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Impact absorption properties of carbon fiber reinforced bucky sponges

机译:碳纤维增强抗皱海绵的冲击吸收性能

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摘要

We describe the super compressible and highly recoverable response of bucky sponges as they are struck by a heavy flat-punch striker. The bucky sponges studied here are structurally stable, self-assembled mixtures of multiwalled carbon nanotubes (MWCNTs) and carbon fibers (CFs). We engineered the microstructure of the sponges by controlling their porosity using different CF contents. Their mechanical properties and energy dissipation characteristics during impact loading are presented as a function of their composition. The inclusion of CFs improves the impact force damping by up to 50% and the specific damping capacity by up to 7% compared to bucky sponges without CFs. The sponges also exhibit significantly better stress mitigation characteristics compared to vertically aligned CNT foams of similar densities. We show that delamination occurs at the MWCNT-CF interfaces during unloading, and it arises from the heterogeneous fibrous microstructure of the bucky sponges.
机译:我们描述了Bucky海绵的超级可压缩和高度可恢复的响应,因为它们被重型平板撞击器击中。 这里研究的Bucky海绵是结构稳定的多壁碳纳米管(MWCNT)和碳纤维(CFS)的自组装混合物。 我们通过使用不同的CF含量控制它们的孔隙率来设计海绵的微观结构。 冲击载荷期间的其力学性能和能量耗散特性作为其组成的函数呈现。 与没有CFS的抗皱海绵相比,包含CFS将冲击力降低至多50%,并且特定阻尼能力高达7%。 与垂直对齐的类似密度的CNT泡沫相比,海绵还表现出明显更好的应力缓解特性。 我们表明,在卸载期间MWCNT-CF界面发生分层,并且它产生了抗皱海绵的异质纤维微观结构。

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