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Experimental Study on Cutter Deflection in Multi-axis NC Machining

机译:多轴数控加工中刀具偏斜的实验研究

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In five-axis sculptured surface machining, the effect of cutter deflection on tool orientation planning is important. This paper studied the method for online measurement of cutter deflections along two axes simulation. The measurement equipment was designed and implemented to acquire the displacements of cutter under cutting force online. Acquired data were processed to static values and then compensated by geometric analysis. The cutter deflection conditions were analyzed and divided into different types. The corresponding geometrical equations of the relationship of deflections of measured values and actual values were built. The inter-coupling values were decoupled by solving the geometrical equations. The changing regulations of cutter deflection with tool orientations were analyzed, which could provide support for the study of tool orientation planning. The effectiveness of measurement error compensation was verified by the difference between measured values and actual values of cutter deflections under various tool-workpiece inclination angles. This work could be further employed to optimize tool orientations for suppressing the surface errors due to cutter deflections and achieving higher machining accuracy.
机译:在五轴雕刻曲面加工中,刀具偏斜对刀具方向规划的影响很重要。本文研究了沿两轴模拟在线测量刀具挠度的方法。设计并实现了测量设备,可在线获取切削力下的刀具位移。将获取的数据处理为静态值,然后通过几何分析进行补偿。分析了刀具的偏转条件,并将其分为不同的类型。建立了测量值和实际值的挠度关系的相应几何方程。相互耦合的值通过解几何方程解耦。分析了刀具偏斜随刀具方向的变化规律,可为刀具方向规划的研究提供支持。通过在各种工具-工件倾斜角度下的刀具挠度测量值与实际值之间的差异,验证了测量误差补偿的有效性。这项工作可以进一步用于优化刀具方向,以抑制由于刀具偏斜引起的表面误差,并获得更高的加工精度。

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