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Impact of filler composition on mechanical and dynamic response of 3-D printed silicone-based nanocomposite elastomers

机译:填料组成对3-D印刷硅氧烷基纳米复合弹性体的机械和动力响应的影响

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摘要

Cellular silicone reinforced with silica filler prepared using additive manufacturing (AM) have been used widely for vibrational damping and shockwave mitigation. The two most commonly printed cellular silicone structures, simple cubic (SC) and face-centered tetragonal (FCT) display distinctly different static and dynamic mechanical responses dependent upon structure. In this work, the relationship between filler size and composition with mechanical response is investigated using polydimethylsiloxane-based silicones filled with aluminum oxide, graphite, or titanium dioxide. SC and FCT structures of porous, periodic silicone pads were printed using new direct ink write (DIW) resin formulations containing up to 25 wt% of functional filler (TiO2, Al2O3, or graphite). All AM pads were characterized using mechanical techniques (DMA, compression). Dynamic compression experiments coupled with time-resolved X-ray phase contrast imaging were performed to obtain insights into role of filler interactions in the in situ evolution of shockwave coupling in these functional, periodic porous polymers.
机译:使用添加剂制造(AM)制备的二氧化硅填料加强的细胞硅氧烷已被广泛用于振动阻尼和冲击波缓解。两个最常用的蜂窝硅树脂结构,简单的立方(SC)和面为中心的四边形(FCT)依赖于结构的明显不同的静态和动态机械响应。在这项工作中,使用填充有氧化铝,石墨或二氧化钛的聚二甲基硅氧烷的硅氧烷来研究填料尺寸和组合物的关系。使用含有高达25wt%的功能填料(TiO 2,Al 2 O 3或石墨)的新直接油墨写(DIW)树脂制剂印刷多孔的多孔周期性有机硅焊盘的SC和FCT结构。所有AM垫都是使用机械技术(DMA,压缩)的特征。进行动态压缩实验与时间分辨X射线相位对比度成像进行,以获得对这些功能性周期多孔聚合物中冲击波偶联的原位演化中的填充相互作用的角色的见解。

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