直升机超临界尾传动轴限幅减振器非线性动力学特性研究
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国家自然科学基金资助项目(52005253);中国博士后科学基金资助项目(2020M681579);中央高校基本科研业务费资助项目(NT2020010);直升机传动技术国防科技重点实验室开放基金资助项目(HTL-A-20G04)


Nonlinear dynamics of a supercritical tail rotor drive shaft equipped with a hybrid damper
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    摘要:

    直升机超临界尾传动轴在跨临界转速时会产生剧烈的振动。限幅减振器是专门针对尾传动轴跨临界减振问题设计的一种复合式减振器。限幅减振器与尾传动轴组成的系统具有摩擦、碰撞等强非线性特征,动力学特性异常复杂。为揭示限幅减振器工作机理并指导减振器设计,建立了具有双间隙结构的限幅减振器与尾传动轴系统的弹簧?质量?阻尼等效模型。分别基于直接时间域积分和时频变换谐波平衡(Harmonic Balance Method with Alternating Frequency?Time Domain Technique)+数值延拓(Numerical Continuation)两种方法对控制方程进行了求解。计算结果表明,限幅减振器存在无作用、正常减振、异常减振、限位四种工作状态。其中,限位状态是针对故障工况下尾传动轴进行的临时限位保护。此外,进一步研究了减振器参数对减振和限位效果的影响,得到了传动轴与碰摩环之间间隙、碰撞刚度以及临界摩擦力对限幅减振器减振效果的影响规律。发现存在最优临界摩擦力,且最优临界摩擦力与传动轴不平衡量等有关。同时限位状态下,通过增加碰摩环与底座之间的碰撞刚度可以减小限位幅值,但也会产生更大的冲击力。最后,开展了正常减振工况下碰摩间隙和临界摩擦力两个关键参数对限幅环减振效果影响的试验研究,验证了模型的有效性。

    Abstract:

    The supercritical tail rotor drive shaft of a helicopter vibrates violently when driven through its critical speed. The hybrid damper is a specially-designed damper for the transcritical vibration reduction problem. The tail rotor drive shafts equipped with hybrid dampers are typical nonlinear system with friction and collision, and the dynamic characteristic is extremely complex. In order to uncover the underlying working mechanism and guide the design of the hybrid damper, a spring-mass-dashpot equivalent model with double-clearance structure has been established, the governing equations have been deduced and a systematic numerical simulation has been carried out. The results demonstrate that the working modes of the hybrid damper can be divided into 4 categories according to the unbalance quantity: no-effect mode, normal-damping mode, abnormal-damping mode, and hard-stopping mode.Among them, the hard-stopping mode can provide a temporary protection for a wounded tail rotor drive shaft. In addition, the influence of the initial gap, collision stiffness and the critical friction force on the working performance of the damper has been illustrated. There is an optimal critical friction force associated with each unbalance quantity. Besides, in the hard-stopping mode, the vibration amplitude can be reduced by increasing the collision stiffness between the rubbing ring and the base, which could also induce a greater impact. Moreover, prototypes of the hybrid damper are designed, manufactured and tested on a shaft test rig. The simulation results are well verified by the experiments.

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王 旦,宋立瑶,陈 柏,李 波,朱如鹏,吴洪涛.直升机超临界尾传动轴限幅减振器非线性动力学特性研究[J].振动工程学报,2023,36(3):593~605.[WANG Dan, SONG Li-yao, CHEN Bai, LI Bo, LI Bo, ZHU Ru-peng, WU Hong-tao. Nonlinear dynamics of a supercritical tail rotor drive shaft equipped with a hybrid damper[J]. Journal of Vibration Engineering,2023,36(3):593~605.]

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  • 在线发布日期: 2023-06-26
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