多源激励下联合收割机机架的阻尼优化方法

Bangzhui Wang, Shuren Chen, Guoqiang Wang, Zhong Tang, Hantao Ding
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引用次数: 0

摘要

水稻联合收割机机械系统复杂,不仅激振源多样,而且各工作装置之间的振动传递路径和对机架的振动贡献特性不明确,因此很难对水稻联合收割机机架的剧烈振动进行减振设计。因此,本文在对比和改进多种经典传递路径分析方法的基础上,采用离散时间矩阵法和工作路径法分析了各收割机的振动传递特性和传递特征。在实验部分,本文首先通过振动特性实验,得出了各设备在各工况下的功率谱变化和传输路径中最需要的优化路径。其次,通过激振力作用下的框架仿真分析,得出需要优化的振动阻尼区域。最后,将阻尼优化实验与振动特性实验相结合,进行激振力仿真分析。阻尼优化实验结果表明,切割台振动加速度最大变化值由 7.862 m-s-2 降至 3.522 m-s-2,降幅达 55.2%,驾驶室内多点试验峰值振幅分别为 5.4、5.3、1.7 和 2.0 μm,明显减小,优化效果显著。该研究为水稻联合收割机机架减振优化提供了理论支持。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Damping Optimization Method of Combine Harvester Frame Undergoing Multi-Source Excitation
The complex mechanical system of a rice combine harvester not only has various excitation sources, but also, the vibration transmission path between each working device and the vibration contribution characteristics to the frame are not clear, so it is difficult to perform a reduction vibration design for the sharp vibration of the rice combine harvester frame. Therefore, based on the comparison and improvement of multiple classical transfer path analysis methods, this paper analyzed the vibration transfer characteristics and transfer characteristics of each harvester by the discrete time matrix method and operating path method. In the Experimental section, through the vibration characteristic experiment firstly, this paper obtained the power spectrum variation and the most needed optimized path in the transmission path of each device under each operating condition. Secondly, through frame simulation analysis under the exciting force, we obtained the vibration damping areas that needs to be optimized. Finally, the damping optimization experiment connected with the vibration characteristic experiment, and the excitation force simulation analysis was performed. The results of the damping optimization experiment displayed that the maximum change value of the vibration acceleration of the cutting table decreased from 7.862 m·s−2 to 3.522 m·s−2, decreasing by 55.2%, and the peak amplitude of the multipoint test in the cab was 5.4, 5.3, 1.7 and 2.0 μm, respectively, which was significantly reduced, so the optimization effect was significant. This study provides theoretical support for the vibration reduction optimization of a rice combine harvester frame.
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