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Featured researches published by Sun Yangshan.


Acta Metallurgica Sinica | 2013

EFFECTS OF HIGH TEMPERATURE ANNEALING ON MORPHOLOGY OF LONG PERIOD STACKING ORDERED STRUCTURES IN AS-CASE AND AS-EXTRUDED Mg97Y2Zn1ALLOY

Liu Huan; Xue Feng; Bai Jing; Zhou Jian; Sun Yangshan

Recently,there has been increasing interest in the transformation process between 18R and 14H long period stacking ordered(LPSO) structures in Mg-Y-Zn alloys.However,the detailed phase transformation associated with 18R and 14H structures remains to be established.In this work,the effects of high temperature annealing on the microstructure evolutions of LPSO structure of ascast and as-extruded Mg_(97)Y_2Zn_1 alloy were investigated by OM,SEM and TEM.The results show that the as-cast alloy is mainly composed of network-shaped 18R-LPSO phase,stacking faults(SFs),Q-Mg matrix and a small number of Mg_(24)Y_5 particles.After extrusion,the 18R phase is rearranged in lines along the direction of extrusion and plenty of fine 14H lamella is precipitated in the matrix.During the early stage of annealing,the 14H phase in the as-cast alloy is nucleated massively in the SFs regions around 18R structure.With transformations from the 18R phase,the 14H lamella develops along the directions of length and thickness,and their volume fraction reaches to the maximum when the alloy is annealed for 30 h.As the annealing process continues,the dissolution of 14H phase into thematrix proceeds at the same time.There is almost no 14H lamella present in the center of α-Mg matrix but a few remains near the 18R phase in the microstructure of the specimen annealed for200 h.In case of the as-extruded alloy,however,abundant fine 14H lamella has already been introduced during the hot extrusion.When the annealing treatment is operated,the 18R phase keeps dissolving into the matrix until disappearing completely,while the 14H lamella grows continuously.When the whole matrix is covered by 14H lamella,the development of 14H lamella along the length direction is hindered by the grain boundaries.And only coarsening 14H lamella is observed in the as-extruded alloy sample annealed for 200 h.


Archive | 2012

Copper-steel fiber copper-based composite material and preparation method thereof

Xue Feng; Wu Xiaojing; Zhou Jian; Bai Jing; Sun Yangshan


Archive | 2005

Low melting point tin-zinc solder without lead and soldering paste

Sun Yangshan; Zhou Jian; Xue Feng


Archive | 2014

Rare earth magnetic material with controlled deformation of magnetic field and preparation method thereof

Xue Feng; Ju Jia; Zhou Jian; Bai Jing; Sun Yangshan; Li Hong


Archive | 2014

Rare-earth magnetic material with high magnetocrystalline anisotropy and large magnetoelastic strain and preparation method thereof

Xue Feng; Ju Jia; Zhou Jian; Bai Jing; Sun Yangshan; Li Hong


Archive | 2013

Preparation method of magnesium alloy wire based on severe plastic deformation

Bai Jing; Liu Huan; Peng Tingting; Xue Feng; Zhou Jian; Sun Yangshan


Archive | 2015

Binder-phase wolfram-carbide (WC) hard alloy and preparation method thereof

Xue Feng; Zhou Jian; Ju Jia; Bai Jing; Sun Yangshan


Archive | 2015

Biomedical magnesium alloy and preparation method and application of biomedical magnesium alloy wire

Bai Jing; Sun Liuxia; Xue Feng; Zhou Jian; Sun Yangshan


Archive | 2014

Magnetic material with magnetic field for driving martensite twin crystal rearrangement and preparation method thereof

Xue Feng; Ju Jia; Zhou Jian; Bai Jing; Sun Yangshan; Li Hong; Sun Jingjing; Yan Muxiang


Archive | 2013

Titanium carbide-tungsten carbide composite hard alloy

Xue Feng; Zhou Jian; Ju Jia; Bai Jing; Sun Yangshan

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Xue Feng

Southeast University

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Bai Jing

Southeast University

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Liu Huan

Southeast University

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