Yagi et al., 1993 - Google Patents
Long-Term Creep-Fatigue Life PredictionYagi et al., 1993
- Document ID
- 16020343716926245690
- Author
- Yagi K
- Kubo K
- Publication year
- Publication venue
- Aspects of High Temperature Deformation and Fracture in Crystalline Materials
External Links
- 230000001419 dependent 0 abstract description 6
Classifications
-
- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y10—TECHNICAL SUBJECTS COVERED BY FORMER USPC
- Y10S—TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
Similar Documents
Publication | Publication Date | Title |
---|---|---|
Yagi et al. | Long-Term Creep-Fatigue Life Prediction | |
Ogata et al. | Biaxial Low-Cycle Fatigue Failure of Type 304 Stainless Steel Under In--Phase and Out-of-Phase Straining Conditions.(Retroactive Coverage) | |
Nitta et al. | Relationship Between Fracture Mode and Fatigue Life Under Biaxial Loading at 550 deg C in SUS 304 Stainless Steel | |
Connaughton | A Study of Cumulative Fatigue and Creep--Fatigue Damage in Type 316 Steel | |
Zheng et al. | The Fracture Behaviour of Ductile Steels Under the Triaxial Stress-State | |
Le May et al. | Creep damage assessment in petrochemical plant | |
Qiao et al. | Low Cycle Fatigue With Hold Periods at High Temperature for an Iron-Base Superalloy GH 36.(Retroactive Coverage) | |
Yagi et al. | Life Prediction Under Creep--Fatigue Loading Condition for SUS 316 Stainless Steel | |
Ohji et al. | Time-Dependent and Cycle-Dependent Modes of Fatigue Crack Growth in Creep Regime of SUS 304 Stainless Steel | |
Hart | Response of a quasi-isotropic metal matrix composite under thermo mechanical fatigue | |
Shahinian et al. | High temperature near-threshold fatigue behavior | |
Kazantsev | Assessment of Fatigue Damage in Low Cycle Long Term Isothermal and Non-Isothermal Loading | |
Williams et al. | Strengthening and Fracture Mechanisms in Titanium Alloys. Critical Review | |
Grey | Tensile Testing(of High Temperature Materials) | |
Reiss et al. | Tool Life and Tool Breakage in Massive Deformation. II. Life Estimation in Thermal Deformation | |
Muizhnek | Transient Creep Processes in High-Temperature Steels Under Stepwise Decreasing Stresses and Temperatures | |
Auer | Investigations on the Corrosion Behaviour of Ferrous Alloys in Sulphidising and Oxidising Gas Atmospheres With Simultaneous Mechanical Stressing | |
Veksler et al. | Analysis of Fracture Processes and Prediction of High- Temperature Alloy Service Life Under Unsteady Loading | |
Ohji et al. | Fractographical Features Associated With Unusual Near-Threshold Fatigue Crack Growth Behavior Under Creep Conditions | |
Soretz | Contribution to the Tensile Creep of Reinforcing Steel Under High Temperatures | |
Zuchowski | Analysis of failure process of metals under conditions of thermal fatigue | |
Marchionni et al. | Effect of strain rate and hold time on high-temperature low-cycle fatigue behaviour of a nickel-base superalloy | |
Sobolev | Modeling fatigue damage and fracture processes under low-cycle loading(K modelirovaniiu protsessov ustalostnogo povrezhdeniia i razrusheniia pri malotsiklovom nagruzhenii) | |
Werner | The Influence of Strengthening Mechanisms on the Fracture Toughness | |
Foldyna et al. | A New Approach to Evaluation of Residual Life of CrMo and CrMoV Steel Components for Thermal Power and Chemical Plant Equipment |