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Parametrical Fluctuations of Epicycle in WheelGearboxes

机译:齿轮箱中Epicycle的参数波动

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Purpose: To develop mathematical model of the parametrical fluctuations, conditions of its emergence and development caused by cyclically variable in time rigidity of gearings.Methodology: Modeling of structural parametrical fluctuations of an epicycle is executed on the basis of the differential equation of Mathieu-Hill with variable periodic coefficients and diagnosing of instability of oscillatory system is carried out according to Ains-Strett’s chart.Results: It is established that width of area of instability of parametrical fluctuations of an epicycle for a 2 k-h gear depends on coefficient μ pulsations of mesh rigidity and the relation of frequency of own fluctuations k _(0) of an epicycle to the angular frequency ω of parametrical excitement. Calculations for the given algorithm on the example of wheel gearbox Raba designs 118.77 and 318.78, which are widely applied as a part of transmissions of car and electrical wheel transport, confirmed possibility of an elimination of parametrical fluctuations of an epicycle by means of an arrangement of axes of planets, uneven on a circle.Conclusion: The positive effect of influence of an arrangement of axes of planets, uneven on a circle, on depth of a pulsation of rigidity of multiline gearing and narrowing of area of instability of parametrical fluctuations of an epicycle is confirmed.
机译:目的:建立参数波动的数学模型,由齿轮传动装置的时间刚度的周期性变化引起的波动的出现和发展条件。方法:基于Mathieu-Hill的微分方程对行星轮的结构参数波动进行建模结果:建立了2 kh齿轮的行星轮的参数波动不稳定性区域的宽度取决于网孔系数μ脉动的结果,并确定了振荡系统的不稳定性。刚度以及行星轮自身波动k _(0)的频率与参量激发的角频率ω的关系。以车轮齿轮箱为例的给定算法的计算Raba设计118.77和318.78被广泛用作汽车和电动轮运输的传动装置的一部分,证实了通过设置以下形式来消除行星轮的参数波动的可能性:结论:影响行星齿轮轴刚度的脉动深度对多线齿轮刚度脉动深度的影响,以及对行星齿轮的参数波动不稳定性范围缩小的积极影响。行星轮被确认。

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