Title |
Failure analysis method for enhancing circularity through systems perspective |
ID_Doc |
21447 |
Authors |
Kimita, K; Brambila-Macias, SA; Tillman, AM; Sakao, T |
Title |
Failure analysis method for enhancing circularity through systems perspective |
Year |
2021 |
Published |
Journal Of Industrial Ecology, 25.0, 3 |
DOI |
10.1111/jiec.13069 |
Abstract |
Recently, a circular economy has attracted global attention as an approach for addressing material security and resource-efficiency issues. As our societies shift toward a circular economy, manufacturers need to not only produce environmentally conscious products but to also realize reliable systems that will ensure the closure of the loops of the products, components, and materials. To do so, early-stage design is crucial to effectively and efficiently detect possible failures and then take adequate countermeasures against them. Although a few methods of failure analysis have been proposed to address environmental issues, these methods have failed to consider the cause-effect relationships among failures. This will hinder manufacturers from identifying core problems that should be addressed in a given system. Therefore, this study extends failure mode and effect analysis, which is an engineering technique used to address potential failures, by addressing the entire system reliability in relation to circularity. As a result of a case study of a manufacturer aiming to increase circularity with their products on the market, we revealed that the proposed method is useful in the early stage of design to (a) identify failure modes where effects are largely given to or received from other failures, (b) develop countermeasures effectively by addressing root causes of failures, and (c) find an opportunity to collaborate with external actors. |
Author Keywords |
circular economy; decision-making trial and evaluation laboratory (DEMATEL); failure mode and effect analysis (FMEA); industrial ecology; product-service system (PSS); system design |
Index Keywords |
Index Keywords |
Document Type |
Other |
Open Access |
Open Access |
Source |
Science Citation Index Expanded (SCI-EXPANDED) |
EID |
WOS:000572877000001 |
WoS Category |
Green & Sustainable Science & Technology; Engineering, Environmental; Environmental Sciences |
Research Area |
Science & Technology - Other Topics; Engineering; Environmental Sciences & Ecology |
PDF |
https://onlinelibrary.wiley.com/doi/pdfdirect/10.1111/jiec.13069
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