Synthesis and Characterization of Bisphenol-C Epoxy Crotonate and Its Fiber-Reinforced Composites

Pub Date : 2024-03-22 DOI:10.32381/jpm.2023.40.3-4.9
P. H. Parsania, Jignesh V. Patel, J. Patel
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Abstract

Bisphenol-C epoxy crotonate resin was synthesized by reacting 8.09g epoxy resin of bisphenol- C, and 2.15g crotonic acid using 25 mL 1,4-dioxane as a solvent, and 1 mL triethylamine as a catalyst at reflux temperature for 1-6 h. Solid epoxy crotonate (ECCR) is highly soluble in common organic solvents. ECCR was characterized by its acid (24.5-1.5 mg KOH/g) and hydroxyl (504.5-678.4 mg KOH/g) values. The structure of ECCR is supported by FTIR and 1HNMR spectroscopic methods. A DSC endothermic transition at 229oC indicated melting followed by thermal polymerization of ECCR. ECCR is thermally stable up to 320oC and follows three-step degradation kinetics. The first step followed first-order degradation kinetics, while the second and third steps followed one-half-order degradation kinetics. High values of kinetic parameters suggested the rigid nature of the crosslinked resin. Jute-, Glass- and Jute-natural fiber-ECCR composites showed moderate tensile strength, flexural strength, electric strength, and volume resistivity due to the rigid nature and poor interfacial adhesion of the composites. J-ECCR and G-ECCR composites showed high water absorption tendency and excellent hydrolytic stability against water, 10% aq. HCl and 10% aq. NaCl and even in boiling water. Mechanical and electrical properties and water absorption tendency of the composites indicated their usefulness as low load-bearing housing and insulating materials. They can also be utilized in harsh environmental conditions.
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双酚 C 环氧巴豆酸酯及其纤维增强复合材料的合成与表征
以 25 mL 1,4-二氧六环为溶剂,1 mL 三乙胺为催化剂,在回流温度下反应 1-6 小时,合成了 8.09g 双酚 C 环氧巴豆酸树脂和 2.15g 巴豆酸。固体环氧巴豆酸树脂 (ECCR) 极易溶于普通有机溶剂。ECCR 的特征在于其酸值(24.5-1.5 毫克 KOH/克)和羟基值(504.5-678.4 毫克 KOH/克)。傅立叶变换红外光谱和 1HNMR 光谱方法支持 ECCR 的结构。摄氏 229 度的 DSC 内热转变表明,ECCR 在熔化后发生了热聚合。ECCR 的热稳定性可达 320 摄氏度,并遵循三步降解动力学。第一步遵循一阶降解动力学,第二和第三步遵循半阶降解动力学。高动力学参数值表明交联树脂具有刚性。黄麻、玻璃和黄麻-天然纤维-ECCR 复合材料的拉伸强度、弯曲强度、电强度和体积电阻率适中,这是因为复合材料的刚性和界面粘附性较差。J-ECCR 和 G-ECCR 复合材料具有较高的吸水性,对水、10% 的盐酸和 10%的氯化钠甚至在沸水中都具有良好的水解稳定性。复合材料的机械和电气性能以及吸水性表明,它们可用作低承重外壳和绝缘材料。它们还可以在恶劣的环境条件下使用。
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