涡轮螺旋桨发动机减速齿轮齿谐波频谱分量模型

A. E. Sundukov, E. V. Shakhmatov
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引用次数: 0

摘要

旋转机械中频谱分量的宽度取决于静止运行模式下转子速度偏差对载波的频率调制。研究表明,对于齿谱分量,仅考虑这一因素是不够的。对出版物的分析和进行的研究表明,它还取决于许多其他因素的影响:与工艺有关的因素(齿轮制造和装配中的误差)、运行模式参数(转速、温度、传输载荷)、与设计有关的因素(传动部件的灵活性、齿面的修改)以及齿面的不均匀磨损。以涡轮螺旋桨发动机的行星齿轮箱为例,考虑了齿谱分量宽度结构与所分析影响因素的函数关系。根据大修发动机中 18 个齿轮箱的振动统计数据,对频率调制过程的频谱分量宽度比率进行了合理选择。这一选择所显示的读数与相应的实验数据最为接近。对于齿面磨损程度不同的十个齿轮箱的振动,提出了宽度与磨损程度的相应关系。提出了大修后和新制造的齿轮箱中齿谱分量宽度的数学模型,即常数系数与所考虑因素的偏差分散总和的乘积。在将磨损造成的偏差加入偏差总和时,也给出了磨损齿轮箱的相同依赖关系。结果表明,在最大磨损的情况下,其在总宽度中所占的比例约为 50%,而在发动机静止运行模式下,调整相对转子速度恒定性的操作系统所产生的频率调制的比例相当于所有其他因素的一半。
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Model of the turboprop engine reduction gear tooth harmonic spectral component
The width of spectral components in rotary machines is determined by the frequency modulation of the carrier from the rotor speed deviation in the stationary operation mode. It was shown that, for the tooth spectral component, it is not enough to take into account this factor only. The analysis of publications and the studies performed show that it is also determined by the effect of many other factors: process-related ones (errors in manufacturing and assembly of gear wheels), operation mode parameters (rpm, temperature, transmitted load); design-related factors (flexibility of drive parts; modification of the tooth face), as well as uneven wear of tooth flanks. Using the planetary gearbox of a turboprop engine as an example, the structure of the tooth spectral component width in function of the analyzed influencing factors was considered. Based on the vibration statistics for eighteen gearboxes in overhauled engines, the choice of a ratio for the spectral component width of a frequency modulated process was justified. This choice showed readings closest to the corresponding experimental data. For the vibration of ten gearboxes with different degrees of tooth flank wear, the corresponding dependence of the width on the wear is presented. A mathematical model for the tooth spectral component width in overhauled and newly manufactured gearboxes as the product of the constant coefficient with the deviation dispersion sum from the considered factors was proposed. The same dependence was also given for gearboxes with wear when adding the dispersion from wear to the dispersion sum. It was demonstrated that, for the presented case of the maximum wear, its fraction in the total width was about 50%, whereas the fraction of the frequency modulation from the operating system of adjusting relative rotor speed constancy in the stationary engine operation mode was equal to half of all the other factors.
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