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In-Process Thermal Imaging of the Electron Beam Freeform Fabrication Process

机译:工艺热成像电子束自由形式制造工艺

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Researchers at NASA Langley Research Center have been developing the Electron Beam Freeform Fabrication (EBF3) metal additive manufacturing process for the past 15 years. In this process, an electron beam is used as a heat source to create a small molten pool on a substrate into which wire is fed. The electron beam and wire feed assembly are translated with respect to the substrate to follow a predetermined tool path. This process is repeated in a layer-wise fashion to fabricate metal structural components. In-process imaging has been integrated into the EBF3 system using a near-infrared (NIR) camera. The images are processed to provide thermal and spatial measurements that have been incorporated into a closed-loop control system to maintain consistent thermal conditions throughout the build. Other information in the thermal images is being used to assess quality in real time by detecting flaws in prior layers of the deposit. NIR camera incorporation into the system has unproved the consistency of the deposited material and provides the potential for realtime flaw detection which, ultimately, could lead to the manufacture of better, more reliable components using this additive manufacturing process.
机译:NASA Langley研究中心的研究人员在过去的15年里一直在开发电子束自由形状制造(EBF3)金属添加剂制造过程。在该过程中,电子束用作热源,以在馈送线上的基板上产生小熔池。电子束和钢丝进料组件相对于基板平移以遵循预定的工具路径。以层智的方式重复该过程以制造金属结构部件。使用近红外(NIR)相机已将过程内成像集成到EBF3系统中。处理图像以提供已经结合到闭环控制系统中的热和空间测量,以在整个构建中保持一致的热条件。热图像中的其他信息用于通过检测沉积物的现有层中的缺陷来实时评估质量。 NIR相机掺入系统中未经用过的沉积材料的一致性,并提供了实时探伤检测的可能性,最终可能导致使用这种添加剂制造过程的更好,更可靠的部件的制造。

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