Fatigue Crack Growth Behavior Under Cyclic Transient Thermal Stress : Solid-Mechanics, Strength of Materials
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概要
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Thermal fatigue tests were performed using straight pipe specimens subjected to cyclic thermal shocks of liquid sodium, and crack growth behaviors were estimated using striation patterns observed clearly on any crack surface. Crack growth rate under cyclic thermal strain reaches the maximum at one depth, and after that it decreases gradually with crack depth. The peak location of crack growth rate becomes deeper by superposition of constant primary stress. Parallel cracks co-existing in the neighborhood move the peak to shallower location and decrease the maximum crack growth rate. The equivalent stress intensity factor range calculated by Walker's formula is successfully applied to the case of negative stress ratio. Fatigue crack growth rate under cyclic thermal strain agreed well with that under the constant temperature equal to the maximum value in the thermal cycle. Simplified methods for calculating the stress intensity factor and the crack interference factor have been developed. Crack growth behavior under thermal fatigue could be well predicted using numerical analysis results.
- 一般社団法人日本機械学会の論文
- 1987-07-15
著者
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Kano Takashi
International Division Power Reactor And Nuclear Fuel Development Corporation
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Kano Takashi
Power Reactor And Nuclear Fuel Development Corp.
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UEDA Masahiro
Hitachi Zosen Corp., FRP Division
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YOSHITOSHI Atsushi
Ishikawajima Harima Heavy Industries Co.
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Ueda Masahiro
Fast Breeder Reactor Development Department The Japan Atomic Power Company
関連論文
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- Fatigue Crack Growth Behavior Under Cyclic Transient Thermal Stress : Solid-Mechanics, Strength of Materials
- An Error Analysis of Various Finite Element Patterns
- Crack Initiation and Growth Behavior on SUS304 Steel Piping Components During Cyclic Thermal Transient Strains