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IMAGE BASED SLICING AND TOOL PATH PLANNING FOR HYBRID STEREOLITHOGRAPHY ADDITIVE MANUFACTURING

机译:基于图像的切片和工具路径规划,用于混合立体照相术的增材制造

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Hybrid stereolithograpgy (SLA) process synthesizes the laser scanning based SLA system and mask projection based SLA system. It adopts laser as the energy source for scanning the border of a 2D pattern, whereas a mask image is used to solidify the interior area. By integrating the merits of the two subsystems, the hybrid SLA process can achieve relatively high surface quality without sacrificing the productivity. For the hybrid system, closed polygon contours are required to direct laser scanning, and a binary image is also needed for mask projection. We proposed a novel image based slicing method. This method can convert the 3D model into a series of binary images directly, and each image is corresponding to the cross-session of the model at a specific height. Based on the resultant binary image, we use image processing method to gradually shrink the image. The contours of shrunk image are traced and then restored as polygons to direct the laser spot movement. The final shrunk image will serve as the input for mask projection. The experimental result of several test cases demonstrate that proposed method is substantially more time-efficient than traditional approaches.
机译:混合立体光刻技术(SLA)合成了基于激光扫描的SLA系统和基于掩模投影的SLA系统。它采用激光作为能源来扫描2D图案的边界,而掩模图像则用于固化内部区域。通过整合两个子系统的优点,混合式SLA工艺可以在不牺牲生产率的情况下实现相对较高的表面质量。对于混合系统,需要封闭的多边形轮廓来引导激光扫描,并且还需要二进制图像进行掩模投影。我们提出了一种新颖的基于图像的切片方法。该方法可以将3D模型直接转换为一系列二进制图像,并且每个图像在特定高度对应于模型的交叉会话。基于生成的二进制图像,我们使用图像处理方法逐渐缩小图像。跟踪缩小图像的轮廓,然后将其还原为多边形以引导激光光斑移动。最终缩小的图像将用作蒙版投影的输入。多个测试案例的实验结果表明,所提出的方法比传统方法具有更高的时间效率。

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