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Force-Controlled Analysis Tool for Optimization of Precision CNC Grinding Processes

机译:用于优化精密CNC研磨过程的力控制分析工具

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摘要

While setting up grinding processes for optics fabrication, the optimum tool and process parameters have to be chosen. Unfortunately, datasheets of commercial grinding tools contain only information about grit type and size, bond material, tool shape etc., leaving out any information about process parameters to be applied or tool lifetime or performance. For this reason, tools and machining parameters are commonly adjusted during iterative experimental test runs using actual workpieces from production batches which is time consuming, expensive and without guarantee that the optimum set of machining parameters are achieved. In this paper we present a method to determine grinding tools process window for a given workpiece material. That way, ideal machining parameters can be determined offline for maximum reliability and productivity. In addition, the gained data provides the basis to identify the most suitable grinding tool for the desired application.
机译:在为光学制造设置研磨过程的同时,必须选择最佳工具和工艺参数。不幸的是,商业磨削工具的数据表仅包含有关砂砾类型和尺寸,粘合材料,刀具形状等的信息,留下了有关应用程序参数的任何信息或工具寿命或性能。因此,在迭代实验试验期间使用从生产批次的实际工件运行,迭代工件在耗时,昂贵且不保证实现了最佳的加工参数,而不保证实现了工具和加工参数。在本文中,我们提出了一种确定给定工件材料的研磨工具处理窗口的方法。这样,可以离线确定理想的加工参数以获得最大可靠性和生产率。此外,获得的数据提供了识别最合适的研磨工具的基础,以获得所需的应用。

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