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A mathematical model for simulating and manufacturing ball end mill

机译:模拟和制造球头立铣刀的数学模型

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The performance of ball end mill cutters in cutting operations is influenced by the configuration of the rake and clearance faces in the ball component. From the mathematical design of a cutting edge curve, the rake face can be defined by the rake angle and the width of the rake face at each cross section along the cutting edge. We propose the fundamental conditions that must govern the engagement between the grinding wheel and the designed rake face in order to avoid interference while machining a ball end mill. As a result, a new mathematical model for determining the wheel location and a software program for simulating the generation of the rake face of a ball end mill are proposed. In addition, methods for grinding the clearance face in both concave and flat-shapes are introduced. The flute surface generated by a disk wheel during the grinding process is determined on the basis of a tangency condition. The results of the experiment and the simulation are compared to validate the proposed model.
机译:球头立铣刀在切割操作中的性能受球组件中前刀面和游隙面的配置影响。根据切削刃曲线的数学设计,前刀面可以由前刀角度和沿切削刃的每个横截面处前刀面的宽度定义。我们提出了必须控制砂轮与设计的前刀面之间的啮合的基本条件,以避免在加工球头立铣刀时产生干扰。结果,提出了一种用于确定车轮位置的新数学模型和一种用于模拟球头立铣刀前刀面生成的软件程序。另外,介绍了用于以凹形和扁平形磨削间隙面的方法。圆盘轮在磨削过程中产生的凹槽表面是根据切线条件确定的。比较实验结果和仿真结果以验证所提出的模型。

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