supports from the National Natural Science Foundation of China(NSFC)(Nos.51901091 and 52374316);the Yunnan Science and Technology Program(Nos.202401AT070403 and 202305AF150014).
Over the years,the high magnetic induction of industrial Mn-added electrical steel is assumed to be the enhancement of{100}texture derived from its austenite-ferrite phase transformation during hot rolling(phase trans...
Natural Science and Engineering Research Council of Canada,and PRIMA(Quebec Ministry for Economy and Innovation).DM holds a Canada Research Chair Tier I(2012–2026).
This study investigates the degradation behavior of three distinct Fe-based alloys immersed in three pseudo-physiological solutions.These alloys,which have varied Mn and C contents,include a commercially available Fe-...
The authors appreciate the financial support from National Key Research and Development Program of China(2017YFBO304900).
The evolution of the microstructure and toughness of APL5L X80 pipeline steel after thermal welding simulation was investigated by X-ray diffraction,electron backscatter diffraction,and transmission electron microscop...
financial support from the National Natural Science Foundation of China (Grant Nos.52274372 and 52201101);the National Key R&D Program of China (2021YFB3702404);the Fundamental Research Funds for the Central Universities (FRF-TP-22-013A1).
Multiphase microstructure significantly increases the strength,usually at the expense of flangeability because of lacking microstructure homogeneity.To further improve the strength-flangeability of multiphase steel,th...
the National Key R&D program of China(Grant Nos.2022YFB3705200 and 2021YFB3702301);the National Natural Science Foundation of China(Grant No.52171008);the National Key R&D program of China(Grant No.2022YFE0110800);the National Natural Science Foundation of China(Grants Nos.51922054 and U1808208);the Mobility Programme from the Sino-German Center(Grant No.M-0319).
Cellular microstructure is a unique feature in alloys fabricated by selective laser melting(SLM).Abundant efforts have been made to reveal the formation mechanism of cellular microstructures and its influences on mech...
supported by the National Natural Science Foundation of China(Nos.12175231 and 11805131),Anhui Natural Science Foundation of China(No.2108085J05);Projects of International Cooperation and Exchanges NSFC(No.51111140389);the Collaborative Innovation Program of the Hefei Science Center,CAS(Nos.2021HSC-CIP020 and 2022HSCCIP009).
Ferritic/martensitic(F/M)steel is widely used as a structural material in thermal and nuclear power plants.However,it is susceptible to intergranular damage,which is a critical issue,under service conditions.In this s...
financially supported by the National Natural Science Foundation of China(Nos.52293395 and 52293393);the Xiongan Science and Technology Innovation Talent Project of MOST,China(No.2022XACX0500)。
Understandings of the effect of hot deformation parameters close to the practical production line on grain refinement are crucial for enhancing both the strength and toughness of future rail steels.In this work,the au...
supported by National Natural Science Foundation of China(Grant Nos.52004190 and 52274340).
Three-dimensional atom-probe tomography and first-principles calculation combined with density functional theory were used to study the effect of the co-segregation of different elements formed during the solidificati...
support received from the National Natural Science Foundation of China(Grant No.U1964204).
In this work,we proposed a novel Cu/θdual nanoparticles strategy to tailor the austenite characteris-tics of a medium Mn steel via a tempering-annealing process to optimize the mechanical properties.We explored the e...
the Shaanxi Innovation Talent Promotion Plan-Youth Science and Technology New Star Project(Talent).Project No.:2023KJXX-121。
The changes in austenite grain size of the specimens with coarse ferrite grains under different heat treatment process were investigated.The focus was on studying the effect of annealing on refining coarse ferrite gra...