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可扩展、疏水性且高度可拉伸的聚异氰脲酸酯-聚氨酯气凝胶。

Scalable, hydrophobic and highly-stretchable poly(isocyanurate-urethane) aerogels.

作者信息

Malakooti Sadeq, Rostami Saman, Churu Habel Gitogo, Luo Huiyang, Clark Jenna, Casarez Fabiola, Rettenmaier Owen, Daryadel Soheil, Minary-Jolandan Majid, Sotiriou-Leventis Chariklia, Leventis Nicholas, Lu Hongbing

机构信息

Department of Mechanical Engineering, The University of Texas at Dallas Richardson TX 75080 USA

Department of Mechanical Engineering, LeTourneau University Longview TX 75602 USA.

出版信息

RSC Adv. 2018 Jun 8;8(38):21214-21223. doi: 10.1039/c8ra03085e.

Abstract

Scalable, low-density and flexible aerogels offer a unique combination of excellent mechanical properties and scalable manufacturability. Herein, we report the fabrication of a family of low-density, ambient-dried and hydrophobic poly(isocyanurate-urethane) aerogels derived from a triisocyanate precursor. The bulk densities ranged from 0.28 to 0.37 g cm with porosities above 70% v/v. The aerogels exhibit a highly stretchable behavior with a rapid increase in the Young's modulus with bulk density (slope of log-log plot > 6.0). In addition, the aerogels are very compressible (more than 80% compressive strain) with high shape recovery rate (more than 80% recovery in 30 s). Under tension even at high strains (, more than 100% tensile strain), the aerogels at lower densities do not display a significant lateral contraction and have a Poisson's ratio of only 0.22. Under dynamic conditions, the properties (, complex moduli and dynamic stress-strain curves) are highly frequency- and rate-dependent, particularly in the Hopkinson pressure bar experiment where in comparison with quasi-static compression results, the properties such as mechanical strength were three orders of magnitude stiffer. The attained outcome of this work supports a basis on the understanding of the fundamental mechanical behavior of a scalable organic aerogel with potential in engineering applications including damping, energy absorption, and substrates for flexible devices.

摘要

可扩展、低密度且灵活的气凝胶具有优异的机械性能和可扩展的可制造性这一独特组合。在此,我们报道了一族由三异氰酸酯前体衍生而来的低密度、常压干燥且疏水的聚(异氰脲酸酯 - 聚氨酯)气凝胶的制备。其堆积密度范围为0.28至0.37 g/cm³,孔隙率高于70%(体积/体积)。这些气凝胶表现出高度可拉伸的行为,杨氏模量随堆积密度迅速增加(对数 - 对数图的斜率>6.0)。此外,气凝胶具有很高的压缩性(压缩应变超过80%),形状恢复率也很高(30秒内恢复超过80%)。在拉伸状态下,即使在高应变(超过100%拉伸应变)时,较低密度的气凝胶也不会出现明显的横向收缩,泊松比仅为0.22。在动态条件下,其性能(如复模量和动态应力 - 应变曲线)高度依赖于频率和速率,特别是在霍普金森压杆实验中,与准静态压缩结果相比,诸如机械强度等性能要硬三个数量级。这项工作所取得的成果为理解具有工程应用潜力(包括阻尼、能量吸收和柔性器件基材)的可扩展有机气凝胶的基本力学行为奠定了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e038/9080855/59d1a8b5b9a5/c8ra03085e-f1.jpg

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