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A Novel Method for Automated Tool Path Optimisation for CNC Machining Operations

机译:一种新的CNC加工操作自动刀具路径优化方法

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In this article, a new method for rapid tool movement in CNC machines is presented. Firstly, a single digital camera, installed on the Z-axis, captures the image of the workpiece on the work table. Image processing techniques, implemented using MATLAB, are then used to convert the image into a binary black and white image. This allows the locations of protruding edge sections on the workpiece, which could impede tool movement, to be identified. Quadtree decomposition is then performed on the binary image, and possible paths from the tool current location to its target location are found. These paths are then analysed based on the tool diameter clearance and the distance to the goal, and the shortest path with sufficient tool clearance is selected. A Visual Basic program then converts the selected path into G-code commands that provides instructions to the CNC machine tool such that this path is followed. With this method, the workpiece fixture location would not have to be precise as the imaging system would be able to automatically identify the target location with respect to the tool current location, along with the optimal path to reach it.
机译:在本文中,提出了一种新的CNC机器中快速工具运动方法。首先,安装在Z轴上的单个数码相机,捕获工作台上工件的图像。然后使用使用MATLAB实现的图像处理技术将图像转换为二进制黑白图像。这允许识别工件上的突出边缘部分的位置,该工件可能妨碍工具运动。然后在二进制图像上执行四叉分解,找到从刀具当前位置到其目标位置的可能路径。然后基于刀具直径的间隙和与目标的距离分析这些路径,并且选择具有足够刀具间隙的最短路径。然后,Visual Basic程序将所选路径转换为G-Code命令,为CNC机床提供指令,使得此路径被遵循。利用这种方法,工件固定装置不必精确,因为成像系统能够相对于工具电流位置自动识别目标位置,以及到达其的最佳路径。

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