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Development of a new structural prepreg: characterisation of handling, drape and tack properties

机译:开发新的结构预浸料:表征处理,悬垂性和粘性

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This paper describes a case-study in the development of a new type of woven glass/epoxy prepreg for use in marine and civil infrastructure applications. Experimental tests were performed on the prepreg at different levels of matrix cure between 1% and 59% to determine the condition that provides the optimum handling, drape and tack properties at room temperature. Bias extension testing was used to characterise the shear resistance and residual stress, bending stiffness tests to assess the drape, and peel tests to determine the tack of the prepregs. A low level of cure ( < 20%) provided the prepreg with excellent handling and drape properties due to the low complex viscosity of the resin. However, the low cure level resulted in the prepreg having insufficient tack. A high level of cure (59%), on the other hand, provided poor handling, drape and tack properties. The optimum level of cure was found to be approximately 30%, which combined an acceptable level of handling, low residual stress, high drape and good tack. Based on this research, a new type of prepreg is being produced in commercial quantities in Australia for domestic use and overseas export.
机译:本文描述了一种用于海洋和民用基础设施的新型机织玻璃/环氧预浸料的开发案例研究。对预浸料进行不同程度的基质固化(介于1%和59%之间)的实验测试,以确定在室温下提供最佳处理,悬垂性和粘性的条件。偏压延伸测试用于表征抗剪强度和残余应力,弯曲刚度测试用于评估悬垂性,剥离测试用于确定预浸料的粘性。由于树脂的低复数粘度,低固化度(<20%)使预浸料具有出色的处理性和悬垂性。但是,低固化水平导致预浸料的粘性不足。另一方面,高水平的固化(59%)提供了较差的处理,悬垂性和粘性。发现最佳的固化水平约为30%,这综合了可接受的处理水平,低残留应力,高悬垂性和良好的粘性。根据这项研究,澳大利亚正在生产商业用途的新型预浸料,供国内使用和向国外出口。

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