首页> 外文期刊>CIRP Journal of Manufacturing Science and Technology >Generation of safe tool-path for 2.5D milling/drilling machine-tool using 3D ToF sensor
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Generation of safe tool-path for 2.5D milling/drilling machine-tool using 3D ToF sensor

机译:使用3D ToF传感器为2.5D铣削/钻孔机床生成安全的刀具路径

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摘要

The complexity of multi-axis, milling and drilling CNC machines and the demand of high precision for complex parts production increase the importance of safe and efficient tool-paths generation during manufacturing. In these machines, multi-tool working in the same area, or static un-programed machine elements, such as fixtures, another work-part may cause collision problems. It is important to know the collision risks in advance during production in order to avoid unexpected production stops, and machinery damage. This research study is focusing on automatic collision detection and avoidance for safe non-functional (rapid) tool-path generation in a static 2.5D milling or drilling machining environment, as an initial step toward complex, dynamic multi-axis machine-tool manufacturing. A 3D vision based Time of Flight (ToF) sensor provides the depth information about the manufacturing scene that are exploited by the method presented for taking an effective decision to automatically detect and avoid collisions in order to achieve safe tool-path during production. The concept presented opens up new areas for research and application of ToF camera in a CNC manufacturing environment for tool-path planning. The results obtained are for traversal safe tool-paths in a static environment, which will be adapted to more complex and dynamic real machining scenarios by integrating it with STEP-NC technology in future.
机译:多轴,铣削和钻孔CNC机床的复杂性以及对复杂零件生产的高精度要求增加了在制造过程中安全有效地生成刀具路径的重要性。在这些机器中,在同一区域中使用多工具或静态的未编程机器元素(例如固定装置),另一个工件可能会导致碰撞问题。重要的是要事先知道生产过程中的碰撞风险,以避免意外的生产中断和机械损坏。这项研究的重点是在静态2.5D铣削或钻孔加工环境中自动碰撞检测和避免安全非功能性(快速)刀具路径生成,这是迈向复杂,动态多轴机床制造的第一步。基于3D视觉的飞行时间(ToF)传感器可提供有关制造现场的深度信息,该深度信息可通过提出的方法加以利用,以做出有效的决定来自动检测并避免碰撞,从而在生产过程中实现安全的刀具路径。提出的概念为在数控加工环境中进行刀具路径规划的ToF相机的研究和应用开辟了新的领域。所获得的结果适用于在静态环境中的遍历安全刀具路径,将来通过将其与STEP-NC技术集成,将适用于更复杂和动态的实际加工场景。

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