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Stress-strain response and volume change of a highly filled rubbery composite: experimental measurements and numerical simulations

机译:高填充橡胶复合材料的应力应变响应和体积变化:实验测量和数值模拟

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摘要

The stress-strain response of a rubbery polymer network highly filled with micrometric glass beads was measured at low strain rate in uniaxial tension. The volume change of the glass bead filled material upon stretching was recorded by video extensometry and X-ray tomography scans were used to identify the type of damage within the composite material. The modeling used a cohesive-zone model from the literature depending on the polymer/glass adhesion energy that was measured by peeling polymer strips from a glass plate. Nonlinear finite element simulations were performed on representative three-dimensional microstructures defined by periodic cubic unit cells containing randomly dispersed spherical particles}. Good reproductions of both the composite response and the volume change were obtained prior to the appearance of inner cracks.
机译:在单轴张力下以低应变速率测量高度填充有微米级玻璃珠的橡胶状聚合物网络的应力-应变响应。通过视频引伸计记录拉伸时玻璃珠填充材料的体积变化,并使用X射线断层扫描来识别复合材料内的损伤类型。该建模使用了来自文献的内聚区模型,具体取决于通过将聚合物条从玻璃板上剥离而测得的聚合物/玻璃粘合能。对由包含随机分散的球形颗粒的周期性立方晶胞定义的代表性三维微观结构进行了非线性有限元模拟。在出现内部裂纹之前,已获得了复合响应和体积变化的良好再现。

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