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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Wide roller guide machining by four-axis machine tools for cylindrical cams
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Wide roller guide machining by four-axis machine tools for cylindrical cams

机译:用四轴机床对圆柱凸轮进行宽滚子导轨加工

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A new regenerating method for cutter location paths using smaller tools to produce cylindrical cams is presented. Based on the expected motions, cams are used in various applications in the mechanism. For a cylindrical cam, the roller follower operates in a groove cut on the periphery of an end mill with the diameter the same as that of the roller. Using the conventional method, a 2D expanding diagram, restricts flexibility in choosing cutting tools for a wide roller guide. The manufacture of cylindrical cams is complicated and precise work that depends on the generating method and types of machine tools employed. Since the guiding curve cannot be offset exactly along the cylindrical surface, approximating problems occur. Though toolpath generation using the same size tools as the rollers is applied in practice, research into NC programs using unequal tools to meet high precision requirements is lacking. This paper presents a system for the design and manufacturing of cylindrical cams to cut the roller groove. In the proposed system, a new interference-free toolpath 3D regenerating method was applied to four-axis machining of a wide roller guide. Eleven types of follower motion for a translating and oscillating follower are considered. This proposed 3D offset-based generating method can regenerate toolpaths for standard cutting tools instead of larger ones and is implemented on a CAM system. Examples with wider grooves are given to demonstrate its effectiveness.
机译:提出了一种使用较小工具生产圆柱凸轮的刀具定位路径的新再生方法。基于预期的运动,凸轮在机械装置的各种应用中使用。对于圆柱凸轮,滚子从动件在端铣刀圆周上切出的直径与滚子直径相同的凹槽中操作。使用常规方法(二维展开图)会限制为宽滚子导轨选择切削工具的灵活性。圆柱凸轮的制造是复杂而精确的工作,具体取决于生成方法和所用机床的类型。由于引导曲线不能精确地沿圆柱表面偏移,因此会出现近似问题。尽管在实践中使用了与滚轮相同尺寸的刀具来生成刀具路径,但仍缺乏对使用不等刀具来满足高精度要求的NC程序的研究。本文介绍了一种用于设计和制造用于切割滚子凹槽的圆柱凸轮的系统。在提出的系统中,将一种新的无干扰刀具路径3D再生方法应用于宽滚子导轨的四轴加工。考虑了平移和摆动跟随器的十一种跟随器运动。提出的基于3D偏移的生成方法可以为标准切削刀具(而不是较大的切削刀具)重新生成刀具路径,并在CAM系统上实现。给出了带有更宽凹槽的示例以证明其有效性。

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