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Modeling methods for managing raw material compositional uncertainty in alloy production

机译:管理合金生产中原材料成分不确定性的建模方法

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Operational uncertainties create disincentives for use of recycled materials in metal alloy production. One that greatly influences remelter batch optimization is variation in the raw material composition, particularly for secondary materials. Currently, to accommodate compositional variation, firms commonly set production targets well inside the window of compositional specification required for performance reasons. Window narrowing, while effective, does not make use of statistical sampling data, leading to sub-optimal usage of recycled materials. This paper explores the use of a chance-constrained optimization method, which allows explicit consideration of statistical information on composition. The framework and a case study of cast and wrought production with available scrap materials are presented. Results show that it is possible to increase the use of recycled material without compromising the likelihood of batch errors, when using this method compared to conventional window narrowing. This benefit of the chance-constrained method grows with increase in compositional uncertainty and is driven by scrap portfolio diversification. (C) 2007 Elsevier B.V. All rights reserved.
机译:运营不确定性不利于在金属合金生产中使用再生材料。影响重熔炉批次优化的一个因素是原料成分的变化,特别是对于辅助材料而言。当前,为了适应成分变化,公司通常出于性能原因,将生产目标设定在适当的成分规格窗口之内。窗口缩小虽然有效,但没有利用统计采样数据,导致回收材料的使用不足。本文探讨了机会受限的优化方法的使用,该方法可以明确考虑构成方面的统计信息。介绍了使用可用废料进行铸造和锻造生产的框架和案例研究。结果表明,与传统的窗口缩小相比,使用这种方法可以增加回收材料的使用,而不会影响批量错误的可能性。机会受限方法的好处随着成分不确定性的增加而增长,并受到废钢产品组合多元化的推动。 (C)2007 Elsevier B.V.保留所有权利。

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