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Closed Cell Rigid Polyurethane Foams Based on Low Functionality Polyols: Research of Dimensional Stability and Standardised Performance Properties

机译:基于低功能多元醇的闭孔硬质聚氨酯泡沫:尺寸稳定性和标准化性能的研究

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摘要

Currently, polyurethane foam producers come across the several problems when petroleum-based polyols are replaced with low functionality biomass, or waste-based, polyols. In addition, the dilemma is intensified with regulations that require full or partial replacement of blowing agents that can cause high ozone depletion with alternatives like water, which causes the formation of CO . Therefore, these gases diffuse out of the foam so quickly that the polymeric cell walls cannot withstand the pressure, consequently causing huge dimensional changes at ambient temperature and humidity. Even though the theoretical stoichiometric balance is correct, the reality shows that it is not enough. Therefore, polyethylene terephthalate waste-based polyol was chosen as a low functionality polyol which was modified with high functionality sucrose-based polyol in order to obtain dimensionally stable polyurethane foams in the density range of 30–40 kg/m . These more stable foams are characterized by linear changes no higher than 0.5%, short-term water absorption by partial immersion no higher than 0.35 kg/m , and water vapor resistance factors up to 50. In order to obtain thermally efficient polyurethane foams, conventional blowing agents and water systems were implemented, thus, assuring thermal conductivity values in the range of 0.0198–0.0204 W/(m·K) and obtaining products which conform to all the requirements for performance of sprayed and factory-made polyurethane foam standards EN 14315-1 and EN 13165.
机译:当前,当用低官能度生物质或废物基多元醇代替石油基多元醇时,聚氨酯泡沫生产商遇到了几个问题。另外,要求全部或部分更换发泡剂的法规加剧了这一难题,而发泡剂会导致诸如水之类的替代品导致臭氧大量消耗,从而导致形成CO。因此,这些气体如此迅速地从泡沫中扩散出来,以致聚合物泡孔壁不能承受压力,因此在环境温度和湿度下引起巨大的尺寸变化。尽管理论上的化学计量平衡是正确的,但事实表明这还不够。因此,选择聚对苯二甲酸乙二酯废料多元醇作为低官能度多元醇,将其用高官能度蔗糖基多元醇改性,以获得密度在30–40 kg / m范围内的尺寸稳定的聚氨酯泡沫。这些更稳定的泡沫的特征在于线性变化不超过0.5%,部分浸入的短期吸水率不超过0.35 kg / m,并且耐水蒸气系数高达50。为了获得热有效的聚氨酯泡沫,常规实施了发泡剂和水系统,从而确保热导率值在0.0198-0.0204 W /(m·K)范围内,并获得了符合喷涂和出厂聚氨酯泡沫标准EN 14315性能要求的产品-1和EN 13165。

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