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Non Edible Oil-Based Epoxy Resins from Jatropha Oil and Their Shape Memory Behaviors

机译:非食用油基环氧树脂来自麻醉药油及其形状记忆行为

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摘要

The use of bio-based polymers in place of conventional polymers gives positives effects in the sense of reduction of environmental impacts and the offsetting of petroleum consumption. As such, in this study, jatropha oil was used to prepare epoxidized jatropha oil (EJO) by the epoxidation method. The EJO was used to prepare a shape memory polymer (SMP) by mixing it with the curing agent 4-methylhexahydrophthalic anhydride (MHPA) and a tetraethylammonium bromide (TEAB) catalyst. The resulting bio-based polymer is slightly transparent and brown in color. It has soft and flexible properties resulting from the aliphatic chain in jatropha oil. The functionality of SMP was analyzed by Fourier transform infrared (FTIR) spectroscopy analysis. The thermal behavior of the SMP was measured by thermogravimetric analysis (TGA), and it showed that the samples were thermally stable up to 150 °C. Moreover, the glass transition temperature characteristic was obtained using differential scanning calorimetry (DSC) analysis. The shape memory recovery behavior was investigated. Overall, EJO/MHPA was prepared by a relatively simple method and showed good shape recovery properties.
机译:使用生物基聚合物代替常规聚合物,对环境影响的减少和偏移石油消费的抵消产生阳性影响。因此,在本研究中,使用氧化方法通过环氧化方法制备环氧化的麻醉药(EJO)。通过将其与固化剂4-甲基己酰氯酸酐(MHPA)和四甲基溴化铵(Temb)催化剂混合来制备形状记忆聚合物(SMP)来制备形状记忆聚合物(SMP)。得到的生物基聚合物略微透明,棕色。它具有柔软且柔性的性质,由Joatropha油中的脂族链产生。通过傅里叶变换红外(FTIR)光谱分析分析SMP的功能。通过热重分析(TGA)测量SMP的热行为,并显示样品热稳定至150℃。此外,使用差示扫描量热法(DSC)分析获得玻璃化转变温度特性。调查了形状记忆恢复行为。总体而言,通过相对简单的方法制备EJO / MHPA,并显示出良好的形状回收性能。

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