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首页> 外文期刊>Polymer Degradation and Stability >Condensed tannin-glucose-based NIPU bio-foams of improved fire retardancy
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Condensed tannin-glucose-based NIPU bio-foams of improved fire retardancy

机译:基于单宁 - 葡萄糖的NIPU生物泡沫改善的阻燃性

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摘要

Glucose-based self-blowing non-isocyanate polyurethanes foams were prepared in our previous work. They showed excellent properties comparable to commercial foams by just using a simple preparation procedure. These foams, nevertheless, present a critical drawback that is their flammability. In the research presented here a natural phenolic compound, condensed tannin, was tested as a flame-retardant to improve the fire resistance of glucose-based NIPU foams. A number of tannin-substituted glucose-based NIPU foams (mimosa tannin replacing glucose at 0%, 25% and 50%, respectively) were prepared and characterized by scanning electron microscopy (SEM), Fourier transform infrared spectroscopy (FT-IR), Thermogravimetric analysis (TG), ignition experiment and limiting oxygen index (LOI). Other physical and mechanical properties, such as foaming processes, density, compression strength, etc. were also investigated. The results indicated that the tannin-modified glucose-based NIPU foams (T/G (1 / 3)-Fs and (T/G (1/1)-Fs)) exhibit smaller mean cell size, improved compression strength and higher density than (T/G (0/4)-Fs). The FT-IR analysis showed that urethane linkages were formed, the chemical structure of glucose-based NIPU foam being nonetheless preserved even if the glucose was partially replaced by the condensed tannin. Thermogravimetric analysis showed that the presence of condensed tannin decreased the thermal stability of the tannin-glucose NIPU foam composites slightly. In addition, ignition experiments were also carried out in which the glucose-based NIPU foams with a condensed tannin showed longer burning time than neat (T/G (0/4)-Fs). Finally, limiting oxygen index (LOI) values from 17.5% to 25.5%, show a higher value with the increasing condensed tannin substitution.
机译:在我们以前的工作中制备了葡萄糖的自吹非异氰酸酯聚氨酯泡沫。它们通过仅使用简单的制备程序,它们表现出与商业泡沫相当的优异性能。然而,这些泡沫呈现出一种关键缺点,即它们的易燃性。在此提出的研究中,通过天然酚类化合物,浓缩的单宁进行测试为阻燃剂,以改善葡萄糖的NIPU泡沫的耐火性。制备许多单宁取代的基于葡萄糖的NIPU泡沫(分别替代0%,25%和50%的葡萄糖),并通过扫描电子显微镜(SEM),傅里叶变换红外光谱(FT-IR),热重分析(TG),点火实验和限制氧指数(LOI)。还研究了其他物理和机械性能,例如发泡过程,密度,压缩强度等。结果表明,单宁改性的基于葡萄糖的NIPU泡沫(T / G(1/3)-FS和(T / G(1/1)-FS)表现出较小的平均电池尺寸,改善的压缩强度和更高的密度比(t / g(0/4)-fs)。 FT-IR分析表明,形成氨基甲酸酯键,即使葡萄糖部分被缩合的单宁部分代替,葡萄糖基NIPU泡沫的化学结构也是如此。热重分析表明,浓缩的单宁的存在降低了单宁 - 葡萄糖Nipu泡沫复合材料的热稳定性。此外,还进行了点火实验,其中具有稠合的单宁的基于葡萄糖的NIPU泡沫显示比整齐的燃烧时间较长(T / G(0/4)-FS)。最后,将氧指数(LOI)值限制为17.5%至25.5%,表现出更高的浓缩鞣管替代的值。

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  • 来源
    《Polymer Degradation and Stability》 |2020年第5期|109121.1-109121.11|共11页
  • 作者单位

    LERMAB University of Lorraine 27 Rue Philippe Seguin BP 1041 88051 Epinal France;

    Yunnan Provincial Key Laboratory of Wood Adhesives and Clued Products Southwest Forestry University Kunming Yunnan province China;

    LERMAB University of Lorraine 27 Rue Philippe Seguin BP 1041 88051 Epinal France;

    LERMAB University of Lorraine 27 Rue Philippe Seguin BP 1041 88051 Epinal France;

    Yunnan Provincial Key Laboratory of Wood Adhesives and Clued Products Southwest Forestry University Kunming Yunnan province China;

    LERMAB University of Lorraine 27 Rue Philippe Seguin BP 1041 88051 Epinal France;

    Yunnan Provincial Key Laboratory of Wood Adhesives and Clued Products Southwest Forestry University Kunming Yunnan province China;

    LERMAB University of Lorraine Boulevard Does Aiguillettes 54000 Nancy France;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Condensed tannin; Biomass foam; Fire resistance; Glucose-based NIPU; Compressive strength;

    机译:凝聚的单宁;生物质泡沫;防火性能;基于葡萄糖的NIPU;抗压强度;

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