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INNOVATIVE HOLE MAKING PROCESS IN WOVEN COMPOSITE LAMINATES

机译:机织复合层压板的创新制孔工艺

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摘要

This paper proposes an innovative hole making manufacturing method for the composite laminates. The laminates were fabricated using heated vacuum assisted resin transfer molding (HVARTM) technique using plain weave carbon fibers and epoxy resin. Plain weave carbon fabric laminae were stacked together, and five metal pins were inserted in dry fabric at specific distances without causing any damage to the carbon fiber strands. The stacked plies were then infused with epoxy resin to fabricate laminates, which were about 2.6 mm (0.1") thick. The laminates were cured as per the manufacturer specifications and after curing metal pins were popped out from the laminate. This resulted in holes in the panels without any damage to the continuous carbon fiber strands. The fabricated laminates then were cut into open hole compression coupons using a water jet machine to obtain holes precisely at the center of the coupon. From the remaining panel, ten coupons were machined and half of them were drilled using traditional drilling machine and the remaining half were drilled by nontraditional water jet machining process. The coupons were then tested using ASTM D6484 method to study the mechanical properties of the laminates. The present method shows promising fabrication technique to create holes in the composite laminates without sacrificing the integrity of the continuous fibers.
机译:本文提出了一种创新的复合层压材料制造方法。使用普通编织碳纤维和环氧树脂使用加热的真空辅助树脂转移模塑(HVARTM)技术制造层压板。将普通织物碳织物薄层堆叠在一起,在特定距离处在干燥织物中插入五个金属销,而不会导致碳纤维股的任何损伤。然后将堆叠的层注入环氧树脂以制造层压板,其厚度为约2.6mm(0.1“)。根据制造商规格和固化金属销从层压板上突出后,层压板。这导致孔没有任何对连续碳纤维股损坏的面板。然后使用水喷射机切割制造的层压板,以精确地在优惠券的中心获得孔。从剩下的面板,加工10张优惠券使用传统的钻井机钻探,剩余的一半被非传统水加工过程钻。然后使用ASTM D6484进行测试,以研究层压板的机械性能。本方法显示了有希望的制造技术来创造孔复合材料层压材料而不牺牲连续纤维的完整性。

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