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CHARACTERIZATION OF FIBER PULL-OUTS IN DRILLED CFRP HOLES USING CONFOCAL LASER MICROSCOPE

机译:共聚焦激光显微镜表征CFRP钻孔中的纤维拉出

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Carbon Fiber Reinforced Plastic (CFRP) material is often drilled when constructing a large aircraft structure. When drilling CFRP, many defects can be left on the CFRP hole surface. One of the most detrimental surface defects is known as fiber pull-outs, which occur when bundles of fibers are pulled away by fiber-matrix de-bonding and matrix stripping. The objective of this research is to use confocal laser scanning microscope (CLSM) in order to characterize fiber pull-outs occurred during the drilling process of quasi-isotropic CFRP. This new optical characterization method is capable of measuring maximum depth and the distributions of fiber pull-outs. Fiber pull-outs are also qualitatively characterized by SEM and CLSM. It is found that the average depth of fiber pull-outs acquired from CLSM is approximately two times larger than those from the surface profilometer. However, there is a proportional correlation of the data between CLSM and surface profilometer.
机译:在建造大型飞机结构时,通常会钻碳纤维增强塑料(CFRP)材料。钻CFRP时,CFRP孔表面会残留许多缺陷。最有害的表面缺陷之一是纤维拉出,当纤维束通过纤维基体剥离和基质剥离被拉开时,会发生纤维拉出。这项研究的目的是使用共聚焦激光扫描显微镜(CLSM)来表征准各向同性CFRP钻孔过程中发生的纤维拉出。这种新的光学表征方法能够测量最大深度和光纤拉出的分布。 SEM和CLSM也定性地表征了纤维拉出。发现从CLSM获得的纤维拉出物的平均深度大约是从表面轮廓仪获得的平均深度的两倍。但是,CLSM和表面轮廓仪之间的数据存在比例关系。

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