首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Generating tool-path with smooth posture change for five-axis sculptured surface machining based on cutter's accessibility map
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Generating tool-path with smooth posture change for five-axis sculptured surface machining based on cutter's accessibility map

机译:基于刀具的可及性图生成具有平滑姿态变化的刀具路径,用于五轴雕刻表面加工

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摘要

In five-axis high speed milling, one of the key requirements to ensure the quality of the machined surface is that the tool-path must be smooth, i.e., the cutter posture change from one cutter contact point to the next needs to be minimized. This paper presents a new method for generating five-axis tool-paths with smooth tool motion and high efficiency based on the accessibility map (A-map) of the cutter at a point on the part surface. The cutter's A-map at a point refers to its posture range in terms of the two rotational angles, within which the cutter does not have any interference with the part and the surrounding objects. By using the A-map at a point, the posture change rates along the possible cutting directions (called the smoothness map or S-map) at the point are estimated. Based on the A-maps and S-maps of all the sampled points of the part surface, the initial tool-path with the smoothest posture change is generated first. Subsequently, the adjacent tool-paths are generated one at a time by considering both path smoothness and machining efficiency. Compared with traditional tool-path generation methods, e.g., iso-planar, the proposed method can generate tool-paths with smaller posture change rate and yet shorter overall path length. The developed techniques can be used to automate five-axis tool-path generation, in particular for high speed machining (finish cut).
机译:在五轴高速铣削中,确保加工表面质量的关键要求之一是刀具路径必须平滑,即,必须将从一个刀具接触点到下一个刀具接触点的刀具姿态变化最小化。本文提出了一种基于零件表面某一点的刀具可达性图(A-map)生成具有平滑刀具运动和高效率的五轴刀具路径的新方法。刀具的A图在某一点是指其在两个旋转角度范围内的姿态范围,在该范围内,刀具对零件和周围物体没有任何干扰。通过在某个点使用A-map,可以估算该点沿可能的切割方向的姿态变化率(称为平滑度图或S-map)。基于零件表面所有采样点的A-map和S-map,首先生成姿态变化最平滑的初始刀具路径。随后,通过同时考虑路径平滑度和加工效率,一次生成一个相邻的刀具路径。与诸如等平面的传统工具路径生成方法相比,该方法可以生成姿态变化率较小而总路径长度更短的工具路径。所开发的技术可用于自动生成五轴刀具路径,特别是用于高速加工(精加工)时。

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