Anisotropic shock response in oriented omnidirectional TATB supercells based on reactive molecular dynamics simulationsOA
Anisotropic shock response in oriented omnidirectional TATB supercells based on reactive molecular dynamics simulations
Guan-chen Dong;Jia-lu Guan;Ling-hua Tan;Jing Lv;Xiao-na Huang;Guang-cheng Yang
School of Chemical Engineering,Nanjing University of Science and Technology,Nanjing,210094,China||National Special Superfine Powder Engineering Research Center,Nanjing University of Science and Technology,Nanjing,210094,ChinaSchool of Chemical Engineering,Nanjing University of Science and Technology,Nanjing,210094,China||National Special Superfine Powder Engineering Research Center,Nanjing University of Science and Technology,Nanjing,210094,ChinaNational Special Superfine Powder Engineering Research Center,Nanjing University of Science and Technology,Nanjing,210094,ChinaSchool of Chemical Engineering,Nanjing University of Science and Technology,Nanjing,210094,China||National Special Superfine Powder Engineering Research Center,Nanjing University of Science and Technology,Nanjing,210094,ChinaCollege of Power and Mechanical Engineering,Wuhan University,Wuhan,430072,ChinaSchool of Chemical Engineering,Nanjing University of Science and Technology,Nanjing,210094,China||China Academy of Engineering Physics·Institute of Chemical Materials,Mianyang,621900,China
Energetic materialsReactive molecular dynamicsMulti-scale shock techniqueAnisotropic responseInitial decomposition mechanisms
Energetic materialsReactive molecular dynamicsMulti-scale shock techniqueAnisotropic responseInitial decomposition mechanisms
《含能材料前沿(英文)》 2024 (4)
318-328,11
This research was supported by National Natural Science Foundation of China under grant No.51802156,Postgraduate Research&Practice Innovation Program of Jiangsu Province under project No.SJCX23_0121.
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