亢战
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教授
博士生导师
硕士生导师
- 主要任职:Deputy Dean, Faculty of Vehicle Engineering and Mechanics
- 其他任职:Deputy Dean, Faculty of Vehicle Engineering and Mechanics
- 性别:男
- 毕业院校:stuttgart大学
- 学位:博士
- 所在单位:力学与航空航天学院
- 学科:工程力学. 计算力学. 航空航天力学与工程. 固体力学
- 办公地点:综合实验一号楼522房间
https://orcid.org/0000-0001-6652-7831
http://www.ideasdut.com
https://scholar.google.com/citations?user=PwlauJAAAAAJ&hl=zh-CN&oi=ao
- 联系方式:zhankang#dlut.edu.cn
84706067
- 电子邮箱:zhankang@dlut.edu.cn
访问量:
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[1] 王毅强, 亢战, He, Qizhi.An adaptive refinement approach for topology optimization based on separated density field descrip[J],COMPUTERS STRUCTURES,2022,117:10-22
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[2] 王毅强, Luo, Zhen, 亢战, Zhang, Nong.A multi-material level set-based topology and shape optimization method[J],COMPUTER METHODS IN APPLIED MECHANICS AND ENGINEERING,2022,283:1570-1586
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[3] 罗阳军, Niu, Yanzhuang, 李明, 亢战.A multi-material topology optimization approach for wrinkle-free design of cable-suspended membran[J],COMPUTATIONAL MECHANICS,2022,59(6):967-980
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[4] 罗阳军, Wang, Michael Yu, 亢战.An enhanced aggregation method for topology optimization with local stress constraints[J],COMPUTER METHODS IN APPLIED MECHANICS AND ENGINEERING,2022,254:31-41
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[5] 程红, 吴佳, 李明, Kim, D.H., Y.S., 黄耀, 亢战, Hwang, K. C., Rogers, J. A..An analytical model of strain isolation for stretchable and flexible electronics[J],APPLIED PHYSICS LETTERS,2022,98(6)
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[6] 亢战.An independent point-wise density interpolation-based adaptive method for high resolution[A],8th China-Japan-Korea Joint Symposium on Optimization of Structural and Mechanical Systems,2022
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[7] Wu, Wenjun, 刘湃, 亢战.A novel mechanical metamaterial with simultaneous stretching- and compression-expanding property[J],MATERIALS & DESIGN,2022,208
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[8] 赵国忠, Chen, Gang, 亢战.An iterative algorithm for analysis of coupled structural-acoustic systems subject to random excit[J],Acta Mechanica Sinica,2022,28(2):458-467
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[9] 亢战, 王毅强.A nodal variable method of structural topology optimization based on Shepard interpolant[J],INTERNATIONAL JOURNAL FOR NUMERICAL METHODS IN ENGINEERING,2022,90(3):329-342
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[10] 张晓鹏, Takezawa, Akihiro, 亢战.A phase-field based robust topology optimization method for phononic crystals design considering u[J],COMPUTATIONAL MATERIALS SCIENCE,2022,160:159-172
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[11] 亢战, Xu, Kesheng, Luo, Zhen.A numerical study on nonlinear vibration of an inclined cable coupled with the deck in cable-staye[J],JOURNAL OF VIBRATION AND CONTROL,2022,18(3):404-416
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[12] 张小鹏, Jia, Zhiyuan, 罗阳军, 王亚光, 刘湃, 亢战.A Precisely-Controlled Multichannel Phononic Crystal Resonant Cavity[J],ADVANCED THEORY AND SIMULATIONS,2022
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[13] 李明, 罗阳军, Wu, HuaPing, Zhu, Kai, Niu, Yanzhuang, Zhao, Tengfei, Xing, Jian, 亢战.A Prenecking Strategy Makes Stretched Membranes With Clamped Ends Wrinkle-Free[J],JOURNAL OF APPLIED MECHANICS TRANSACTIONS OF THE ASME,2022,84(6)
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[14] 亢战.A robust design optimization method for truss structure using convex models[A],7th China-Japan-Korea Joint Symposium on Optimization of Structural and Mechanical Systems(CJK-OSM7),2022
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[15] Hu, Xiaoguang, Yang, Furui, 吴梦希, Sui, Yu, Guo, Di, 李铭, 亢战, 孙吉宁, 刘军山.A Super-Stretchable and Highly Sensitive Carbon Nanotube Capacitive Strain Sensor for Wearable Appli[J],ADVANCED MATERIALS TECHNOLOGIES,2022
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[16] Meng, Xianhong, Zhang, Bowen, Li, Hao, Fengwei, 亢战, 李明, Chen, Yuli.A theoretical analysis on self-collapsing of nanotubes[J],INTERNATIONAL JOURNAL OF SOLIDS AND STRUCTURES,2022,160:51-58
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[17] Wu, Jian, 李明, Chen, Wei-Qiu, Kim, Dae-Hyeong, Yun-Soung, Huang, Yong-Gang, Hwang, Keh-Chih, 亢战, Rogers, John A..A strain-isolation design for stretchable electronics[J],Acta Mechanica Sinica,2022,26(6):881-888
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[18] 王亚光, 亢战.A velocity field level set method for shape and topology optimization[J],INTERNATIONAL JOURNAL FOR NUMERICAL METHODS IN ENGINEERING,2022,115(11):1315-1336
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[19] 亢战.A topology optimization framework of damping layer design for minimizing acoustic radiation in unbou[A],The 10th World Congress on Structural and Multidisciplinary Optimization,2022
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[20] He, Qizhi, 亢战, 王毅强.A topology optimization method for geometrically nonlinear structures with meshless analysis and i[J],COMPUTATIONAL MECHANICS,2022,54(3):629-644