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Part segmentation by superquadric fitting-a new approach towards automatic design of cooling system for plastic injection mould

机译:通过二次拟合进行零件分割-一种用于注塑模具冷却系统自动设计的新方法

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摘要

The cooling system of an injection mould plays an important role in determining the productivity of the moulding process and the quality of the moulded part. Previous research has mainly focused on the analysis and optimization of cooling systems, but techniques that can be used for the automatic design of cooling systems have not been well investigated. In a previous project, we developed an automatic system that can generate preliminary designs for cooling systems. A key component of that automatic system is an algorithm that segments a part with a complex shape into simpler shape portions to facilitate the subsequent design synthesis process. This segmentation method, based on a feature recognition technique, has limited geometric coverage. In this research, a new method of part segmentation with an extended geometric coverage is developed. This method first estimates the regions where segmentation boundaries exist, and then refines the regions until they can be used to segment the part into separate portions. When this new part segmentation algorithm is integrated into an automatic design system, the system can generate cooling system designs for a larger class of plastic parts.
机译:注塑模具的冷却系统在决定成型过程的生产率和成型零件的质量方面起着重要作用。先前的研究主要集中在冷却系统的分析和优化上,但是尚未对可用于冷却系统自动设计的技术进行深入研究。在上一个项目中,我们开发了一个自动系统,该系统可以生成冷却系统的初步设计。该自动系统的关键组件是一种算法,该算法将具有复杂形状的零件分割为更简单的形状部分,以利于后续的设计综合过程。基于特征识别技术的这种分割方法具有有限的几何覆盖范围。在这项研究中,开发了一种具有扩展的几何覆盖率的零件分割的新方法。此方法首先估计存在分割边界的区域,然后细化区域,直到可以将其用于将零件分割为单独的部分为止。当这种新的零件分割算法集成到自动设计系统中时,该系统可以为更大种类的塑料零件生成冷却系统设计。

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