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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Effect of curing overheating on interlaminar shear strength and its modelling in thick FRP laminates
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Effect of curing overheating on interlaminar shear strength and its modelling in thick FRP laminates

机译:固化过热对厚玻璃钢层压板层间剪切强度的影响及其建模

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摘要

During the curing process, the exothermic cross-linking reaction inside epoxy resin-based composites causes overheating and, eventually, a thermal degradation of the matrix. Thick sectioned epoxy composites require an optimized curing cycle in order to minimize the temperature raise inside the composite. However, the recommended cycle for thin laminates is often wrongly used also for thick sectioned composites, resulting in an overheating. In this work, the mechanical behaviour of laminates having different thicknesses was investigated. Specimens were cured according to a curing cycle optimal for thin laminates which causes overheating in thicker laminates. The curing temperature histories at several positions inside the laminates were monitored and recorded and, following a new methodological approach, a series of comparative interlaminar shear tests was performed. Experimental results show a decrease of the interlaminar shear strength in thicker laminates. A simple model to account for the detrimental effect of the exothermic peak on the interlaminar shear strength is proposed.
机译:在固化过程中,环氧树脂基复合材料内部的放热交联反应会导致过热,最终导致基体热降解。厚截面环氧复合材料需要优化的固化周期,以最大程度地降低复合材料内部的温度升高。但是,对于薄的层压板,推荐的周期通常也错误地用于厚截面的复合材料,从而导致过热。在这项工作中,研究了具有不同厚度的层压板的机械性能。根据最适合薄薄层压板的固化周期对样品进行固化,这会导致较厚的层压板过热。监测和记录层压板内部几个位置的固化温度历史记录,并采用一种新的方法学方法,进行了一系列的对比层间剪切试验。实验结果表明,较厚的层压板的层间剪切强度降低。提出了一个简单的模型来说明放热峰对层间剪切强度的不利影响。

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