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Modelling and monitoring of out-time and moisture absorption effects on cure kinetics and viscosity for an out-of-autoclave (OoA) prepreg

机译:建模和监控超时和水分吸收对超高压釜(OoA)预浸料的固化动力学和粘度的影响

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Out-time and moisture absorption during out-of-autoclave (OoA) prepreg preparation are generally unavoidable. The resulting cross-linking and increase in resin viscosity can prevent sufficient flow into the fiber tows during processing and cause porosity. In this study, efficient modelling and in situ methods to monitor cure kinetics and viscosity were developed to account for the effects of out-time and absorbed moisture. First, a commercial OoA prepreg was conditioned to specific levels of out-time and relative humidity (RH). Property data were obtained from differential scanning calorimetry (DSC) and rheometry and used to develop cure kinetics and viscosity models for a wide range of process conditions, initial out times, and humidity conditions. The dielectric signals were correlated to the measured data and used to demonstrate real-time monitoring of resin state during cure. The predictive models were then used to understand the influence of out-time and absorbed moisture on resin viscosity during consolidation of OoA prepreg. (C) 2016 Elsevier Ltd. All rights reserved.
机译:高压釜(OoA)预浸料制备过程中通常会不可避免地浪费时间和吸收水分。所产生的交联和树脂粘度的增加会阻止加工期间足够的纤维束流入纤维束中并引起孔隙。在这项研究中,开发了有效的建模和监测固化动力学和粘度的原位方法来解决超时和吸收水分的影响。首先,将商品化的OoA预浸料调节至特定水平的超时时间和相对湿度(RH)。从差示扫描量热法(DSC)和流变学获得性能数据,并将其用于开发适用于各种工艺条件,初始出料时间和湿度条件的固化动力学和粘度模型。介电信号与测量数据相关,并用于演示固化过程中树脂状态的实时监控。然后使用预测模型来了解OoA预浸料固结过程中超时和吸收的水分对树脂粘度的影响。 (C)2016 Elsevier Ltd.保留所有权利。

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