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Torsional vibration analysis of Fastening structure based on finite element method

机译:基于有限元法的紧固件结构扭转振动分析

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These Fastening structure with self-locking function mainly plays a role of fastening and connection, and widely used in transmission system of vehicle. Loosing failure of the fastening structure may be caused by the torsional vibration excitation brought by internal combustion engine, which has seriously effects on the safe operation and service life of vehicle transmission, and even leads to serious accidents. To understand this problem, a three-dimensional finite element model of the fastening structure is proposed to investigate effects of the pre-tightening force and the assembly clearance on the dynamic response of fastening structure, based on an explicit dynamic finite element method. The numerical results show that the axial displacement amplitude of the nut of the fastening structure increased gradually and the fastening structure has a slowly loosening trend, due to the action of the torsional vibration excitation, which can provide some suggestion to the fastening structure's reliability design.
机译:这些具有自锁功能的紧固结构主要起紧固和连接的作用,并广泛用于车辆的传动系统。紧固结构的松动失效可能是由内燃机带来的扭转振动引起的,这严重影响了车辆变速器的安全运行和使用寿命,甚至导致严重的事故。为了解决这个问题,提出了一种三维结构的有限元模型,基于显式动态有限元方法,研究了预紧力和装配间隙对紧固件动态响应的影响。数值结果表明,由于扭转振动激励的作用,紧固结构螺母的轴向位移幅度逐渐增大,紧固结构有缓慢的松动趋势,这可以为紧固结构的可靠性设计提供一些建议。

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