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Geometry generation principle and meshing properties of a new gear drive

机译:新型齿轮传动的几何生成原理和啮合特性

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The generation principle of composite cycloid is proposed for the tooth profile of external drive. Firstly, a two-link mechanism is developed as the equivalent mechanism to describe the geometric principle of cycloid by introducing the motion transforming method. Then the path curve of n -order cycloid motion is generalized using n +1 link mechanism. The new second-order, third-order and fourth-order composite cycloid equations of tooth profiles, including the corresponding link mechanisms, are derived and compared. It is found that the fourth-order composite cycloid is more suitable and potential for the gear design. Secondly, based on differential geometry and meshing theory, the mathematical models, including original composite cycloid profile, meshing equation, conjugate profile and meshing line are established. Subsequently, the meshing properties, such as contact ratio, sliding ratio and mechanics property analysis are conducted and compared with involute gear drive. Transmission efficiencies under different operating conditions are performed on the FZG gear test rig. Theoretical and experimental results demonstrate that greater contact ratio, smaller sliding ratio, superior bending and contact stress, and high efficiency of the new gear are represented in comparison with the involute gear.
机译:提出了复合摆线的产生原理,用于外传动的齿形。首先,提出了一种双连杆机构作为等效机构,通过引入运动变换方法来描述摆线的几何原理。然后,使用 n + 1个连杆机构来概括 n次摆线运动的路径曲线。推导并比较了新的二阶,三阶和四阶齿廓复合摆线方程,包括相应的连杆机构。发现四阶复合摆线针轮更适合齿轮设计并且具有潜力。其次,基于微分几何和啮合理论,建立了包括原始复合摆线轮廓,啮合方程,共轭轮廓和啮合线在内的数学模型。随后,进行啮合性能,如接触比,滑动比和力学性能分析,并将其与渐开线齿轮传动进行比较。在FZG齿轮试验台上,可以在不同的工况下提高传动效率。理论和实验结果表明,与渐开线齿轮相比,新齿轮具有更大的接触比,更小的滑动比,优异的弯曲和接触应力以及更高的效率。

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