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The optimal parameter design for a welding unit of manufacturing industry by taguchi method and computer simulation

机译:基于Taguchi方法和计算机仿真的制造业焊接单元最佳参数设计

摘要

Purpose: Manufacturing systems include a complicated combination of resources, such as materials, labors, and machines. Hence, when the manufacturing systems are faced with a problem related to the availability of resources it is difficult to identify the root of the problem accurately and effectively. Managers and engineers in companies are trying to achieve a robust production line based on the maximum productivity. The main goal of this paper is to design a robust production line, taking productivity into account in the selected manufacturing industry. Design/methodology/approach: This paper presents the application of Taguchi method along with computer simulation for finding an optimum factor setting for three controllable factors, which are a number of welding machines, hydraulic machines, and cutting machines by analyzing the effect of noise factors in a selected manufacturing industry. Findings and Originality/value: Based on the final results, the optimal design parameter of welding unit of in the selected manufacturing industry will be obtained when factor A is located at level 2 and B and C are located at level 1. Therefore, maximum productive desirability is achieved when the number of welding machines, hydraulic machines, and cutting machines is equal to 17, 2, and 1, respectively. This paper has a significant role in designing a robust production line by considering the lowest cost and timely manner based on the Taguchi method.
机译:目的:制造系统包括资源的复杂组合,例如材料,人工和机器。因此,当制造系统面临与资源可用性有关的问题时,很难准确有效地确定问题的根源。公司的经理和工程师正在努力实现基于最大生产率的稳健生产线。本文的主要目标是设计一个强大的生产线,同时考虑到所选制造业的生产率。设计/方法/方法:本文介绍Taguchi方法的应用以及计算机仿真,以通过分析噪声因素的影响来找到三个可控制因素的最佳因素设置,这三个可控制因素是焊接机,液压机和切割机的数量在选定的制造业中。结果和独创性/价值:根据最终结果,当因子A位于2级且B和C位于1级时,将获得选定制造业中焊接单元的最佳设计参数。因此,最大的生产率当焊接机,液压机和切割机的数量分别等于17、2和1时,可以达到理想的效果。在考虑基于Taguchi方法的最低成本和及时方式的前提下,本文在设计稳健的生产线中起着重要作用。

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