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Preparation of a light color cardanol-based curing agent and epoxy resin composite: Cure-induced phase separation and its effect on properties

机译:浅色腰果酚基固化剂和环氧树脂复合材料的制备:固化诱导的相分离及其对性能的影响

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摘要

A light color cardanol-based epoxy curing agent (MBCBE) was synthesized from cardanol butyl ether, formaldehyde and diethylenetriamine. In comparison, a phenalkamine with a similar structure was also prepared. The chemical structures were confirmed by GC-MS and FTIR. The cure behaviors of diglycidyl ether of bisphenol A (DGEBA) with these two curing agents was studied by differential scanning calorimetry (DSC). The morphology, mechanical properties, thermal properties of the cured epoxies were also investigated. The DSC results indicated that MBCBE is less reactive than the phenalkamine. The morphology of the cured MBCBE/DGEBA consisted of cavities dispersed within a continuous epoxy matrix. The cavities markedly improved the lap shear strength and impact strength of the cured resin. Both the two cured resins indicated a two-stage decomposition mechanism. Compared with PKA/DGEBA, the weight loss of MBCBE/DGEBA at the first stage was mainly resulted from the dispersed phase in the epoxy matrix.
机译:由腰果酚丁醚,甲醛和二亚乙基三胺合成了一种浅色的腰果酚基环氧固化剂(MBCBE)。相比之下,还制备了具有类似结构的酚胺。化学结构通过GC-MS和FTIR确认。通过差示扫描量热法(DSC)研究了双酚A二缩水甘油醚(DGEBA)与这两种固化剂的固化行为。还研究了固化环氧树脂的形态,机械性能,热性能。 DSC结果表明,MBCBE的反应性不如酚烷基胺。固化的MBCBE / DGEBA的形态由分散在连续环氧树脂基质中的空腔组成。空腔显着提高了固化树脂的搭接剪切强度和冲击强度。两种固化树脂均显示出两阶段的分解机理。与PKA / DGEBA相比,第一阶段MBCBE / DGEBA的失重主要是由于环氧基质中的分散相引起的。

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