Skip to main navigation Skip to search Skip to main content

Microstructural evolution and mechanical properties of Fe–Cr–Mo–Mn alloy under IQ and IQT heat treatments

  • Depeng Shen
  • , Cunchao Dou
  • , Guoqiang Liu
  • , Ning Guo
  • , Fu Guo
  • , Tianjiao Huang
  • , Bingtao Tang*
  • *Corresponding author for this work
  • Qilu University of Technology
  • Shandong Institute of Mechanical Design and Research
  • Jinlei Technology Co., Ltd.
  • Ltd.

Research output: Contribution to journalArticlepeer-review

Abstract

This study systematically explores the microstructural evolution and mechanical performance of Fe–Cr–Mo–Mn alloy subjected to isothermal quenching (IQ), isothermal quenching + tempering (IQT), and conventional quenching + tempering (QT) heat treatment processes. Compared with the tempered sorbite microstructure produced by conventional QT, IQ-250 consists of a mixture of martensite and lower bainite, achieving ultra-high tensile strength (~ 1861.8 MPa) but exhibiting limited ductility and poor low-temperature impact toughness. Compared with the tempered sorbite microstructure produced by conventional QT, IQ-250 consists of a mixture of martensite and lower bainite, achieving ultra-high tensile strength (~ 1861.8 MPa) but exhibiting limited ductility and poor low-temperature impact toughness. In contrast, the IQT-250 process, derived from IQ treatment, effectively preserves the deformation sub-structure, and produces a refined tempered sorbite microstructure with finer grains and higher dislocation density. In addition, unlike the coarse, grain-boundary-enriched carbides in QT specimens, IQT-250 produces fine, equiaxed, and uniformly dispersed M₃C carbides, which effectively impede dislocation motion, reduce grain-boundary stress concentrations. The IQT-250 treatment markedly enhances mechanical performance, achieving 913.7 MPa UTS, 23.2% elongation, and 141.6 J/cm2 impact toughness, demonstrating superior strength–ductility–toughness synergy compared with conventional QT.

Original languageEnglish
Pages (from-to)20011-20031
Number of pages21
JournalJournal of Materials Science
Volume60
Issue number41
DOIs
StatePublished - Nov 2025
Externally publishedYes

Fingerprint

Dive into the research topics of 'Microstructural evolution and mechanical properties of Fe–Cr–Mo–Mn alloy under IQ and IQT heat treatments'. Together they form a unique fingerprint.

Cite this