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Physical properties of a soy-based polyol as polyurethane coatings

机译:大豆基多元醇的物理性质作为聚氨酯涂料

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This research focused on synthesis of epoxidized soybean oil in order to produce soy-based polyol which later was used to produce soy-based polyurethane. Soy-based polyol was produced through alcoholysis process of ESBO with glycerol (1:3 and 1:5) molar ratio. Polyol A had a ratio of 1:3 while polyol B had 1:5 ratio. The polyols were investigated by IR spectra and viscosity test. The polyols then were used to produce three formulation of polyurethane samples which were 20MDI:80polyol, 30MDI:70polyol and 40MDI:60polyol. The polyol samples were investigated by IR spectra, hardness test and gel content test. From FTIR result, polyol A and polyol B showed the incorporation of hydroxyl group from glycerol at 3430.26 cm~(-1) and 3281cm~(-1). There was a formation of N-H group in PU 1 and PU 4 at 3451 cm~(-1) and 3448 cm~(-1). The viscosity of polyol A was higher compared to polyol B. PU 1, PU 2 and PU 3 which made up from polyol A had higher hardness and gel content compared to PU 4, PU 5 and PU 6 which made up from polyol B.
机译:本研究重点是对环氧化大豆油的合成,以生产稍后用于生产基于大豆基聚氨酯的大豆基多醇。通过与甘油(1:3和1:5)摩尔比的ESBO的醇解过程制备基于大豆的多元醇。多元醇A的比例为1:3,而多元醇B具有1:5的比例。通过IR光谱和粘度试验研究多元醇。然后,将多元醇被用来产生三个配方聚氨酯样品其是20MDI的:80polyol,30MDI:70polyol和40MDI:60polyol。通过IR光谱,硬度试验和凝胶含量试验研究多元醇样品。从FTIR结果,多元醇A和多元醇B表明从甘油羟基的掺入在3430.26厘米〜(-1)和3281厘米〜(-1)。在PU 1和PU 4中形成N-H组,3451cm〜(-1)和3448cm〜(-1)。与多元醇B. PU 1,PU 2和PU 3相比,多元醇A的粘度较高,与PU 4,PU 5和PU 6相比,由多元醇A组成的硬度和凝胶含量更高,PU 5和PU 6,其由多元醇B组成。

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