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Investigation of Electrical Time Domain Reflectometry for infusion and cure monitoring in combination with electrically conductive fibers and tooling materials

机译:结合导电纤维和工具材料进行输注和固化监控的电时域反射仪研究

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The presented work investigates Differential Electrical Time Domain Reflectometry (D-TDR) as a method to monitor the flow front position and curing degree of resin during manufacturing of composite structures by vacuum infusion technology. The sensor concept is based on the physical principle that a voltage pulse introduced into a transmission line, which serves as a sensor, is reflected at impedance changes, which correlate to changes of the dielectric properties along the line. The method's accuracy under different boundary conditions is investigated by infiltrating glass and carbon fiber preforms on metallic and wooden toolings with epoxy resins. A shielded sensor concept is presented, which eliminates the influence of conductive materials on the signal. For all tested fiber/tooling combinations, the monitoring method shows a good agreement between the flow front position and optically determined flow fronts. Degree of cure measurements at ambient and elevated temperatures show a correlation with Differential Scanning Calorimetry (DSC) and rheology analyses. (C) 2016 Elsevier Ltd. All rights reserved.
机译:提出的工作研究了差分电时域反射法(D-TDR),该方法是在通过真空灌注技术制造复合结构的过程中监控树脂的流锋位置和固化程度的方法。传感器的概念基于这样的物理原理:在阻抗变化时反射引入传输线中的电压脉冲(用作传感器),该阻抗变化与沿线的介电特性的变化相关。通过用环氧树脂渗透玻璃和碳纤维预成型件到金属和木制工具上,研究了该方法在不同边界条件下的准确性。提出了一种屏蔽传感器的概念,它消除了导电材料对信号的影响。对于所有测试的纤维/工具组合,监视方法显示出流锋位置和光学确定的流锋之间的良好一致性。在室温和高温下的固化度测量结果与差示扫描量热法(DSC)和流变学分析相关。 (C)2016 Elsevier Ltd.保留所有权利。

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