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Dynamic Modeling and Stability Studies on a Retrofitted Drill Spindle Using a Sensor-Based System

机译:基于传感器的系统改造钻孔主轴的动态建模与稳定性研究

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摘要

For the past decade, very few research had been carried out for the utilization of in-house machines such as the drilling, milling for several applications. For simple machining operations like slotting, grooving, etc., the use of CNC end-milling is a costly concern. This paper presents an optimized modeling concept for drill spindles employed for economical milling practices. To this end, a realistic spindle tool unit of a bench drilling machine is first analyzed to obtain the tool-tip frequency responses by both analytical and experimental approaches. To enhance the use of the drill spindles effectively for end-milling operation, its geometrical topology is modified by adding an additional bearing with a collar system, which improves its dynamic rigidity during the milling operation. Using the Timoshenko beam theory with the rotational and shear deformation affects the tool-tip frequency responses are arrived both numerically and experimentally. Further, a portable X-Y table is also fabricated as per the existing dimensions of the drilling machine to carry out the cutting tests for assessing the stability. Analytical stability lobe diagram is plotted for the modified optimal spindle, and further online detection of chatter during the machining process is identified by the sensors such as the accelerometer and microphone. The data acquisition methodology used in this work confirms the relevance of chatter monitoring at the earliest stages.
机译:在过去的十年中,已经为使用内部机器进行了很少的研究,例如钻孔,用于几种应用。为了简单的加工操作,如时隙,凹槽等,CNC端铣削的使用是一种昂贵的问题。本文介绍了用于经济铣削实践的钻孔主轴的优化建模概念。为此,首先分析台式钻孔机的现实主轴工具单元,以通过分析和实验方法获得工具尖端的频率响应。为了增强钻孔轴的使用有效地用于端铣动操作,通过用套环系统添加额外轴承来改变其几何拓扑,这在铣削操作期间提高了其动态刚度。使用Timoshenko光束理论具有旋转和剪切变形影响刀尖频率响应在数字和实验上抵达。此外,根据钻孔机的现有尺寸也制造便携式X-Y表,以执行用于评估稳定性的切割测试。分析稳定性叶片图绘制了改进的最佳主轴,并通过加速度计和麦克风等传感器识别加工过程中抖动的进一步在线检测。本工作中使用的数据采集方法确认了克拉特监测在最早阶段的相关性。

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