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CAD-based simulation of the hobbing process for the manufacturing of spur and helical gears

机译:基于CAD的正齿轮和斜齿轮制造滚齿过程的仿真

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摘要

Targeting an accurate and realistic simulation of the gear hobbing process, we present an effective and factual approximation based on three-dimensional computer-aided design. Hobbing kinematics is directly applied in one gear gap. Each generating position formulates a spatial surface path which bounds its penetrating volume into the workpiece. The three-dimensional surface paths generated from the combination of the relative rotations and displacements of hob and work gear are used to split the subjected volume, creating concurrently the chip and the remaining work gear solid geometries. The developed software program HOB3D simulates accurately the manufacturing of spur and helical gears, exploiting the modeling and graphics capabilities of a commercial CAD software package. The resulting three-dimensional solid geometrical data, chips and gears provide the whole geometrical information needed for further research, such as prediction of the cutting forces, tool stresses and wear development as well as the optimization of the gear hobbing process.
机译:针对齿轮滚齿过程的准确和逼真的模拟,我们提出了基于三维计算机辅助设计的有效,逼真的近似方法。滚齿运动学直接应用于一个齿轮间隙。每个生成位置都形成一个空间表面路径,该路径将其穿透体积限制到工件中。由滚刀和工作齿轮的相对旋转和位移的组合产生的三维表面路径被用来分割所承受的体积,同时产生切屑和其余的工作齿轮实体几何形状。开发的软件程序HOB3D利用商业CAD软件包的建模和图形功能来精确模拟正齿轮和斜齿轮的制造。由此产生的三维立体几何数据,切屑和齿轮提供了进一步研究所需的全部几何信息,例如切削力,刀具应力和磨损发展的预测以及滚齿工艺的优化。

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