Prediction of tensile fatigue life under temperature environment for unidirectional CFRP
スポンサーリンク
概要
著者
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Kudoh Hiroshi
Materials System Research Laboratory Kanazawa Lnstitute Of Technology
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NAKADA Masayuki
Materials and Processing Research Center, NKK Corporation
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MIYANO Yasushi
Materials System Research Laboratory, Kanazawa lnstitute of Technology
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MUKI Rokuro
Civil and Environmental Engineering Department, University of California at Los Angeles
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Muki Rokuro
Civil & Environmental Engineering Department University Of California At Los Angeles
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Miyano Y
Materials System Research Laboratory Kanazawa Institute Of Technology
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Miyano Yasushi
Materials System Reaearch Laboratory Kanazawa Institute Of Techology
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Nakada Masayuki
Materials System Research Laboratory Kanazawa Institute Of Technology
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Nakada Masayuki
Materials And Processing Research Center Nkk Corporation
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NAKADA Masayuki
Material & Processing Research Center, NKK
関連論文
- Reduction of Macrosegregation by Applying a DC Magnetic Field at the Final Stage of Solidification
- Prediction of tensile fatigue life under temperature environment for unidirectional CFRP
- Prediction of Fatigue Life for CFRP/Metal Bolted Joint under Temperature Conditions
- Applicability of Time-Temperature-Water Absorption Superposition Principle for Flexural Strength of CFRP Laminates
- Time and Temperature Dependence on Flexural Strength of Heat-resistant CFRP Laminates
- 615 Prediction of Fatigue Life for CFRP/Metal Bolted Joint under Temperature Conditions
- 231 Applicability of Time-Temperature-Water Absorption Superposition Principle for Flexural Strength of CFRP Laminates
- 222 Time and Temperature Dependence of Flexural Strength of CFRP Laminates Using Heat-Resistant Resin
- Time and Temperature Dependence of Tensile Behavior of Unidirectional CFRP(Composite 3)
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- The Steel Flow Control System in Caster Mold by Traveling Magnetic Field
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- Thermoviscoelastic Analysis of Residual Stresses in a Thermosetting Resin/Metal Laminated Beam Caused by Cooling
- Inclusion Particle Growth during Solidification of Stainless Steel
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