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首页> 外文期刊>Journal of Renewable Materials >Linseed Oil-Based Polyurethane Rigid Foams: Synthesis and Characterization
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Linseed Oil-Based Polyurethane Rigid Foams: Synthesis and Characterization

机译:亚麻籽油基聚氨酯硬泡:合成与表征

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摘要

Rigid polyurethane foams were synthesized by using a vegetable oil-based polyol and 4,4-diphenylmethane diisocyanate prepolymer as the majority of reactives,. The polyol was produced by hydroxylation of crude linseed oil with performic acid generated in situ by the reaction of hydrogen peroxide and formic acid. The characterization by FTIR, H'NMR, iodine and hydroxyl values of the polyol and its comparison with the original linseed oil supports the success of the reaction. The reference foam was subsequently modified by substituting part of the linseed oil polyol with glycerol, diethylene glycol, and a polyethylene glycol (all of them of lower molecular weight than the natural polyol). As was expected, glycerol acts as a crosslinker, increasing density and compression properties of the foams. The analysis of the compression results highlighted the importance of the concentration of the polymeric isocyanate (pMDI) in the initial formulation. The pMDI concentration also played a role in the char formation of the foams according to thermogravimetric analysis. The higher crosslinking density of the glycerol-modified foam resulted in better thermal stability among the different foams.
机译:通过使用植物油基多元醇和4,4-二苯基甲烷二异氰酸酯预聚物作为大多数反应物来合成硬质聚氨酯泡沫。通过用过氧化氢和甲酸反应原位生成的甲酸将粗亚麻籽油羟基化来生产多元醇。通过多元醇的FTIR,1 H NMR,碘和羟值表征以及将其与原始亚麻籽油进行比较,证明了该反应的成功。随后通过将部分亚麻籽油多元醇用甘油,二甘醇和聚乙二醇(它们均比天然多元醇的分子量低)代替,来对参考泡沫进行改性。如所期望的,甘油充当交联剂,增加了泡沫的密度和压缩性质。压缩结果的分析突出了初始配方中聚合物异氰酸酯(pMDI)浓度的重要性。根据热重分析,pMDI浓度在泡沫的炭形成中也起作用。甘油改性泡沫的较高的交联密度导致不同泡沫之间更好的热稳定性。

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