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The effect of various rapeseed oil-based polyols on selected properties of flexible polyurethane foams

机译:各种菜籽油基多元醇对软质聚氨酯泡沫所选性能的影响

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Bio-polyols based on rapeseed oil were used to produce flexible polyurethane foams (FPURF). The bio-polyols were obtained on a laboratory and industrial scale with the two-step method involving epoxidation of double bonds in rapeseed oil and opening of oxirane rings with different alcohols, such as isopropanol (iP) and diethylene glycol (DEG). The impact of bio-polyols production scale on selected physical and mechanical properties of FPURF was analyzed. The applied bio-polyols differed slightly by hydroxyl number, functionality, and water content. It was found that the scale of bio-polyol production has no significant impact on FPURF properties such as apparent density, hardness, hysteresis, support factor, and resilience. However, it was observed, that the addition of the bio-polyol to polyurethane (PUR) formulation had the impact on the FPURF properties as compared to the reference foams that were not modified with the bio-polyols. Moreover, a continuous method was used to prepare FPURF samples modified with different rapeseed oil-based polyols. For this purpose mixing-dosing device with conveyor line was used to synthesize the foams. It was found that the replacement of petrochemical polyols with the bio-polyols resulted in lower reactivity of the modified formulations and the amount of catalysts had to be increased. Furthermore, the foams hysteresis, support factor, and hardness were higher, especially for foams modified with the bio-polyol that contained DEG in its structure. Moreover, the fatigue tests were performed and the results showed a beneficial effect of the bio-based polyols on the functional properties, a.o. support factor of flexible foams.
机译:基于菜籽油的生物多元醇被用于生产软质聚氨酯泡沫(FPURF)。生物多元醇是在实验室和工业规模上通过两步法获得的,该方法涉及菜籽油中双键的环氧化和用不同的醇(例如异丙醇(iP)和二甘醇(DEG))打开环氧乙烷环。分析了生物多元醇生产规模对FPURF所选物理和机械性能的影响。所使用的生物多元醇的羟基数,官能度和水含量略有不同。发现生物多元醇的生产规模对FPURF特性如表观密度,硬度,滞后性,支持因子和回弹性没有显着影响。但是,观察到,与未用生物多元醇改性的参比泡沫相比,向聚氨酯(PUR)配方中添加生物多元醇对FPURF性能有影响。此外,使用连续方法制备了用不同菜籽油基多元醇改性的FPURF样品。为此,使用带有输送线的混合定量给料装置来合成泡沫。已经发现用生物多元醇代替石油化学多元醇导致改性制剂的反应性降低,并且催化剂的量必须增加。此外,泡沫的滞后性,支持因子和硬度更高,特别是对于用在结构中包含DEG的生物多元醇改性的泡沫而言。此外,进行了疲劳测试,结果显示了生物基多元醇对功能性能的有益影响。柔性泡沫的支撑因子。

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