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Article type: Cover
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Published: June 03, 2011
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Article type: Appendix
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Published: June 03, 2011
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Article type: Index
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Published: June 03, 2011
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Article type: Appendix
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Published: June 03, 2011
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Article type: Appendix
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Published: June 03, 2011
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Hiroshi WADA
Article type: Article
Session ID: 1-1
Published: June 03, 2011
Released on J-STAGE: February 09, 2018
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Yumeko MIYACHI, Kazunori HAYAMA, Naoki HATAKEYAMA, Toshiaki KABURAGI
Article type: Article
Session ID: 1-2
Published: June 03, 2011
Released on J-STAGE: February 09, 2018
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Toshiaki KABURAGI, Kazunori HAYAMA, Yumeko MIYACHI
Article type: Article
Session ID: 1-3
Published: June 03, 2011
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Kazunori HAYAMA, Toshiaki KABURAGI, Yumeko MIYACHI
Article type: Article
Session ID: 1-4
Published: June 03, 2011
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Article type: Appendix
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Published: June 03, 2011
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Akira Matsuura, Takabumi Fukuda
Article type: Article
Session ID: 2-1
Published: June 03, 2011
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This paper represents concept of predict management for fire incident by thermal energy.
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[in Japanese], [in Japanese]
Article type: Article
Session ID: 2-2
Published: June 03, 2011
Released on J-STAGE: February 09, 2018
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[in Japanese], [in Japanese]
Article type: Article
Session ID: 2-3
Published: June 03, 2011
Released on J-STAGE: February 09, 2018
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Katsumi IKUMA, Masao MUKAIDONO
Article type: Article
Session ID: 2-4
Published: June 03, 2011
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Article type: Appendix
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Published: June 03, 2011
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[in Japanese], [in Japanese], [in Japanese]
Article type: Article
Session ID: 3-1
Published: June 03, 2011
Released on J-STAGE: February 09, 2018
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[in Japanese], [in Japanese], [in Japanese]
Article type: Article
Session ID: 3-2
Published: June 03, 2011
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Akihiro HIGUCHI, Kazunori HIRAOKA
Article type: Article
Session ID: 3-3
Published: June 03, 2011
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Toshinari MATSUOKA
Article type: Article
Session ID: 3-4
Published: June 03, 2011
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Article type: Appendix
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Published: June 03, 2011
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Tetsuya MONNA, Norio FURUNO, Takeshi NATSUME
Article type: Article
Session ID: 4-1
Published: June 03, 2011
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Koya HONDA, Hiroyuki NAKAJIMA
Article type: Article
Session ID: 4-2
Published: June 03, 2011
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Hideo Hirose, Takenori Sakumura
Article type: Article
Session ID: 4-3
Published: June 03, 2011
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The cumulative exposure model (CEM) is often used to express the failure probability model in the step-up test method; the step-up procedure continues until breakdown occurs. This probability model is widely accepted in reliability fields because accumulation of fatigue is considered to be reasonable. Contrary to this, the independence model (IM) is also used in electrical engineers because accumulation of fatigue is not observed in some cases. We propose here a new model, the extended cumulative exposure model (ECEM), which includes both the previous models.
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Article type: Cover
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Published: June 03, 2011
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