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Simulation on loosening behavior of threaded fastener under transverse vibration

机译:横向振动下螺纹紧固件的松动行为模拟

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Threaded fastener is widely used in engineering machinery industry. However, loosening is a big problem of threaded fastener, which can affect operation state and working life of equipment, and even cause severe accidents. To solve the problem of thread loosening, the loosening mechanism of threaded fastener under transverse vibration is presented here. In this work, the theory of Timoshenko beam is employed to compute a bending stiffness, and the finite element method is employed to obtain contact stiffness. By using lumped-mass method with these stiffness, a three-degree-of-freedom dynamical model of threaded fastener under transverse vibration is developed to study the effects of amplitude of transverse activation on dynamical response, including preload, nut relative rotation angle, force between bolt and the clamped parts. Based on the simulation results, the loosening behavior of threaded fastener can be well understood and provide theory guidance for design reliable threaded fastener.
机译:螺纹紧固件广泛用于工程机械行业。但是,松动是螺纹紧固件的大问题,会影响设备的工作状态和使用寿命,甚至引起严重的事故。为了解决螺纹松动的问题,本文提出了在横向振动下螺纹紧固件的松动机理。在这项工作中,采用Timoshenko梁理论来计算弯曲刚度,并使用有限元方法来获得接触刚度。通过使用具有这些刚度的集总质量方法,建立了在横向振动条件下螺纹紧固件的三自由度动力学模型,以研究横向激活幅度对动力响应的影响,包括预紧力,螺母相对旋转角,力在螺栓和被夹紧的零件之间。基于仿真结果,可以很好地理解螺纹紧固件的松动行为,并为设计可靠的螺纹紧固件提供理论指导。

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