一种计算渐开线直齿轮弹流动力学特性的数值模型

S. Khalilarya, M. Mohammadpour, I. Mirzaee, D. J. Vahid
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摘要

本文提出了一种改进的渐开线直齿轮弹流润滑计算的数值模型。这个模型认为流体是牛顿流体。主要研究了齿轮沿接触轨迹的EHL特性。通过本研究,可以得到适用于各种用途的最小膜厚和最大压力值,以及完整的膜几何形状和压力分布。本研究还使用了一个完整的数值模型,用于齿轮载荷计算和EHL计算,而不是实验,近似或分析-实验方程。数值方法使模型能够计算所有需要的数据,而不受实验方程和解析-实验方程的有效范围的限制。为了完整地解释这一过程,本文首先回顾了一个数学模型,在最短的时间内,不使用有限元法计算载荷分布、单接触刚度和啮合刚度、传动误差和接触路径。然后提出了用双迭代流程图求解数学模型的数值方法。这个模型是灵活的,以适应任何修改在正齿轮轮廓几何。除了齿轮载荷模型外,本文还介绍了一种改进的加速EHL数值方法。所建立的负荷分布模型为目前的研究提供了较为现实的计算方法,修正后的EHL模型有助于在最短的时间内更准确地进行计算。最后对全模型(利用两个旧模型)的结果进行了讨论,并与以往的方法进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A numerical model to calculate Elastohydrodynamic (EHL) properties in involute spur gears
This paper presents a modified numerical model for Elastohydrodynamic lubrication (EHL) calculations of involute spur gears. This model considers the fluid as a Newtonian fluid. The main study performs on gear EHL properties along path of contact (POC). Using this study, the minimum film thickness and maximum pressure value as well complete film geometry and pressure distribution could be obtained for various applicable purposes. This study also uses a full numerical model for both gear load calculations and EHL calculations instead of experimental, approximation or analytical-experimental equations. Numerical method lets the model to calculate all required data without any limitations about the validity rang of experimental and analytical-experimental equations. In order to explain the process completely, paper firstly reviews a mathematical model to calculate the load distribution, single contact stiffness and meshing stiffness, transmission error and path of contact under load without using finite element method and in shortest time. Then a numerical method presented to solve the mathematical model using a double iteration flowchart to close the problem. This model is flexible to adapt for any modification in spur gear profile geometry. In addition to the gear load model, a modified and accelerated EHL numerical method reviewed to be utilized in this paper. The model for load distribution presents a realistic calculation for current study and modified EHL model helps to do calculations more exactly in shortest time. Finally the results of full model (that utilizes the two old models) will discuss and compared with previous methods.
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