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首页> 外文期刊>Journal of Reinforced Plastics and Composites >Effect of cure regime on internal strain and stress development in a filled epoxy resin assessed by fiber Bragg-grating optical strain and normal force measurements
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Effect of cure regime on internal strain and stress development in a filled epoxy resin assessed by fiber Bragg-grating optical strain and normal force measurements

机译:通过光纤布拉格光栅光学应变和法向力测量评估固化方式对填充环氧树脂内部应变和应力发展的影响

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摘要

The influence of thermal treatment on the reaction-induced strain and stress states of an anhydride-hardened bisphenol A-based epoxy (EP) resin containing 50wt.% inorganic filler particles was studied. Two different cure regimes were selected for the EP curing and their effect on the strain and force development were assessed by Bragg-grated fiber optical and normal force detection techniques. Surface cracking of the specimens was also visualized optically. During long isothermal treatment in the dwelling phase of the curing process, tensile forces evolved in the cross-linking EP. When vitrification occurred already at a low degree of conversion in a given cure regime, high internal forces were generated, causing early cracking of the EP. A cure regime (temperature profile) compensating the cure-induced volume shrinkage by additional thermal expansion was proposed as most beneficial to delay the vitrification and thus the build-up of damage-causing high internal stresses.
机译:研究了热处理对含有50%(重量)无机填料颗粒的酸酐硬化双酚A基环氧(EP)树脂的反应诱导应变和应力状态的影响。 EP固化选择了两种不同的固化方式,并通过布拉格光栅光纤和法向力检测技术评估了它们对应变和力发展的影响。样品的表面裂纹也可以通过光学观察到。在固化过程的停留阶段进行长时间的等温处理期间,拉伸力在交联的EP中产生。当玻璃化在给定的固化方式下已经以较低的转化率发生时,会产生高内力,从而导致EP的早期开裂。提出了一种通过额外的热膨胀补偿固化引起的体积收缩的固化方案(温度曲线),因为它最有利于延迟玻璃化作用,从而延迟引起损伤的高内应力的积累。

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