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Numerical modelling of extruded aluminium alloy T-stubs connected by swage-locking pins: FE validation and parametric study

机译:旋转锁定引脚挤出铝合金T型短存根的数值模拟:FE验证和参数研究

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The structural behaviour and design of extruded aluminium alloy T-stubs connected by swage-locking pins are studied in the present paper. Finite element (FE) models were developed and validated against test results on extruded aluminium alloy T-stubs connected by swage-locking pins carried out in the companion paper [1]. Prior to the numerical modelling of the T-stubs, refined and simplified FE models of swage-locking pins were developed, and evaluated by comparing with experimental results; the refined model explicitly takes into account the geometries and load-slip behaviour of the swage-locking pins and provides accurate predictions of the test results, while the simplified model is developed through application of a four-step calibration methodology, and has been shown to provide similar accuracy with the refined model, but with significantly reduced computational time. Upon validation, an extensive parametric study was performed to investigate the effect of key parameters, including the preload in the swage-locking pins, the pin diameter, the fillet radius at the web-to-flange junction and the pitch distance between pins, on the structural performance of the T-stubs. The numerically derived results were also compared with the resistance predictions according to the design method in EN 1999-1-1 (EC9). The comparisons indicated that the EC9 provides safe-sided, yet somewhat conservative and scattered, resistance predictions for extruded aluminium alloy T-stubs connected by swage-locking pins, owing principally to inaccurate predictions of the distance between two plastic hinges formed in the T-stub flange. A new design method was proposed for more accurate predictions of the plastic hinge distance, resulting in improved accuracy and consistency over EC9 for calculating the resistance of extruded aluminium alloy T-stubs connected by swagelocking pins.
机译:本文研究了Swage锁定销连接的挤出铝合金T型短截线的结构行为和设计。有限元(FE)模型是开发和验证的测试结果对通过在伴随纸张中进行的柔软锁定销[1]连接的挤出铝合金T型支斤。在T-stubs的数值建模之前,开发了旋转锁定引脚的精制和简化的FE模型,并通过与实验结果进行比较来评估;精致模型明确考虑了旋转锁定引脚的几何和负载滑移行为,并提供了对测试结果的准确预测,而简化模型是通过应用四步校准方法而开发的,并且已显示提供类似的精度与精致模型,但计算时间显着降低。在验证后,进行广泛的参数研究以研究关键参数的效果,包括旋转锁定销中的预载荷,销钉直径,绕道凸缘结处的圆角半径以及销之间的节距距离T-stubs的结构性能。还与根据EN 1999-1-1(EC9)的设计方法的电阻预测相比,数值衍生的结果。比较表明,EC9提供了通过旋转旋转销钉连接的挤出铝合金T型短截线的挤压型铝合金T型支柱的难以准确的铝合金T-stub提供障碍,散射的阻力预测。存根法兰。提出了一种新的设计方法,用于更精确地预测塑料铰链距离,从而通过EC9改善了EC9的精度和一致性,用于计算通过SwageLocking销连接的挤出铝合金T型支柱的电阻。

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