李 静 副教授 硕士生导师 博士生导师 邮箱:lijing85@upc.edu.cn 电话:0532-86983501-8725 办公地点:工科楼E725 主要从事智能感知与传感技术、生物及仿生摩擦学、软体机器人的研究,主持国家自然科学基金项目(青年、面上)、山东省自然科学基金、青岛市自然科学基金、校自主创新科研计划项目等多项科研项目。以第一和通讯作者发表科研论文25篇,授权发明专利5项;入选2018年度中国图学学会青年托举计划、青岛(西海岸)新区首批紧缺人才;获青岛市科学技术奖二等奖(2/7)、中国发明协会创新奖二等奖(6/6)、全国商业科技进步奖三等奖(4/5)、山东省高等学校科学技术奖三等奖(2/3)、山东高等学校优秀科研成果奖三等奖(2/3)。 | |
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2004.09-2008.07 | 吉林大学,机械科学与工程学院,机械工程及其自动化专业,学士 |
2008.09-2013.07 | 清华大学,机械工程学院,摩擦学国家重点实验室,博士
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2013.07-2016.12 | WilliamHill中文官方网站,WilliamHill中文官方网站,讲师 |
2017.01-至今 | WilliamHill中文官方网站,WilliamHill中文官方网站,副教授,硕士生导师,博士生导师
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[1] 研究领域:智能传感与检测、仿生机器人、功能表面研发、摩擦学 [2] 招生方向:机械工程、智能制造、机械设计及理论、机械制造及其自动化、工业设计 | |
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[1] 专业基础课:工程制图、机械CAD基础 [2] 专业课:设计力学 | |
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[1] 国家自然科学基金(面上项目):鲍鱼水下粘附调控机理及仿生功能表面制备研究,202001-202312 [2] 国家自然科学基金(青年基金):晶圆原子尺度粗糙度形成过程中机械化学协同作用机理,201501-201712 [3] 山东省自然科学基金:液滴冲击诱发的弹性细长结构变形的实验与理论研究,201907-202206 [4] 青岛市自然科学基金(原创探索):直流纳米液滴发电的界面-电荷协同增强机理与仿生设计,202507-202706 [5] 自主创新项目:柔性自感知表面的仿生制备与粘附机理研究, 2024.01-2025.12 [6] 自主创新科研计划项目(青年基金):鲍鱼可逆粘附的调控机制及其在水下机器人的仿生应用探索,201901-202112 [7] 自主创新科研计划项目(青年基金):鲍鱼的粘附与脱附机制及其仿生研究,201601-201712 [8] WilliamHill中文官方网站青年教师教学改革项目:兴趣驱动下以工程能力为导向的工程制图教学改革实践,201607-201807 [9] WilliamHill中文官方网站研究生教学改革项目:本研贯通、医工融合、创新引领、智能驱动—机械学科研究生培养模式构建与实践,202601-202712
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[1] Li Jing*, Li Zhenzong, Hou Lutao, Cai Yuting, Li Yuzhe, Dong Xiangwei, Yi Peng, and Liu Jianlin. Force–electric response mechanism and micro-Newton quantification at solid–liquid interfaces during droplet impact on inclined organogel surfaces. Langmuir, 2026, 42: 3407-3416. (SCI) [2] Li Jing*, Ye Chaoyang, Liu Xidong, Qin Hao, Ji Jiaxin, Kong Xiangqing, Li Hongkai. A three-dimensionally architected biomimetic magnetic sensor with gradient structure and wide detection range for versatile applications. Measurement, 2026, 260:119848. (SCI) [3] Li Jing*, Wei Qianqian, Zhao Xinwei, Sui Tonghang, Ji Jiaxin, Liu Jianlin. The gradient enhanced adhesion mechanisms of biomimetic mushroom-shaped microcolumn. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2025, 727: 138454. (SCI) [4] Li Jing*, Qin Hao, Song Zhenzhen, Hou Lutao and Li Hongkai*. A tactile sensor based on magnetic sensing: design and mechanism. IEEE Transactions on Instrumentation and Measurement, 2024, 73:1-9. (SCI) [5] Qin Hao, Peng Xianyu, Sui Tonghang, Yi peng and Li Jing*. Adhesion performance of magnetically responsive surfaces under wet conditions. Soft Matter, 2024, 20: 1943-1951. (SCI) [6)] Qin Hao, Peng Xianyu, Ji Jiaxin and Li Jing*. A magnetically controlled microstructured surface for three-dimensional droplet manipulation. Smart Materials and Structures, 2024, 33: 025020. (SCI) [7] Li Jing*, Song Zhenzhen, Ma Chuandong, Sui Tonghang, Yi Peng, Liu Jianlin*. A Bioinspired adhesive sucker with both suction and adhesion mechanisms for three-dimensional surfaces. Journal of Bionic Engineering, 2022. (SCI) [8] Li Jing*, Peng Xianyu, Ma Chuandong, Song Zhenzhen, Liu Jianlin*. Response mechanisms of snails to the pulling force and its potential application in vacuum suction. Journal of the Mechanical Behavior of Biomedical Materials, 2021, 124: 104840. (SCI) [9] Li Jing*, Ma Chuandong, Liu Jun, Dong Xiangwei, Liu Jianlin. The co-effect of microstructures and mucus on the adhesion of abalone from a mechanical perspective. Biosurface and Biotribology, 2021, 7(4):180-186. (EI) [10] Li Jing*, Liu Jun, Ma Chuandong, et al. Mechanisms underlying the biological wet adhesion: Coupled effects of interstitial liquid and contact geometry. Journal of Bionic Engineering, 2020, 17(3): 448-456. (SCI) [11] Li Jing*,Liu Jun, Cheng Jie, Li Hongkai, Wang Tongqing and Liu Jianlin*. Role of the adhesion force during copper chemical mechanical planarization. ECS Journal of Solid State Science and Technology, 2018, 7(8): P410–P415. (SCI) [12] Li Jing, Zhang Yun, Liu Sai and Liu Jianlin*.Insights into adhesion of abalone: a mechanical approach. Journal of the Mechanical Behavior of Biomedical Materials, 2018, 77: 331–336. (SCI) [13] Li Jing*, Wei Zhenghong, Wang Tongqing, ChengJie and He Qingqiang. A theoretical model incorporating both the nano-scale material removal and wafer global uniformity during planarization process. Thin Solid Films, 2017, 636: 240–246. (SCI) [14] Li Jing, Liu Yuhong, Wang Tongqing, Lu Xinchun*. Chemical effects on the tribological behavior during copper chemical mechanical planarization, Materials Chemistry and Physics, 2015, 153: 48–53. (SCI) [15] Li Jing, Liu Yuhong*, Pan Yan, Lu Xinchun. Chemical roles on Cu-slurry interface during copper chemical mechanical planarization, Applied Surface Science, 2014, 293(28): 287–292. (SCI) [16] Li Jing, Liu Yuhong*, Wang Tongqing, Lu Xinchun, Luo Jianbin. Electrochemical investigation of copper passivation kinetics and its application to low-pressure CMP modeling, Applied Surface Science, 2013, 265(15): 764–770. (SCI) [17] Li Jing, Liu Yuhong*, Lu Xinchun, Luo Jianbin. Material removal mechanism of copper CMP from a chemical-mechanical synergy perspective, Tribology Letters, 2013, 49(1): 11–19. (SCI) [18] Li Jing, Chai Zhimin, Liu Yuhong, Lu Xinchun*. Tribo-chemical behavior of copper in chemical mechanical planarization, Tribology Letters, 2013, 50(2): 177–184. (SCI) [19] Li Jing, Liu Yuhong*, Dai Yuanjing, Yue Dachuan, Lu Xinchun, Luo Jianbin. Achievement of a near-perfect smooth silicon surface, Science China Technological Sciences, 2013, 56(11): 2847–2853. (SCI) [20] Li Jing, Lu Xinchun*, He Yongyong, Luo Jianbin. Modeling the chemical-mechanical synergy during copper CMP, Journal of the Electrochemical Society, 2011, 158(2): H197–H202. (SCI) [21] 彭宪宇, 马传栋, 纪佳馨, 李静*. 海洋生物水下粘附机理及仿生研究, 摩擦学学报, 2020, 40(06): 816-830. (EI) [22] 朱一然, 张海鹏, 翟思琦, 李静*. 仿生蜻蜓脉膜折纸结构的压缩性能研究, 中国科学: 技术科学, 2024, 54(4): 678-689. (EI) [23] 李静*, 贺庆强, 王同庆. 缓蚀剂1,2,4-三唑在铜CMP过程中的作用机理, 摩 擦学学报, 2017, 37(3): 333-339. (EI) [24] 李静*, 秦浩, 宋真真, 刘钧.基于仿生鲍鱼吸盘的设计力学教学实验设计. 实验技术与管理, 2022,12 | |
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[1] 李静, 彭宪宇, 马传栋. 一种磁响应性超疏水表面的简易制备方法, ZL 2020 10708648.x, 2022-08-26.(授权) [2] 李静, 彭宪宇, 宋真真, 徐高. 一种柔性磁控蘑菇头表面的制备方法及无磁性制备装置. ZL 202110409765.0, 2022-06-17.(授权) [3] 李静, 宋戈, 王明宇, 王一帆, 郭俊龙. 一种管道免螺纹快速对接装置及对接方法. ZL 202210245051.5, 2023-04-28. (授权) [4] 李静, 董祥伟, 马传栋, 张新宇. 一种通气定量控制柔性基底变形和张力的液滴冲击实验装置. ZL 202010548087.1, 2023-02-07. (授权) [5] 李静, 朱一然, 张海鹏, 翟思琦. 一种基于折纸原理的缓冲减震结构. ZL 202210433092.7, 2023-08-25.(授权) [6] 赵祥云, 杜新鹏, 李吉疆, 王钰霖, 李善鹏, 李静. 一种多维缓冲减震机构. ZL 201910113990.2, 2020-09-25. (授权) [7] 路新春, 李静, 赵德文, 王同庆, 何永勇, 雒建斌. 机械与化学交互作用测量装置, ZL 201110080675.8, 2013-01-30.(授权) | |
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[1] 2025年,中国发明协会创新奖二等奖(6/6) [2] 2024年,青岛市科学技术进步奖二等奖(2/7) [3] 2018年,入选2018年度中国图学学会青年托举计划 [4] 2018年,校级教学成果奖二等奖(4/5) [5] 2018年,山东省第八届高等教育教学成果奖一等奖(9/15) [6] 2017年,中国石油教育学会教学成果奖二等奖(9/13) [7] 2017年,学校优秀教学成果奖特等奖(9/13),一等奖(2/4) [8] 2016年,校青年教师教学比赛二等奖 [9] 2014年,青岛(西海岸)黄岛新区首批紧缺人才 [10] 2014年,山东高等学校优秀科研成果奖三等奖(2/3) | |
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[1] 中国图学学会理论图学专业委员会委员 [2] 青岛市力学学会理事 | |








