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Nonlinear dynamics of coupling rub-impact of double translational joints with subsidence considering the flexibility of piston rod

机译:考虑到活塞杆柔性的沉降沉降摩擦摩擦摩擦 - 沉降的非线性动力学

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摘要

In this work, based on the nine kinds of rub-impact scenarios of one single translational joint, we discuss 42 kinds of coupling rub-impact scenarios of double translational joints with subsidence for a triplex member including crosshead slider, piston rod, and piston slider. The two sliders are connected by a flexible piston rod. The flexible piston rod alternates between a straight rod and a S-curve rod in the rub-impact. A novel dynamic model of coupling rub-impact system with subsidence is established considering complex rub-impact scenarios and the flexibility of the piston rod. The dynamic equations are solved by the fourth-order Runge-Kutta approach. The numerical simulation results show that the subsidence has a significant effect on the rub-impact scenarios of the double translational joints, and the larger the subsidence is, the more intense the rub-impact. Moreover, the stability of coupling rub-impact system with double translational joints is investigated. The chaotic phenomenon of the coupling rub-impact system can be observed in the phase space trajectory. The existence of chaotic behavior is further confirmed by the Poincare section method.
机译:在这项工作中,基于一个单一翻译联合的九种耐摩擦情景,我们讨论了双层翻译接头的42种耦合摩擦情景,其沉降包括十字头滑块,活塞杆和活塞滑块的三角体成员。两个滑块通过柔性活塞杆连接。柔性活塞杆在摩擦撞击中的直杆和S曲线之间交替。考虑复杂的擦伤场景以及活塞杆的灵活性建立了沉降耦合摩擦系统的新动态模型。动态方程由第四阶runge-kutta方法解决。数值仿真结果表明,该沉降对双层翻译关节的耐磨性情景产生了显着影响,沉降越大,摩擦冲击越大。此外,研究了具有双层平移关节的耦合摩擦系统的稳定性。在相空间轨迹中可以观察到偶联摩擦系统的混沌现象。通过Poincare截面方法进一步证实了混沌行为的存在。

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