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Development of a Mechanistic Force Model for CNC Drilling Process Simulation

机译:CNC钻井过程模拟机械力模型的发展

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This paper presents a methodology to obtain force information during CNC machining simulation for drilling process especially when the workpiece is inclined to the drill axis or has internal cavities. First, a mechanistic force model is introduced to relate drilling forces to drill geometry and drilling process parameters. Next, an algorithm is introduced to calculate contact boundary between drill point and workpiece especially when the workpiece has irregular shape for each step. Finally, maximum drilling forces for each drilling step are obtained by applying the mechanistic force model to the calculated contact boundary. The model is demonstrated on and validated with designed cases. The results show that the mechanistic force model can predict the drilling forces accurately with varying drill geometry and process parameters and the model can deal with drilling into irregular workpiece.
机译:本文提出了一种方法来获得用于在钻井过程中的CNC加工模拟期间获得力信息,特别是当工件倾斜到钻孔或具有内腔时。首先,引入机械力模型以涉及钻孔力来钻孔几何形状和钻井过程参数。接下来,引入一种算法以计算钻点与工件之间的接触边界,特别是当工件对于每个步骤具有不规则形状时。最后,通过将机械力模型施加到计算的接触边界来获得每个钻孔步骤的最大钻孔力。该模型被证明并用设计案例进行了验证。结果表明,机械力模型可以用不同的钻孔几何形状和工艺参数准确地预测钻孔力,并且该模型可以处理钻入不规则的工件。

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