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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >A hybrid approach for automatic parting curve generation in injection mold design
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A hybrid approach for automatic parting curve generation in injection mold design

机译:注塑模具设计中自动分离曲线发电的混合方法

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摘要

Automatic parting curve generation plays an important role in the realization of automatic injection mold design. We propose a hybrid visibility-based and graph-based approach to generate the parting curves of a solid part automatically. The approach consists of three steps: (i) construct a graph representation of the solid part, (ii) recognize mold piece region, and (iii) generate parting curve. In step (i), the surface visibility and edge convexity-concavity are attached to the graph. Visibility determination algorithms for various surface types and edge convexity-concavity calculation methods are also discussed. In step (ii), part surfaces are classified into concave-edge regions, inner-loop regions, and isolated surfaces. Concave-edge regions are decomposed into sub concave-edge regions based on graph-based algorithms that have linear time complexity. Concave-edge regions, inner-loop regions, and isolated surfaces are assessed to extract the cavity region, core region, and undercut regions. In step (iii), the boundary edges of each region are extracted to form parting curves. The approach has linear time complexity and is effective for complex solid products with planar surfaces, quadric surfaces, and free-form surfaces. Finally, two case studies are provided to validate the proposed approach.
机译:自动分离曲线产生在实现自动注射模具设计中起着重要作用。我们提出了一种基于混合可视性和基于图形的方法,可以自动生成固体部分的分段曲线。该方法由三个步骤组成:(i)构造固体部分的图表表示,(ii)识别模块区域,(iii)产生分离曲线。在步骤(i)中,表面可视性和边缘凸起 - 凹陷附加到图表上。还讨论了各种表面类型和边缘凸起 - 凹陷计算方法的可见性确定算法。在步骤(ii)中,零件表面分为凹入边缘区域,内环区域和隔离表面。基于基于图形的算法,凹入边缘区域被分解成副凹入边缘区域,该算法具有线性时间复杂度。评估凹面区域,内环区域和隔离表面以提取腔区域,核心区域和底切区域。在步骤(iii)中,提取每个区域的边界边缘以形成分割曲线。该方法具有线性时间复杂性,并且对于具有平面表面,二次表面和自由形状的复杂固体产品是有效的。最后,提供了两种案例研究以验证提出的方法。

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