Lean manufacturing implementation in iron and steel industries: effect of wastes management on the production costs

IF 2.6 Q1 ENGINEERING, MULTIDISCIPLINARY Journal of Engineering Design and Technology Pub Date : 2023-08-24 DOI:10.1108/jedt-01-2023-0012
Nasser Zaky, Mohamed Zaky Ahmed, A. Alarjani, E. Attia
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Abstract

Purpose This study aims to improve the market competitiveness of iron and steel manufacturers in developing countries by reducing their production costs. Design/methodology/approach The research methodology relies on a case study-based approach. The study relies on six steps. The first is the preparation, then the five steps of the six-sigma – define, measure, analyze, improve, control. The qualitative and quantitative data were considered. The qualitative analysis relies on the experts’ judgment of internal status. The quantitative analysis uses the job floor data from three iron and steel manufacturers. After collecting, screening and analyzing the data, the root causes of the different wastes were identified that increase production costs. Consequently, lean manufacturing principles and tools are identified and prioritized using the decision-making trial and evaluation laboratory method, and then implemented to reduce the different types of waste. Findings The main wastes are related to inventory, time, quality and workforce. The lean tools were proposed with the implementation plan for the discovered root causes. The performance was monitored during and after the implementation of the lean initiatives in one of the three companies. The obtained results showed an increase in some performance indicators such as throughput (70.6%), revenue from by-products (459%), inventory turnover (54%), operation availability (45%), and plant availability (41%). On the other hand, results showed a decrease of time delay (78%), man-hour/ton (52.4%) and downgraded products (63.3%). Practical implications The current case study findings can be utilized by Iron and Steel factories at the developing countries. In addition, the proposed lean implementation methodology can be adopted for any other industries. Social implications The current work introduces an original and practical road map to implement the lean six-sigma body of knowledge in the iron and steel manufacturers. Originality/value This work introduces an effective and practical case study-based approach to implementing the lean six-sigma body of knowledge in the iron and steel manufacturers in one of the underdevelopment countries. The consideration of the opinion of the different engineers from different sectors shows significant identification of the major problems in the manufacturing and utility sectors that lead to significant performance improvement after solving them.
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钢铁行业精益制造的实施:废弃物管理对生产成本的影响
目的本研究旨在通过降低发展中国家钢铁制造商的生产成本来提高其市场竞争力。设计/方法论/方法研究方法论依赖于基于案例研究的方法。这项研究依赖于六个步骤。首先是准备,然后是六西格玛的五个步骤——定义、测量、分析、改进和控制。考虑了定性和定量数据。定性分析依赖于专家对内部状况的判断。定量分析使用了三家钢铁制造商的最低工作数据。在收集、筛选和分析数据后,确定了增加生产成本的不同废物的根本原因。因此,使用决策试验和评估实验室方法,确定并优先考虑精益制造原则和工具,然后实施以减少不同类型的废物。发现主要废物与库存、时间、质量和劳动力有关。针对发现的根本原因,提出了精益工具和实施计划。在三家公司中的一家实施精益计划期间和之后,对绩效进行了监控。所获得的结果显示,一些性能指标有所提高,如吞吐量(70.6%)、副产品收入(459%)、库存周转率(54%)、运营可用性(45%)和工厂可用性(41%)。另一方面,结果显示,延迟(78%)、工时/吨(52.4%)和降级产品(63.3%)减少。实际意义当前的案例研究结果可供发展中国家的钢铁厂使用。此外,所提出的精益实施方法可用于任何其他行业。社会含义当前的工作介绍了在钢铁制造商中实施精益六西格玛知识体系的原创实用路线图。独创性/价值这项工作介绍了一种有效且实用的基于案例研究的方法,以在欠发达国家之一的钢铁制造商中实施精益六西格玛知识体系。对来自不同行业的不同工程师意见的考虑表明,对制造业和公用事业部门的主要问题进行了重大识别,这些问题在解决后会导致显著的性能改进。
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来源期刊
Journal of Engineering Design and Technology
Journal of Engineering Design and Technology ENGINEERING, MULTIDISCIPLINARY-
CiteScore
6.50
自引率
21.40%
发文量
67
期刊介绍: - Design strategies - Usability and adaptability - Material, component and systems performance - Process control - Alternative and new technologies - Organizational, management and research issues - Human factors - Environmental, quality and health and safety issues - Cost and life cycle issues - Sustainability criteria, indicators, measurement and practices - Risk management - Entrepreneurship Law, regulation and governance - Design, implementing, managing and practicing innovation - Visualization, simulation, information and communication technologies - Education practices, innovation, strategies and policy issues.
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