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Pitch cone design and tooth contact analysis of intersected beveloid gears for marine transmission

机译:船舶传动用相交锥齿轮的节锥设计和齿接触分析

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摘要

A pitch cone based geometry design method considering line contact is proposed for intersected beveloid gears. The proposed pitch cone design applies the spatial gearing model to determine working pitch cone angles and working spiral angles. For the determination of geometry design parameters, a computer program which incorporates pitch cone design and line contact condition was developed. To illustrate the meshing characteristics, example studies with three groups of geometry parameters were performed by unloaded and loaded tooth contact analysis. Through the analysis, the influences of misalignments, torque load and angle between the first principal directions of the tooth surface curvatures (FPD-angle) on the mesh were investigated. The results show that: compared with axial position errors, shaft angle errors have a more detrimental influence on both the contact path and transmission error. Both FPD-angle and torque load have an obvious effect on this type of gearing. Finally, a practical experimental setup for intersected beveloid gearing with small shaft angle was performed and loaded tooth bearing tests were conducted to demonstrate the proposed design procedure and the theoretical simulation models. The experimental results compared well with the simulation.
机译:针对相交的锥齿轮提出了一种基于螺距的考虑线接触的几何设计方法。提出的螺距锥设计将空间齿轮模型应用于确定工作螺距锥角和工作螺旋角。为了确定几何设计参数,开发了包含节锥设计和线接触条件的计算机程序。为了说明啮合特性,通过三组几何参数的卸载和加载齿接触分析进行了实例研究。通过分析,研究了齿面曲率的第一主方向之间的未对准,扭矩载荷和角度(FPD角度)对啮合的影响。结果表明:与轴向位置误差相比,轴角误差对接触路径和传动误差都有更大的不利影响。 FPD角度和扭矩负载都对此类齿轮装置产生明显影响。最后,针对相交的小轴角锥齿轮传动装置进行了实用的实验设置,并进行了负载齿轴承试验,以证明所提出的设计程序和理论仿真模型。实验结果与仿真结果相吻合。

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