代表性项目: 1. 仿生构筑炭化稻壳基β-SiC多级孔陶瓷及其高温烟气过滤机理研究,52402023,国家自然科学基金项目,国家自然科学基金委员会, 2025. 2. 针状莫来石-氧化锆多孔陶瓷材料的制备、结构调控及隔热性能研究,51802290,国家自然科学基金项目,国家自然科学基金委员会, 2019. 3. 隔热用超轻质SiO2多孔陶瓷绿色制备技术,232102231046,河南省重点科技攻关项目,河南省科技厅,2023. 4. 微晶增韧超高速玻璃结合剂CBN砂轮的研究与应用,172102210223,河南省重点科技攻关项目,河南省科技厅,2020年. 5. 针状莫来石微孔陶瓷材料的研究与应用,182102210613,河南省重点科技攻关项目,河南省科技厅,2018. 代表性论文: 1. A novel strategy for low-temperature fabrication of porous CA6 ceramics using reactive CaCl2-KCl medium and its influence mechanism,Journal of the European Ceramic Society,2024,44:7201-7209. 2. Low-temperature fabrication and properties of porous calcium hexaluminate (CA6) ceramics with low thermal conductivity by one-step method, Ceramics International, 2023, 49: 9789-9798. 3. Effects of nano-CaCO3 and nano-iron phosphate on microstructure and properties of SiO2 porous ceramics prepared by direct foaming, Materials Today Communications, 2023, 35: 105690. 4. Phase transformation and physical properties of binding materials fabricated from solid waste FGD gypsum by oil bath heating and the micromorphology and formation mechanism of their hydration products, Construction and Building Materials, 2023, 377: 130981. 5. Effects of Al2O3 crystal types on morphologies, formation mechanisms of mullite and properties of porous mullite ceramics based on kyanite, Journal of the European Ceramic Society, 2018, 38: 679-686. 6. Effect of stirring rate on microstructure and properties of microporous mullite ceramics, Journal of Materials Processing Technology, 2018, 261: 159-163. 7. Green synthesis and photoluminescence property of β-SiC nanowires from rice husk silica and phenolic resin, Ceramics International, 2018, 44: 4500-4503. 8. A novel and green fabrication of 3C-SiC nanowires from coked rice husk-silicon mixture and their photoluminescence property, Materials Letters, 2018, 215: 75-78. 9. Preparation of microporous mullite ceramics by foaming for high temperature thermal isolation, Ceramics International, 2016, 42: 17332-17338. 10. Low-cost porous mullite ceramic membrane supports fabricated from kyanite by casting and reaction sintering, Ceramics International, 2016, 42: 4819-4826. 代表性专利: 1. Mullite-based micro-nanoporous heat-insulating refractory material and preparation method [P]. WIPO/PCT, WO2022/144014A1. 2. Corundum-based micro-nanoporous heat-insulating refractory material and preparation method [P]. WIPO/PCT, WO2022/144013A1. 3. Anorthite-based micro-nanoporous heat-insulating refractory material and preparation method [P]. WIPO/PCT, WO2022/1440412A1. 4. 一种稻壳基微孔轻质耐火材料及其制备方法[P].中国发明专利,ZL201610617234.X. 5. 一种碳化硅晶须原位复合刚玉高温陶瓷材料及其制备方法[P].中国发明专利,ZL201611265289.5. 6. 一种刚玉质微纳孔绝隔热耐火材料及其制备方法[P].中国发明专利,ZL202111668443.4. 7. 一种含氧化锆的微纳孔绝隔热耐火材料及其制备方法[P].中国发明专利,ZL202111668416.7. 8. 一种防火隔热节能门扇及其制备方法[P].中国发明专利, ZL201910322903.4. 9. 一种高抗冲击性防火吸音门扇及其制备方法[P].中国发明专利,ZL201910322904.9. 10. 一种微孔轻质硅砖及其制备方法[P].中国发明专利,CN202110718737.7. 代表性奖励: 1. Effects of Al2O3 crystal types on morphologies, formation mechanisms of mullite and properties of porous mullite ceramics based on kyanite,优秀科技论文奖,一等奖,河南省教育厅,2022. 2. 2024年度中国商业联合会科学技术奖,三等奖,中商联科技委,2024. 3. 2024年度河南省建材行业技术革新奖,三等奖,河南省建筑材料工业协会,2024. 4. 2022年全省教育系统教学技能竞赛,二等奖,河南省教育厅,2022. 5. 高速重负荷超硬复合磨钢轨砂轮制备技术及产业化,河南省科技成果奖,二等奖,河南省教育厅,2022. |