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Effect of containing polyhydric alcohol liquefied wood on the properties of thermoplastic polyurethane resins

机译:含多元醇液化木材对热塑性聚氨酯树脂性能的影响

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Polyurethane (PU) is one of the most important synthetic resins which have been widely used in various industries. Most of the PU resins are prepared by reacting isocyanate with polyols. Polyhydric alcohol liquefied biomasses are rich in hydroxyl groups and are considered having the potential to be a raw material for preparing PU resins. In this study, wood of Japanese cedar (Cryptomeria japonica) was liquefied in polyethylene glycol/glycerol co-solvent with H2SO4 as a catalyst at 150 degrees C for 60 min. After being cooled, the liquefied product was diluted, neutralized, filtered and vacuum distilled to obtain the liquefied wood (LW). Thermoplastic PU resin (TPU) containing LW was prepared by reacting a mixture of polytetramethylene ether glycol (PTMG) and LW with different OH/OH molar ratios with 1,6-hexamethylene diisocyanate (HDI), using 1,4-butanediol as a chain extender. The influence of the amount of LW on the molecular structure, mechanical and thermal properties of TPU was investigated. FTIR analysis shows that LW-containing TPU, referred to as LWTPU, has more hydrogen bonding than neat TPU. Resin films made from LW-TPU prepared with a mixture of PTMG/LW with an OH/OH molar ratio of 80/20 and 65/35 have higher tensile strength and less breaking elongation than that of neat TPU. DMA results show introducing LW leads to TPU films being more rigid. TGA results show the thermal stability of TPU films can be enhanced by LW before the temperature reaches 350 degrees C.
机译:聚氨酯(PU)是最重要的合成树脂之一,已广泛应用于各个行业。大多数PU树脂是通过使异氰酸酯与多元醇反应制备的。多元醇液化的生物质富含羟基,并被认为有可能成为制备PU树脂的原料。在这项研究中,将日本柳杉(柳杉)的木材在H2SO4作为催化剂的聚乙二醇/甘油助溶剂中在150摄氏度下液化60分钟。冷却后,将液化产物稀释,中和,过滤并真空蒸馏以获得液化木材(LW)。含LW的热塑性PU树脂(TPU)是通过将具有不同OH / OH摩尔比的聚四亚甲基醚二醇(PTMG)和LW的混合物与1,6-丁二甲基二异氰酸酯(HDI)反应而制备的,使用1,4-丁二醇作为链补充剂。研究了LW用量对TPU分子结构,力学性能和热学性能的影响。 FTIR分析表明,含LW的TPU(称为LWTPU)比纯TPU具有更多的氢键。由OH / OH摩尔比为80/20和65/35的PTMG / LW混合物制备的LW-TPU制成的树脂薄膜比纯TPU的具有更高的拉伸强度和更低的断裂伸长率。 DMA结果表明,引入LW导致TPU薄膜更加坚硬。 TGA结果表明,在温度达到350摄氏度之前,LW可以提高TPU膜的热稳定性。

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