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首页> 外文期刊>Journal of manufacturing science and engineering: Transactions of the ASME >(021001)An Accurate Method for Determining Cutter-Workpiece Engagements in Five-Axis Milling With a General Tool Considering Cutter Runout
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(021001)An Accurate Method for Determining Cutter-Workpiece Engagements in Five-Axis Milling With a General Tool Considering Cutter Runout

机译:(021001)考虑刀具跳动的一般工具,一种准确的方法,用于确定五轴铣削中的刀具工件啮合

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摘要

Cutter runout is universal and inevitable in milling process and has a direct impact on the shape of the in-process geometry. However, most of the works on the cutter-workpiece engagement (CWE) extraction neglect the cutter runout impact, which will result in a loss of precision. In this paper, an accurate method is presented to obtain CWE boundaries in five-axis milling with a general tool integrating the cutter runout impact. First, each flute's rotary surface is analytically derived. Then, by intersecting the section circle corresponding to the current flute with each of the rotary surface formed by previous flutes, a set of candidate feasible contact arcs (CFCAs) are obtained, and the valid feasible contact arc (VFCA) is defined as the common intersection of these CFCAs. Next, by intersecting the VFCA with the workpiece surfaces, the partial arc which locates inside the workpiece volume is extracted as the engagement arc. Finally, the CWE map is plotted by mapping a set of engagement arcs to a 2D space. To validate the proposed method, the CWE maps withlwithout integrating the cutter runout impact in five-axis milling of an axial compressor blisk are extracted and compared. The results reveal that the shape of CWE boundaries is changed a lot owing to the cutter runout impact. A cutting force comparison experiment has been carried out to show that the proposed method will lead to higher prediction accuracy especially in the finish milling process with low immersion angle.
机译:铣刀跳动在铣削过程中是通用和不可避免的,直接影响工艺几何形状。然而,刀具工件啮合(CWE)提取的大部分工作忽略了刀具跳动撞击,这将导致精度损失。在本文中,提出了一种准确的方法,以在五轴研磨中获得CWE边界,其具有整合切割器跳动撞击的一般工具。首先,分析每个长笛的旋转表面。然后,通过将对应于电流长笛与先前凹槽形成的每个旋转表面相交的截面圆,获得了一组候选可行的接触电弧(CFCAs),并且有效的可行性接触弧(VFCA)定义为常见这些CFCA的交叉点。接下来,通过将VFCA与工件表面交叉,作为接合弧提取在工件体积内定位的部分弧。最后,通过将一组接合弧映射到2D空间来绘制CWE映射。为了验证所提出的方法,提取并比较了在轴向压缩机闪烁的五轴铣削中集成刀具跳动冲击的CWE映射。结果表明,由于切割器跳动撞击,CWE边界的形状发生了很大变化。已经进行了切割力比较实验,表明该方法将导致更高的预测精度,特别是在浸入角度的终结铣削过程中。

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