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The Effect of a Laser-Based Heat Treatment on the Microstructure of a Superalloy After a Minimally Invasive Repair by Direct Energy Deposition

  • Bernd Müller,
  • Gerhard Backes,
  • Wolfgang Küppers,
  • Jochen Kittel,
  • Norbert Pirch,
  • Susanne Hemes,
  • Markus Pedersen,
  • Constantinos Hatzoglou,
  • Paraskevas Kontis

摘要

In this study, a laser-based heat treatmentHeat treatment is applied on IN718 superalloySuperalloys substrate repaired by a minimally invasive direct energy deposition process. The focus is on the laser-based heat-treated microstructureMicrostructure, aiming to enable minimally invasive repairRepair processes to take place either “on-wing” or “near-wing”. Hardness measurements were performed on the as-repaired and heat-treated microstructureMicrostructure, while electron microscopyElectron microscopy, electron backscatter diffraction and atom probe tomographyAtom probe tomography analyses were performed to investigate the microstructureMicrostructure. After the laser-based heat treatmentHeat treatment, the hardness of the repaired part increased compared to the as-repaired and reached values similar to that of the substrate. Besides, microstructural analysis unveiled non-uniform γ″ precipitatePrecipitates formation, linked to observed micro-segregationSegregation from the repairRepair process persisting post-heat treatmentHeat treatment. PrecipitationPrecipitation-free areas were observed while co-precipitationPrecipitation of γ″ and γ′ in duplet and triplet particles was infrequent. Interdendritic areas exhibited Laves phases regions with needle-shaped δ precipitatesPrecipitates forming directly from the Laves phase. Carbonitrides coexisted with Laves phase, creating complex Laves regions. Although a single-step heat treatmentHeat treatment will not lead to a complete dissolution of the undesirable microstructureMicrostructure features, a solution treatment step using the same minimally invasive equipment can unlock the full potential of in-situ maintenance through laser-based heat treatmentsHeat treatment.