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A GENERIC, GEOMETRIC APPROACH TO ACCURATE MACHINING-ERROR PREDICTIONS FOR 3-AXIS CNC MILLING OF SCULPTURED SURFACE PARTS PART Ⅰ MODELING AND FORMULATION

机译:复杂曲面零件的3轴CNC铣削的精确加工误差预测的通用几何方法(第一部分)建模和公式化

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摘要

In CNC machining, machining errors are usually caused by some of the sources such as cutting tool deflection, cutting tool wear, machine tool vibration, improper coolant/lubrication, and negative thermal effect. To increase product accuracy, much research has been carried out on the prediction of machining errors. However, in milling of sculptured surface parts, due to their curved shapes, the geometries of cutting tools do not match the parts' surfaces well if the tools cut along the tool paths on the surfaces in a point-to-point way. As a consequence, machining error is inevitable, even if there is no other source of error in ideal machining conditions. To predict machining errors caused by this tool-surface mismatch, several methods have been proposed. Some of them are simple, and some represent the geometry of machined surfaces using cutter-swept surfaces. But none of these methods is accurate and practical. In this research work, a generic, geometric approach to predicting machining errors caused by the tool-surface mismatch is proposed for 3-axis sculptured surface milling. First, a new geometric model of the furrow formed by an APT tool moving between two neighboring cutter contact (CC) points is built. Second, the mathematical formula of cutting circle envelopes is derived. Then an algorithm for calculating machining errors in each tool motion is provided. Finally, this new approach is applied to two practical parts for the accurate machining-error predictions, and these predictions are then compared to the inaccurate predictions made by two established methods to demonstrate the advantages of this approach. This approach can be used in tool path planning for high precision machining of sculptured surface parts.
机译:在CNC加工中,加工错误通常是由某些原因引起的,例如切削工具偏斜,切削工具磨损,机床振动,不适当的冷却液/润滑以及负面的热效应。为了提高产品精度,已经在预测加工误差方面进行了大量研究。但是,在铣削雕刻的曲面零件时,由于其弯曲的形状,如果刀具以点对点的方式沿曲面上的刀具路径进行切削,则切削刀具的几何形状将与零件的表面不太匹配。结果,即使在理想的加工条件下没有其他误差源,加工误差也是不可避免的。为了预测由该工具表面不匹配引起的加工误差,已经提出了几种方法。它们中的一些很简单,而另一些则使用切削刀具扫掠的表面来表示加工表面的几何形状。但是这些方法都不是准确和实用的。在这项研究工作中,为3轴雕刻曲面铣削提出了一种通用的几何方法来预测由刀具表面不匹配引起的加工误差。首先,建立由APT工具在两个相邻刀具接触(CC)点之间移动形成的沟槽的新几何模型。其次,推导了切割圆形包络线的数学公式。然后提供了一种用于计算每个刀具运动中的加工误差的算法。最后,将这种新方法应用于两个实际零件,以进行准确的加工误差预测,然后将这些预测与两种已建立方法所作的不准确预测进行比较,以证明该方法的优势。该方法可用于对雕刻的表面零件进行高精度加工的刀具路径规划中。

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