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Selection of Welding Process for Repairing Shredder Hammer by Integrated Data Envelopment Analysis (DEA) and P-robust Technique

机译:通过集成数据包络分析(DEA)和P稳健技术修复粉碎机锤焊接过程的选择

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摘要

The Selection of the welding process is one of the most significant decision-making problems, and it involves a wide range of information following the type of product. Hence, the automation of knowledge through a knowledge-based system will significantly enhance the decision-making process and simplify for identifying the most appropriate welding processes. The aims of this paper for explicates a knowledge-based system developed for recognising the most suitable welding processes for repairing shredder hammer by using data envelopment analysis (DEA) and p-robust technique. The proposed approach is used for ranking six welding processes which are commonly used, namely shielded metal arc welding (SMAW), flux cored arc welding (FCAW), submerged arc welding (SAW), oxyacetylene gas welding (OAW), gas tungsten arc welding (GTAW), and gas metal arc welding (GMAW). In order to determine the best welding process among competitive welding processes for repairing of shredder hammer, ten parameters are used, namely the availability of consumable, welding process type (manual and automatic), flexibility of welding position, weld-ability on base metal, initial preparation required, welding procedures, post-weld cleaning, capital cost, operating factor, and deposition rate. Furthermore, the sensitivity analysis of regret value (p) is investigated in three cases proposed.
机译:焊接过程的选择是最重要的决策问题之一,它涉及产品类型之后的广泛信息。因此,通过知识的系统通过知识自动化将显着提高决策过程,简化了识别最合适的焊接过程。本文的目的是阐述开发的基于知识的系统,用于通过使用数据包络分析(DEA)和P稳健技术来识别用于修复粉碎机锤的最合适的焊接过程。所提出的方法用于排名六种焊接工艺,常用,即屏蔽金属弧焊(SMAW),焊剂芯弧焊(FCAW),浸没式电弧焊接(锯),氧乙烯气体焊接(OAW),气体钨电弧焊接(GTAW)和气金属弧焊(GMAW)。为了确定竞争性焊接过程中的最佳焊接过程,用于修复粉碎机锤,使用10个参数,即可用性,焊接工艺类型(手动和自动),焊接位置的灵活性,底座金属焊接能力,初步准备所需,焊接程序,焊接后清洗,资本成本,操作因素和沉积率。此外,在提出的三个案例中研究了遗憾值(P)的敏感性分析。

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