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Bolted joints in three axially braided carbon fibre/epoxy textile composites with moulded-in and drilled fastener holes

机译:三个轴向编织碳纤维/环氧纺织复合材料的螺栓连接,带有模压和钻孔紧固件孔

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摘要

Experimental behaviour of bolted joints in triaxial braided (0°/±45°) carbon fibre/epoxy composite laminates with drilled and moulded-in fastener holes has been investigated in this paper. Braided laminates were manufactured by vacuum infusion process using 12 K T700S carbon fibres (for bias and axial tows) and Araldite LY-564 epoxy resin. Moulded-in fastener holes were formed using guide pins which were inserted in the braided structure prior to the vacuum infusion process. The damage mechanism of the specimens was investigated using ultrasonic C-Scan technique. The specimens were dimensioned to obtain a bearing mode of failure. The bearing strength of the specimens with moulded-in hole was reduced in comparison to the specimens with drilled hole, due to the increased fibre misalignment angle following the pin insertion procedure. An improvement on the bearing strength of moulded-in hole specimens might be developed if the specimen dimensions would be prepared for a net-tension mode of failure where the fibre misalignment would not have an effect as significant as in the case of bearing failure mode, but this mode should be avoided since it leads to sudden catastrophic failures.
机译:本文研究了三轴编织(0°/±45°)碳纤维/环氧树脂复合材料层压板中带有钻孔和模制紧固件孔的螺栓连接的实验性能。编织层压板是通过真空灌注工艺使用12 K T700S碳纤维(用于斜交和轴向拖曳)和Araldite LY-564环氧树脂制造的。使用引导销形成模制的紧固件孔,该引导销在真空灌注过程之前插入编织结构中。采用超声C扫描技术研究了样品的损伤机理。对样本进行尺寸确定以获得破坏的承载方式。与带孔样品相比,带模孔的样品的轴承强度降低了,这是由于在销钉插入过程后纤维未对准角度增加了。如果将样本尺寸准备为净拉力破坏模式,而纤维未对准的影响不会像轴承破坏模式那样显着,则可以改善模制孔洞样本的承载强度,但应避免使用此模式,因为它会导致突然的灾难性故障。

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