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Development of a Lap Joint Fretting Apparatus

机译:膝关节微动装置的研制

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摘要

An experimental apparatus designed specifically for fretting experiments on mechanical lap joints is presented. A piezoactuator is used to impose fretting motion, and a tri-axial load cell is used to measure tangential force as well as possible misalignment forces. A laser nanosensor is employed to measure the relative motion between the joint halves. No post-processing and filtering of the data is needed to obtain the fretting response using this apparatus. Instead, raw data obtained from experiments with monolithic and 1-bolt aluminum and steel joints under various loading conditions suggest that noise, misalignment, stiffness and damping associated with the apparatus are minimal, and thus the fretting behavior of the mechanical lap joints is accurately captured. Analyses of typical fretting loops obtained by the proposed apparatus suggest that normal preload and maximum tangential displacement influence the critical joint parameters of stiffness and damping. Aluminum joints show a more compliant behavior with more energy dissipation compared to steel joints.
机译:提出了一种专门设计用于机械搭接接头微动实验的实验设备。压电致动器用于施加微动运动,三轴测力计用于测量切向力以及可能的未对准力。激光纳米传感器用于测量两半关节之间的相对运动。使用此设备无需对数据进行后处理和过滤即可获得微动响应。取而代之的是,通过在各种载荷条件下对整体式和1螺栓式铝和钢制接头进行的实验获得的原始数据表明,与设备相关的噪音,不对中,刚度和阻尼最小,因此可以准确地捕获机械搭接接头的微动行为。 。通过所提出的装置获得的典型的微动环分析表明,正常的预紧力和最大切向位移会影响刚性和阻尼的关键接头参数。与钢制接头相比,铝制接头具有更柔顺的性能和更多的能量消耗。

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