會議論文
學年 | 104 |
---|---|
學期 | 1 |
發表日期 | 2015-11-20 |
作品名稱 | Finite Element Modeling of Mechanical Behavior Variation of Collagen Fibrils under Different Concentration of Saline Solutions |
作品名稱(其他語言) | |
著者 | Chuang, B.-S. Chen, P.-J. Wang, C.-K. |
作品所屬單位 | Department of Civil Engineering, Tamkang University |
出版者 | Taipei, Taiwan: Society of Theoretical and Applied Mechanics of the Republic of China |
會議名稱 | The 39th National Conference on Theoretical and Applied Mechanics |
會議地點 | Taipei, Taiwan |
摘要 | For 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 macroscopic loading goes, the bio-polymer materials of the network type experience alterations from entropy-directed shape changes to structural deformations, such as filament bending and stretching. In addition, the transition point happens as the levels of macroscopic stress reach around 1% of the bulk modulus of the materials. Hence, here finite element formulations are developed to solve the large deformation problems for the bio-polymer materials in solutions by introducing fluid-solid interaction forces across the immersed boundaries of the materials. We anticipate that this technique will open doors for understanding more physiological states of biological specimens under environmental loading. |
關鍵字 | Finite element method Fluid-solid interaction Soft materials Nonlinear elasticity |
語言 | zh_TW |
收錄於 | |
會議性質 | 國內 |
校內研討會地點 | |
研討會時間 | 20151120-20151121 |
通訊作者 | Wang, C.-K. |
國別 | TWN |
公開徵稿 | Y |
出版型式 | 紙本 |
出處 | The 39th National Conference on Theoretical and Applied Mechanics |
相關連結 |
機構典藏連結 ( http://tkuir.lib.tku.edu.tw:8080/dspace/handle/987654321/104001 ) |