错误:搜索内容不能为空,请输入英文关键词
错误:关键词超出字数限制,请精简
高级检索

A Correlative In Situ and Ex Situ Analysis of Static Recrystallisation in a New Superalloy for 3D-Printing

  • Yuanbo T. Tang,
  • Anh Hoang Pham,
  • Satoshi Utada,
  • Jieming S. Zhang,
  • Yuhan Zhuge,
  • Shigekazu Morito,
  • Kazuto Arakawa,
  • D. Graham McCartney,
  • Roger C. Reed

摘要

By making particular use of high-temperatureHigh temperature confocal laser scanning microscopy, static recrystallisationRecrystallisation is studied correlatively both in situ and ex situ in an as-fabricated superalloy made by laser-powder bed fusion (L-PBF). In this way, insights are gained into important recrystallisationRecrystallisation phenomena with direct observations made—for the first time in this class of material—of phenomena such as nucleationNucleation of recrystallisationRecrystallisation, subsequent grain growthGrain growth, jerky flow of boundaries due to pinning, and twin formation. The nucleation process—requiring strain-free lattice to be created by grain boundaryGrain boundary migration—is visualised, and its role in limiting the kinetics of recrystallisationRecrystallisation is elucidated. Moreover, it is demonstrated that boundary mobility is initially prevented by Smith-Zener pinning due to a fine dispersion of secondary phases but also with a role played by solute drag caused by cellular micro-segregationSegregation. With increasing annealing time, the retarding pressure reduces due to carbide coarseningCoarsening and/or dissolution as well as matrix compositional homogenisation, eventually allowing recrystallisationRecrystallisation to take place. Further work will allow rich quantitative datasets to be gained which will allow for the testing of recrystallisationRecrystallisation models.