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Multi-scale finite element simulation on large deformation behavior of wood under axial and transverse compression conditions
Authors:Zhong  Weizhou  Zhang  Zexiong  Chen  Xiaowei  Wei  Qiang  Chen  Gang  Huang  Xicheng
Affiliation:Institute of Systems Engineering,China Academy of Engineering Physics,Mianyang 621999,Sichuan,China;Shock and Vibration of Engineering Materials and Structures Key Laboratory of Sichuan Province,Mianyang 621999,Sichuan,China;Institute of Systems Engineering,China Academy of Engineering Physics,Mianyang 621999,Sichuan,China;Shock and Vibration of Engineering Materials and Structures Key Laboratory of Sichuan Province,Mianyang 621999,Sichuan,China;College of Engineering Science,University of Science and Technology of China,Hefei 230026,Anhui,China;Advanced Research Institute for Multidisciplinary Science,Beijing Institute of Technology,Beijing 100081,China;The State Key Lab of Explosion Science and Technology,Beijing Institute of Technology,Beijing 100081,China;Institute of Systems Engineering,China Academy of Engineering Physics,Mianyang 621999,Sichuan,China;The State Key Lab of Explosion Science and Technology,Beijing Institute of Technology,Beijing 100081,China;Institute of Systems Engineering,China Academy of Engineering Physics,Mianyang 621999,Sichuan,China
Abstract:
Acta Mechanica Sinica - Multi-scale finite element method is adopted to simulate wood compression behavior under axial and transverse loading. Representative volume elements (RVE) of wood...
Keywords:
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