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Spiral Bevel Gears Face Roughness Prediction Produced by CNC End Milling Centers

机译:CNC立铣刀中心生产的螺旋锥齿轮端面粗糙度预测

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摘要

The emergence of multitasking machines in the machine tool sector presents new opportunities for the machining of large size gears and short production series in these machines. However, the possibility of using standard tools in conventional machines for gears machining represents a technological challenge from the point of view of workpiece quality. Machining conditions in order to achieve both dimensional and surface quality requirements need to be determined. With these considerations in mind, computer numerical control (CNC) methods to provide useful tools for gear processing are studied. Thus, a model for the prediction of surface roughness obtained on the teeth surface of a machined spiral bevel gear in a multiprocess machine is presented. Machining strategies and optimal machining parameters were studied, and the roughness model is validated for 3 + 2 axes and 5 continuous axes machining strategies.
机译:多任务机床在机床领域的出现为这些机床中的大型齿轮加工和短批量生产提供了新的机遇。然而,从工件质量的角度来看,在常规机器中使用标准工具进行齿轮加工的可能性代表了一项技术挑战。为了达到尺寸和表面质量要求,需要确定加工条件。考虑到这些考虑因素,研究了为齿轮加工提供有用工具的计算机数控(CNC)方法。因此,提出了一种用于预测在多工序机加工的螺旋锥齿轮的齿表面上获得的表面粗糙度的模型。研究了加工策略和最佳加工参数,并针对3 + 2轴和5个连续轴的加工策略验证了粗糙度模型。

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