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Synthesis and Characterization of Chlorinated Soy Oil Based Epoxy Resin/Glass Fiber Composites

机译:氯化大豆油基环氧树脂/玻璃纤维复合材料的合成与表征

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Composites with good toughness properties were prepared from chemically modified soy epoxy resin and glass fiber without additional petroleum based toughening agent.Chlorinated soy epoxy(CSE)resin was prepared from soybean oil.The CSE was characterised by spectral,and titration method.The prepared CSE was blended with commercial epoxy resin in different ratios and cured at 85 C for 3 h,and post cured at 225 C for 2 h using m-phenylene diamine(MPDA)as curing agent.The cure temperatures of epoxy/CSE/MPDA with different compositions were found to be in the range of(151.2-187.5°C).The composite laminates were fabricated using epoxy/CSE/MPDA-glass fiber at different compositions.The mechanical properties such as tensile strength(248-299 MPa),tensile modulus(2.4-3.4 GPa),flexural strength(346-379 MPa),flex-ural modulus(6.3-7.8 GPa)and impact strength(29.7-34.2)were determined.The impact strength increased with the increase in the CSE content.The interlaminor fracture toughness(G_(IC))values also increased from 0.6953 KJ/m~2 for neat epoxy resin to 0.9514 KJ/m2 for 15%CSE epoxy-modified system.Thermogravimetric studies reveal that the thermal stability of the neat epoxy resin was decreased by incorporation of CSE.
机译:由化学改性的大豆环氧树脂和玻璃纤维制成,无须添加石油基增韧剂即可制成具有良好韧性的复合材料;由大豆油制备氯化大豆环氧(CSE)树脂。通过光谱和滴定法对其进行表征。将其与市售环氧树脂以不同的比例共混,然后在85°C下固化3小时,然后使用间苯二胺(MPDA)作为固化剂在225°C后固化2小时。不同温度下环氧树脂/ CSE / MPDA的固化温度组成范围为(151.2-187.5°C)。采用不同组成的环氧/ CSE / MPDA-玻璃纤维制备复合层压板。力学性能如拉伸强度(248-299 MPa),拉伸测定了弹性模量(2.4-3.4 GPa),弯曲强度(346-379 MPa),弯曲模量(6.3-7.8 GPa)和冲击强度(29.7-34.2)。冲击强度随CSE含量的增加而增加。层间断裂韧性(G_(IC))值也从15%CSE环氧改性体系的0.6953 KJ / m〜2增至0.9514 KJ / m2。热重分析表明,掺入CSE会降低纯环氧树脂的热稳定性。

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