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Mechanical Characterization of Friction Stir Channels under Internal Pressure and In-Plane Bending

机译:内压和面内弯曲下搅拌摩擦通道的力学特性

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Friction Stir Channelling (FSC) is a simple and innovative technique of manufacturing integral and continuous channels (also referred as conformal channels) in monolithic plates in a single step.This paper is focused on the mechanical behaviour of integral and continuous FS channels produced in a monolithic plate of the aluminium alloy AA7178-T6 with 13mm of thickness, typically used in structural aircraft applications. Internal pressure tests were conducted on specimens with a longitudinal friction stir channel. In-plane bending tests were carried out in specimens with longitudinal and transversal channels; different conditions were analysed for each FSC parameters set. Results were analysed and compared concerning the FS channels microstructure and base material mechanical properties.Bending tests results show that tool rotation speed has more influence in the FSC specimens bending strength than tool travel speed and internal pressure tests show that increase tool rotation speed increases the minimum pressure that leaking points arise.
机译:摩擦搅拌通道(FSC)是一种简单创新的技术,可在单个步骤中在整块板上制造完整和连续的通道(也称为保形通道)。厚度为13mm的铝合金AA7178-T6整体板,通常用于飞机结构中。内部压力测试是在带有纵向摩擦搅拌通道的样品上进行的。在具有纵向和横向通道的样本中进行了面内弯曲测试;针对每个FSC参数集分析了不同的条件。对FS通道的显微组织和基材力学性能进行了分析和比较。弯曲试验结果表明,刀具旋转速度对FSC试样弯曲强度的影响大于刀具行进速度;内部压力试验表明,刀具旋转速度的增加最小。产生泄漏点的压力。

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