This study deals with the development of a 780-MPa-class hot-rolled advanced high-strength steel(AHSS)with an ultrahigh elongation at break of approximately 30%and strength-ductility product exceeding 24 GPa·%,indica...
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...
Science and Engineering Research Board (Ref. no.: ECR/2016/000125), Department of Science and Technology, Government of India;the funding by Alexander von Humboldt Foundation, Germany。
This work investigates the anisotropic compressive deformation of hot-rolled Mg-3Al-0.5Ce alloy and correlates it with microstructure and texture.Hot-rolled alloy had elongated and equiaxed grains with long-aligned Al...
Fundamental Research Program of Shanxi Province(202203021222188,202303021211166);Central Guiding Science and Technology Development of Local Fund(YDZJSK20231A046);Key Scientific Research Project in Shanxi Province(202102050201003,202203D111001)。
The microstructure and corrosion behaviour of hot-rolled Mg-3Zn-1Y-xCu alloys(x=0,1,3,5,wt%)were investigated.Results show that all Mg-3Zn-1Y-xCu alloys mainly consist ofα-Mg matrix and Mg_(3)Zn_(6)Y phases.The addit...
financial support provided by the Science and Engineering Research Board (Ref. no.: ECR/2016/000125), Department of Science and Technology, Government of India
Bioimplant grade hot-rolled magnesium with equiaxed microstructure and basal texture was examined for fracture toughness(FT)anisotropy using fatigue pre-cracked single-edge notch bending specimens with the notch,an||,...
National Key Research and Development Program(2018YFA0707300);National Natural Science Foundation of China(52075472);Hebei Natural Science Foundation(E2023203129)。
The effect of different surface treatments on the bonding strength of composite plates was investigated under the conditions of 400℃ and reduction ratio of 45%.Results show that the wire brush grinding treatment can ...
support provided by the Science and Engineering Research Board(Ref.no.:ECR/2016/000125);Department of Science and Technology,Government of India.SB acknowledges the funding by Alexander von Humboldt Foundation,Germany.
In this work,anisotropic fatigue crack growth rate(FCGR)behaviour in a hot-rolled Mg-3wt%Al-0.5wt%Ce alloy was investigated using compact tension(CT)specimens with notch(an)parallel to the rolling direction(RD)and tra...
supported by the National Natural Science Foundation of China(No.52275161);the Ministry of Science and Technology High-End Intelligence Plan Team Project(No.G2022040015L);the Shaanxi Science and Technology Innovation Team(No.2023-CX-TD-50);the Shaanxi Qin Chuangyuan scientists and engineers’team(No.2022KXJ-145);the International Joint Research Center for Value-added Metallurgy and Processing of Non-ferrous Metals(No.2019SD0010).
Previously,the in-plane mechanical anisotropy of Zr hot-rolled plates is ascribed mainly to the different activities of the deformation modes activated when loading along different directions.In this work,a quantitati...
POSCO(No.2021Y037);Nano&Material Technology Development Program through the National Research Foundation of Korea(NRF)funded by Ministry of Science and ICT(No.RS-2023-00281246);National Research Foundation of Korea(NRF)grant funded by the Korea government(MSIP)(Nos.NRF–2021R1A2C3006662 and NRF-2022R1F1A1073796);J.L.acknowledges support from the Basic Science Research Program through the National Research Foundation of Korea(NRF)funded by the Ministry of Education(No.RS-2023-00276120).
As-hot-rolled medium-entropy alloys(MEAs)with unevenly distributed grain sizes of face-centered cubic grains exhibit better yield strength without uniform elongation loss compared to cold-rolled and an-nealed ones.Suc...
Superior ballistic performance and the lightweight character of Ti alloys are considered as main reasons for their use in armour applications against a broad spectrum of ballistic threats,e.g.bullet,fragment or blast ...