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首页> 外文期刊>Composite Structures >Effect of post-cure temperature and different reinforcements in adhesive bonded repair for damaged glass/epoxy composites under multiple quasi-static indentation loading
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Effect of post-cure temperature and different reinforcements in adhesive bonded repair for damaged glass/epoxy composites under multiple quasi-static indentation loading

机译:多次准静态压痕载荷下后固化温度和不同增强材料对玻璃/环氧树脂复合材料粘接修复的影响

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摘要

This paper investigates the individual and associated effects of post-cure temperature and reinforcement phases on the local bending response of adhesive reinforced repairs in damaged glass/epoxy composite laminates. Multiple quasi-static indentation tests were performed on repaired composite laminates: damage propagation, absorbed energy and residual deflection data assisted in the evaluation of phase changes, which cause the transition from brittle to ductile nature and control the visco-elastic behavior the material is undergoing under the influence of temperature. Three phases of fiber reinforcements, namely particulate glass fibers, chopped short glass fibers and continuous glass fibers, were tested to study the fiber reinforcement's effect on indentation strength and damage mechanism. The effects of post-cure temperature on the local bending response of the repaired glass/epoxy specimens were investigated by performing indentation tests on laminates exposed to post-cure at ambient temperature (30 degrees C) and elevated temperatures up to glass transition temperature of epoxy resin (50, 70 and 90 degrees C). Multiple quasi-static indentation test results indicated that the post-cure temperature and fiber reinforcements have considerable effect on the indentation response of the repaired specimens. Damaged glass/epoxy specimens repaired using chopped short fibers and exposed to a post-cure temperature of 50 degrees Cshowed the most favorable indentation behavior. (C) 2016 Published by Elsevier Ltd.
机译:本文研究了后固化温度和补强阶段对受损的玻璃/环氧复合材料层压板中胶粘补强修复剂局部弯曲响应的个体及相关影响。对修复的复合材料层压板进行了多次准静态压痕测试:损伤传播,吸收的能量和残余挠度数据有助于评估相变,这些相变会导致从脆性转变为延性并控制材料所经历的粘弹行为在温度的影响下。测试了纤维增强材料的三个阶段,即颗粒玻璃纤维,短切短玻璃纤维和连续玻璃纤维,以研究纤维增强材料对压痕强度和损伤机理的影响。通过在环境温度(30摄氏度)和升高到环氧树脂的玻璃化转变温度的高温下对层压板进行压痕测试,研究了固化后温度对修复的玻璃/环氧树脂样品的局部弯曲响应的影响树脂(50、70和90摄氏度)。多次准静态压痕测试结果表明,后固化温度和纤维增强对修复后试样的压痕响应有很大影响。使用短切短纤维修复并暴露于50摄氏度的后固化温度下的损坏的玻璃/环氧树脂样品显示出最有利的压痕行为。 (C)2016由Elsevier Ltd.出版

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