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Original Articles

Band-gap design of reconfigurable phononic crystals with joint optimization

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Pages 501-517 | Received 11 May 2022, Accepted 20 Aug 2022, Published online: 03 Sep 2022

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Read on this site (3)

Hong-yun Yang, Shu-liang Cheng, Xiao-feng Li, Qun Yan, Bin Wang, Ya-jun Xin, Yong-tao Sun, Qian Ding, Hao Yan, Ya-jie Li & Qing-xin Zhao. (2023) Innovative structural design of chiral lattices with low frequency wide multiple band gaps and vibration suppression. Mechanics of Advanced Materials and Structures 0:0, pages 1-18.
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Hong-yun Yang, Shu-liang Cheng, Xiao-feng Li, Qun Yan, Bin Wang, Ya-jun Xin, Yong-tao Sun, Qian Ding, Hao Yan & Qing-xin Zhao. Multiple broadband gaps and vibration suppression mechanisms for innovative star shaped metamaterial structures with triangular characteristics. Mechanics of Advanced Materials and Structures 0:0, pages 1-19.
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Hong-Yun Yang, Shu-Liang Cheng, Xiao-Feng Li, Qun Yan, Bin Wang, Ya-Jun Xin, Yong-Tao Sun, Qian Ding, Hao Yan, Ya-Jie Li & Qing-Xin Zhao. Band gap tunability and wave propagation of a novel fully symmetric single-phase metamaterial. Mechanics of Advanced Materials and Structures 0:0, pages 1-19.
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Articles from other publishers (2)

Yuhao Bao, Zishen Wei, Zhiyuan Jia, Dazhi Wang, Xiaopeng Zhang & Zhan Kang. (2024) Mechanical metamaterial design with the customized low-frequency bandgap and negative Poisson's ratio via topology optimization. Extreme Mechanics Letters 67, pages 102124.
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Chen-Xu Liu & Gui-Lan Yu. (2023) Deep learning for the design of phononic crystals and elastic metamaterials. Journal of Computational Design and Engineering 10:2, pages 602-614.
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