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A Study of Loosening and Fatigue of Bolted Joints under Transverse Vibration

机译:横向振动下螺栓接头松动和疲劳研究

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Bolt-loosening fatigue tests under small transverse vibrations have been performed to understand the behavior in the long life region. The current study is focused on the loosening-fatigue mechanism and on the estimation of nominal stress at the root of the first thread caused by transverse vibration. Results show that if a bolt has loosened within 10{sup}3~10{sup}4 vibration cycles, damage such as crack nucleation at the root of the first thread is not observed, and loosening is due to bolt rotation. However, if loosening does not occur until approximately 10{sup}5~10{sup}6 cycles, then a crack is observed at the root of the first thread in the all experiments. Loosening occurs due to loss of bolt stiffness caused by crack nucleation and propagation which then leads to bolt rotation. Results also show that the initial clamping force above a threshold level does not significantly influence the loosening-fatigue life of a bolted joint. The amplitude of the transverse vibration force is the most significant influence on the loosening-fatigue life.
机译:已经进行了小横向振动下的螺栓松动疲劳试验以了解长寿命区域的行为。目前的研究专注于松动 - 疲劳机制,并在横向振动引起的第一线根系上的标称应力估计。结果表明,如果螺栓在10 {sup} 3〜10 {sup} 4振动循环内,则未观察到第一线的根部的裂缝成核等损坏,并且松动是由于螺栓旋转。然而,如果不会发生松动直到大约10 {sup} 5〜10 {sup} 6循环,则在所有实验中的第一线的根部观察到裂缝。由于裂缝成核和传播引起的螺栓刚度丧失而发生松动,然后导致螺栓旋转。结果还表明,高于阈值水平的初始夹紧力不会显着影响螺栓接头的松动疲劳寿命。横向振动力的幅度是对松动疲劳寿命的最显着影响。

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