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Machining Accuracy Analysis and Error Compensation Approach with the Effects of Cutting Tool Tip's Radius in NC Lathe Machining Process

机译:加工精度分析及误差补偿方法,借助于刀具尖端半径在数控车床加工过程中的影响

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With the wide use of NC, higher accuracy in machining is increasingly required for premium mechanical components. However, machining accuracy is affected by many factors, especially by the way of the tool positioning and the geometry of the tool nose. This paper, based on the actual NC lathe tool and turning, generalized and abstracted the machining process by establishing the imaginary tool nose and the tool tip's arc centre as the cutter-contact point, and analyzed systematically the influence of the factors, including the way of the tool positioning, the nose, and the tool tip's arc radius, on the machining accuracy when machining transverse, cylindrical-surface, circular cone, quarter-circular and some surfaces can be expressed by formula etc.. Derived the error calculating formulas for turning in different surfaces. Put forward two error compensation methods, direct calculating method and enveloping method of error compensation. Experiments were carried out and results have shown that the two error compensation methods can considerably reduce the machining error in NC turning operations.
机译:随着NC的广泛使用,高级机械部件越来越需要加工的更高精度。然而,加工精度受到许多因素的影响,特别是通过工具定位和工具鼻的几何形状的方式。本文基于实际的NC车床工具和转动,广义和摘要加工过程,通过建立假想的工具鼻子和工具尖的弧中心作为刀具接触点,系统地分析因素的影响,包括方式在工具定位,鼻子和工具尖端的电弧半径上,在加工横向,圆柱形表面,圆锥,四分之一圆形和一些表面时的加工精度可以用公式等。推导出误差计算公式转入不同的表面。提出了两种误差补偿方法,直接计算方法和误差补偿方法。进行实验,结果表明,两种误差补偿方法可以大大降低NC转动操作中的加工误差。

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