabricated metallic structural parts, such as those used in aero-engines, is the performance, which is highly related to the presence of defects, such as cracks, lack of fusion or bonding between layers, and porosity. For this purpose, laser ultrasonics is very attractive due to its non-contact nature and is especially suited for the analysis of parts of complex geometries. In addition, the technique is well adapted to online implementation and real-time measurement during the manufacturing process. The inspection can be performed from either the top deposited layer or the underside of the substrate and the defects can be visualized using laser ultrasonics combined with the synthetic aperture focusing technique (SAFT). In this work, a variety of results obtained off-line on INCONEL\uae 718 and Ti-6Al-4V coupons that were manufactured using laser powder, laser wire, or electron beam wire deposition are reported and most defects detected were further confirmed by X-ray micro-computed tomography.
机译:增材制造是一种新颖的技术,对于全球资源的可持续性具有高度重要性。由于增材制造通常涉及原料(金属丝或粉末)的逐层熔合,因此所制造的金属结构部件(例如航空发动机中使用的金属结构部件)的重要特征是性能,该性能与存在度高度相关缺陷,例如裂缝,层之间缺乏融合或粘结以及孔隙率。为此,激光超声波具有非接触特性,因此非常吸引人,特别适合分析复杂几何形状的零件。此外,该技术非常适合于制造过程中的在线实施和实时测量。可以从衬底的顶部沉积层或底面进行检查,并且可以使用结合了合成孔径聚焦技术(SAFT)的激光超声对缺陷进行可视化。在这项工作中,报告了在离线使用INCONEL \ uae 718和Ti-6Al-4V试件时获得的各种结果,这些试件是使用激光粉末,激光线或电子束线沉积法制造的,并且通过X可以进一步确认检测到的大多数缺陷。射线微计算机断层扫描。

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