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Load Transfer Behavior of 3D Aerogels Fabricated with Halloysite Nanotubes

机译:3 d气凝胶捏造的荷载传递行为与埃洛石纳米管

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摘要

Nanofibrous network aerogels as an important class of porous material have received enormous attention in materials research. However, the fabrication of nanofibrous network aerogels with short fiber as building blocks is extremely challenging, since it is difficult for them to build 3D network structures spontaneously from the topological point of view. Here the synthesis and load transfer behavior of 3D aerogels composed of halloysite nanotube (HNT) short fibers are described. The resulting aerogels take inorganic materials as the skeleton, elastic organic materials as the connection point, and exhibit inorganic/organic phase interfaces. Confocal Raman microscopy system is utilized to investigate the structural-dynamic profile of halloysite clay aerogels (HCAs) under applied load. The results indicate that the deformation mainly occurs in the polysiloxane (PSO) molecular chain connected with the HNT skeleton. HCAs have a certain load transfer capability, and the PSO chains between tubes are strong enough to support the HCA skeleton.
机译:Nanofibrous网络气凝胶作为一种重要的类多孔材料收到了巨大的关注材料的研究。制造nanofibrous网络的气凝胶非常短纤维作为构建块具有挑战性的,因为对他们来说是很困难的自发建立三维网络结构拓扑的观点。3 d气凝胶和负载转移的行为埃洛石纳米管(HNT)组成的短纤维。无机材料作为骨架,有弹性有机材料的连接点展示无机/有机相界面。利用共焦拉曼显微镜系统调查的动态特征埃洛石粘土气凝胶(hca)应用负载。主要发生在聚硅氧烷(PSO)分子链与HNT骨架。一定的荷载传递能力,和算法管之间的链是强大到足以支持HCA的骨架。

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