首页> 外文会议>ASME International Design Engineering Technical Conferences and Computers and Information in Engineering Conference >A GENERIC, GEOMETRIC APPROACH TO ACCURATE MACHINING-ERROR PREDICTIONS FOR 3-AXIS CNC MILLING OF SCULPTURED SURFACE PARTS PART Ⅱ APPLICATIONS AND ANALYSIS
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A GENERIC, GEOMETRIC APPROACH TO ACCURATE MACHINING-ERROR PREDICTIONS FOR 3-AXIS CNC MILLING OF SCULPTURED SURFACE PARTS PART Ⅱ APPLICATIONS AND ANALYSIS

机译:一种通用的几何方法,可以精确加工误差预测3轴CNC铣削雕刻的表面零件Ⅱ部分应用和分析

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As sculptured surfaces are widely used in mechanical design, machining sculptured surface parts accurately is highly demanded in industry; however, it is quite challenging to meet their demand. Due to the geometric complexity of these surfaces, the tool-surface geometric mismatch always causes machining errors when the tool cuts along the tool paths. To prevent surface gouging, where the machining error is greater than the part tolerance, state-of-the-art CAM software usually determines cutter contact (CC) points on the tool paths first, and then simulates the machining to check the errors caused by this tool-surface mismatch. If surface gouging occurs, the CC points are adjusted using the CAM software. But this established method is quite time consuming and sometimes ineffective. To overcome these problems, a new system, based on the accurate predictions of machining errors, is proposed in this research paper for the optimization of CC points on the tool paths. First, two established CC point generation methods, the chordal deviation method and the circular arc approximation method, are introduced; and their limitations are addressed. Second, a sensitivity study of the machining errors with respect to the cutting tools is conducted. Then a system implementing the generic, geometric approach to accurate machining-error predictions is proposed to optimize CC points on the tool paths. Finally, this CC point optimization system is applied to two practical parts to demonstrate its advantages over the two established methods. This proposed work provides a profound understanding of the machining errors caused by the tool-surface mismatch and contributes to tool path planning for 3-axis CNC milling of sculptured surface parts.
机译:由于雕刻表面广泛用于机械设计,因此工业中精确地要求加工雕刻的表面零件;然而,满足他们的需求是非常具有挑战性的。由于这些表面的几何复杂性,工具表面几何不匹配总是在沿工具路径切割工具时导致加工误差。为了防止机加工误差大于零件公差,最先进的CAM软件通常首先确定刀具路径上的切割器接触(CC)点,然后模拟加工以检查由此引起的错误这种工具表面不匹配。如果发生表面刨刨,则使用CAM软件调整CC点。但这种建立的方法非常耗时,有时是无效的。为了克服这些问题,在本研究论文中提出了一种基于加工误差的准确预测的新系统,用于优化工具路径上的CC点。首先,介绍了两个建立的CC点生成方法,介绍了曲线偏差法和圆弧近似方法;并且他们的局限得到了解决。其次,进行了对切削工具的加工误差的灵敏度研究。然后,提出了一种实现通用的系统来精确加工误差预测的系统,以优化工具路径上的CC点。最后,该CC点优化系统应用于两个实际部分,以展示其与两种建立的方法的优点。该拟议的工作提供了对由工具 - 表面失配引起的加工误差的深刻理解,并有助于雕刻表面部件的3轴CNC铣削的刀具路径规划。

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