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基于生物多元醇并额外用硅烷化和乙酰化核桃壳增强的硬质聚氨酯泡沫用于合成环保绝缘材料。

Rigid Polyurethane Foams Based on Bio-Polyol and Additionally Reinforced with Silanized and Acetylated Walnut Shells for the Synthesis of Environmentally Friendly Insulating Materials.

作者信息

Członka Sylwia, Strąkowska Anna

机构信息

Institute of Polymer and Dye Technology, Faculty of Chemistry, Lodz University of Technology, Stefanowskiego 12/16, 90-924 Lodz, Poland.

出版信息

Materials (Basel). 2020 Jul 22;13(15):3245. doi: 10.3390/ma13153245.

Abstract

Rigid polyurethane (PUR) foams produced from walnut shells-derived polyol (20 wt.%) were successfully reinforced with 2 wt.% of non-treated, acetylated, and silanized walnut shells (WS). The impact of non-treated and chemically-treated WS on the morphology, mechanical, and thermal characteristics of PUR composites was determined. The morphological analysis confirmed that the addition of WS fillers promoted a reduction in cell size, compared to pure PUR foams. Among all the modified PUR foams, the greatest improvement of mechanical characteristics was observed for PUR foams with the addition of silanized WS-the compressive, flexural, and impact strength were enhanced by 21, 16, and 13%, respectively. The addition of non-treated and chemically-treated WS improved the thermomechanical stability of PUR foams. The results of the dynamic mechanical analysis confirmed an increase in glass transition temperature and storage modulus of PUR foams after the incorporation of chemically-treated WS. The addition of non-treated and chemically-treated WS did not affect the insulating properties of PUR foams, and the thermal conductivity value did not show any significant improvement and deterioration due to the addition of WS fillers.

摘要

由核桃壳衍生多元醇(20重量%)制成的硬质聚氨酯(PUR)泡沫,成功地用2重量%未经处理、乙酰化和硅烷化的核桃壳(WS)进行了增强。测定了未经处理和化学处理的WS对PUR复合材料的形态、力学和热性能的影响。形态分析证实,与纯PUR泡沫相比,添加WS填料可促进泡孔尺寸减小。在所有改性PUR泡沫中,添加硅烷化WS的PUR泡沫的力学性能改善最为显著——压缩强度、弯曲强度和冲击强度分别提高了21%、16%和13%。添加未经处理和化学处理的WS提高了PUR泡沫的热机械稳定性。动态力学分析结果证实,加入化学处理的WS后,PUR泡沫的玻璃化转变温度和储能模量有所提高。添加未经处理和化学处理的WS不影响PUR泡沫的绝缘性能,并且由于添加WS填料,热导率值未显示出任何显著的改善或恶化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/88a1/7435791/3bfb87d9ed0c/materials-13-03245-g001.jpg

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