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An analytical approach for machining thin-walled workpieces

机译:一种加工薄壁工件的分析方法

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An analytical approach is developed to predict the dynamic chip thickness variation in ending milling of thin-walled workpieces. The proposed model considers the mechanism of calculating the stiffness of removed material by the end-mill from the overall stiffness of the workpiece to work out the changing stiffness of the workpiece which in turn is used to determine the displacement occurring. The displacement of the workpiece influences the radial depth of cut and thus yields a dynamic variation. The generalized model of the volume of removed material is computed by considering the discrete axial depth of cut, the radial depth of cut and the circumferential section of the tool radius contact for each tool step taken. The features of this model cater for the helical tool geometry used. The stiffness of removed material is updated by subtraction from the overall stiffness of workpiece. The overall stiffness of the wall is updated by considering the removed material at each time step. The feedback of the displacement amplitude is linked with a cutting forces model to address the influence of the dynamic displacement of the workpiece from the acting chip load. The cutting forces is modeled based on the Oxley variable flow stress machining theory. The predictive capabilities of the proposed model are verified with the experimental results. The comparison of the results is encouraging and reasonable correlation is achieved.
机译:分析的方法被开发来预测结束薄壁工件的铣削动态芯片的厚度变化。该模型考虑了通过从工件的整体刚度的立铣刀计算移除的材料的刚度制定出其又被用于确定发生的位移在工件的改变刚度的机制。工件的位移影响切口的径向深度,因此产生一个动态变化。去除的材料的体积的广义模型通过考虑切割的离散的轴向深度,切口的径向深度和取每个工具步骤刀具半径接触的圆周部分计算的。对于螺旋刀具几何这种模式迎合的功能使用。除去的材料的刚度由减法从工件的整体刚度更新。壁的整体刚度是通过考虑在每个时间步骤中的去除的材料更新。位移幅度的反馈与切割力模型,以解决从作用芯片负载工件的动态位移的影响相关。切削力是基于奥克斯利可变流量压力加工理论模型。该模型的预测能力进行了验证实验结果。结果的比较是令人鼓舞的,合理的相关性来实现的。

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