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Mechanical property of lignin-modified phenolic foam enhanced by whisker silicon

机译:晶须硅增强木质素改性酚醛泡沫的力学性能

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摘要

Fibrous and functional structures based on silicon whiskers were modified with a silane coupling agent. They were further used with a phenolic resin (PR) and lignin to produce three types of phenolic foams (PF) upon stirring with foaming agents. The obtained solid foams (LWSPF) were characterized by Fourier transform infrared spectroscopy (FT-IR), thermogravimetric analysis (TGA), and scanning electron microscopy (SEM). The results indicated that the formation of Si-O bonds in the modified PR improved the characteristics of the foams. Moreover, the introduction of silicon whiskers and lignin made the foam cells smaller and more homogeneous.The char yield of lignin-based PF modified by the silicon whiskers (55.6%) increased by ca. 27% compared with PF. The mechanical properties were optimized at silicon whisker and lignin contents of 0.6% (based on PR weight) and 10% (based on phenol weight), respectively. Compared with PF, the LWSPF bending and compressive strengths increased by 80.5% and 81.1%, respectively.
机译:用硅烷偶联剂改性基于硅晶须的纤维和功能结构。它们进一步与酚醛树脂(PR)和木质素一起使用,以在用发泡剂搅拌下产生三种类型的酚醛泡沫(PF)。通过傅里叶变换红外光谱(FT-IR),热重分析(TGA)和扫描电子显微镜(SEM),其特征在于所得固体泡沫(LWSPF)。结果表明,改性PR中的Si-O键的形成改善了泡沫的特性。此外,硅晶须和木质素的引入使泡沫细胞更小,更均匀地制成泡沫细胞。由硅晶须改性的基于木质素的PF(55.6%)的炭产率增加。与PF相比27%。在硅晶须和木质素含量下优化机械性能,含0.6%(基于PR重量)和10%(基于苯酚重量)。与PF相比,LWSPF弯曲和抗压强度分别增加了80.5%和81.1%。

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