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管理図×故障モード影響解析 (FMEA)×
分野実験計画法実験計画法
系統Process / pipelineProcess / pipeline
提唱年1924 (first use); 1931 (seminal book)1949 (military); widespread industrial adoption 1970s–1980s
提唱者Walter A. Shewhart (Bell Labs)U.S. Military / NASA (formalized by MIL-P-1629, 1949)
種類Statistical monitoring and control techniqueProactive risk analysis technique
原典Shewhart, W. A. (1931). Economic Control of Quality of Manufactured Product. Van Nostrand. link ↗Stamatis, D. H. (2003). Failure Mode and Effect Analysis: FMEA from Theory to Execution (2nd ed.). ASQ Quality Press. ISBN: 978-0873895989
別名Shewhart chart, process-behavior chart, SPC chart, quality control chartFMEA, Failure Modes and Effects Analysis, FMECA, Failure Mode Effects and Criticality Analysis
関連66
概要A control chart is a time-series graph with statistically derived upper and lower control limits that separates the natural, random variation of a process (common cause) from unusual, assignable variation (special cause). Invented by Walter Shewhart at Bell Labs in 1924, control charts remain the foundational tool of Statistical Process Control and are used across manufacturing, healthcare, software, and service industries to monitor whether a process remains stable and predictable over time.Failure Mode and Effects Analysis (FMEA) is a structured, proactive risk management technique used to identify potential failure modes in a system, process, or product design, evaluate their consequences, and prioritize corrective actions before failures occur. Originally developed for the U.S. military in 1949 and later adopted by NASA, automotive, and manufacturing industries, FMEA is now a cornerstone quality-engineering tool embedded in standards such as AIAG-VDA and ISO 9001-aligned processes.
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ScholarGate手法を比較: Control chart · Failure Mode and Effects Analysis. 2026-06-17に以下より取得 https://scholargate.app/ja/compare