mzq0320@163.com
天津大学“北洋青年****” 国家优秀青年基金获得者
教授
铁基超导材料原位烧结织构形成机制及其载流能力研究
高性能二硼化镁超导体结构调控及快速制备技术
陀螺仪材料成分分析
高载流二硼化镁超导体组织控制及其低温快速成形
铁基超导材料烧结织构形成技术及其载流性能优化
面向等离子体Y2O3弥散强化钨基材料复合先驱粉原位制备及其烧结特 性
氧化物弥散强化钨基合金烧结成相机制及组织调控
高性能金属材料成相机制与组织控制
铁素体-贝氏体复相钢相结构鉴定与显微组织分析
高品质镍基合金球形粉体3D打印技术开发
金属活化低温烧结
3D打印用超细镍基合金球形粉末气雾化制备关键技术开发
铁基超导材料原位烧结织构形成机制及其载流能力研究
Mg添加提高FeSe超导转变温度的方法
15NiCuMoNb5钢正火过程中温岛状组织的消除方法
通过自反应提高先位二硼化镁块材超导临界电流密度的方法
超细氧化钇掺杂钨复合前驱体粉末的制备方法
Cu包覆Mg棒中心扩散法低温制备二硼化镁超导线材的方法
Sn添加FeSe1/2Te1/2的超导体提高超导性能的方法
一种消除15NiCuMoNb5钢正火过程中温岛状组织的消除方法
通过自反应的方法可以提高先位二硼化镁块材超导临界电流密度
发明了一种改进的液相化学法制备超细氧化钇掺杂钨复合前驱体粉末。
发明了一种低成本的制备方法,可以制备出高载流二硼化镁超导线材
发明了一种通过添加微量Sn提高FeSe1/2Te1/2超导性能的方法
The effect of S doping on the superconductivity and nematicity transition of FeSe
Synthesis of W-Y2O3 alloys by freeze-drying and subsequent low temperature sintering: microstructure refinement and second ph
Controlled synthesis of high-quality W-Y2O3 composite powder precursor by ascertaining the synthesis mechanism behind the wet
Enhancement of superconductivity in FeNbxSe0.95 by hole carrier doping.
Improved grain connectivity and critical current density in ex-situ MgB2 superconductors prepared by two-step sintering
Microstructure Refinement in W-Y2O3 Alloy Fabricated by Wet Chemical Method with Surfactant Addition and Subsequent Spark Pl
The Interface Structure of FeSe Thin Film on CaF2Substrateand its Influence on the Superconducting Performance.
Enhancement of grain connectivity and critical current density in the ex-situ sintered MgB2 superconductors by doping minor C
Synthesis of nanosized composite powders via a wet chemical process for sintering high performance W-Y2O3 alloy.
Enhancement of critical current density by a “MgB2-MgB4” reversible reaction in self-sintered ex-situ MgB2 bulks
The kinetics mechanism of MgB2 layer formation within MgB2 superconducting wire fabricated using improved internal Mg diffusi
Preparation of ultra-fine grain W-Y2O3 alloy by an improved wet chemical method and two-step spark plasma sintering
The isotope effect of boron on the carbon doping and critical current density of Mg11B2 superconductors
Improved Superconducting properties in the Mg11B2 low activation superconductor prepared by low-temperature sintering.
Improvement in structure and superconductivity of bulk FeSe0.5Te0.5 superconductors by optimizing sintering temperature
Tuning superconductivity in FeSe thin films via Magnesium doping
High performance MgB2 superconducting wires fabricated by improved internal Mg diffusion process at a low temperature
Improvement in structure and superconductivity of bulk FeSe0.5Te0.5 superconductors by optimizing sintering temperature
Superior critical current density obtained in (MgB2)-B-11 low activation superconductor by using reactive amorphous B-11 and
Significantly enhanced critical current density in nano-MgB2 grains rapidly formed at low temperature with homogeneous carbon
Enhancement of superconductivity in the sintered FeSe0.5Te0.5 bulks with proper amount of Sn addition
Influence of Sn doping on the phase formation and superconductivity of FeSe0.93
The formation of nano-layered grains and their enhanced superconducting transition temperature in Mg-doped FeSe0.9 bulks
The effect of ball-milling treatment of original powders on the sintering process and critical current density of graphite-doped MgB2 bulks
Excellent Jc in the low-temperature sintered MgB2 superconductors consisted of uncompleted MgB2 phase and residual Mg
The synthesis of lamellar nano MgB2 grains with nanoimpurities flux pinning centers and their significantly improved critical current density
Phase formation and superconductive properties of Cu doped MgB2 sintered with milled B powder
The effect of Cu addition on the phase formation and critical current density in the sugar doped MgB2 superconductor
Investigation of phase composition and nanoscale microstructure of high-energy ball-milled MgCu sample
Low temperature synthesis of MgB2 supercondutors
The varied kinetics mechanisms in the synthesis of MgB2 from elemental powders by low-temperature sintering
The synthesis and grain connectivity of lamellar MgB2 grains by Cu-activated sintering at low temperature
The accelerated low-temperature sintering of MgB2 bulks with high critical density by minor Sn-doping
MgB2 superconductors with abnormally- improved Jc sintered after autoxidation of milled original powders
The enhancement of Jc in the nano SiC-doped MgB2 superconductors rapidly synthesized by activated sintering at low-temperature
Effect of Cu addition in reduction of MgO content for the synthesis of MgB2 through sintering
The mechanism of accelerated phase formation of MgB2 by Cu-doping during low-temperature sintering
The effect of Cu addition on the sintering process and superconductive properties of SiC-doped MgB2 bulks
Influence of ball-milled amorphous B powders on the sintering process and superconductive properties of MgB2
Mechanism analysis for enhanced electromagnetic properties in nano-SiC-doped MgB2 based on the discussion of the sintering process
The accelerated formation of MgB2 bulks with high critical current density by low-temperature Cu-doping sintering
Variation of the enhancement mechanism in the critical current density of Cu-doped MgB2 samples sintered at different temperatures
The improved superconductive properties of MgB2 bulks with minor Cu addition through reducing the MgO impurity
The accelerated formation of MgB2 phase with high critical current density by Cu and SiC multi-doping during the low-temperature sintering process
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天津大学博士生导师教师师资介绍简介-马宗青
本站小编 Free考研考试/2020-09-13
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