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Characterization of polyester-based polyurethane elastomers plasticized with energetic ionic liquids

机译:用能量离子液体塑化聚酯基聚氨酯弹性体的表征

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Energetic ionic liquids (EILs) were used as plasticizers in poly ester-polyol based polyurethane elastomer samples. The polyol was Desmophen? D220O cured with Desmodur? N3400. The elastomer samples were characterized in terms of dynamic mechanical properties, tensile strength and thermogravimetry. The EIL samples are based on 4-Amino-1 -alkyl-1,2.4-triazolium nitrate and are mixtures with different alkyl length, named aNI and bN2. The first is a mixture containing longer alkyl substituents (4, 6 and 8 carbons), whereas the second one has shorter alkyl substituents (I and 4 carbons). The addition of ionic liquids to the elastomer did not affect the main glass-rubber transition temperature (Tg) of the binder. However, the dynamic mechanical properties are changed especially after Tg. Tensile testing showed that at ambient temperatures the addition of ionic liquids increased substantially the strain capability of polyester-based polyurethane binder. In the case of the addition of molecules with shorter aliphatic substituents, also higher maximum tensile stress is achieved. EILs as plasticizer impart a very soft rubbery behaviour to the binder, reflected also by the decrease in Young moduli. Thermogravimetry analysis showed a relatively high thermal stability of the EILs compared to other common energetic plasticizers in the elastomer bulk.
机译:优化的离子液体(EIL)用作聚酯 - 多元醇基聚氨酯弹性体样品中的增塑剂。多元醇是脱酚? D220O用Desmodur治愈了吗? n3400。弹性体样品以动态机械性能,拉伸强度和热重试剂表征。 EIL样品基于4-氨基-1-烷基-1,2.4-三唑硝酸氢,并且是具有不同烷基长度的混合物,称为ANI和BN2。首先是含有更长的烷基取代基(4,6和8个碳)的混合物,而第二个是烷基取代基(I和4个碳)。向弹性体中加入离子液体不影响粘合剂的主要玻璃橡胶转变温度(Tg)。然而,TG后特别改变动态机械性能。拉伸试验表明,在环境温度下,加入离子液体的增加基本上增加了聚酯基聚氨酯粘合剂的应变能力。在添加具有较短脂族取代基的分子的情况下,也可以实现更高的最大拉应力。作为增塑剂的EIL赋予粘合剂非常软的橡胶行为,也通过幼年的减少来反映。与弹性体散装中的其他常见的能量增塑剂相比,热重量分析显示EIL的相对高的热稳定性。

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