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Tool-path generation for sheet metal incremental forming based on STL model with defects

机译:基于缺陷的STL模型的钣金增量成形刀具路径生成

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摘要

Tool-path generation is a key issue in sheet metal incremental forming process, and existing approaches either are prone to computationally expensive or cannot be applied to stereolithography (STL) model including defects. Thus, a new tool-path generation method is presented by adopting the thought of generating cutter-location (CL) data directly from corresponding cutter-contact (CC) data. By analyzing the interference characteristics between fillet-end tool and model surface and considering tangential case and intersection case comprehensively, a discrete computational model is proposed to calculate single-layer interference-free CL contour, instead of computing a precise CL point by checking potential interferences from candidate facet, vertices, and edges, respectively. So this method is more efficient and easier for program implementation. Additionally, a fast recursive search algorithm is developed to identify and extract flat area features, and an efficient 2D invalid loops removal algorithm based on decomposition thought is presented to obtain valid CC contours and CL contours with a near linear time-complexity. Implementation tests prove that the new method is effective and robust for STL model with defects, and tool-path achieved is highly precise. It is also applicable to various tool shapes and suitable for planning various types of tool-paths to meet different SMIF process requirements.
机译:刀具路径的生成是钣金渐进成形过程中的关键问题,现有方法要么容易产生计算开销,要么无法应用于包含缺陷的立体光刻(STL)模型。因此,通过采用直接从相应的刀具接触(CC)数据生成刀具位置(CL)数据的思想,提出了一种新的刀具路径生成方法。通过分析圆角末端工具与模型表面之间的干涉特性并综合考虑切向和相交情况,提出了一种离散计算模型来计算单层无干涉CL轮廓,而不是通过检查潜在的干涉来计算精确的CL点分别来自候选构面,顶点和边缘。因此,该方法更高效,更易于程序实现。此外,开发了一种快速递归搜索算法来识别和提取平坦区域特征,并提出了一种基于分解思想的高效二维无效循环去除算法,以得到具有近似线性时间复杂度的有效CC轮廓和CL轮廓。实施测试表明,该新方法对具有缺陷的STL模型是有效且健壮的,并且实现的刀具路径非常精确。它也适用于各种工具形状,并且适合计划各种类型的工具路径,以满足不同的SMIF工艺要求。

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