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NUMERICAL AND EXPERIMENTAL STUDY OF THE LOADED TRANSMISSION ERROR OF A SPIRAL BEVEL GEAR

机译:螺旋小齿轮的传递载荷误差的数值和实验研究

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摘要

The design of spiral bevel gears in aeronautical gear boxes requires very precise and realistic numerical simulations. One important criteria is the loaded transmission error (LTE) that gear designers attempt to reduce at the nominal torque. This paper presents a numerical tool that simulates the loaded meshing of spiral bevel gears and experimental tests carried out on a real helicopter gear box. Tooth profile is defined by the Gleason cutting process and tooth bending effects and contact deformations are both taken into account. The bending effect computation uses a 3D Finite Element model, while the contact deformations are obtained by using Boussinesq's theory. Experimental measurements of the LTE were performed using magnetic and optical encoders rigidly connected with the pinion and gear shafts, giving access to the records of the instantaneous angular positions. The numerical simulations fit quite well with the experimental results.
机译:航空齿轮箱中的螺旋锥齿轮的设计需要非常精确和逼真的数值模拟。一个重要的标准是齿轮设计者试图以额定扭矩减小的负载传输误差(LTE)。本文介绍了一种数值工具,该工具可模拟螺旋锥齿轮的负载啮合,并在真实的直升机齿轮箱上进行实验测试。牙齿轮廓由格里森切割工艺定义,并且考虑了牙齿弯曲效果和接触变形。弯曲效果计算使用3D有限元模型,而接触变形则使用Boussinesq理论获得。 LTE的实验测量是使用与小齿轮和齿轮轴刚性连接的磁编码器和光学编码器进行的,可以访问瞬时角位置的记录。数值模拟与实验结果非常吻合。

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