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一种基于优化失效模式与效应分析及对偶犹豫模糊语言术语集的锂离子电池组装过程潜在失效模式风险分析方法

A risk analysis method for potential failure modes in the lithium-ion battery assembly process based on optimized FMEA and DHHFLTS.

作者信息

Dai Jinkun, Pang Jihong

机构信息

College of New Energy Equipment, Zhejiang College of Security Technology, Wenzhou, 325000, China.

College of Business, Shaoxing University, Shaoxing, 312000, China.

出版信息

Sci Rep. 2025 Aug 3;15(1):28327. doi: 10.1038/s41598-025-12681-5.

Abstract

To enhance product quality and operational safety of lithium-ion batteries, this paper proposes a risk analysis method based on an optimized Failure Modes and Effects Analysis (FMEA). Firstly, as an evaluation language with a double-hierarchy structure, the Double Hierarchy Hesitant Fuzzy Linguistic Term Set (DHHFLTS) can both express rich semantics and accurately capture the evaluators' hesitancy. Secondly, the Similarity Measure (SM) and Water Filling Theory (WFT) are utilized to calculate the consensus degree of evaluator's evaluation information, thereby determining the weight information. Compared to the current methods that calculates weights based on the dispersion of evaluation information, SM-WFT is more suitable for FMEA. Then, the Combined Compromise Solution (CoCoSo) employs multiple aggregation methods for compromise calculation, thereby minimizing the likelihood of identical risk rankings in FMEA. Finally, addressing the difficulty of experimentally verifying the calculation results of new methods, this paper proposes a Multi-Objective Aggregation Technique (MOAT). By constructing a multi-objective mathematical model, a comparative analysis is conducted on the risk ranking results and evaluation information obtained from the new method versus other methods. At the end of the paper, a case study on risk analysis of potential failure modes in the lithium-ion battery assembly process is presented to verify the practicality and objectivity of the new method.

摘要

为提高锂离子电池的产品质量和运行安全性,本文提出了一种基于优化失效模式与效应分析(FMEA)的风险分析方法。首先,作为一种具有双层次结构的评价语言,双层次犹豫模糊语言术语集(DHHFLTS)既能表达丰富的语义,又能准确捕捉评价者的犹豫性。其次,利用相似性度量(SM)和注水理论(WFT)来计算评价者评价信息的共识度,从而确定权重信息。与目前基于评价信息离散度计算权重的方法相比,SM-WFT更适用于FMEA。然后,组合折衷解(CoCoSo)采用多种聚合方法进行折衷计算,从而最小化FMEA中相同风险排序的可能性。最后,针对新方法计算结果难以通过实验验证的问题,本文提出了一种多目标聚合技术(MOAT)。通过构建多目标数学模型,对新方法与其他方法得到的风险排序结果和评价信息进行了对比分析。在论文结尾,给出了一个锂离子电池组装过程中潜在失效模式风险分析的案例研究,以验证新方法的实用性和客观性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7bb9/12319098/ea85bc321ad5/41598_2025_12681_Fig1_HTML.jpg

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