研究成果
代表性论著
发表论文50余篇,其中SCI论文第一作者/通讯作者20余篇。
Sun, X.; Yu, D.; Song, J.; Kong, H*.; Yu, M., Preparation of TiO2/PAN-based activated carbon nanofibers assisted by supercritical CO2 fluid. MATERIALS LETTERS 2023, 337.
Song, J.; Chen, C.; Du, X.; Sun, X.; Zhang, P.; Ma, Y.; Kong, H.*; Yu, M., Aramid fiber coated with aramid nanofiber coating to improve its interfacial properties with polycarbonate. POLYMER COMPOSITES 2023, 44 (4), 2557-2568.
Du, X.; Kong, H*.; Xu, Q.; Li, B.; Yu, M.; Li, Z., Effects of aramid nanofibers on the mechanical properties of epoxy resin and improved adhesion with aramid fiber. Polymer Composites 2022, 43 (4), 2103-2114.
Hu, Z.; Kong, H*; Yu, M., The preparation and performance of non-woven carbon tissue reinforced adhesive film for bonding CFRP-aluminum. Journal of Adhesion Science and Technology 2022, 36 (14), 1479-1498.
Li, B.; Kong, H*.; Qin, M.; Ding, H.; Du, X.; Song, J.; Sun, X.; Yu, M., Study on supercritical CO2-assisted modification of aramid pulp and properties of its reinforced EPDM composites. Polymer Engineering and Science 2022, 62 (9), 2878-2890.
Hu, Z.; Kong, H*.; Tao, L.; Qiao, M.; Yu, D.; Lu, F.; Dawelbeit, A.; Yu, M., Effect of Nonwoven Carbon Tissue-Reinforced Epoxy Resin Adhesive Layer on the Single Lap Bonding Strength of Aluminum Alloy Joints. ACS Omega 2021, 6 (37), 23802-23813.
Zeng J, Kong, H*,, Du X, et al. Surface modification of PBO fibers with 2,2-Bis (3-amino-4-hydroxyphenyl) hexafluoropropane in supercritical carbon dioxide for enhancing interfacial strength[J]. Materials Today Chemistry, 2021, 20.
Hao Y , Kong, H*, Jiao Y , et al. Polyzwitterions Functionalized Nafion Barrier Toward High Performance Lithium㏒ulfur Batteries[J]. ChemElectroChem, 2021, 8(12).
Jiang F, Yan D, Lin J, Lin, J.; Kong, H*.; Yao, Q Implantation of multiscale silk fibers on poly (lactic acid) fibrous membrane for biomedical applications[J]. Materials Today Chemistry, 2021, 21.
Zhang, L.,Kong, H*., Qiao, M., Ding, X., Yu, M., Supercritical CO2-induced nondestructive coordination between ZnO nanoparticles and aramid fiber with highly improved interfacial-adhesion properties and UV resistance. Applied Surface Science,2020,521.
Kong, H*.,Chai, J., Ding, H., Yu, M., Surface modification of aramid pulp via coating zinc oxide to improve its dispersion in epoxy assisted by supercritical carbon dioxide. Composites Communications,2020,18, 1-4.
Sun, H.,Kong, H*., Ding, H., Xu, Q., Zeng, J., Jiang, F., Yu, M., Zhang, Y., Improving UV resistance of aramid fibers by simultaneously synthesizing TiO2 on their surfaces and in the interfaces between fibrils/microfibrils using supercritical carbon dioxide. Polymers,2020,12 (1).
Xu, Q.,Kong, H*., Ding, H., Zeng, J., Jiang, F., Du, X., Li, B., Yu, M., Effects of different supercritical temperatures on the modification of aramid pulp surface via coating silica to enhance the properties of EPDM composites. Polymer Composites,2021, 42(3): 1473-1485.
Ding, H., Kong, H*., Sun, H., Xu, Q., Zeng, J., Yu, M., Improving aramid pulp dispersion in epoxy resin via the in situ preparation of SiO2 on an aramid pulp surface. Polymer Composites,2020,41 (4), 1683-1693.
Zhang, L., Kong, H*.,Qiao, M.,Ding, X.,Yu, M., Growing nano-SiO2 on the surface of aramid fibers assisted by supercritical CO2 to enhance the thermal stability, interfacial shear strength, and UV resistance. Polymers, 2019,11 (9).
Kong, H*., Xu, Q., Yu, M., Microstructural changes of aramid fiber due to reaction with toluene 2,4-diisocyanate under tension in scCO2. Polymers, 2019,11 (7).
Kong, H*., Ding, H., Yu, M., Ding, X., Qiao, M., Influence of poly(p-phenyleneterephalamide) pulp by surface modification with dopamine to nitrile butadiene rubber. Polymer Composites,2019,40, E476-E483.
Kong, H*., Sun H., Chai, J., Yu, M.,. Improvement of adhesion of kevlar fabrics to epoxy by surface modification with acetic anhydride in supercritical carbon dioxide[J]. Polymer Composites, 2019, 40(S1): 920-927.
Qiao, M.,Kong, H*.,Ding, X., Zhang, L., Yu, M., Effect of graphene oxide coatings on the structure of polyacrylonitrile fibers during pre-oxidation process. RSC Advances,2019,9 (48), 28146-28152.
Qiao, M.,Kong, H*.,Ding, X.,Hu, Z.,Zhang, L.,Cao, Y.,Yu, M., Effect of different pressures of supercritical carbon dioxide on the microstructure of PAN fibers during the hot-drawing process. Polymers 2019,11 (3).
专利与软著
获得授权发明专利20件,正在申请10件。
孔海娟,张新异,张有凤,孙卉,丁海泉,利用超临界CO2流体技术进行芳纶纤维无机化改性的方法,国家发明专利,专利号:ZL201710630413.1,
孔海娟,余木火,张有凤,何亮,李忠文,利用超临界CO2流体技术进行芳纶纤维有机化改性的方法,国家发明专利,专利号:ZL 201710629743.9
孔海娟,余木火,丁小马,吴瑶,张有凤,运动状态的芳纶纤维张力作用下的超临界CO2改性方法和装置,国家发明专利,专利号,ZL 201710630379.8
孔海娟,李彪,杜雪,徐前等,超临界二氧化碳聚合制备改性芳纶浆粕/PTFE复合材料的方法,国家发明专利,ZL 202011208308.7
杜雪,孔海娟,李彪等,聚碳酸酯型芳纶纤维复合材料用表面上浆剂及制备和应用,国家发明专利,专利号:ZL202110638105.X
孔海娟,杜雪,李彪等,芳纶纤维水溶性环氧树脂表面上浆剂及其制备和应用,国家发明专利,专利号:ZL 202110638084.1
孔海娟,徐前,余木火,刘胜春,王景朝,陈海龙,一种芳纶纤维复合材料用表面上浆剂的制备方法,国家发明专利,专利号:202010724401.7
张新异,孔海娟,余木火,柴进,胡之峰,丁海全,孙卉,一种可精确控制胶接胶层厚度的工装,实用新型专利,专利号:201821863462.6