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A Practical Algorithm for Ball-end Mill using a Five-axis CNC Grinding Machine

机译:一种使用五轴CNC磨床的球形磨机的实用算法

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A novel ball-end mill manufacturing algorithm of 5-Axis CNC Machining grinder and the simulation test of the algorithm based on a CAD system are presented in this paper. In order to obtain an accurate algorithm of a ball end mill machining, a mathematical model is needed so that the shape of the mill can be parameterized. Therefore, the mathematical model can be adjusted based on that model. Each of the processing parts has its own position in the local coordinates system. Then, with the coordinates determined by the mathematical model, the partial coordinate and the relative movement between the grinding wheel and the barstock in the local coordinates system can be calculated. So that the 5-Axis manufacturing coordinate can be confirmed by the partial coordinate and the structural parameter. If we input these data and make the 3D-CAD simulation before the machinery manufacture, the algorithm can be tested effectively.
机译:本文提出了一种新型的5轴CNC加工研磨机的滚珠式轧机制造算法和基于CAD系统的算法的仿真试验。为了获得准确的球形铣刀加工的准确算法,需要一种数学模型,使得磨机的形状可以参数化。因此,可以基于该模型来调整数学模型。每个处理部件在本地坐标系统中具有自己的位置。然后,利用由数学模型确定的坐标,可以计算粉碎轮和局部坐标系统中的砂轮和桥接之间的部分坐标和相对运动。因此,可以通过部分坐标和结构参数来确认5轴制造坐标。如果我们在机械制造之前输入这些数据并使3D CAD模拟,则可以有效地测试算法。

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