贺东风, 于港, 徐安军, 吴鹏飞, 田乃媛. 基于精准设计的甘特图组合产能核算[J]. 工程科学学报, 2010, 32(12): 1618-1622. DOI: 10.13374/j.issn1001-053x.2010.12.017
引用本文: 贺东风, 于港, 徐安军, 吴鹏飞, 田乃媛. 基于精准设计的甘特图组合产能核算[J]. 工程科学学报, 2010, 32(12): 1618-1622. DOI: 10.13374/j.issn1001-053x.2010.12.017
HE Dong-feng, YU Gang, XU An-jun, WU Peng-fei, TIAN Nai-yuan. Productivity calculation using Gantt chart combination based on precise design[J]. Chinese Journal of Engineering, 2010, 32(12): 1618-1622. DOI: 10.13374/j.issn1001-053x.2010.12.017
Citation: HE Dong-feng, YU Gang, XU An-jun, WU Peng-fei, TIAN Nai-yuan. Productivity calculation using Gantt chart combination based on precise design[J]. Chinese Journal of Engineering, 2010, 32(12): 1618-1622. DOI: 10.13374/j.issn1001-053x.2010.12.017

基于精准设计的甘特图组合产能核算

Productivity calculation using Gantt chart combination based on precise design

  • 摘要: 基于钢铁流程的精准设计思想,提出了甘特图组合产能核算的两步设计法.首先依据产品大纲,利用传统设计方法确定初始流程;然后根据合理的甘特图组合模式和产品大纲中各类钢种的产量比例,建立甘特图组合模式方程组,利用逐次松弛迭代法进行求解,计算得到流程的产能.结果显示流程产能小于传统设计法中各工序的产能.通过甘特图组合产能核算,分析了脱碳转炉公称容量和连铸机拉速对流程产能和工序作业率的影响规律,找出了对应脱碳转炉不同公称容量的流程合理产能规模和应达到的连铸机拉速水平.

     

    Abstract: Based on the precise design theory of steel manufacturing processes, a two-step design method using Gantt chart combination was proposed.Firstly, the initial steel production process was established by the traditional design method according to the product mix.Secondly, the combination modes of Gantt chart equations were established based on the reasonable Gantt chart combination modes and the yield proportion of each steel grade in the product mix.The equations were solved by the successive over-relaxation iteration method to calculate the process productivity.The result shows that the process productivity is less than the productivity of equipment in the traditional design method.By the productivity calculation method based on Gantt chart combination, the influence law of the nominal capacity of decarbonization converters and casting speed on the process productivity and the operation rate of equipment was analyzed, and the rational process productivity and casting speed were proposed according to different nominal capacities of decarbonization converters.

     

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