标题: | 封闭式泡沫铝材料受压力学响应之数值模拟 Numerical Simulations on Compressive Response of Closed-cell Aluminum Foam |
作者: | 冼浩 郑文雅 Sheng, Hao Jang, Wen-Yea 机械工程系所 |
关键字: | 封闭式泡沫铝材料;数值模拟;受压力学;Close-cell Foam;Alporas;Numerical simulation;Compressive Response |
公开日期: | 2016 |
摘要: | 本研究目的在以数值模拟方式探讨封闭式泡沫铝材料之受压力学响应。参考实际泡沫材料微观结构,建立以Kelvin cell为蓝本之实体-薄壳以及纯薄壳两类数值模型。配合特征单元法模拟泡沫材料之相对杨氏模数与局部最大应力。与实验相比后,模拟结果不论在相对杨氏模数或局部最大应力均存在相当程度高估。接着于真实泡沫材料微观结构中辨识出各式几何特征,包含曲面、曲边…等,建立了修正数值模型。几何特征之加入大幅提升了数模型在杨氏模数与局部最大应力之模拟表现。最后以有限尺寸之修正数值模型,模拟泡沫材料之完整受压力学响应。除整体应力-位移曲线,在变形机制与变形演进等方面,皆能有效重现实验结果。 The present study aims to investigate the mechanical response of closed-cell aluminum foam under uniaxial compressive loading by means of numerical simulation efforts. Motivated by the measurements conducted on real foam microstructure, two kinds of numerical models, including shell-solid and purely shell models, based on perfect Kelvin structure have been developed. The characteristic cell homogenization approach was then incorporated to simulate the Young’s modulus as well as the initiation stress of the foam compressive response. Numerical results on both parameters were seen to overestimate the experimental ones by a large margin. Additional geometric features of the foam microstructure such as the cell wall curvature, the cell edge curvature…etc. were characterized through the comparison drawn between the perfect Kelvin numerical models and the real foam microstructure. Modified Kelvin models were then developed subsequently based upon the implementations of the newly characterized real foam geometric features and the effect of each of the features was examined accordingly. The resulting modified Kelvin models outperformed the perfect Kelvin ones greatly on the simulation of Young's modulus and the initiation stress. Finally, the finite-sized modified numerical models were used to simulate the complete mechanical response of closed-cell foam under compressive loading. Using the modified models, the overall mechanical response, the deformation patterns as well as the deformation evolution were reproduced successfully. |
URI: | http://etd.lib.nctu.edu.tw/cdrfb3/record/nctu/#GT070251081 http://hdl.handle.net/11536/143251 |
显示于类别: | Thesis |