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Experimental investigation of omnidirectional multiphysics bilayer invisibility cloak with anisotropic geometry

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【作者】 丰火雷张兴伟周利敏张悦凯倪玉山

【Author】 Huolei Feng;Xingwei Zhang;Limin Zhou;Yuekai Zhang;Yushan Ni;Department of Aeronautics and Astronautics, Fudan University;Key Laboratory of Advanced Ship Materials and Mechanics, College of Aerospace and Civil Engineering,Harbin Engineering University;

【通讯作者】 倪玉山;

【机构】 Department of Aeronautics and Astronautics, Fudan UniversityKey Laboratory of Advanced Ship Materials and Mechanics, College of Aerospace and Civil Engineering,Harbin Engineering University

【摘要】 Thermal-electric bilayer invisibility cloak can prevent the heat flux and electric current from touching the object without distorting the external temperature and electric potential fields simultaneously. In this paper, we design an omnidirectional thermal-electric invisibility cloak with anisotropic geometry. Based on the theory of neutral inclusion, the anisotropic effective thermal and electric conductivities of confocal elliptical bilayer core–shell structure are derived, thus obtaining the anisotropic matrix material to eliminate the external disturbances omnidirectionally. The inner shell of the cloak is selected as an insulating material to shield the heat flux and electric current. Then, the omnidirectional thermal-electric cloaking effect is verified numerically and experimentally based on the theoretical anisotropic matrix and manufactured composite structure, respectively. Furthermore, we achieve the thermal-electric cloaking effect under a specific direction of heat flux and electric current using the isotropic natural materials to broaden the selection range of materials. The method proposed to eliminate anisotropy and achieve the omnidirectional effect could also be expanded to other different physical fields for the metadevices with different functions.

【Abstract】 Thermal-electric bilayer invisibility cloak can prevent the heat flux and electric current from touching the object without distorting the external temperature and electric potential fields simultaneously. In this paper, we design an omnidirectional thermal-electric invisibility cloak with anisotropic geometry. Based on the theory of neutral inclusion, the anisotropic effective thermal and electric conductivities of confocal elliptical bilayer core–shell structure are derived, thus obtaining the anisotropic matrix material to eliminate the external disturbances omnidirectionally. The inner shell of the cloak is selected as an insulating material to shield the heat flux and electric current. Then, the omnidirectional thermal-electric cloaking effect is verified numerically and experimentally based on the theoretical anisotropic matrix and manufactured composite structure, respectively. Furthermore, we achieve the thermal-electric cloaking effect under a specific direction of heat flux and electric current using the isotropic natural materials to broaden the selection range of materials. The method proposed to eliminate anisotropy and achieve the omnidirectional effect could also be expanded to other different physical fields for the metadevices with different functions.

【基金】 financially supported by the National Natural Science Foundation of China (Grant No. 11572090);the Fundamental Research Funds for the Central Universities (Grant No. 3072022GIP0202)
  • 【文献出处】 Chinese Physics B ,中国物理B , 编辑部邮箱 ,2024年03期
  • 【分类号】O469
  • 【下载频次】1
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