首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers. Part L, Journal of Materials: Design and Application >Development of a fuzzy-TOPSIS multi-criteria decision-making model for material selection with the integration of safety, health and environment risk assessment
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Development of a fuzzy-TOPSIS multi-criteria decision-making model for material selection with the integration of safety, health and environment risk assessment

机译:开发用于材料选择的模糊Topsis多标准决策模型,具有安全性,健康和环境风险评估的集成

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摘要

This study presents the development of a fuzzy-TOPSIS multi-criteria decision-making (MCDM) model for material selection with integrated safety, health, and environment risk assessment. As safety, health, and environment is very much linked to sustainable design and manufacturing, it is imperative that safety, health, and environment is taken into consideration in ensuring a comprehensive and holistic material selection process. This paper shows the possibility of fuzzy logic utilization in assessing safety, health, and environment risk and proposed a methodology based on fuzzy-TOPSIS MCDM model for material selection suitable for the manufacturing sector. This method has the capability of producing a ranking result with strong reasonings. The proposed method facilitates the designer to select, evaluate, and rank material alternatives based on given attributes from design requirements and weighting given by the decision-makers. Additionally, the other benefits of the proposed methodology are the elimination of a complex structure and/or a black-box algorithm. The fuzzy-TOPSIS approach capable of considering not only the uncertainty related to qualitative judgments but also the uncertainty that may reside in the measurement of quantitative or qualitative parameters that exist within the safety, health, and environment risks assessment. A numerical example of selecting material for automotive body panels using the proposed method has been discussed.
机译:本研究提出了具有集成安全,健康和环境风险评估的材料选择模糊Topsis多标准决策(MCDM)模型的开发。由于安全,健康和环境与可持续的设计和制造非常多,因此在确保全面和全面的材料选择过程中,必须考虑到安全,健康和环境。本文显示了在评估安全性,健康和环境风险方面的模糊逻辑利用的可能性,并提出了一种基于模糊-Topsis MCDM模型的方法,适用于制造业的材料选择。这种方法具有强烈推理产生排名结果的能力。该提出的方法有助于根据从决策者给出的设计要求和加权的给定属性来选择。另外,所提出的方法的其他益处是消除复杂的结构和/或黑盒算法。不仅能够考虑与定性判断相关的不确定性,而且可以居住在安全,健康和环境风险评估中存在的定量或定性参数中可能存在的不确定性。已经讨论了使用该方法选择用于使用该方法的汽车车身面板的材料的数值例。

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