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Full Field Monitoring of Thickness Variation in Vacuum Assisted Resin Transfer Molding (VARTM)

机译:真空辅助树脂传递模塑(VARTM)中厚度变化的全场监控

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Modeling of vacuum based liquid composite molding methods (e.g. VARTM) relies on good understanding of closely coupled phenomena. The resin flow depends on the preform permeability, which in turn depends on the local fluid pressure; the preform compaction behavior, and the membrane stresses in the vacuum bag. To understand the nature of these coupled phenomena it is necessary to measure the preform thickness during the infusion and consolidation process. In a series of experiments the shadow moiré method was used to obtain a full field non contact measurement of a flat plate preform while silicone oil was infused under vacuum. The moire interference pattern was recorded. A simple method was developed to calculate the change in preform thickness based on the differences between two moiré images and used to compare the mechanical behavior of the perform during infusion with similar behavior under loading in an servo-hydraulic testing machine.The perform deformation during compaction is noticeably different from that predicted from the mechanical tests, the possible reasons for this are discussed and a method of modeling this behavior is proposed.
机译:基于真空的液体复合材料成型方法(例如VARTM)的建模依赖于对紧密耦合现象的良好理解。树脂的流量取决于瓶坯的渗透性,而瓶坯的渗透性又取决于局部流体压力。瓶坯的压紧性能,以及真空袋中的膜应力。为了理解这些耦合现象的性质,有必要在注入和固结过程中测量瓶坯的厚度。在一系列实验中,在真空下注入硅油的同时,使用阴影莫尔条纹法获得了平板预制件的全场非接触测量结果。记录莫尔条纹图。开发了一种简单的方法来根据两个波纹图像之间的差异来计算瓶坯厚度的变化,并将其用于在伺服液压试验机中将输液过程中的机械性能与负载下的类似行为进行比较。与机械测试中预测的结果明显不同,讨论了这种情况的可能原因,并提出了对此行为进行建模的方法。

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