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Laser Joining of Continuous Glass Fiber Composite Pre-forms

机译:连续玻璃纤维复合前的激光连接

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摘要

A laser fusion joining method is investigated for the purpose of through thickness strengthening of fiber pre-forms used in the vacuum infusion fabrication of thick composite structures. Laser joining is achieved without filler materials to replace adhesives, pins or stitches used in conventional composite fabrication. A two step joining process is developed to fuse fibers within a single bundle and between multiple fiber bundles. Finite element analysis is used to investigate the joint strength with respect to joint morphology. Joint strength is found to be a function of the fiber contact angle and packing density at the joint interface. Tensile tests show that laser joined fiber bundles exhibit higher strength than comparable fastening methods. Lessons learned from the axial joining of fiber bundles are applied to joining in the radial and thickness directions of 3d pre-form architectures. Flow induced joint morphology and densification effects observed in the axial direction indicate the need for a two step joining process in the thickness direction. Fiber compaction effects on joint strength in the axial direction motivate the need for high fiber packing fraction at joint interfaces in the thickness direction.
机译:研究了激光融合连接方法,以通过厚度强化厚复合结构的真空输注制造中使用的纤维预加固。在没有填充材料的情况下实现激光连接以替代常规复合制造中使用的粘合剂,销或针脚。将开发两个步进加入过程,用于在单个束内和多个光纤束之间的熔化纤维。有限元分析用于研究关节形态的关节强度。发现关节强度是联合界面处的纤维接触角和填料密度的函数。拉伸试验表明,激光加入的纤维束具有比可比较的紧固方法更高的强度。从纤维束的轴向接合中学到的经验教训应用于在3D预形成架构的径向和厚度方向上连接。在轴向上观察到的流动感应的关节形态和致密化效果表示需要在厚度方向上进行两个步进连接过程。纤维压实对轴向方向的关节强度的影响激励在厚度方向上的关节界面处对高纤维填料级分的需要。

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