性别: 男
博士生导师: 否
硕士生导师: 是
学历: 博士研究生毕业
学位: 博士
所在单位: 仪器科学与技术学院
电子邮箱:
办公地点: 陕西省西安市碑林区西安交通大学仪器科学与技术学院出版大厦5楼
联系方式:
学科: 仪器科学与技术
主持项目
国家重点研发计划,2024xxx,青年科学家项目,2024.12-2029.11,在研
JG项目,高温xx,2024.06~2026.06,在研
陕西省xxx项目,MEMS高温压力传感器xxx,2023/01-2026/12,在研
航空工业xxx所,高温xxx项目,2023/01-2025/06,在研
国家基金委项目,高精度xxx温度补偿技术研究,2024/01-2026/12,在研
国家重点研发计划,硅谐振xxx,2022/12-2025/11,在研
中国兵器集团xx所,202407107,高静压xxx抑制研究,2024/06-2027/12,在研
国家重点研发计划,传感器敏感芯片xxx,2021/12-2024/11,结题
航天科技xxx所,低温xxx项目,2021/09-2024/12,结题
无锡xxx有限公司,高温高精度xx传感器技术,2021/09-2021-11,结题
JG项目,J202311024 JG项目,2023/11-2024/03,结题
中车横向,xxx芯片技术开发,2022/12-2024/06,结题
参与项目
陕西省科学技术厅,2024RS-CXTD-19,智能传感与测试技术创新团队,2024/01-2026/12,在研
陕西省科学技术厅,2024GX-YBXM-192,动力电池组安全监测传感器的研究,2024/01-2025/12,在研
汉威科技集团股份有限公司,2021KJZX0061-04 ,敏感材料研究与传感器研制,2021/11-2024/10,结题
西安航天xxx公司,J202407016,硅基高温压力传感器敏感芯片高温性能退化机理测试表征,2024/07-2025/06,在研
西安交通大学,xtr052023006,柔性可穿戴MEMS 超声医疗诊断系统研究,2023/01- 2025/12,在研
中国船舶重工集团公司xxx研究所,20221201, LNG船用压力敏感元件研制,2022/10-2024/10,结题
※ 近五年申请(授权)发明专利:
近五年发表部分学术论文:
Han, Xiangguang , et al. "Advances in high-performance MEMS pressure sensors:design,fabrication,and packaging." Microsystems & Nanoengineering 006(2023):009.
Xiangguang Han , Xiaoyu Wu , Libo Zhao, Min Li*, Chen Jia* , Zhikang Li , Jiaqi Xie1, Guoxi Luo*, Ping Yang, Rabah Boukherroub , Yurdanur Türker , Mert Umut Özkaynak and Koray Bahadır Dönmez .Facile assembly of flexible, stretchable and attachable symmetric microsupercapacitors with wide working voltage windows and favorable durability [J].Microsystems & Nanoengineering,10(1):107(8pp.),2024.8.2.
Min Li, Guangzhao Qin, Chen Jia*, Danyu Zhang*, Zhikang Li , Xiangguang Han , Shusheng Xu , Libo Zhao , Guoxi Luo*, Cunlang Liu , Ping Yang and Qijing Lin,Fabrication and characterization of high-sensitivity, wide-range, and flexible MEMS thermal flow velocity sensors .Nanoengineering,10(1):102(13pp.),2024.7.22.
Wendi Gao, Cunlang Liu, Xiangguang Han*, Libo Zhao*, Qijing Lin, Zhuangde Jiang, Dong Sun. A High Resolution MEMS Capacitive Force Sensor with Bionic Swallow Comb Arrays for Ultralow Multiphysics Measurement [J]. IEEE Trans Ind Electron, 70(7): 7467-7477, 2023.7.
Wendi Gao, Zhixia Qiao, Xiangguang Han, Xiaozhang Wang, Adnan Shakoor, Cunlang Liu, Dejiang Lu*, Ping Yang, Libo Zhao*, Yonglu Wang, Jiuhong Wang, Zhuangde Jiang, Dong Sun. A MEMS Sensors Based on a Laterally Movable Gate Field-Effect Transistor (LMGFET) with a Novel Decoupling Sandwich Structure [J]. Engineering, 21: 61-74, 2023.2.
Mingzhi Yu, Libo Zhao, Yongliang Wang, Yong Xia*, Yintao Ma, Yanbin Wang, Xiangguang Han, Yao Chen, Shun Lu, Guoxi Luo, Nan Zhu, Ping Yang, Kaifei Wang*, Qijing Lin, Zhuangde Jiang. Plasma-activated silicon–glass high-strength multistep bonding for low-temperature vacuum packaging [J]. Chemical Engineering Journal, 471: 1144719(11pp.), 2023.9.1.
Lu Wang, Xiangguang Han*, Ping Yang, Min Li*, Qijing Lin , Libo Zhao , Zhuangde Jiang and Ryutaro Maeda. Mechanical Rectifier for Broadband Piezoelectric Vibration Energy Harvesting and Self-Adapting Synchronous Electric Charge Extraction [J]. IEEE Transactions on Instrumentation and Measurement, 72: 2002407(7pp.), 2023.3.6.
Chen Jia, Libo Zhao, Min Li*, Mingzhi Yu, Guoxi Luo, Nan Zhu, Xiangguang Han, Yong Xia*, Ping Yang, Jiuhong Wang, Zhuangde Jiang. Microleverage Mechanism Assisted Novel Biaxial Piezoresistive Micro Accelerometer with Improved Sensitivity [J]. IEEE Sensors Journal, 23(9): 9183-9193, 2023.3.29.
Mingzhi Yu, Libo Zhao, Xiangguang Han*, Chen Jia, Yong Xia, Ping Yang, Yun Zhang, Junjie Sun, Guangzhao Qin and Zhuangde Jiang. Development of a High-Performance Microaccelerometer with Position Independent Pure-Axial Stressed Piezoresistive Beams [J]. IEEE Transactions on Industrial Electronics, 70(8): 8546-8556, 2023.8.
Mingzhi Yu, Libo Zhao, Shanshan Chen*, Xiangguang Han, Chen Jia*, Yong Xia, Xiaozhang Wang, Yonglu Wang, Ping Yang, Dejiang Lu, Zhuangde Jiang. Monolithically integrated triaxial high-performance micro accelerometers with position-independent pure axial stressed piezoresistive beams [J]. Microsystems & Nanoengineering, 9(1): 9(12pp.), 2023.1.11.
Mingzhi Yu, Yao Chen*, Yongliang Wang, Xiangguang Han, Guoxi Luo, Libo Zhao*, Yanbin Wang, Yintao Ma, Shun Lu, Ping Yang, Qijing Lin, Kaifei Wang*, and Zhuangde Jiang. Microfabricated Atomic Vapor Cells with Multi-Optical Channels Based on an Innovative Inner-Sidewall Molding Process [J]. Engineering, doi:https://doi.org/10.1016/j.eng.2023.08.
Lu Wang, Zhenxuan Fei, Congsheng Duan, Xiangguang Han*, Min Li, Wendi Gao, Yong Xia, Chen Jia, Qijing Lin*, Yihe Zhao, Zhikang Li, Libo Zhao*, Zhuangde Jiang, and Ryutaro Maeda. Self-Sustained and Self-Wakeup Wireless Vibration Sensors by Electromagnetic-Piezoelectric-Triboelectric Hybrid Energy Harvesting [J]. Applied Energy, 355: 122207, 2023.11.17.
Mingzhi Yu, Libo Zhao, Yongliang Wang, Yong Xia*, Yintao Ma, Yanbin Wang, Xiangguang Han, Yao Chen, Shun Lu, Guoxi Luo, Nan Zhu, Ping Yang, Kaifei Wang*, Qijing Lin, Zhuangde Jiang. Plasma-activated silicon-glass high-strength multistep bonding for low-temperature vacuum packaging [J]. Chemical Engineering Journal, 471: 144719(11pp.), 2023.8.25.
Mingzhi Yu, Chen Jia, Xiangguang Han, Yong Xia, Libo Zhao, Ping Yang, Dejiang Lu, Yonglu Wang, Xiaozhang Wang, Zhuangde Jiang. Ultra-high-sensitivity micro-accelerometer achieved by pure axial deformation of piezoresistive beams [J]. Measurement Science and Technology,34(12):1251599(11pp.),2023.10.6.
Yao Chen, Libo Zhao, Ning Zhang*, Mingzhi Yu, Yintao Ma, Xiangguang Han, Man Zhao, Qijing Lin, Ping Yang, and Zhuangde Jiang. Single beam Cs-Ne SERF atomic magnetometer with the laser power differential method [J]. Opt. Express, 30:16541-16552, 2022.5.9.
Mimi Huang, Libo Zhao, Xiangguang Han*, Chen Jia*, Yi Gao, Shu Fan, Ping Yang, Linxi Dong, Zhuangde Jiang. MEMS-based Pt film temperature sensor chip on silicon substrate [J]. Measurement Science and Technology, 33(12): 125113, 2022.9.27.
Yunyun Luo, Libo Zhao, Guoxi Luo*, Min Li., Xiangguang Han*, Yong Xia, Ziping Li., Qijing Lin, Ping Yang, Liyan Dai, Gang Niu, Xiaozhang Wang, Jiuhong Wang, Dejiang Lu, Zhuangde Jiang. All electrospun fabrics based piezoelectric tactile sensor [J]. Nanotechnology, 33(41): 415502, 2022.7.25.
Chen Jia, Mingzhi Yu, Guoxi Luo*, Xiangguang Han, Ping Yang, Yao Chen, Libo Zhao*, Lu Wang, Yonglu Wang, Jiuhong Wang, Zhuangde Jiang. Modeling and Characterization of a Novel in-Plane Dual-Axis MEMS Accelerometers Based on Self-Support Piezoresistive Beam [J]. Journal of Microelectromechanical Systems, 2022: 1-10, 2022.7.11.
Libo Zhao, Xiangguang Han, Qi Mao*, Zhikang Li*, Ping Yang, Qijing Lin, Hongyan Wang, Xin Yan, Songli Wang, Nan Zhu, Yonglu Wang, Jiuhong Wang, Zhuangde Jiang. Temperature-insensitive Silicon Resonant Pressure Sensor by Thermal Stress Control [J], Sensors and Actuators: A. Physical, 322:112612(10pp), 2021.5.
Xiangguang Han, Libo Zhao, Jiuhong Wang*, Li Wang, Mimi Huang, Cuilan Chen, Ping Yang, Zhikang Li*, Nan Zhu, Songli Wang, Xin Yan, Yonglu Wang, Hongyan Wang, Yongshun Wu, Yao Chen and Zhuangde Jiang. High-Accuracy Differential Resonant Pressure Sensor with Linear Fitting Method [J], Journal of Micromechanics and Microengineering, 31(4): 045006(13pp), 2021.4.
代表性成果:
开发了面向航空航天、爆破毁伤等领域的高温高动态压力传感器,传感器使用温度优于400℃,测量 精度达到0.2%FS,动态特性优于500kHz,打破了美国、瑞士等国家的技术垄断,实现全量程、全温区范围的高温压力传感器国产化替代,并实现批量化生产。
面向液体火箭发动机小推力“测不了”,“大推力“测不准”测试难题,开发了矢量推力测量传感器,解决了热耦合、管路耦合、振动耦合等复杂环境下的精度干扰系列技术难题,实现了 30N ,300N ,1500kN级发动机高精度矢量推力测量,测量精度优于0.5%FS。
面向机器人智能关节、多维力触觉对微型化、高精度六轴力传感器需求,实现复杂多轴载荷的高精度 和高灵敏度解耦测量,多维力芯片尺寸优于5mmx5mm;量程5N,分辨率优于0.02N,填补了国内该领 域技术空白;开发了基于玻璃微熔技术、溅射薄膜高精度六维力智能关节,获得了复杂构件力热解耦模 型与应力传递机制,实现了宽温区、高精度多维力测量。