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Spur Gears Static and Dynamic Meshing Simulation and Tooth Stress Calculation

机译:正齿轮静态和动态啮合仿真和齿应力计算

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Gear meshing is a complicated process, and is subjected to the simulation process in the following paper. A flexible quasi-static and dynamic finite element analysis (FEA) models were built, to calculate contact principal and shear stresses. Full sized 3D spur gears are simulated under different boundary conditions. The first model, was a quasi-static analysis, where torque was used as input; and the second model, which was transient dynamic analysis, where rotational speed was used as input. The static analysis showed high stress concentration at the tooth contact point and under the contacting surface. The dynamic analysis provided the highest stress value at the different stages of gear engagement points along the line of action. Analytical and simulation result were in agreement in general, and the use of the new simulation model was discussed.
机译:齿轮啮合是一个复杂的过程,下面的论文将对其进行仿真。建立了一个灵活的准静态和动态有限元分析模型,以计算接触主应力和切应力。全尺寸的3D正齿轮在不同的边界条件下进行仿真。第一个模型是准静态分析,其中扭矩用作输入。第二个模型是瞬态动态分析,其中使用转速作为输入。静力分析表明,在牙齿接触点和接触表面下方有较高的应力集中。动态分析提供了沿作用线在齿轮啮合点不同阶段的最高应力值。分析和仿真结果基本一致,并讨论了新仿真模型的使用。

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