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The optimization of printed circuit board manufacturing by improving the drilling process productivity

机译:通过提高钻孔工艺生产率来优化印刷电路板制造

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With the rapid growth of printed circuit board technology today, board density is becoming an important concern. In every aspect of production, productivity and cost are crucial matters. The aim of this research is the optimization of printed circuit board manufacturing by improving the process productivity. Attention was focused on reducing tool path length and processing time. The paper is divided in two main parts. First part presents an original hybrid heuristic algorithm, for solving traveling salesman problem. The algorithm is based on the structure of a general optimization procedure, and is used to reduce the tool path length. Also, it is developed a practical mathematical model for printed circuit board processing time calculation. The case study on the second part of the paper shows basically the efficient use of the above algorithm in finding the optimal length of the tool path. It is shown the influence of stacked printed circuit board on process productivity. By means of its concepts management, the paper represent a real guide for optimal design of printed circuit board drilling technology.
机译:随着当今印刷电路板技术的迅速发展,板密度正成为一个重要的问题。在生产的每个方面,生产力和成本都是至关重要的。这项研究的目的是通过提高工艺生产率来优化印刷电路板的制造。注意力集中在减少刀具路径长度和缩短加工时间上。本文分为两个主要部分。第一部分提出了一种原始的混合启发式算法,用于解决旅行商问题。该算法基于一般优化过程的结构,用于减少刀具路径长度。此外,它还为印刷电路板处理时间的计算开发了实用的数学模型。本文第二部分的案例研究基本上表明了上述算法在寻找最佳刀具路径长度方面的有效利用。示出了堆叠的印刷电路板对工艺生产率的影响。通过其概念管理,本文代表了印刷电路板钻孔技术最佳设计的真实指南。

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