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首页> 外文期刊>Shock and vibration >A 3D Free Vibration Analysis of the Horn-Gear System through Chebyshev–Ritz Method in Ultrasonic Gear Honing
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A 3D Free Vibration Analysis of the Horn-Gear System through Chebyshev–Ritz Method in Ultrasonic Gear Honing

机译:超声波齿轮珩磨中Chebyshev-Ritz方法的喇叭齿轮系统的3D自由振动分析

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Applying the ultrasonic machining in gear honing can improve honing speed, reduce cutting force, and avoid blocking. There are two problems leading to the decrease of calculation accuracy in the traditional nonresonant theory of the ultrasonic gear honing. One is that one-dimensional longitudinal vibration theory and two-dimensional theory cannot reflect the vibration characteristics of ultrasonic horn and gear comprehensively. And, the other one is that the difference of the analysis dimension between the two theories leads to mismatch of the coupling condition dimension between ultrasonic horn and gear. A free vibration analysis through Chebyshev–Ritz method based on three-dimensional elasticity theory was presented to analyze the eigenfrequencies of the horn-gear system in ultrasonic gear honing. In the method, the model of the horn-gear system was divided into four parts: a solid circular plate, an annular plate, a solid cylinder, and a cone with hole. The eigenvalue equations were derived by using displacement coupling condition between each part under completely free boundary condition. It was found that the eigenfrequencies were highly convergent through convergence study. The hammering method for a modal experiment was used to test the horn-gear systems’ eigenfrequencies. And, the finite element method was also applied to solve the eigenfrequencies. Through a comparative analysis of the frequencies obtained by these three methods, it showed that the results achieved by the Chebyshev–Ritz method were close to those obtained from the experiment and finite element method. Thus, it was feasible to use the Chebyshev–Ritz method to solve the eigenfrequencies of the horn-gear system in ultrasonic gear honing.
机译:在齿轮珩磨中施加超声波加工可以提高珩磨速度,减少切割力,避免阻挡。传统的超声波齿轮珩磨中的计算精度降低了两个问题。一个是一维纵向振动理论和二维理论不能全面地反映超声波喇叭和齿轮的振动特性。并且,另一个是两个理论之间的分析尺寸的差异导致超声喇叭和齿轮之间的耦合条件尺寸不匹配。提出了一种基于三维弹性理论的Chebyshev-Ritz方法的自由振动分析,分析了超声齿轮珩磨中喇叭齿轮系统的特征频官。在该方法中,喇叭齿轮系统的模型被分成四个部分:固体圆形板,环形板,固体圆筒和带孔的锥形。通过在完全自由边界条件下使用每个部分之间的位移耦合条件来导出特征值方程。结果发现,通过收敛研究,特征犯罪是高度收敛的。模态实验的锤击方法用于测试喇叭齿轮系统的特征频率。并且,有限元方法也应用于解决特征犯罪。通过对这三种方法获得的频率的比较分析,它表明,Chebyshev-ritz方法所实现的结果接近于从实验和有限元方法获得的结果。因此,使用Chebyshev-ritz方法可以解决超声齿轮珩磨中的喇叭齿轮系统的特征频官是可行的。

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