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Renewable resources polyol as chain extenders for waterborne polyurethane dispersion

机译:可再生资源多元醇作为水性聚氨酯分散体的扩链剂

摘要

Waterborne polyurethane dispersion (PUD) was synthesized by using inverse dispersion prepolymer technique. A prepolymer mixture of isophorone diisocyanate and polypropylene glycol was extended with five types of chain extenders. The first two types are from the amine based chain extenders which are ethylene diamine and hydrazine; the other three are diol based chain extenders, one from a petroleum based diol which is ethylene glycol and the other two from renewable resources which are castor oil (CO) and palm oil based-polyols (POP). In attempt to reduce the toxicity by replacing the toxic amine based chain extender with diols. Furthermore, renewable resources chain extenders were used to decrease dependency on petroleum which is an expensive and depletable resources. Fourier Transform Infrared Spectroscopy analysis showed that all samples have been successfully synthesized into PUDs, based on the absorption peaks at 1537-1539 cm-1 and 1718-1725 cm-1 which corresponded to the NH and carbonyl peaks of urethane respectively and also the absence of -NCO peak at 2275 cm-1. Palm oil-based PUD has the highest viscosity of 5.4 cP, particle size of 1.738 micron but low solid content of 31 wt%. The oil based chain extended polyurethane exhibited better thermal stability than the rest of the samples. This is assumed due to the hydroxyl group of the triglycerides which may react with isocyanate at high temperature to produce crosslink polyurethane. However, the oil based chain extended samples were sticky upon drying and has potential to be used as adhesives.
机译:采用反相分散预聚物技术合成了水性聚氨酯分散体(PUD)。异佛尔酮二异氰酸酯和聚丙二醇的预聚物混合物用五种类型的扩链剂进行扩链。前两种是基于胺的扩链剂,它们是乙二胺和肼。其他三种是基于二醇的扩链剂,一种来自石油基二醇(乙二醇),另外两种来自可再生资源,即蓖麻油(CO)和棕榈油基多元醇(POP)。试图通过用二醇代替有毒胺基扩链剂来降低毒性。此外,可再生资源扩链剂用于减少对石油的依赖,石油是一种昂贵且可消耗的资源。傅里叶变换红外光谱分析表明,所有样品均已成功合成为PUD,其吸收峰位于1537-1539 cm-1和1718-1725 cm-1处,分别对应于氨基甲酸酯的NH和羰基峰,并且不存在-NCO的峰在2275cm-1处。棕榈油基PUD的最高粘度为5.4 cP,粒径为1.738微米,但固含量低,为31 wt%。油基扩链聚氨酯比其他样品表现出更好的热稳定性。推测这是由于甘油三酸酯的羟基可在高温下与异氰酸酯反应生成交联聚氨酯。但是,油基扩链样品在干燥后会发粘,并且有潜力用作粘合剂。

著录项

  • 作者

    Abdul Halim Khairul Azhar;

  • 作者单位
  • 年度 2013
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  • 原文格式 PDF
  • 正文语种 en
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