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Waterborne polyurethanes: A three step synthetic approach towards environmental friendly flame retardant coatings

机译:水性聚氨酯:朝向环保阻燃涂层的三步合成方法

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Flame retardant waterborne polyurethanes (WBPU) were synthesized by reacting a phosphorous based polyester polyol with isophorone diisocyanate (IPDI) in different mole ratios of NCO:OH in three steps. In first step, the polyester polyol was synthesized by reacting tris(bisphenol-A)mono phosphate (TBAMP), sebacic acid, poly-ethylene glycol which was characterised by measuring acid value and hydroxyl value. Fourier transform infrared spectroscopy, nuclear magnetic resonance spectroscopy and gel-permeation chromatographic techniques were used for the characterization of polyester polyol. In second step, the polyurethanes were synthesized by reacting polyester polyol with diisocyanate in different proportions. In third step, the polyurethane was neutralised using tertiaryamine. A calculated amount of water was then added at this stage followed by addition of a chain extender at controlled pH. This resulted into waterborne polyurethanes. By varying the proportion of NCO/OH, four WBPUs have been prepared. These WBPUs were subjected for coating and casting purposes. Physicochemical properties such as particle size, dispersion stability, viscosity were measured. The flame retardency of casted films were studied by LOI (limiting oxygen index) and UL-94 test methods. Thermal properties were determined using thermogravimatric analysis (TGA) technique of casted film. Chemical resistance and Mechanical properties of the coated samples have been found out.
机译:通过在三个步骤中以不同的摩尔比(IPDI)与NCO的不同摩尔酮二异氰酸酯(IPDI)反应,合成阻燃水性聚氨酯(WBPU)。在第一步中,通过使Tris(双酚-A)单磷酸(TBAMP),Sebacic酸,聚乙二醇,通过测量酸值和羟值来合成聚酯多元醇。傅里叶变换红外光谱,核磁共振光谱和凝胶渗透色谱技术用于聚酯多元醇的表征。在第二步中,通过将聚酯多元醇与二异氰酸酯以不同比例反应来合成聚氨酯。在第三步中,使用巯基胺中和聚氨酯。然后在该阶段加入计算的水量,然后在受控的pH下加入链增量剂。这导致水性聚氨酯。通过改变NCO / OH的比例,已经制备了四种WBPU。这些WBPU进行涂层和浇铸目的。测量粒度,分散稳定性,粘度等物理化学性质。通过LOI(限制氧指数)和UL-94试验方法研究了浇铸膜的阻燃性。使用浇注膜的热重分析(TGA)技术测定热性能。已经发现涂覆样品的耐化学性和机械性能。

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