基于耦合系统的齿轮载荷分布对变速箱啮合噪声的影响

IF 2 Q2 ENGINEERING, MECHANICAL
Lundun Zhang, Teng Wan, Chunyou Zhang
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引用次数: 0

摘要

引言随着齿轮箱制造业的快速发展,内部齿轮响应受到了关注,齿轮运转过程中的啮合噪声控制问题也得到了研究。传统的降噪方法通常基于齿轮阶次,随着齿轮箱制造技术的提高,这种方法逐渐难以应对广泛的数据:为了扩展噪声控制系统的搜索领域,本研究将齿轮响应与齿轮阶次相结合,并增加了齿轮均布载荷的条件。针对复合系统中常见的降噪问题,本研究改进了时变刚度激励机制,并生成了一个耦合系统:最后,本研究对 Gmnoi 数据集进行了实验,并与包括量子遗传学在内的三个系统进行了比较,以验证所提系统的优越性。四个系统对齿轮啮合噪声的抑制效果分别为 98.4%、95.8%、93.5% 和 92.7%。不同齿轮组的最高性能分别为 623、514、406 和 423:实验结果表明,所提出的联轴器系统在控制齿轮箱啮合噪声方面具有较强的鲁棒性和较高的精度,对减少噪声污染和改善齿轮箱的工作环境具有重要意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The influence of gear load distribution based on coupled systems on gearbox meshing noise
Introduction: With the rapid development of the gearbox manufacturing industry, the internal gear response has received attention, and the control of meshing noise during gear operation has been studied. Conventional noise reduction methods are usually based on gear order, and with the improvement of gearbox manufacturing technology, this method gradually becomes difficult to cope with a wide range of data.Methods: To expand the search domain of noise control systems, this study combines gear response and gear order, and adds the condition of gear uniform load. For common noise reduction problems in composite systems, this study improves the time-varying stiffness excitation mechanism and generates a coupled system.Results: Finally, this study conducts experiments on the Gmnoi dataset and compares it with three systems including quantum genetics to verify the superiority of the proposed system. The suppression effects of the four systems on gear meshing noise were 98.4%, 95.8%, 93.5%, and 92.7%, respectively. Their highest performance for different gear groups was 623, 514, 406, and 423, respectively.Discussion: The experimental results showed that the proposed coupling system has strong robustness and high accuracy in controlling gearbox meshing noise, and is of great significance in reducing noise pollution and improving the working environment of the gearbox.
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来源期刊
Frontiers in Mechanical Engineering
Frontiers in Mechanical Engineering Engineering-Industrial and Manufacturing Engineering
CiteScore
4.40
自引率
0.00%
发文量
115
审稿时长
14 weeks
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