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Effects of environmental conditions on the lap shear strength of resistance-welded carbon fibre/thermoplastic composite joints

机译:环境条件对电阻焊接碳纤维/热塑性复合关节钢管剪切强度​​的影响

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摘要

The objective of this study is to understand the influence of temperature and moisture on the lap shear strength (LSS) of carbon fibre/polyphenylene sulfide (CF/PPS) resistance-welded joints. The welded joints are conditioned at various levels of temperature and humidity and tested at temperatures ranging from 21 degrees C to 150 degrees C. Temperature is shown to have an effect on the LSS with a reduction of 26% at 82 degrees C and 61% at 150 degrees C (around 60 degrees C above the PPS T-g), relative to room temperature. Moisture is shown to have little to no impact on the LSS, due to the semi-crystalline nature of PPS and its good resistance to water absorption. Observation of the joints' fracture surfaces shows a degradation of the fibre/matrix interface under severe environmental conditions and a failure mode involving both fibre/matrix and heating element/matrix debonding.
机译:本研究的目的是了解温度和水分对碳纤维/聚苯硫醚(CF / PPS)电阻焊接接头的影响。焊接接头在各种水平的温度和湿度下调节,在21摄氏度至150℃的温度下测试。显示温度对LSS的影响,在82℃下降低26%和61%相对于室温,150℃(高于PPS TG的60摄氏度)。由于PPS的半结晶性质及其对吸水性的良好抵抗,水分被显示对LSS没有影响。观察接头的断裂表面显示出在严重的环境条件下的纤维/基质界面的降解和涉及纤维/基质和加热元件/基质剥离的失效模式。

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