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Effect of SWCNTs content and relative density on the energy absorption capabilities of closed-cell Al-cenosphere-SWCNTs hybrid foam

机译:单壁碳纳米管含量和相对密度对闭孔铝-空心层-单壁碳纳米管混合泡沫能量吸收能力的影响

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摘要

Al-Cenosphere-SWCNTs closed cell hybrid foams (HFs) of varying relative densities (rho(rd)) were synthesized through stir casting technique using TiH2 (0.6 wt % of alloy) as a foaming agent, processed SWCNTs (0, 0.1, 0.2, 0.3 and 0.4 wt %) and cenosphere (4.25 wt % or 15 vol %) as thickening agent. Cenosphere particles provided micro-porosity within the cell wall and its shells act as reinforcement. It was noted that the addition of SWCNTs and Cenosphere improved the mechanical properties such as elastic modulus (E-f), plastic collapse stress (sigma(pc)), plateau stress (sigma(pt)) and, energy absorption capabilities (E-ab) of HFs. In HFs these properties increases with increase in SWCNTs up to 0.3 wt % and a further increase in SWCNTs content leads to the reduction of these properties of HFs. It is interestingly observed that the densification strain (eD) for a constant p,d is almost invariant to the SWCNTs content. The mechanical properties of the AFs and HFs foamsareempirically simulated and also compared with standard existing models for the different SWCNTs contents and prd. The deformation has been examined during compression test.
机译:使用TiH2(合金的0.6 wt%)作为发泡剂,通过搅拌铸造技术合成了相对密度(rho(rd))的Al-Cenosphere-SWCNTs闭孔混合泡沫(HFs),加工了SWCNTs(0、0.1、0.2 ,0.3和0.4 wt%)和空心球(4.25 wt%或15 vol%)作为增稠剂。空心球颗粒在细胞壁内提供了微孔,其壳层起到了增强作用。值得注意的是,添加SWCNT和Cenosphere可以改善机械性能,例如弹性模量(Ef),塑性塌陷应力(sigma(pc)),平稳应力(sigma(pt))和能量吸收能力(E-ab) HFs。在HF中,这些性质随SWCNT的增加而增加,最高达到0.3重量%,并且SWCNT的含量的进一步增加导致HF的这些性质的降低。有趣的是,对于恒定的p,d,致密化应变(eD)几乎不变于SWCNTs的含量。对AF和HF泡沫的力学性能进行了经验模拟,并与标准的现有模型进行了比较,以用于不同的SWCNT含量和prd。在压缩测试期间已经检查了变形。

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