Federico Cotti Paltro
Microstructural Optimization of an LPBF-Processed SAM Superalloy via an Integrated HIP–Quenching Heat Treatment.
Rel. Daniele Ugues, Emilio Bassini. Politecnico di Torino, Corso di laurea magistrale in Ingegneria Dei Materiali Per L'Industria 4.0, 2026
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Abstract
In this work, an innovative heat treatment process was investigated for a nickel-based superalloy, which is manufactured by Laser Powder Bed Fusion (PBF-LB). These alloys require Hot Isostatic Pressing (HIP) as a post-processing step, which involves the simultaneous application of high temperature and high isostatic gas pressure with the aim to achieve a defect-free component. Typically they also require the subsequent heat treatments (such as annealing or aging) to be performed in a separated low- pressure furnace. In contrast, the new approach, here explored, allows to run both the HIP and the solution treatment within a single processing stage in a single furnace.
The aim is to significantly reduce the overall processing time and production costs by combining the healing effect of HIP and the most expensive heat treatment i.e
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