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Advanced Characterization and On-Line Process Monitoring of Additively Manufactured Materials and Components

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residual stress; synchrotron X-ray diffraction; additive manufacturing; Ti-6Al-4V; laser powder bed fusion (L-PBF); selective laser melting (SLM); additive manufacturing (AM); process monitoring; infrared thermography; optical tomography; computed tomography (CT); data fusion; lack-of-fusion; direct metal laser sintering; Ti6Al4V (ELI); dynamic properties; Split Hopkinson Pressure Bar; flow stress; fracture strain; WAAM; neutron diffraction; hybrid manufacturing; Laser Powder Bed Fusion; LPBF; AISI 316L; online process monitoring; thermography; X-ray diffraction; computed tomography; laser melting deposition; 3D printing; X-ray computed tomography; porosity; non-destructive analysis; laser beam melting (LBM); emissivity; calibration; thermocouples; 316L; IN718; feedstock powder; radiography; digital detector array; numerical simulation; detectability; X-ray computed tomography (XCT); healing; in situ monitoring; laser powder bed fusion; selective laser melting; laser beam melting; in-situ process monitoring; heat accumulation; inter layer time; cellular substructure; powder bed fusion (PBF); eddy current testing (ECT); part quality; in situ relative part density measurement; quality management; laser-based additive manufacturing; residual stress analysis; X-ray and neutron diffraction; diffraction-elastic constants; strain-free lattice spacing; subsurface defects; laser ultrasound; stainless steel; X-ray micro computed tomography (XCT); defect detection; image registration; n/a

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