首页> 外文会议>ASME summer bioengineering conference;SBC2012 >MICROSCALE FIBER NETWORK STRUCTURE AFFECTS THE SIMULATED MACROSCALE FAILURE OF COLLAGEN GEL TISSUE ANALOGS
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MICROSCALE FIBER NETWORK STRUCTURE AFFECTS THE SIMULATED MACROSCALE FAILURE OF COLLAGEN GEL TISSUE ANALOGS

机译:微观纤维网络结构对胶原凝胶组织模拟物宏观模拟失效的影响

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In all cases considered, the network microstructure significantly affected the macroscale failure response of the notched dogbone geometry. The model was able to successfully tie microscale variations in network connectivity (networks varied in nodal degree) and fiber alignment (isotropic vs. aligned samples) to macroscale failure outcomes. The model can be extended to simulate the damage and failure of native and engineered tissues and fiber-based materials.
机译:在所有考虑的情况下,网络的微观结构都会显着影响带缺口的狗骨形几何结构的宏观失效响应。该模型能够成功地将网络连通性的微观变化(网络的节点度变化)和光纤对准(各向同性与对准的样本)联系起来,以解决宏观失败的后果。可以扩展该模型,以模拟天然组织和工程组织以及基于纤维的材料的损坏和破坏。

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