Influence of Plastic Deformation and Heat Treatment on the Metallic Structure Control and Local Alloying: Example of Hot Shot Peening

Functionally graded materials (FGMs) have been actively researched owing to their potential applications in aerospace, biomedical engineering, sensing, and energy. FGMs exhibit locally different properties because they are manufactured from multiple materials. Recently, mechanical processing has bee...

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Published in:Tetsu to hagane Vol. 110; no. 13; pp. 1021 - 1031
Main Authors: Takemura, Akihiro, Terano, Motoki, Miyake, Taiki
Format: Journal Article
Language:English
Japanese
Published: The Iron and Steel Institute of Japan 01-10-2024
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Abstract Functionally graded materials (FGMs) have been actively researched owing to their potential applications in aerospace, biomedical engineering, sensing, and energy. FGMs exhibit locally different properties because they are manufactured from multiple materials. Recently, mechanical processing has been utilized to produce FGMs, during which the plastic strain induced by burnishing causes hardening of the surface and increases the compressive residual stress. In our previous study, we reported that the component of shot peening media diffused to the shot-peened surface during hot-shot peening. Hot-shot peening can be used to control the local material composition, while shot peening, which induces plastic deformation, can be used to improve the mechanical properties of the material. The two effects of hot-shot peening can be combined to produce FGMs. The results of this study showed grain refinement and work hardening at 0.25 mm in the hot-shot-peened surface. A tensile residual stress was observed on the bare surface, whereas a high compressive residual stress was observed on the hot-shot-peened surface. A media component diffused layer was not observed on the bare surface, although it was observed on the high-injection air pressure hot-shot-peened surface. Furthermore, a diffusion layer with a larger media component was observed on the hot-shot-peened surface in which the grain boundaries had increased. This was due to the dynamic recrystallization induced by the hot-shot peening process. Thus, the media component diffused layer observed on the hot-shot-peened surface can be grow thicker by increasing the number of grain boundaries.
AbstractList Functionally graded materials (FGMs) have been actively researched owing to their potential applications in aerospace, biomedical engineering, sensing, and energy. FGMs exhibit locally different properties because they are manufactured from multiple materials. Recently, mechanical processing has been utilized to produce FGMs, during which the plastic strain induced by burnishing causes hardening of the surface and increases the compressive residual stress. In our previous study, we reported that the component of shot peening media diffused to the shot-peened surface during hot-shot peening. Hot-shot peening can be used to control the local material composition, while shot peening, which induces plastic deformation, can be used to improve the mechanical properties of the material. The two effects of hot-shot peening can be combined to produce FGMs. The results of this study showed grain refinement and work hardening at 0.25 mm in the hot-shot-peened surface. A tensile residual stress was observed on the bare surface, whereas a high compressive residual stress was observed on the hot-shot-peened surface. A media component diffused layer was not observed on the bare surface, although it was observed on the high-injection air pressure hot-shot-peened surface. Furthermore, a diffusion layer with a larger media component was observed on the hot-shot-peened surface in which the grain boundaries had increased. This was due to the dynamic recrystallization induced by the hot-shot peening process. Thus, the media component diffused layer observed on the hot-shot-peened surface can be grow thicker by increasing the number of grain boundaries.
ArticleNumber TETSU-2024-075
Author Terano, Motoki
Takemura, Akihiro
Miyake, Taiki
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  fullname: Miyake, Taiki
  organization: Mechanical Systems Engineering, Graduate School of Engineering, Okayama University of Science, now Okanetsu Industry Co., Ltd
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Cites_doi 10.1016/j.proeng.2017.10.950
10.2355/tetsutohagane.100.366
10.1016/j.jmatprotec.2023.118229
10.2355/tetsutohagane.TETSU-2015-109
10.1016/j.proeng.2010.03.181
10.1299/kikaic.65.2919
10.4139/sfj.53.214
10.1299/kikaia.68.509
10.2109/jcersj1950.87.1003_146
10.1299/kikaia.77.1367
10.1299/kikaia.77.1331
10.1016/j.jmrt.2022.09.046
10.1016/j.rsurfi.2023.100121
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References 8) T.Morita, T.Yorino, C.Kagaya and Y.Miyasaka: Trans. Jpn. Soc. Mech. Eng. A, 77(2011), 1331 (in Japanese). https://doi.org/10.1299/kikaia.77.1331
20) Metal Fatigue and Shot Peening, ed, by Japan Society of Shot Peening Technology, Taiga Publishing, Tokyo, (2018), 105 (in Japanese). ISBN978-4886617088
27) M.Tanino and S.Suzuki: Zairyougaku series, Tekkou Zairyou no Kagaku, Tetsu ni Gyousyuku Sareta Technology (Materials Science Series, Science of Steel Materials: The Technology Condensed into Iron), Uchida Rokakuho Publishing, Tokyo, (2001), 73 (in Japanese). ISBN978-4753656158
3) S.Uemura and Y.Watanabe: Functionally Graded Materials: Fundamentals and Applications, Corona Publishing, Tokyo, (2014), 30 (in Japanese). ISBN978-4339046298
4) K.Inoue: Development and Technology of Functionally Graded Materials, ed. by S.Uemura, Y.Noda, K.Shinohara and Y.Watanabe, CMC Pubulishing, Tokyo, (2009), 317 (in Japanese). ISBN978-4781301235
14) M.Tanino and S.Suzuki: Zairyougaku series, Tekkou Zairyou no Kagaku, Tetsu ni Gyousyuku Sareta Technology (Materials Science Series, Science of Steel Materials: The Technology Condensed into Iron), Uchida Rokakuho Publishing, Tokyo, (2001), 133 (in Japanese). ISBN978-4753656158
24) H.Sudo, I.Tamura and T.Nishizawa: Kinzoku Soshiki Gaku (Metallography), Maruzen Publishing, Tokyo, (2004), 64 (in Japanese). ISBN978-4621082430
12) Metal Fatigue and Shot Peening, ed. by Japan Society of Shot Peening Technology, Taiga Publishing, Tokyo, (2018), 18 (in Japanese). ISBN978-4886617088
9) S.Takesue, A.Ezura, Y.Maki, M.Hayama, Y.Misaka and J.Komotori: J. Mater. Res. Technol., 21(2022), 373. https://doi.org/10.1016/j.jmrt.2022.09.046
26) A.Takemura, Y.Tanaka, R.Takahata, K.Fujiwara and S.Okaguchi: Tetsu-to-Hagané, 100(2014), 366 (in Japanese). https://doi.org/10.2355/tetsutohagane.100.366
19) Y.Harada, K.Mori, S.Maki and M.Nakamura: Trans. Jpn. Soc. Mech. Eng. C, 65(1999), 2919 (in Japanese). https://doi.org/10.1299/kikaic.65.2919
15) D.Yonekura, J.Komotori, M.Shimizu and H.Shimizu: J. Surf. Finish. Soc. Jpn., 53(2002), 214 (in Japanese). https://doi.org/10.4139/sfj.53.214
6) Metal Fatigue and Shot Peening, ed. by Japan Society of Shot Peening Technology, Taiga Publishing, Tokyo, (2018), 28 (in Japanese). ISBN978-4886617088
13) K.Monma: Daigaku Kiso Kikai Zairyo SI Taniban (Fundamental of University Mechanical Materials, SI-unit version), Jikkyo Shuppan, Tokyo, (2008), 136 (in Japanese). ISBN978-4407023282
22) H.Sudo, I.Tamura and T.Nishizawa: Kinzoku Soshiki Gaku (Metallography), Maruzen Publishing, Tokyo, (2004), 110 (in Japanese). ISBN978-4621082430
23) K.Monma: Daigaku Kiso Kikai Zairyo SI Taniban (Fundamental of University Mechanical Materials, SI-unit version), Jikkyo Shuppan, Tokyo, (2008), 8 (in Japanese). ISBN978-4407023282
17) T.Gundgire, S.Santa-aho, T.Rautio, A.Järvenpää and M.Vippola: J. Mater. Process. Technol., 323(2024), 118229. https://doi.org/10.1016/j.jmatprotec.2023.118229
21) M.Tanino and S.Suzuki: Zairyougaku series, Tekkou Zairyou no Kagaku, Tetsu ni Gyousyuku Sareta Technology (Materials Science Series, Science of Steel Materials: The Technology Condensed into Iron), Uchida Rokakuho Publishing, Tokyo, (2001), 169 (in Japanese). ISBN978-4753656158
11) A.Takemura and Y.Tanaka: Tetsu-to-Hagané, 102(2016), 501 (in Japanese). https://doi.org/10.2355/tetsutohagane.TETSU-2015-109
5) M.Terano, F.Zhang and M.Yoshino: Procedia Eng., 207(2017), 1850. https://doi.org/10.1016/j.proeng.2017.10.950
10) S.Takesue, T.Morita, Y.Misaka and J.Komotori: Results Surf. Interfaces, 11(2023), 100121. https://doi.org/10.1016/j.rsurfi.2023.100121
7) S.Kikuchi, T.Fukuoka and J.Komotori: Trans. Jpn. Soc. Mech. Eng. A, 77(2011), 1367 (in Japanese). https://doi.org/10.1299/kikaia.77.1367
16) D.Yonekura, J.Komotori, M.Shimizu and H.Shimizu: Trans. Jpn. Soc. Mech. Eng. A, 68(2002), 509 (in Japanese). https://doi.org/10.1299/kikaia.68.509
18) S.Bagherifard, I.Fernández Pariente, R.Ghelichi and M.Guagliano: Procedia Eng., 2(2010), 1683. https://doi.org/10.1016/j.proeng.2010.03.181
2) Y.Shinohara: Development and Technology of Functionally Graded Materials, ed. by S.Uemura, Y.Noda, K.Shinohara and Y.Watanabe, CMC Pubulishing, Tokyo, (2009), 4 (in Japanese). ISBN978-4781301235
25) K.Fueki, K.Kitazawa and K.Matsukawa: J. Ceram. Assoc. Jpn., 87(1979), 146 (in Japanese). https://doi.org/10.2109/jcersj1950.87.1003_146
28) S.Nagasaki and M.Hirabatashi: Nigen Goukin Jyotaizu Syu (Book of Binary Phase Diagram), Agne Gijutsu Center, (2010), 151 (in Japanese). ISBN978-4900041882
1) S.Uemura and Y.Watanabe: Functionally Graded Materials: Fundamentals and Applications, Corona Publishing, Tokyo, (2014), 5 (in Japanese). ISBN978-4339046298
22
23
24
25
26
27
28
10
11
12
13
14
15
16
17
18
19
1
2
3
4
5
6
7
8
9
20
21
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SubjectTerms grain refinement
hot-shot peening
media component diffused layer
plastic forming
Title Influence of Plastic Deformation and Heat Treatment on the Metallic Structure Control and Local Alloying: Example of Hot Shot Peening
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