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Study on the synthesis of bio-based epoxy curing agent derived from myrcene and castor oil and the properties of the cured products

机译:月桂树和蓖麻油衍生的生物基环氧固化剂的合成及其固化物性能的研究

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Two novel bio-based epoxy curing agents derived from myrcene (MMY) and castor oil (CMMY) were prepared, respectively. Their chemical structures were confirmed by Fourier transform infrared spectrometry (FTIR) and 1H nuclear magnetic resonance (1HNMR). The two curing agents were used to cure a commercial epoxy resin (E-51). The MMY-cured epoxy resin had very poor toughness while the CMMY-cured epoxy resin had low strength, so the two curing agents were mixed at different weight ratios to form new curing agents for the E-51 epoxy resin. The tensile strength, impact strength, dynamic mechanical properties, thermal stability, micro-morphology of fracture surfaces and gel content of the cured epoxies were all investigated. The curing behaviors of the cured epoxies were studied by differential scanning calorimetry (DSC). Results show that the elongation at break is increased and the tensile strength and glass transition temperature are decreased with increasing weight ratio of CMMY, while the impact strength is increased gradually. The initial degradation temperatures of all the cured epoxy resins were above 367 °C. The gel contents of the epoxy resins cured with the mixed curing agents were above 87%. The activation energies for the systems with MMY and CMMY were 75.90 and 67.69 kJ mol?1, respectively.
机译:分别制备了两种新的生物基环氧固化剂,分别来自月桂烯(MMY)和蓖麻油(CMMY)。通过傅里叶变换红外光谱(FTIR)和 1 H核磁共振( 1 HNMR)确认了它们的化学结构。 )。两种固化剂用于固化市售环氧树脂(E-51)。 MMY固化的环氧树脂的韧性非常差,而CMMY固化的环氧树脂的强度低,因此将两种固化剂以不同的重量比混合以形成E-51环氧树脂的新固化剂。研究了固化环氧树脂的拉伸强度,冲击强度,动态力学性能,热稳定性,断裂表面的微观形貌和凝胶含量。通过差示扫描量热法(DSC)研究了固化环氧树脂的固化行为。结果表明,随着CMMY重量比的增加,断裂伸长率增加,拉伸强度和玻璃化转变温度降低,而冲击强度逐渐增加。所有固化环氧树脂的初始降解温度均高于367°C。用混合固化剂固化的环氧树脂的凝胶含量高于87%。具有MMY和CMMY的系统的活化能分别为75.90和67.69 kJ mol ?1

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