研究成果与著作 |
发表学术论文80余篇(被SCI、EI检索30余篇次);授权国家发明专利20余项、实用新型专利10余项;主编及编撰出版《材料成型模具设计》、《复合材料成型技术》、《数控技术》、《工程材料及应用》、《金工实习教程》等规划教材5部,编撰《数控加工实训教程》、《模具设计》、《复合材料成型技术》等讲义3部;材料成型及控制工程国家级一流专业骨干教师,《模具设计》陕西省线下一流课程负责人,《工程材料及机械制造基础》陕西省线上线下混合式一流课程主讲教师;发表教学研究论文9篇。 主讲本科生课程《模具设计》、《工程材料及机械制造基础》、《数控技术及应用》等,主讲研究生课程《三维纺织结构复合材料及工艺》、《材料研究方法论》、《模具CAD/CAE/CAM》、《现代数控技术》等。 近年来发表的代表性论文(第一作者或通讯作者): 1)Xinhai He, Mingqian Shen, Lehua Qi, Junbo Wang, Minge Yang, Wei Chang. Mechanical wear of SnO2/C morph-genetic composite materials. Advanced Materials Research, 2011(152-153):1227-1231; 2)He Xinhai, Qi Lehua,Wang Junbo, Shen Mingqian, Fu Chong, Chang Wei,Yang Minge. The Fabrication of Al2O3/C morph-genetic ceramics by biotemplating from ramie fibers. The International workshop on Mechanic Automation and Control Engineering (MACE2010), 2010,6:3484-3487; 3)Xinhai He,Junbo Wang,Xiaolei Su,Chong Fu,Jie Xu,Minge Yang. Biomorphic SnO2/C ceramics derived from bio-templates. Advanced Materials Research, 2011,(197-198):105-108; 4)Xinhai He,Lehua Qi,Junbo Wang,Mingqian Shen,Wei Chang, Chong Fu, Minge Yang, Xiaolei Su. Preparation of SnO2/C biomorphic materials by biotemplating from ramie fibers. Bulletin of Materials Science, 2011,34(5): 1157-1162; 5)贺辛亥,齐乐华,王俊勃,申明乾,苏晓磊,杨敏鸽. 苎麻形态SiC多孔陶瓷的制备及表征.功能材料, 2011,42(8):1485-1488; 6)贺辛亥,齐乐华,王俊勃,杨敏鸽,申明乾,畅巍. 模板整理对SnO2/C遗态材料显微结构及性能的影响. 新型炭材料,2011,26(5): 375-380; 7)Xinhai He, Xiongbin Zhang, Meng Wang, Fengyang Jiang, Junbo Wang, Minge Yang. Thermol dynamics analysis of SnO2/C composite materials fabricated by biotemplating. Advanced Materials Research, 2014(834-836):290-294; 8)贺辛亥,张雄斌,刘松涛,姜凤阳,王俊勃,杨敏鸽,苏晓磊,齐乐华.生物模板法制备苎麻形态二氧化锡多孔陶瓷. 硅酸盐学报, 2014, 42(2): 225-229; 9)贺辛亥,张雄斌, 王蒙,姜凤阳,王俊勃,杨敏鸽,苏晓磊,齐乐华.模板改性对SnO2遗态陶瓷孔结构及气敏性的影响. 功能材料, 2014,45(9):9141-9145; 10)董红坤,贺辛亥*,郑占阳,钟鹏,王俊勃.用于三维编织可控增减纱的携纱器设计. 纺织学报, 2016, 37(4):143-147; 11)董红坤, 贺辛亥*, 钟鹏, 渠志刚, 邢圆圆. 三维机织物织边造型工艺设计. 纺织学报, 2017, 38(4): 50-54; 12)张志毅, 贺辛亥*, 程稼稷, 张婷, 杨红蕾. 三维异型整体编织底盘装置的设计. 纺织学报, 2018, 39(12):107-112; 13)Jianwei Li,Yuanqing Ding,Ni Yu,Qiang Gao,Xun Fan,Xuan Wei,Guangcheng Zhang,Zhonglei Ma, Xinhai He*. Lightweight and stiff carbon foams derived from rigid thermosetting polyimide foam with superior electromagnetic interference shielding performance. Carbon, 158 (2020) 45-54; 14)Jianwei Li,Yuanqing Ding,Qiang Gao,Hongming Zhang,Xinhai He*, Zhonglei Ma,Bin Wang, Guang cheng Zhang. Ultrathin and flexible biomass-derived C@CoFe nanocomposite films for efficient electromagnetic interference shielding. Composites Part B, 190 (2020) 107935; 15)Song Yifan,He Xinhai*,Liang Junhao,Zhang Zhiyi Zhang Liang. Design of a new braiding device with 3D integral active yarn carrier. Industria Textila, 2020,71(6): 557-561; 16)Fei Liu,Hejun Li,Wei Zhang,Xiyuan Yao,Qiangang Fu,Xinhai He*. Effect of CrSi2 on the ablation resistance of a ZrSi2-Y2O3/SiC coating prepared by SAPS. Ceramics International, 47 (2021) 15030-15038; 17)Dongzhen Chen,Liang Zhang,Pan Ning,Haozhi Yuan,Yu Zhang, Meng Zhang,Tao Fu, and Xinhai He*. In-situ growth of gold nanoparticles on electrospun flexible multilayered PVDF nanofibers for SERS sensing of molecules and bacteria. Nano Research, 2021; 18)Jianwei Li,Xuanning Zhang,Yuyan Lu,Keliang Linghu,Chen Wang, Zhonglei Ma,Xinhai He*. Electrospun Fluorinated Polyimide/ Polyvinylidene Fluoride Composite Membranes with High Thermal Stability for Lithium Ion Battery Separator. Advanced Fiber Materials, 4, 108-118 (2022); 19)Mengmeng Sun,Xinhai He*,Bin Wang,Junhao Liang,Hao Yi,Ting Zhang. Preparation of bionic porous Al2O3 from green leaf of epipremnum aureum as a biotemplate. Ceramics International, 2022(48): 7309-7315; 20)Xiping Li,Xinhai He*,Junhao Liang,Yifan Song,Liang Zhang,Bo Wang,Jingyan Ma,Guidong Kong. Research Status of 3D Braiding Technology.Applied Composite Materials, 29, 147-157(2022); 21)Xiaoyue Cheng,Qiangli Zhao,Duo Meng,Xuyao Wang,Jianhua Ma,Jianwei Li,and Xinhai He*. Chitosan/Polyvinyl Alcohol-Based Direction-Controlled Photo Humidity Dual Responsive Membrane. ACS Applied Polymer Materials. 2022, 4, 488-496; 22)Du Ying,Sun Yuanna,Lu Shuaishuai,Zhang Kaiyuan,Song Chen, Li Boyang, He Xinhai*, Li Qingshan. Ultra-stretchable, anti- freezing conductive hydrogels crosslinked by strong hydrogen bonding for flexible sensors. Journal of Polymer Science, 60 (18) ,pp.2733-2740,Aug 2022; 23)Sun Yuanna, Lu Shuaishuai,Du Ying,Shi Fenling,Li Qingshan, Zhang Kaiyuan, Song Chen, Shang Yudong, Tian Ruobing, He Xinhai*. Long-lasting moisture and anti-freezing tough organohydrogels based on multi-functional nano-micelles for flexible dual-response sensors. Journal of Applied Polymer Science, JUL 2022,139(38). 近年来获授权的代表性专利(第一发明人): 1)贺辛亥,郭杰赞,王俊勃,李宗迎,杨超群,郑占阳,董红坤,王灼建. 一种可实现增减纱的携纱器装置, ZL201420492121.8, 2015.1.7; 2)贺辛亥,董红坤,王灼建,商执亿,郑占阳,郭杰赞,王俊勃,邢圆圆.一种清洁型薄壁异形件夹具装置, ZL201520131523.X, 2015.7.29; 3)贺辛亥,董红坤,郑占阳,郭杰赞,王灼建,王俊勃,钟鹏. 一种用于三维编织机的可控增减纱的携纱器, ZL201520038901.X, 2015.9.30; 4)贺辛亥,邢圆圆,郑占阳,郭杰赞,钟鹏,渠志刚,王俊勃. 一种用于标签机的弯翻板传送装置, ZL201620198546.7, 2016.8.3; 5)贺辛亥,渠志刚, 董红坤, 王灼建, 邢圆圆,钟鹏,王俊勃. 一种键盘除尘器, ZL201620226874.3, 2016.8.17; 6)贺辛亥,钟鹏,董红坤,王灼建,邢圆圆,渠志刚. 一种新型胶带粘贴装置, ZL201620199035.7, 2016.10.12; 7)贺辛亥,钟鹏,邢圆圆,董红坤,王俊勃,张志毅,程稼稷,郑占阳,郭杰赞. 一种用于三维织机的打纬装置, ZL201620834840. 2, 2017.1.18; 8)贺辛亥,邢圆圆,钟鹏,渠志刚,张志毅,程稼稷,王俊勃. 一种用于携纱器纱线张力控制的装置, ZL201720458645. 9, 2018.3.23; 9)贺辛亥,宋一帆,王晨,郭志昂,杨宏蕾,张婷,陈彤善,王俊勃. 三维编织轮式主动携纱器及其配套编织底盘, ZL201811376819.2, 2018.11.19; 10)贺辛亥,张婷,梁军浩,宋一帆,郭志昂,王晨,程稼稷,王俊勃. 一种复合材料真空灌注成型实验箱, ZL201820609121.X, 2018.12.18; 11)贺辛亥,邢圆圆,钟鹏,渠志刚,张志毅,程稼稷,王俊勃. 一种可自动增减纱的携纱器及其应用的三维编织机, ZL201710285602.X, 2019.4.19; 12)贺辛亥,宋一帆,梁军浩,康宇鹏,陈彤善,张亮,任研伟,丁元清. 一种采用布线供电驱动的主动携纱器, ZL201821903137.8, 2019.8.20; 13)贺辛亥,宋一帆,王晨,郭志昂,杨宏蕾,张婷,陈彤善,王俊勃. 三维编织轮式主动携纱器, ZL201811376819.2, 2020.12.4; 14)贺辛亥,张亮,宋一帆,梁军浩,陈彤善,任研伟,陈东圳,王斌,李建伟,王俊勃. 一种三维编织机底盘机构, ZL2019110701450.6, 2021.2.2; 15)贺辛亥,王博,李希坪,梁军浩,李彦璋,程攀,魏宇博. 一种碳纤维预制体超长穿刺钢针阵列定位装置, ZL202221485392.1, 2022.10.14; 16)贺辛亥,王博,梁军浩,程攀,孙萌萌,李彦璋,魏宇博. 一种可自动增减纱的携纱器及其应用的纵横式三维编织机, ZL202221015981.3, 2022.12.2; 17)贺辛亥,王博,李希坪,梁军浩,李彦璋,程攀,魏宇博. 用于超长穿刺钢针定位和增强钢针强度的定位装置, ZL202221481194.8, 2022.12.2; 18)贺辛亥,尚星宇,梁军浩,张婷,王斌,宁志新,周光瑞,周蕊,初晓佳. 一种耐高温复合材料容器预制体的织造方法, ZL202110554524.5, 2022.12.2; 19)贺辛亥,梁军浩,张婷,王斌,陈东圳,赵强莉,孙萌,李希坪,宁志新,刘宝琪. 一种遗态结构炭修饰的遮阳网膜材料制备方法, ZL202011118729.0, 2023.2.14. |