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Fabrication of adduct filled glass fiber/epoxy resin laminate composites and their physical characteristics

机译:加合物填充的玻璃纤维/环氧树脂层压复合材料的制备及其物理特性

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Adducts were synthesized from thiokol and epoxy resin using triethylamine as a catalyst, and their structure and molecular weights were determined. The synthesized adducts, which possessed an epoxide group on their chain as a modifier to enhance the toughness of the epoxy resin, were well dispersed in the epoxy matrix, resulting in the successful manufacture of laminate composites made from glass fiber/epoxy resin (GF/EP). The microstructure and mechanical properties, such as the tensile strength, impact resistance and mode I interlaminar fracture toughness, were investigated and compared with those of the GF/EP system. The addition of the adduct to the epoxy matrix led to an increase in both the mode I interlaminar fracture toughness and IZOD impact resistance of the GF/EP.
机译:以三乙胺为催化剂,由硫醇和环氧树脂合成加合物,并确定其结构和分子量。合成的加合物在其链上具有环氧基团作为增强环氧树脂韧性的改性剂,可很好地分散在环氧基质中,从而成功制造了由玻璃纤维/环氧树脂制成的层压复合材料(GF / EP)。研究了显微组织和机械性能,例如拉伸强度,耐冲击性和I型层间断裂韧性,并将其与GF / EP系统进行了比较。将加合物加到环氧基质中导致GF / EP的I型层间断裂韧性和IZOD耐冲击性均提高。

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