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序號 學年期 教師動態
1 104/1 土木系 王建凱 助理教授 會議論文 發佈 Finite Element Analysis of Finite Deformation Problems for Bio-Polymer Materials , [104-1] :Finite Element Analysis of Finite Deformation Problems for Bio-Polymer Materials會議論文Finite Element Analysis of Finite Deformation Problems for Bio-Polymer MaterialsChuang, B.-S.;Chen, P.-J.;Wang, C.-K.Department of Civil Engineering, Tamkang UniversitySoft materials;Nonlinear elasticity;Fluid-solid interaction;Finite element methodTaipei, Taiwan: National Taiwan UniversityFirst Computational Mechanics Conference in TaiwanDepartment of Civil Engineering, National Taiwan UniversityFor shape maintenance and migration of living organisms, bio-polymer materials play important roles for the redistribution of internal forces in the biological structures. A substantial amount of observations have been made over the past decades to show how the structures composed of biopolymers deform and identify what the characteristics of the network materials are. For example, it has been revealed both experimentally and computationally that as macroscopic loading goes, the bi
2 104/1 土木系 王建凱 助理教授 會議論文 發佈 Finite Element Analysis of Finite Deformation Problems for Bio-Polymer Materials , [104-1] :Finite Element Analysis of Finite Deformation Problems for Bio-Polymer Materials會議論文Finite Element Analysis of Finite Deformation Problems for Bio-Polymer MaterialsChen, P.-J.;Chuang, B.-S.;Wang, C.-K.Department of Civil Engineering, Tamkang UniversityFinite element method;Fluid-solid interaction;Soft materials;Nonlinear elasticityHo Chi Minh City, Vietnam, HCMC University of TechnologyThe Fourteenth East Asia-Pacific Conference on Structural Engineering and Construction (EASEC-14)HCMC University of TechnologyFor shape maintenance and migration of living organisms, bio-polymer materials play important roles for the redistribution of internal forces in the biological structures. A substantial amount of observations have been made over the past decades to show how the structures composed of bio-polymers deform and identify what the characteristics of the network materials are. For example, it has been revealed both experimentally and computationally that as
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