个人信息
Personal information
副教授 博士生导师 硕士生导师
性别:男
在职信息:在职
所在单位:材料科学与工程学院
学历:研究生(博士)毕业
学位:工学博士学位
毕业院校:华中科技大学
学科:材料加工工程曾获荣誉:
2023 全国创新创业优秀博士后
2024 2023年度湖北十大科技进展奖
2023 Journal of Advanced Ceramics优秀编委
2024 材料成形与模具技术全国重点实验室2023年度重大进展奖
2020 2019年度华中科技大学重大学术进展奖
2021 Journal of Advanced Ceramics优秀论文奖
2020 3D打印医疗器械团体标准制定“杰出贡献专家”
2022 第十四届中国硅酸盐学会青年科技奖提名奖
2021 第48届日内瓦国际发明展金奖
2022 湖北省杰出青年科学基金获得者
2018 武汉东湖新技术开发区“3551光谷人才计划”入选者
2019 武汉市青年科技朝阳计划入选者
2018 华中科技大学教师教学竞赛一等奖
2018 华中科技大学材料学院“青年优材计划”入选者
2017 华中科技大学“我最喜爱的教师班主任”
2017 华中科技大学“学生最满意课堂”
2016 华中科技大学“学生最满意课堂”
2012 华中科技大学研究生“科技十佳”
2011 教育部博士研究生学术新人奖
2010 华中科技大学三好研究生标兵
2017 湖北省青年科技晨光计划入选者
- [1] Preparation of Si3N4 foams by DCC method via dispersant reaction combined with protein-gelling.Journal of Alloys and Compounds,
- [2] Effects of B4C addition on the microstructure and properties of porous alumina ceramics fabricated by direct selective laser sintering.Ceramics International,
- [3] Fabrication of porous fibrous alumina ceramics by direct coagulation casting combined with 3D printing.Ceramics International,
- [4] Sintering behavior and microstructural evolution of the monodispersed β-gallium oxide micro-particles with different morphology and size.Ceramics International,
- [5] Alumina fiber-reinforced silica matrix composites with improved mechanical properties prepared by a novel DCC-HVCI method.Ceramics International,
- [6] Rapid and uniform in-situ solidification of alumina suspension via a non-contamination DCC-HVCI method using MgO sintering additive as coagulating agent.Ceramics International,
- [7] Shape-controlled synthesis of monodispersed beta-gallium oxide crystals by a simple precipitation technique.Ceramics International,
- [8] Rapid in-situ solidification of SiO2 suspension by direct coagulation casting via controlled release of high valence counter ions from calcium iodate and pH shift.Ceramics International,
- [9] Jia-Min Wu, Wen-Zhong Lu, Wen Lei, Jian-Ping He, Jun Wang.Wen-Zhong Lu.Effects of aqueous gelcasting and dry pressing on the sinterability and microwave dielectric properties of ZnAl2O4-based ceramics.Ceramics International,
- [10] Highly porous barium strontium titanate (BST) ceramic foams with low dielectric constant from particle-stabilized foams.Journal of the American Ceramic Society,