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Striving for High Load Capacity and Low Noise Excitation in Gear Design

机译:在齿轮设计中追求高负荷能力和低噪声激励

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In the design process of gearboxes, common requirements are high load capacity and low noise excitation. Reaching both goals is laborious and normally requires a trade-off. Detailed analyses of contact conditions and deformations are necessary. These should take place in an early design stage to realize a mostly straightforward design approach and prevent late design changes. Focused on cylindrical gears, the paper covers an approach starting at the first draft of a gearbox. Defining the macrogeometry of the teeth regarding load capacity calculation according to standards leads to a reasonable gear design. On that basis, the micro geometry of the teeth is specified and load distribution as well as noise excitation is calculated. The design parameters are interdependent so provisions have to be made to adjust each step on the remaining ones. Effects resulting from changing profile contact ratio under load and contact patterns not covering the whole flank have to be regarded. The beneficial effect of a modified microgeometry is dependent on the ability to precisely account for contact conditions and meshing clearances. To find an optimal solution for the competing goals of capacity and excitation, detailed calculation methods are required. To be able to apply latest research results, these are implemented in highly specialized software. The task described above is handled by using the software that was developed at the Gear Research Center (FZG) with funding by the German Research Association for Gears and Transmissions (FVA). The underlying calculation methods and analyzed phenomena are covered.
机译:在齿轮箱的设计过程中,常见要求是高负载能力和低噪音激励。到达两个目标是费力的,通常需要权衡。有必要详细分析接触条件和变形。这些应该在早期的设计阶段进行,以实现最直接的设计方法并防止晚期设计变化。专注于圆柱形齿轮,纸张覆盖了从齿轮箱的第一稿开始的方法。根据标准定义关于负载能力计算的齿的宏观测定,导致合理的齿轮设计。在此基础上,规定了牙齿的微观几何形状并计算负载分布以及噪声激励。设计参数是相互依赖的,因此必须进行规定以调整其余的步骤。由于不覆盖整个侧翼的载荷和接触图案而改变轮廓接触比导致的效果必须被视为。修饰的微曲线测定法的有益效果取决于精确地考虑接触条件和啮合间隙的能力。为找到容量和激励的竞争目标找到最佳解决方案,需要详细的计算方法。为了能够应用最新的研究结果,这些是在高度专业化的软件中实现的。上述任务是通过使用在齿轮研究中心(FZG)开发的软件来处理德国研究协会的齿轮和变速器(FVA)的资金。涵盖了潜在的计算方法和分析的现象。

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