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Experimental Investigation of Ultrasonic-Assisted Milling of Soda Glass Using Factorial Design of Experiments

机译:实验阶段设计超声波玻璃超声波辅助研磨的实验研究

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Soda glass is a difficult-to-machine material widely used in industry. In this work, ultrasonic-assisted milling (UAM) of soda glass is investigated and compared to conventional milling (CM). Statistically designed experiments are conducted with and without cutting fluid at different levels of the spindle speed, feedrate, depth of cut, and tool particle-concentration. The significant factors and their interactions are identified by modelling the process parameters and the corresponding responses in terms of cutting forces and moment. Results show a reduction of axial cutting force and moment at higher spindle speed and lower feedrate and depth of cut. The application of ultrasonic vibration-assistance and cutting fluid demonstrates a significant effect on the axial cutting force and moment.
机译:苏打玻璃是一种难以用于工业的难以换的材料。在这项工作中,研究了超声波辅助铣削(UAM)苏打玻璃和常规研磨(CM)。统计设计的实验在轴速度,进给率,切割深度和工具粒子浓度的不同水平下进行,而无需切割液。通过在切割力和时刻建模过程参数和相应的反应来识别重要因素及其相互作用。结果表明,轴向切割力和较高的主轴速度和较低的进给和切割深度的瞬时的减小。超声波振动辅助和切削液的应用表明对轴向切削力和时刻的显着影响。

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