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ANALYTIC METHODS TO PREDICT RESIN POCKET GEOMETRY AROUND THE MICROVASCULE IN SELF-HEALING COMPOSITES

机译:分析方法预测自愈复合材料周围微血管周围的树脂袋几何形状

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Two analytic methods are presented to predict the resin pocket geometry around the microvascule in self-healing composites with microvascular networks. The bending strain energy is calculated on the fiber scale in one method (FSM), while is on the layer scale in the other method (LSM). For the FSM, several fibers in thickness direction are tied together to account for the bending stiffness increment caused by the interaction between the fibers. And for the LSM, a single ply is divided into several sublayers to account for the bending stiffness decrement caused by the sliding between adjacent fibers. Both analytic methods can provide the closed-form solution for the resin pocket width, and the analytic results agree well with experimental results. The physical consistency of two methods is proved. It is found that the resin pocket size depends mainly on ply angles of the plies close to microvascule, and the stacking sequence has some effect.
机译:提出了两种分析方法以预测微愈合复合材料与微血管网络的微血管周围的树脂袋几何形状。 弯曲应变能量在一种方法(FSM)中以纤维秤计算,而在其他方法(LSM)中是在层比例上。 对于FSM,厚度方向上的几根纤维被捆绑在一起,以解释由纤维之间的相互作用引起的弯曲刚度增量。 对于LSM,单个层被分成几个子层,以解释由相邻纤维之间的滑动引起的弯曲刚度减小。 两种分析方法都可以为树脂口袋宽度提供闭合溶液,分析结果与实验结果很好。 证明了两种方法的物理一致性。 结果发现,树脂袋尺寸主要取决于靠近微血管的层的帘布层,堆叠序列具有一些效果。

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