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Synthesis of bio based low temperature curable liquid epoxy, benzoxazine monomer system from cardanol: Thermal and viscoelastic properties

机译:腰果酚合成生物基低温可固化液态环氧树脂,苯并恶嗪单体体系:热和粘弹性

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This paper deals with the synthesis and characterization of cardanol based pre-polymers, one containing epoxy group and the other with a benzoxazine unit, obtained from cashew nut shell liquid which is a by product of cashew industry. Using these monomers a new curing system has been developed by varying the proportion of the monomers in the copolymer mixture. Differential scanning calorimeter was used to study and monitor the cure process of monomers as well as their copolymers. Decrease of onset of reaction and the peak exothermic temperature with increase of epoxy content in the copolymers was observed due to the catalytic effect of free phenolic group in the cardanol epoxy. The tertiary amine formed during benzoxazine ring opening found to catalyze the cross linking reactions. The viscoelastic properties, evaluated by dynamic mechanical thermal analysis indicated an increase in storage modulus and tan δ values with incorporation of benzoxazine in the copolymers. Thermal stabilities of the cured polymers were studied by thermo gravimetric analysis. Two stage decomposition was observed for all the copolymers owing to cardanol side chain degradation at low temperature and main cross linked polymer structure at high temperature. The copolymers displayed lower char yields compared to the pure homopolymers because of less ordered structure due to copolymerization. The cardanol derived functional monomers can be used with epoxy and benzoxazine resins to impart flexibility to the cross linked networks.
机译:本文涉及腰果酚基预聚物的合成和表征,一种腰果酚副产品是从腰果工业的副产品腰果壳液中获得的,一种含环氧基,另一种具有苯并恶嗪单元。使用这些单体,通过改变共聚物混合物中单体的比例,开发了一种新的固化体系。差示扫描量热仪用于研究和监测单体及其共聚物的固化过程。由于腰果酚环氧树脂中游离酚基的催化作用,随着共聚物中环氧含量的增加,观察到反应开始时间的降低和峰值放热温度的降低。发现在苯并恶嗪开环过程中形成的叔胺催化交联反应。通过动态机械热分析评估的粘弹性质表明,随着共聚物中苯并恶嗪的引入,储能模量和tanδ值增加。通过热重分析研究了固化聚合物的热稳定性。由于在低温下腰果酚侧链降解和在高温下主交联聚合物结构,所有共聚物均观察到两步分解。与纯均聚物相比,该共聚物显示出较低的焦炭收率,这是由于由于共聚作用导致的有序结构较少。腰果酚衍生的功能单体可与环氧和苯并恶嗪树脂一起使用,以赋予交联网络以柔韧性。

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