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Radial and tangential forces, tool motion, and the formation of lobed holes in drilling

机译:径向和切向力,工具运动,以及钻孔中叶片的形成

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Out-of-round holes are formed as a result of tool motion during drilling. Tool vibration is driven by radial and tangential forces on the primary and secondary cutting edges. These forces in turn depend on the chip loads on each cutting edge, which in turn depend on the position of the tool at the current time and at the time of the previous tooth passage. A preliminary analysis based on balancing the cutting forces and the bending forces on the tool, shows that the characteristic frequencies of motion of the tool in the tool frame are near 3/rev, 5/rev, 7/rev, etc., (corresponding to 2/rev, 4/rev, 6/rev) in the workpiece frame. These motions are consistent with the tool motion and hole form errors commonly observed on the shop floor. We will describe procedures for measuring the dependence of cutting forces on chip load, the development of simple equations for lateral motion of the tool, and solutions for the tool's behavior.
机译:由于钻井过程中的工具运动而形成圆孔。工具振动由初级和二次切削刃上的径向和切向力驱动。这些力依次依赖于每个切削刃上的芯片载荷,这又取决于工具在当前时间和先前牙齿通道时的位置。基于平衡切割力的初步分析和工具上的弯曲力,示出了工具框架中工具的运动的特性频率接近3 / Rev,5 / Rev,7 / Rev等(对应)工件框架中的2 / Rev,4 / Rev,6 / Rev)。这些动作与商店地板上通常观察到的工具运动和孔形式误差一致。我们将描述测量切削力对芯片负荷的依赖性的程序,该工具横向运动的简单方程的开发,以及用于工具行为的解决方案。

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