School of Mechatronic Engineering, Xi'an Technological University, Xi'an 710021, China.
Rev Sci Instrum. 2023 Mar 1;94(3):035107. doi: 10.1063/5.0118050.
Aiming to achieve an accurate evaluation of the circumferential position error of the V-shaped apex of double-helical gear, the definition of the V-shaped apex of double-helical gear and the evaluation method of the circumferential position error is studied based on the geometric characteristics of double-helical gear and the definition of shape error. First, the definition of the V-shaped apex of double-helical gear based on the helix and its circumferential position error is presented based on the (American Gear Manufacturers Association) AGMA940-A09 standard. Second, based on the basic parameters, the tooth profile characteristics, and the tooth flank forming principle of double-helical gear, the mathematical model of double-helical gear in a Cartesian space coordinate system is established, and the auxiliary tooth flank and auxiliary helix are constructed to generate some auxiliary measurement points. Finally, the auxiliary measurement points are fitted using the least-squares principle to calculate the position of the V-shaped apex of the double-helical gear in the actual meshing condition and its circumferential position error. The simulation and experimental results show that the simulation results verify the feasibility of the method, and the experimental results (the circumferential position error of the V-shaped apex is 0.0187 mm) are consistent with the results of the literature [Bohui et al., Metrol. Meas. Technol. 36, 33 (2016)]. This method can effectively realize the accurate evaluation of the double-helical gear V-shaped apex position error, providing some guidance for the design and manufacture of double-helical gear.
为了准确评估双螺旋齿轮 V 形尖顶的周向位置误差,基于双螺旋齿轮的几何特征和形状误差的定义,研究了双螺旋齿轮 V 形尖顶的定义和周向位置误差的评价方法。首先,根据(美国齿轮制造商协会)AGMA940-A09 标准,提出了基于螺旋线及其周向位置误差的双螺旋齿轮 V 形尖顶的定义。其次,基于双螺旋齿轮的基本参数、齿廓特征和齿面形成原理,建立了笛卡尔空间坐标系下双螺旋齿轮的数学模型,并构造了辅助齿面和辅助螺旋线,生成了一些辅助测量点。最后,采用最小二乘法对辅助测量点进行拟合,计算实际啮合状态下双螺旋齿轮 V 形尖顶的位置及其周向位置误差。仿真和实验结果表明,仿真结果验证了该方法的可行性,实验结果(V 形尖顶的周向位置误差为 0.0187mm)与文献[Bohui 等人,Metrol. Meas. Technol. 36, 33 (2016)]的结果一致。该方法可以有效地实现双螺旋齿轮 V 形尖顶位置误差的精确评估,为双螺旋齿轮的设计和制造提供了一定的指导。