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CNC double spiral tool-path generation based on parametric surface mapping

机译:基于参数曲面映射的CNC双螺旋刀具路径生成

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摘要

High-speed machining (HSM) has been an important method for machining complex parametric surface. Tool-path planning for HSM has a significant impact on processing efficiency and surface quality. A new double spiral tool-path generation algorithm for HSM is proposed in this paper. First, the isothermal lines which satisfy the machining parameters in the mapping parametric domain are computed by means of constructing a thermal conductivity model and solving partial differential equations (PEDs). Furthermore, a smoothness optimization method is proposed to improve the smoothness of the isothermal lines and avoid taking up too much memory. Then, the mapping rules are constructed and the trajectory is planned out in the standard parametric domain in order to generate double spiral trajectory in the corresponding parametric domain. Finally, the trajectory is mapped onto the parametric surface to obtain the tool-paths, and the tool-paths linking method is planned for complex multi-domains. This method can realize the precision milling of complicated parametric surface without tool retractions, and meanwhile it improves the uniformity of the tool-paths and machining efficiency. Our method has been experimented in several simulations and validated successfully through the actual machining of a complicated pocket. The results indicate that this method is superior to other existing machining methods, and it can realize HSM of complicate-shaped pocket based on parametric surface. (C) 2015 Elsevier Ltd. All rights reserved.
机译:高速加工(HSM)已成为加工复杂参数曲面的重要方法。 HSM的刀具路径规划对加工效率和表面质量有重大影响。提出了一种新的HSM双螺旋刀具路径生成算法。首先,通过构建导热系数模型并求解偏微分方程(PED),计算出在映射参数域中满足加工参数的等温线。此外,提出了一种平滑度优化方法,以提高等温线的平滑度并避免占用过多内存。然后,构造映射规则并在标准参数域中规划轨迹,以便在相应的参数域中生成双螺旋轨迹。最后,将轨迹映射到参数化曲面上以获得刀具路径,并针对复杂的多域规划了刀具路径链接方法。该方法可以实现复杂参数曲面的精密铣削而无需退刀,同时提高了刀具轨迹的均匀性和加工效率。我们的方法已经在多个模拟中进行了实验,并通过对复杂型腔的实际加工成功进行了验证。结果表明,该方法优于现有的其他加工方法,可以基于参数化曲面实现复杂形腔的HSM。 (C)2015 Elsevier Ltd.保留所有权利。

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