A Plant Simulation approach for optimal resource utilization: A case study in the tire manufacturing industry

A. Butrat, S. Supsomboon
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引用次数: 1

Abstract

In this study, the resource allocation and vital manufacturing processes in the tire manufacturing industry was comprehensively optimized. The paper deals in detail with the Banbury mixing process, which produces homogeneous rubber materials for tire components. In addition, the mixing process models were established by the Plant Simulation software to validate and compare scenarios and experiments with realistic production constraints. Discrete empirical distribution (dEmp) was proposed for population data. Various scenarios were created for different resource and process. Experiments were set as different group of compound set. Experiment manager was used as a tool to set up scenarios and the experiments to provide alternative results. The study results display the production time and machine utilization. The shortest production time of experiment results represents the best group of each scenario. As results, the scenario, which BB1 is changed from non-productive Banbury mixer to special Banbury mixer along with the normal process is combined with second special process, provides the suitable production volume which can reduce of total production time for 8.06 %. Our study provides a variety of the resource utilization of a Banbury mixing process and suggests an efficient optimization method for production performance improvement.
一种优化资源利用的工厂模拟方法:以轮胎制造业为例
本研究对轮胎制造业的资源配置和关键制造流程进行了全面优化。本文详细介绍了用班伯里混合法生产轮胎部件用均质橡胶材料。此外,通过Plant Simulation软件建立混合过程模型,以验证和比较具有实际生产约束的场景和实验。对总体数据提出离散经验分布(dEmp)。为不同的资源和流程创建了不同的场景。实验设为不同组的复合组。实验管理器是一种工具,用于设置场景和实验,以提供替代结果。研究结果显示了生产时间和机器利用率。实验结果产生时间最短的代表各场景的最佳组。结果表明,将BB1从非生产性班伯里混合器改为专用班伯里混合器,并结合常规工艺和第二种特殊工艺,提供了合适的产量,可使总生产时间缩短8.06%。本研究提供了Banbury混合过程的多种资源利用,并为提高生产性能提供了有效的优化方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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