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房轶群

发布日期:2024-03-17    作者:     来源:     点击:

房轶群、博士、副教授、博士生导师、黑龙江省生物质复合材料工程技术研究中心副主任。

Email:fanyiqun2006@163.com;yqfang@nefu.edu.cn

Tel:13936311754

所在学科:林业工程(生物质复合材料方向

研究方向:生物质复合材料阻燃环境友好生物质复合材料的研发

主讲课程:胶黏剂与涂料》、《材料科学及研究方法导论等本科课程。《生物质材料阻燃学》、《聚合物科学》、《复合材料设计学等研究生课程。

成果及奖励:先后获得镇江市科技进步一等奖(2016);丹阳市科技进步一等奖(2017);金檀奖科学技术发明一等奖(2017);黑龙江省科学技术发明一等奖(2018)先后入选“苏北发展急需人才引进计划”(2015) ;丹阳市“丹凤朝阳”人才(2017);江苏省“双创人才”(2017)。

学术兼职中国复合材料学会天然纤维复合材料专委会委员、森林工程青年编委。

社会服务兼任江苏肯帝亚木业有限公司技术副总监,先后承担了镇江市重点研发,丹阳市科技支撑,丹阳市成果转化等项目,在轻质高强阻燃木塑复合材料、柔韧回弹、磁性自吸、高光防水防火等功能性地板产品方面进行了一系列研发及推广。

主持课题、出版教材、申请专利发表论文主持“十三五”国家科技支撑计划任务黑龙江省自然科学基金项目肯帝亚木业有限公司技术开发项目、中央高校基本科研业务费专项资金等项目;开展了生物质复合材料增强与阻燃,功能性生物基建材制造等研究工作;申请及授权发明专利18,其中PCT专利一件,对企业转化2件;科学出版社参编专著一部;发表论文30余篇。

主要研究论文:

[1] Shuang Li, Boyu Cui, Xue Jia, Weihong Wang*, Yutong Cui, Jiayan Ding, Chunmao Yang, Yiqun Fang, Yongming Song, Xianquan Zhang. Cellulose-based light-management film exhibiting flame-retardant and thermal-healing properties. International Journal of Biological Macromolecules, 2024, 130447

[2] Ruofan Yang, Yiqun Fang*, Jinghang Zhu, Guilin Ren, Bohao Lin, Fengqiang Wang, Rongxian Ou, Qingwen Wang, Yongming Song*. Fabrication ZnO functionalized nano-montmorillonite for enhancing the fire-safety and mechanical properties of wood flour/poly (vinyl chloride) composites. Construction and Building Materials, 2024, 420: 135552

[3] Yunpeng Yu, Yiqun Fang*, Mengfan Yan, Guilin Ren, Jiali Zou, Yuqing Yan, Yongming Song, Weihong Wang, Fengqiang Wang*, Qingwen Wang. Synergistic effect of graphene oxide and ammonium biborate tetrahydrate for flame retardancy of amino resin coatings. Progress in Organic Coatings, 2024, 189: 108313

[4] An Yang, Rui Zhang, Zesheng Xu, Tian Liu, Yiqun Fang*, Weihong Wang, Min Xu, Yongming Song*, Qingwen Wang. Preparation of situ microfiber-reinforced co-extruded high-filled wood-plastic composite with excellent mechanical, creep resistance, and water resistance properties. Construction and Building Materials, 2024, 415: 135002

[5] Guilin Ren, Yiqun Fang*, Ruofan Yang, Jinghan Zhu, Yiqing Fu, Weihong Wang, Rongxian Ou, Yongming Song*, Qingwen Wang. Creation of a high strength, hydrophobic and fireproof surface on wood by polyamide acid under mild and simple conditions. Progress in Organic Coatings, 2024, 189: 108313

[6] Yutong Yang, Yachong Zhu, An Yang, Tian Liu, Yiqun Fang, Weihong Wang*, Yongming Song, Yao Li. Rapid fabricated in-situ polymerized lignin hydrogel sensor with highly adjustable mechanical properties. International Journal of Biological Macromolecules, 2024, 260(18): 12378

[7] Rui Zhang, Di Xie, Congcong Zhang, Zesheng Xu, Yiqun Fang, Weihong Wang, Min Xu, Yongming Song*. A highly stretchable, self-adhesive, anti-freezing, and highly sensitive dual-network conductive hydrogel sensor for multifunctional electronic skinJournal of Materials Chemistry A, 2023, 11(45): 24608-24617

[8] Shihua Xu, Shunmin Yi, Yiqun Fang*, Xin Yi*, Peng Xu. Effects of Polyamide 12 and Chain Extender on the Properties of Microcrystalline Cellulose Reinforced Polyamide 11 Composites. Polymer composites, 2022, 43(11): 7904-7912

[9] Yiqun Fang, Aojing Xue, Fengqiang Wang, Zhijun Zhang, Yongming Song*, Weihong Wang, QingwenWang. The influence of zinc compouds on thermal and flame retardancy of wood flour polyvinyl chloride composites. Construction and building materials, 2022, 320:126203

[10] 张玲,任癸林,宿芃,张军华,房轶群*. DOPO衍生物/八氨丙基POSS阻燃木塑复合材料的研究.西南林业大学学报, 2023, 43(3): 136-144

[11] 邹佳利,于云鹏,闫雨晴,宋永明,房轶群*,王清文. 木质素增强可自修复聚脲弹性体的制备与性能.复合材料学报, 2022, 40(10): 5666-5677

[12] Xuanzheng Zhou, Qiliang Fu*, Zhijun Zhang, Yiqun Fang, Yonggui Wang,Fengqiang Wang, Yongming Song*, Charles U.Pittman Jr., QingwenWang. Efficient flame-retardant hybrid coatings on wood plastic composites by layer-by-layer assembly. Jounral of Cleaner Production, 2021, 321:128949

[13] Chengbin Yue, Miao LI, Yingtao Liu, Yiqun Fang, Yongming Song*, Min Xu, Jian Li. Three-dimensional Printing of Cellulose Nanofibers Reinforced PHB/PCL/Fe3O4 Magneto-responsive Shape Memory Polymer Composites with Excellent Mechanical Properties. Additive Manufacturing, 2021, 46: 102146

[14] Bo Shao, Bo Chen, Yan Cao, Yiqun Fang*, Yongming Song, Qingwen Wang*. Nonlinear Tensile Behavior of Cotton Fabric Reinforced Polypropylene Composites. Journal of applied polymer science, 2021, 138(5): 49780

[15] 段聪, 房轶群*, 王奉强, 于云鹏, 权大通, 张显权, 王清文. 纳米氮化硼与氧化锌协效阻燃WF-PVC 复合材料. 复合材料学报, 2021, 38(4): 1147-1154

[16] 陈博, 房轶群*, 司月月, 王奉强, 邵博, 宋永明, 王清文. 胶合板表面层层自组装聚磷酸铵-纳米氮化硼/壳聚糖薄膜及其阻燃性能. 复合材料学报, 2021, 38(4): 1252-1261

[17] Guanggong Zong, Xiaolong Hao, Jianxiu Hao, Wei Tang, Yiqun Fang*, Rongxian Ou*, Qingwen Wang. High-strength, lightweight, co-extruded wood flour-PVC/lumber composites: Effect of wood content in shell layer on mechanical properties, creep resistance and dimensional stability. Journal of Cleaner Production, 2020, 244: 118860

[18] Shao Bo, Yiqun Fang*, Bo Chen, Jing Shen, RongxianOu, and Qingwen Wang*. Statistical Distribution of Mechanical Properties and Energy Absorption of Laminated Cotton Fabric Reinforced Epoxy Composites. Polymer composites, 2020, 41(7): 2829-2840

[19] Guanggong Zong, Jianxiu Hao, Xiaolong Hao, Yiqun Fang*, Yongming Song, Haigang Wang, Rongxian Ou*, Qingwen Wang. Enhancing the flame retardancy and mechanical properties of veneered wood flour-polyvinyl chloride composites. Polymer composites, 2020, 41(3): 848-857

[20] 司月月, 陈博, 慕春霖, 原子恒, 方武, 黄正斌, 房轶群*. CS/h-BN/APP层层自组装涂层阻燃杨木的研究. 建筑材料学报, 2020, 23(4): 984-992

[21] Shihua Xu, Yiqun Fang*, Zhenyi Chen, Shunmin Yi, Xianglin Zhai, Xin Yi, Ju He, Yongming Song, Qingwen Wang*. Impact of Lithium Chloride on the Performance of Wood Fiber Reinforced Polyamide 6/High-Density Polyethylene Blend Composites. Polymer composites, 2019,40 (12): 4608-4618

[22] Shihua Xu, Yiqun Fang*, Shunmin Yi, Xianglin Zhai, Ju He, Yongming Song, Qingwen Wang*. Preparation and Characterization of Wood Fiber Reinforced Polyamide 6-Polypropylene Blend Composites. Journal of applied polymer science, 2019, 136(18): 47413

[23] Shihua Xu, Yiqun Fang*, Shunmin Yi, Jun He, Xianglin Zhai, Haigang Wang and Qingwen Wang*. Impact of lithium chloride and in-situ grafting on the performance of Microcrystalline Cellulose-Filled Composites Based on Polyamide 6/High-Density Polyethylene. Polymer composites, 2019, 40(S1): E865- E876

[24] Shihua Xu, Yiqun Fang*, Shunmin Yi, Jun He, Xianglin Zhai, Yongming Song, Haigang Wang, Qingwen Wang*. Effects of lithium chloride and chain extender on the properties of wood fiber reinforced polyamide 6 composites. Polymer testing, 2018, 72: 132-139

[25] Shihua Xu , Lichao Sun, Jun He, Huan Han, Haigang Wang, Yiqun Fang, Qingwen Wang. Effects of LiCl on crystallization, thermal, and mechanical properties of polyamide 6/wood fiber composites, Polymer composites, 2018,39(S3): E1574-E1580

[26] 王阳阳, 房轶群*, 肖泽芳, 谢延军, 张志军, 王清文. 锌硼磷酸铵盐对木粉/PVC复合材料燃烧性能的影响. 西南林业大学学报, 2018, 38(3): 166-173

[27] Shihua Xu, Shunmin Yi, Jun He, Haigang Wang, Yiqun Fang*, Qingwen Wang*. Preparation and Properties of a Novel Microcrystalline Cellulose-Filled Composites Based on Polyamide 6/High-Density Polyethylene. Materials, 2017,10(7): 808-820

[28] Fulei Yu, Fengjiao Xu, Yongming Song, Yiqun Fang, Zhijun Zhang,Qingwen Wang, Fengqiang Wang. Expandable Graphite’s Versatility and Synergy with Carbon Black and Ammonium Polyphosphate in Improving Antistatic and Fire-retardant Properties of Wood Flour/Polypropylene Composites. Polymer composites, 2017, 38(4): 767-773

[29] Shunmin Yi, Shihua Xu, Yiqun Fang, Haigang Wang and Qingwen Wang. Effects of Matrix Modification on the Mechanical Properties of Wood–Polypropylene Composites. Polymers. 2017, 9(12): 712-724

[30] 张博, 房轶群*, 宋永明, 王海刚, 王清文. 尼龙及增容剂对聚氯乙烯木塑复合材料性能的影响. 东北林业大学学报, 2017, 45 (6): 73-78

[31] Yiqun Fang, Qingwen Wang*, Chuigen Guo, Yongming Song, Cooper, Paul A. Effect of zinc borate and wood flour on thermal degradation and fire retardancy of Polyvinyl chloride (PVC) composites. Journal of Analytical and Applied Pyrolysis, 2013. 100: 230-236

[32] Yiqun Fang, Qingwen Wang*, X. Bai, W. Wang, P.A. Cooper. Thermal and burning properties of wood flour-poly (vinyl chloride) composite. Journal of Thermal Analysis and Calorimetry, 2012, 109(3): 1577-1585



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