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Effects of in-situ reactive phenolic resin on shape memory performance of polynorbornene

机译:原位反应性酚醛树脂对多冰冰植物形状记忆性能的影响

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摘要

In this paper, resorcinol prepolymer (HT1005) in-situ reacted with hexamethoxymethyl melamine (HMMM, formaldehyde donor) to produce cured phenolic resin to modify polynorbornene (PNB) as a shape memory polymer (SMP). A moving die rheometer (MDR) was used to characterize the crosslinking degree of phenolic resin. Fourier transform infrared spectroscopy, differential scanning calorimeter, universal electronic tensile testing machine, dynamic mechanical analysis and X-ray diffraction was used to investigated the mechanical properties and shape memory performance of PNB composites. Infrared results showed that HT1005 reacted with HMMM forming a chemical cross-linking network in PNB. With the increase of HT1005 and HMMM, the phenolic resin network was gradually improved. When stress was applied to the composite, the phenolic resin rigid network first beared part of the external force, which improved the mechanical properties of the composite. When the content of HT1005 was too much, its dispersibility will become poor, and the rigid phenolic resin network will be too dense, which limited the recovery of PNB molecular chains. A small amount of HT1005 will be more uniformly dispersed in the PNB, the strength of the phenolic resin network was moderate, and the composite material had excellent shape memory and mechanical properties.
机译:本文采用间苯二酚预聚物(HT1005)与六甲氧基甲基三聚氰胺(HMMM,甲醛供体)原位反应制备固化酚醛树脂,以改性聚降冰片烯(PNB)作为形状记忆聚合物(SMP)。采用移动式流变仪(MDR)对酚醛树脂的交联度进行了表征。采用傅里叶变换红外光谱、差示扫描量热仪、万能电子拉伸试验机、动态力学分析和X射线衍射等方法研究了PNB复合材料的力学性能和形状记忆性能。红外光谱结果表明,HT1005与HMMM在PNB中形成化学交联网络。随着HT1005和HMMM用量的增加,酚醛树脂网络逐渐完善。在复合材料上施加应力时,酚醛树脂刚性网络首先承受部分外力,提高了复合材料的力学性能。当HT1005含量过高时,其分散性变差,刚性酚醛树脂网络过密,限制了PNB分子链的回收。少量HT1005将更均匀地分散在PNB中,酚醛树脂网络的强度适中,复合材料具有优异的形状记忆和力学性能。

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