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Development of a tool life prediction model for plaster machining

机译:石膏加工刀具寿命预测模型的开发

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This paper reviews the developments of the ongoing research at the Staffordshire University into the application of Computer Numerical Control (CNC) machining techniques to produce plaster moulds and prototypes. The experimental work was carried out on plaster using conventional cutting tools (slot-mills), using a six-axis anthropomorphic robot. Based on the tool wear (Flank Wear - VB) measurements, an analysis of the cutting tool failure was undertaken. This work had comprised of three phases. Initially, an experimental screening was carried out in order to identify the major important criteria regarding the cutting tool wear problem. The second phase corresponded to the development of a tool life prediction model for the machining of the plaster material. The calculations were carried out using the response surface methodology and the 2~3 factorial design. The experimental results showed that the cutting speed is the most significant factor to the tool wear process. Finally, results developed from a theoretical analysis with the tool life prediction model were compared with the experimental results. This test demonstrates the validity of the theoretical analysis and showed how the optimisation process can be performed using this methodology.
机译:本文回顾了斯塔福德郡大学正在进行的研究的进展,这些研究在应用计算机数控(CNC)加工技术生产石膏模具和原型方面的应用。实验工作是使用六轴拟人化机器人,使用常规切割工具(铣刀)在石膏上进行的。基于刀具磨损(Flank Wear-VB)测量,对刀具故障进行了分析。这项工作包括三个阶段。最初,进行了实验筛选,以识别有关切削刀具磨损问题的主要重要标准。第二阶段对应于用于石膏材料加工的刀具寿命预测模型的开发。计算使用响应面方法和2〜3阶乘设计进行。实验结果表明,切削速度是影响刀具磨损过程的最重要因素。最后,将使用刀具寿命预测模型进行的理论分析得出的结果与实验结果进行了比较。该测试证明了理论分析的有效性,并展示了如何使用这种方法来执行优化过程。

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