supported by National Natu-ral Science Foundation of China(No.U1737208);SAST Foundation.
The precipitation behavior of magnesium-rare earth(Mg-RE)alloys plays a crucial role for their properties.However,the precipitation happens at small-length and long-time scales,making it challenging to be analyzed by ...
supported by the Nation Key Research and Development Program of China(No.2021YFB3701100).
The contradiction between mechanical properties and thermal conductivity of magnesium alloys is a roadblock for their widespread applications.In this study,we developed a hot-extruded Mg-8Gd-1Er-8Zn-1Mn alloy with hig...
support from Interdisciplinary Research Project for Young Teachers of USTB Fundamental Research Funds for the Central Universities(Grant no.FRF-IDRY-23-030).
Solute atoms and precipitates significantly influence the mechanical properties of Mg alloys.Previous studies have mainly focused on the segregation behaviors of Mg alloys after annealing.In this study,we investigated...
Project supported by Heilongjiang Province Education Project(1453ZD032,1453ZD022,1453PT006);Guangxi Province Natural Science Foundation(2024GXNSFAA010142);Heilongjiang Province Natural Science Foundation(LH2020E099,LH2022A025)。
The contradictory relationship between the damping capacity and strength of metals,governed by dislocation mechanisms,poses a challenge in improving simultaneously through dislocation strengthening.Accordingly,explori...
Project supported by the National Natural Science Foundation of China(52071093,52071175);the Natural Science Foundation of Heilongjiang Province of China(LH2023E059);the Opening Project of Jiangsu Key Laboratory of Advanced Structural Materials and Application Technology(ASMA202205)。
Microstructure regulation via short-time heat treatment is conducive to the optimization in the microstructure and properties of precipitable magnesium(Mg)alloys,but there is currently a lack of relevant studies.In th...
National Natural Science Foundation of China(Grant No.52305385,Grant No.U23A20541 and Grant No.82102571);China Postdoctoral Science Foundation(2022M710564)and Chongqing Natural Science Foundation(CSTB2022NSCQ-MSX0089).
Magnesium alloys,noted for their substantial mechanical strength and exceptional biocompatibility,are increasingly being considered for use in biodegradable implants.However,their rapid degradation and significant hyd...
supported by the National Natural Science Foundation of China(Nos.52201111,52275389,and 52201137);the Taiyuan University of Science and Technology Scientific Research Initial Funding(No.20232102);the Reward funds for excellent doctor of work in coming to Shanxi(No.20242068);the Special fund for Science and Technology Innovation Teams of ShanxiProvince.
Conventional high-strength Mg-RE-based wrought alloys usually contain a high amount of RE solutes,which largely increases the alloy cost and thus restricts their adoptions.In this work,we developed a low-RE-containing...
supported by the Defense Industrial Technology Development Program(No.JCKY2018407C008);the NCST Science Fund for Distinguished Young Scholars(No.JQ201702).
The ductility and toughness of peak-aged(PA)Mg-RE alloys are significantly influenced by their grain structure characteristics.To investigate this issue,we examined PA Mg-8.24Gd-2.68Y(wt.%)alloys with two distinct gra...
Magnesium(Mg)is renowned for its unique combination of low weight,high strength-to-weight ratio,biocompatibility,and natural abundance,positioning it as an ideal candidate for biodegradable implants in biomedicine.Des...