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Risk-based failure mode and effects analysis×Six Sigma DMAIC×
DomainePlans d'expériencesGestion de la qualité
FamilleProcess / pipelineProcess / pipeline
Année d'origine1949 (FMEA origins); risk-prioritised RPN framework circa 1977–1980s (AIAG automotive)2014
Auteur d'origineU.S. Department of Defense / MIL-STD-1629A; formalised in IEC 60812Motorola; Pyzdek & Keller
TypeQuantitative risk-prioritisation techniqueStructured process improvement methodology
Source fondatriceInternational Electrotechnical Commission. (2018). IEC 60812:2018 — Failure modes and effects analysis (FMEA and FMECA). IEC. link ↗Pyzdek, T., & Keller, P. (2014). The Six Sigma Handbook (4th ed.). McGraw-Hill. ISBN: 978-0-07-184053-9
AliasRBFMEA, Risk-based FMEA, Risk-prioritised FMEA, Quantitative FMEADMAIC Framework, Six Sigma Process Improvement Cycle, Define-Measure-Analyze-Improve-Control, Altı Sigma DMAIC
Apparentées63
RésuméRisk-based failure mode and effects analysis (RBFMEA) is a structured engineering technique that identifies every way a system or process can fail, assesses the risk of each failure mode using a numerical Risk Priority Number (RPN = Occurrence × Severity × Detectability), and prioritises corrective actions accordingly. Rooted in MIL-STD-1629A and standardised in IEC 60812:2018, it is the dominant proactive reliability and safety tool in aerospace, automotive, pharmaceutical, and manufacturing industries.Six Sigma DMAIC is a data-driven, five-phase process improvement methodology — Define, Measure, Analyze, Improve, and Control — used to reduce defects and process variation to fewer than 3.4 defects per million opportunities. Originating at Motorola in the 1980s and systematized by practitioners including Pyzdek and Keller, it is widely adopted in manufacturing, healthcare, finance, and service industries seeking sustained quality gains.
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ScholarGateComparer des méthodes: Risk-based failure mode and effects analysis · Six Sigma DMAIC. Consulté le 2026-06-19 sur https://scholargate.app/fr/compare