supported by the National Key Research and Development Program of China[grant numbers 2019YFA0705300,2021YFB3702502];National Natural Science Foundation of China[grant numbers 52001191,52127807,52271035];Independent Research Project of State Key Laboratory of Advanced Special Steel,Shanghai Key Laboratory of Advanced Ferrometallurgy;Shanghai University,China[grant numbers SKLASS 2022-Z10];the Natural Science Foundation of Shanghai,China[grant.23ZR1421500];SPMI Project from Shanghai Academy of Spaceflight Technology,China[grant.SPMI2022-06].
Ni3Al-based alloys are excellent candidates for the structural materials used for turbine engines due to their excellent high-temperature properties.This study aims at laser powder bed fusion and post-hot isostatic pr...
supported by the National Natural Science Foundation of China(Grant Nos.52034004 and 52075373).
For the bonding couple of S31042 steel and Ni3Al-based superalloy,joint microstructure regulation plays a pivotal role in improving joint performance.Different pretreatment approaches including solution and cold rolli...
supported by NSAF(No.U1830122);the National Natural Science Foundation of China(No.51775443)。
Ni3Al-based superalloy IC10 is widely used in high temperature components of aeroengines because of its superior mechanical properties.In this paper,the creep feed grinding properties of IC10 were investigated experim...
financially supported by the Natural Science Foundation of Hebei Province(No.E2019202161);the Highlevel Talent Funding Project of Hebei Province(No.A201902008);the Key R&D Program of Hebei Province(No.19251013D);the College Student Innovation and Entrepreneurship Training Program of Hebei University of Technology(No.S201910080035);the National Key R&D Program of China(No.2018YFB2001805)。
In this work,water cooling,air cooling(AC)and furnace cooling(FC)were applied to investigate the effect of cooling rate on microstructure evolution of primaryγ′in a newly designed Ni3Al-based alloy.The results showe...