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UV-cured FRP joint thickness effect on coupled composite pipes

机译:紫外线固化的FRP接头厚度对耦合复合管的影响

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摘要

In this study, 36 FRP composite pipes were joined with various layers of fiber-reinforced UV curing vinylester. Twelve of the composite pipes were joined with an eight-layer weld, 12 with five layers and 12 with three layers; each configuration used exactly one layer of E-glass woven fabric with the remaining layers being comprised of chopped strand mat of various widths. The joined pipes were cured with UV lamps at 80 milli-Watts per square centimeter. The mechanical properties of the cured pipe joints were evaluated by conducting internal pressure testing and simply supported four-point bending testing. The effect of joint thickness on the internal pressure rating, ultimate bending load, and stiffness was evaluated to determine the role of joint thickness in under-curing of UV curing vinylesters. There was a direct correlation observed between joint thickness and internal pressure rating. The five-layer and three-layer joints each performed better than the eight-layer joint in bursting. The mechanism for variation in the residual properties was found to be the degree of cure and was validated by finite element analysis that utilized a composite model that simulates variable cure.
机译:在这项研究中,将36根FRP复合管与纤维增强的UV固化乙烯基酯的不同层连接在一起。十二根复合管通过八层焊缝连接,五层为12根,三层为12根。每种配置仅使用一层E-玻璃机织织物,其余各层由各种宽度的短切原丝毡组成。用紫外线灯以每平方厘米80毫瓦的压力将连接的管道固化。通过进行内压测试和简单支持的四点弯曲测试来评估固化管接头的机械性能。评估接缝厚度对内部压力额定值,极限弯曲载荷和刚度的影响,以确定接缝厚度在UV固化乙烯基酯的欠固化中的作用。接头厚度和内部压力额定值之间存在直接关系。五层和三层接头的爆破性能均优于八层接头。发现残留性能变化的机理是固化程度,并通过有限元分析进行了验证,该有限元分析利用了模拟可变固化的复合模型。

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