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2024 | OriginalPaper | Buchkapitel

8. Annihilation and Healing of Small Inner Cracks and Extension of Fatigue Life

verfasst von : Weisheng Zhou, Naoya Tada, Junji Sakamoto

Erschienen in: Creep-Fatigue Fracture: Analysis of Internal Damage

Verlag: Springer Nature Singapore

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Abstract

In this chapter, a damage healing due to compressive creep was examined by applying pc-type fatigue loading to Cr–Mo–V forged steel specimens in which cavities and small cracks were introduced to the inside by cp-type creep-fatigue tests. In the slow-tensile fast-compression (cp-type) creep-fatigue tests at high temperature, many small cracks and cavities initiate inside the specimen, and at the end of the life, they coalesce and grow, leading to rapid fracture. In the pc-type fatigue tests, small cracks and cavities do not initiate inside the specimen, and the cracks on the specimen surface grow stably and lead to fracture. After introducing damage to the specimen by loading it to 3/4 of the life of cp-type creep-fatigue, applying pc-type fatigue loading causes the small inner cracks and cavities to shrink and disappear. In other words, pc-type fatigue loading has the effect of healing the damage caused by cp-type fatigue. This healing effect appears even with a small number of cycles (5 cycles) of pc-type fatigue loading. Materials in which small inner cracks and cavities are annihilated and healed by pc-type fatigue loading exhibit a creep-fatigue life equivalent to that of virgin materials. The above-mentioned healing effect is thought to be due to the coalescence of the crack surfaces during compressive creep and the shrinkage of the cavity due to grain boundary diffusion under compressive stress.

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Literatur
1.
Zurück zum Zitat R. Ohtani, Questions and solutions on the method of remaining-life evaluation of structural in high-temperature power plants. Trans. Jpn Soc. Mechan. Eng. Ser. A 59(565), 2019–2026 (1993) (in Japanese) R. Ohtani, Questions and solutions on the method of remaining-life evaluation of structural in high-temperature power plants. Trans. Jpn Soc. Mechan. Eng. Ser. A 59(565), 2019–2026 (1993) (in Japanese)
2.
Zurück zum Zitat T. Kitamura, R. Ohtani, W. Zhou, M. Yamada, N. Iizuka, Initiation, growth and healing of small inner cracks under creep-fatigue conditions. Trans. Jpn Soc. Mechan. Eng. Ser. A 59(566), 2234–2240 (1993) (in Japanese) T. Kitamura, R. Ohtani, W. Zhou, M. Yamada, N. Iizuka, Initiation, growth and healing of small inner cracks under creep-fatigue conditions. Trans. Jpn Soc. Mechan. Eng. Ser. A 59(566), 2234–2240 (1993) (in Japanese)
3.
Zurück zum Zitat R. Ohtani, K. Kitamura, N. Tada, W. Zhou, Experimental mechanics on initiation and growth of distributed small creep-fatigue cracks, in Recent Advances in Experimental Mechanics, Proceedings of the 10th International Conference on Experimental Mechanics, Balkema, Rotterdam (1994), pp. 1173–1179 R. Ohtani, K. Kitamura, N. Tada, W. Zhou, Experimental mechanics on initiation and growth of distributed small creep-fatigue cracks, in Recent Advances in Experimental Mechanics, Proceedings of the 10th International Conference on Experimental Mechanics, Balkema, Rotterdam (1994), pp. 1173–1179
4.
Zurück zum Zitat P.W. Davies, J.P. Dennison, H.E. Evans, Recovery of properties of a nickel-base high-temperature alloy after creep at 750C. J. Inst. Met. 94, 270–275 (1966) P.W. Davies, J.P. Dennison, H.E. Evans, Recovery of properties of a nickel-base high-temperature alloy after creep at 750C. J. Inst. Met. 94, 270–275 (1966)
5.
Zurück zum Zitat P.W. Davies, J.P. Dennison, H.E. Evans, The kinetics of the recovery of creep properties during annealing of nimonic 80A after creep at 750C. J. Inst. Met. 95, 231–234 (1967) P.W. Davies, J.P. Dennison, H.E. Evans, The kinetics of the recovery of creep properties during annealing of nimonic 80A after creep at 750C. J. Inst. Met. 95, 231–234 (1967)
6.
Zurück zum Zitat G.K. Walker, H.E. Evans, The kinetics of the annealing of high-temperature fracture damage in a stainless steel. Met. Sci. 4, 155–160 (1970) G.K. Walker, H.E. Evans, The kinetics of the annealing of high-temperature fracture damage in a stainless steel. Met. Sci. 4, 155–160 (1970)
7.
Zurück zum Zitat H. Sidey, L.F. Coffin. Jr.: Low-cycle fatigue damage mechanism at high temperature, in Fatigue Mechanism, ASTM STP 675, ed. by J.T. Fong (American Society for Testing of Materials, 1979), pp. 528–538 H. Sidey, L.F. Coffin. Jr.: Low-cycle fatigue damage mechanism at high temperature, in Fatigue Mechanism, ASTM STP 675, ed. by J.T. Fong (American Society for Testing of Materials, 1979), pp. 528–538
8.
Zurück zum Zitat J. Kyono, N. Shinya, H. Kushima, R. Horiuchi, Sintering rate of creep cavities in heat resisting steel. Tetsu-to-Hagane 79(5), 604–610 (1992)CrossRef J. Kyono, N. Shinya, H. Kushima, R. Horiuchi, Sintering rate of creep cavities in heat resisting steel. Tetsu-to-Hagane 79(5), 604–610 (1992)CrossRef
9.
Zurück zum Zitat K. Miyahara, S. Matsuoka, H. Amada, in Scanning Tunneling Microscopy of Oxide Dispersion Strengthened Alloy, Proceedings of the Annual Meeting of JSME/MMD (1991), pp.422–424 (in Japanese) K. Miyahara, S. Matsuoka, H. Amada, in Scanning Tunneling Microscopy of Oxide Dispersion Strengthened Alloy, Proceedings of the Annual Meeting of JSME/MMD (1991), pp.422–424 (in Japanese)
10.
Zurück zum Zitat E.L. Robinson, Effect of temperature variation on the creep strength of steels. Trans. ASME 60, 253–259 (1938) E.L. Robinson, Effect of temperature variation on the creep strength of steels. Trans. ASME 60, 253–259 (1938)
11.
Zurück zum Zitat S. Taira, Lifetime of structures subjected to varying load and temperature, in Creep in Structures, IUTAM Colloquium, ed. by N.J. Hoff (Springer, 1962), pp. 96–124 S. Taira, Lifetime of structures subjected to varying load and temperature, in Creep in Structures, IUTAM Colloquium, ed. by N.J. Hoff (Springer, 1962), pp. 96–124
12.
Zurück zum Zitat S. Taira, M. Ohnami, Fracture and deformation of metals subjected to thermal cycling combined with mechanical stress, in Joint International Conference on Creep, I Mech E (1963), pp. 3–57 S. Taira, M. Ohnami, Fracture and deformation of metals subjected to thermal cycling combined with mechanical stress, in Joint International Conference on Creep, I Mech E (1963), pp. 3–57
13.
Zurück zum Zitat S. Taira, R. Ohtani, High-temperature Strength of Materials (Ohmsha, 1980) (in Japanese) S. Taira, R. Ohtani, High-temperature Strength of Materials (Ohmsha, 1980) (in Japanese)
14.
Zurück zum Zitat R. Horiuchi, M. Otsuka: Mechanisms of intergranular fracture at high temperatures. Bull. Jpn Inst. Metals 22(4), 293–301 (1983) (in Japanese) R. Horiuchi, M. Otsuka: Mechanisms of intergranular fracture at high temperatures. Bull. Jpn Inst. Metals 22(4), 293–301 (1983) (in Japanese)
15.
Zurück zum Zitat W. Zhou, Research on the Initiation, Growth, and Healing of Small Inner Cracks Under High-Temperature Creep-Fatigue Conditions of Heat-Resistant Steel. Kyoto University Doctoral Dissertation (1995) (in Japanese) W. Zhou, Research on the Initiation, Growth, and Healing of Small Inner Cracks Under High-Temperature Creep-Fatigue Conditions of Heat-Resistant Steel. Kyoto University Doctoral Dissertation (1995) (in Japanese)
Metadaten
Titel
Annihilation and Healing of Small Inner Cracks and Extension of Fatigue Life
verfasst von
Weisheng Zhou
Naoya Tada
Junji Sakamoto
Copyright-Jahr
2024
Verlag
Springer Nature Singapore
DOI
https://doi.org/10.1007/978-981-97-1879-5_8

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