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Graphene oxide/thermoplastic polyurethane wrinkled foams with enhanced compression performance fabricated by dynamic supercritical CO2 foaming

机译:动态超临界CO2发泡制备的具有增强压缩性能的氧化石墨烯/热塑性聚氨酯起皱泡沫

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摘要

Thermoplastic polyurethane (TPU) foams are commonly used buffering materials due to their lightweight, high elasticity, and excellent energy absorption properties. Improving their compressive property without increase foam density is a challenge for TPU foams. Herein, graphene oxide (GO)/TPU composite foams containing micro-sized wrinkles on the cell surface were fabricated by a novel dynamic supercritical carbon dioxide (scCO(2)) foaming method. The addition of GO created hydrogen bonding and physical crosslinking sites with the TPU molecules, which acted as nucleation agents to improve the cell density of the GO/TPU foams. With the increase of GO content, the mechanical properties of GO/TPU foams were significantly enhanced, and the wrinkled foams prepared via dynamic scCO(2) foaming displayed superior compressive modulus, strength, energy absorption, and recoverability compared with the counterpart foams without wrinkly structure. The wrinkled GO/TPU foams with 0.5 wt GO revealed higher expansion ratio, lower foam density, superior compressive property and energy absorption than both neat TPU and 1 wt GO foams owing to the reinforcing effect of the wrinkly structure. This study is of great significance in the development of low-density composite foams with enhanced compressive performance by wrinkly structures.
机译:热塑性聚氨酯 (TPU) 泡沫因其重量轻、弹性高和出色的能量吸收性能而成为常用的缓冲材料。在不增加泡沫密度的情况下提高其压缩性能是TPU泡沫面临的一项挑战。本文采用一种新型的动态超临界二氧化碳(scCO(2))发泡方法制备了泡孔表面含有微小皱纹的氧化石墨烯(GO)/TPU复合泡沫。GO的加入与TPU分子产生了氢键和物理交联位点,TPU分子作为成核剂,提高了GO/TPU泡沫的细胞密度。随着GO含量的增加,GO/TPU泡沫的力学性能显著增强,与无皱纹结构的泡沫相比,动态scCO(2)发泡制备的起皱泡沫表现出优异的压缩模量、强度、吸能性和可回收性。由于褶皱结构的增强作用,GO含量为0.5 wt%的起皱GO/TPU泡沫比纯TPU和1 wt%的GO泡沫具有更高的膨胀率、更低的泡沫密度、优异的抗压性能和能量吸收性。本研究对开发具有皱纹结构增强抗压性能的低密度复合泡沫具有重要意义。

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