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Application of Digital Speckle Photography To Measure Thickness Variations in the Vacuum Infusion Process

机译:数字散斑摄影技术在真空灌注过程中测量厚度变化的应用

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摘要

A new method to measure the movement of the flexible bag used in vacuum infusion is presented.The method is based on an in-house developed stereoscopic digital speckle photography system(DSP).The advantage with this optical method,which is based on cross-correlation,is that the deflection of a large area can be continuously measured with a great accuracy(down to 10 mum).The method is at this stage most suited for research but can in the long run also be adopted in production control and optimization.By use of the method it was confirmed that a ditch is formed at the resin flow front and that there can be a considerable and seemingly perpetual compaction after complete filling.The existence of the ditch demonstrates that the stiffness of the reinforcement can be considerably reduced when it is wetted.Hence,the maximum fiber volume fraction can be larger than predicted from dry measurements of preform elasticity.It is likely that the overall thickness reduction after complete filling emanates from lubrication of the fibers combined with an outflow of the resin.Besides,the cross-linking starts and the polymer shrinks.Hence,the alteration in height will continue until complete cross-linking is reached.
机译:提出了一种测量真空输液用柔性袋运动的新方法。该方法基于内部开发的立体数字散斑摄影系统(DSP)。这种光学方法的优点是基于交叉相关性是,大面积的挠度可以高精度地连续测量(低至10微米)。该方法目前最适合研究,但从长远来看也可以用于生产控制和优化。通过使用该方法,已确认在树脂流动前沿形成了沟渠,并且在完全填充后可能会出现相当大的看似永久性的压实。沟渠的存在表明,增强材料的刚度在使用时会大大降低因此,最大纤维体积分数可能大于干法测量瓶坯弹性所预测的值。完全填充后的总厚度可能减小由于纤维的润滑和树脂的流出而产生。此外,交联开始并且聚合物收缩。因此,高度变化将继续直至达到完全交联。

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