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Demonstration of Array Eddy Current Technology for Real-time Monitoring of Laser Powder Bed Fusion Additive Manufacturing Process

机译:演示了用于涡流粉末熔合增材制造过程实时监控的阵列涡流技术

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Nondestructive evaluation (NDE) at various fabrication stages is required to assure quality of feedstock and solid builds. Industry efforts are shifting towards solutions that can provide real-time monitoring of additive manufacturing (AM) fabrication process layer-by-layer while the component is being built to reduce or eliminate dependence on post-process inspection. Array eddy current (AEC), electromagnetic NDE technique was developed and implemented to directly scan the component without physical contact with the powder and fused layer surfaces at elevated temperatures inside a L-PBF chamber. The technique can detect discontinuities, surface irregularities, and undesirable metallurgical phase transformations in magnetic and nonmagnetic conductive materials used for laser fusion. The AEC hardware and software were integrated with the L-PBF test bed. Two layer-by-layer tests of Inconel 625 coupons with AM built discontinuities and lack of fusion were conducted inside the L-PBF chamber. The AEC technology demonstrated excellent sensitivity to seeded, natural surface, and near-surface-embedded discontinuities, while also detecting surface topography. The data was acquired and imaged in a layer-by-layer sequence demonstrating the real-time monitoring capabilities of this new technology.
机译:需要在各个制造阶段进行无损评估(NDE),以确保原料和固体成分的质量。工业上的努力正在转向能够逐层实时监控增材制造(AM)制造过程的解决方案,同时正在构建该组件以减少或消除对后处理检查的依赖。开发并实施了阵列涡流(AEC),电磁NDE技术来直接扫描组件,而无需在L-PBF腔室内升高温度下与粉末和熔合层表面进行物理接触。该技术可以检测用于激光熔合的磁性和非磁性导电材料中的不连续性,表面不规则性以及不良的冶金相变。 AEC硬件和软件与L-PBF测试台集成在一起。在L-PBF腔室内对Inconel 625附有AM的不连续性和熔融性不足的试样进行了两层测试。 AEC技术对种子,自然表面和近表面嵌入的间断点表现出出色的灵敏度,同时还可以检测表面形貌。数据被逐层采集并成像,展示了这项新技术的实时监控功能。

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