Aging-Induced Residual Stress Relaxation in Laser Powder Bed Fusion CM247LC Superalloy Parts Quantified by Neutron-Diffraction-Validated Eigenstrain Tomography
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This dataset provides the complete three-dimensional full-field reconstructions of residual stress and eigenstrain for a CM247LC superalloy component fabricated via Laser Powder Bed Fusion (LPBF), both in its as-printed and aging-treated (900 °C for 8 h) states. The data were generated using a mechanics-informed Eigenstrain Tomography framework validated by independent neutron diffraction measurements. The provided ZIP file contains high-resolution volumetric data in .vtu (VTK Unstructured Grid) format, which can be visualized and post-processed using open-source software such as ParaView. The datasets explicitly include the following tensor and scalar fields: - Eigenstrain (Eig.pvd) - Residual Elastic Strain (ElasticStrain.pvd) - Residual Stress (Stress.pvd) - Total Strain (TotalStrain.pvd) - Displacement (U.pvd) - von Mises Stress (VonMises.pvd) This repository aims to support total transparency in additive manufacturing process qualification and to provide a benchmark for researchers developing predictive simulations of thermal stress relief in nickel-based superalloys.




