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Erschienen in: Metallurgist 1-2/2019

22.05.2019

Structure Formation in the Zones of Joints Obtained by Explosion Welding with Subsequent Rolling of a Five-Layer Titanium-Steel Composite

verfasst von: V. N. Arisova, L. M. Gurevich, A. F. Trudov, A. G. Serov, V. G. Kharlamov

Erschienen in: Metallurgist | Ausgabe 1-2/2019

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Abstract

We present the results of investigations of the influence of explosion welding and hot rolling at a temperature of 850 °C on the micromechanical properties, structure, and phase composition of the zones of joints of a five-layer “VT-20 titanium alloy–08Kh18N10T corrosion-resistant steel” composite material.

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Literatur
1.
Zurück zum Zitat Yu. P. Trykov, L. M. Gurevich, and V. G. Shmorgun, Titanium-Steel Composites and Joints [in Russian], VolgGTU, Volgograd (2013). Yu. P. Trykov, L. M. Gurevich, and V. G. Shmorgun, Titanium-Steel Composites and Joints [in Russian], VolgGTU, Volgograd (2013).
2.
Zurück zum Zitat M. Ghosh and S. Chatterjee, “Characterization of transition joints of commercially pure titanium to 304 stainless steel,” Mater. Charact., 48, 393–399 (2002).CrossRef M. Ghosh and S. Chatterjee, “Characterization of transition joints of commercially pure titanium to 304 stainless steel,” Mater. Charact., 48, 393–399 (2002).CrossRef
3.
Zurück zum Zitat M. Ghosh, S. Dasb, P. S. Banarjee, and S. Chatterjee, “Variation in the reaction zone and its effects on the strength of diffusion bonded titanium–stainless steel couple,” Mat. Sci. Eng., Ser. A, 390, 217–226 (2005).CrossRef M. Ghosh, S. Dasb, P. S. Banarjee, and S. Chatterjee, “Variation in the reaction zone and its effects on the strength of diffusion bonded titanium–stainless steel couple,” Mat. Sci. Eng., Ser. A, 390, 217–226 (2005).CrossRef
4.
Zurück zum Zitat P. He, X. Yue, and J. H. Zhang, “Hot pressing diffusion bonding of a titanium alloy to a stainless steel with an aluminum alloy interlayer,” Mat. Sci. Eng., Ser. A, 486, 171–176 (2008).CrossRef P. He, X. Yue, and J. H. Zhang, “Hot pressing diffusion bonding of a titanium alloy to a stainless steel with an aluminum alloy interlayer,” Mat. Sci. Eng., Ser. A, 486, 171–176 (2008).CrossRef
5.
Zurück zum Zitat S. Kundu, M. Ghosh, and S. Chatterjee, “Diffusion bonding of commercially pure titanium and 17–4 precipitation hardening stainless steel,” Mat. Sci. Eng., Ser. A, 428, 18–23 (2006).CrossRef S. Kundu, M. Ghosh, and S. Chatterjee, “Diffusion bonding of commercially pure titanium and 17–4 precipitation hardening stainless steel,” Mat. Sci. Eng., Ser. A, 428, 18–23 (2006).CrossRef
6.
Zurück zum Zitat M. K. Leea, J. G. Lee, Y. H. Choi, et al., “Interlayer engineering for dissimilar bonding of titanium to stainless steel,” Mater. Lett., 64, 1105–1108 (2010).CrossRef M. K. Leea, J. G. Lee, Y. H. Choi, et al., “Interlayer engineering for dissimilar bonding of titanium to stainless steel,” Mater. Lett., 64, 1105–1108 (2010).CrossRef
7.
Zurück zum Zitat A. El Refaey and W. Tillmann, “Characterization of titanium/steel joints brazed in vacuum,” Suppl. to Welding Journal, May, 113–118 (2008). A. El Refaey and W. Tillmann, “Characterization of titanium/steel joints brazed in vacuum,” Suppl. to Welding Journal, May, 113–118 (2008).
8.
Zurück zum Zitat S. Kundu, M. Ghosh, A. Laik, et al., “Diffusion bonding of commercially pure titanium to 304 stainless steel using copper interlayer,” Mat. Sci. Eng., Ser. A, 407, 154–160 (2005).CrossRef S. Kundu, M. Ghosh, A. Laik, et al., “Diffusion bonding of commercially pure titanium to 304 stainless steel using copper interlayer,” Mat. Sci. Eng., Ser. A, 407, 154–160 (2005).CrossRef
9.
Zurück zum Zitat N. Rughue, “Characterization of explosive weld interface,” Proc. Internat. Symp. Res. Stud. Mater. Sci. Eng. (Chennai, India, Dec. 2004). N. Rughue, “Characterization of explosive weld interface,” Proc. Internat. Symp. Res. Stud. Mater. Sci. Eng. (Chennai, India, Dec. 2004).
10.
Zurück zum Zitat S. A. A. Akbari Mousavi and P. F. Sartangi, “Effect of post-weld heat treatment on the interface microstructure of explosively welded titanium–stainless steel composite,” Mat. Sci. Eng., Ser. A, 494, 329–336 (2008).CrossRef S. A. A. Akbari Mousavi and P. F. Sartangi, “Effect of post-weld heat treatment on the interface microstructure of explosively welded titanium–stainless steel composite,” Mat. Sci. Eng., Ser. A, 494, 329–336 (2008).CrossRef
11.
Zurück zum Zitat F. Findik, “Recent developments in explosive welding,” Mater. Design, 32, 1081–1093 (2011).CrossRef F. Findik, “Recent developments in explosive welding,” Mater. Design, 32, 1081–1093 (2011).CrossRef
12.
Zurück zum Zitat N. Kahraman, B. Gulenc, and F. Findik, “Joining of titanium/stainless steel by explosive welding and effect on interface,” J. Mater. Proc. Tech., 169, 127–133 (2005).CrossRef N. Kahraman, B. Gulenc, and F. Findik, “Joining of titanium/stainless steel by explosive welding and effect on interface,” J. Mater. Proc. Tech., 169, 127–133 (2005).CrossRef
13.
Zurück zum Zitat P. Manikandan, K. Hokamoto, A. A. Deribas, et al., “Welding of titanium/stainless steel by controlling energetic conditions,” Mater. Trans., 47, No. 8, 2049–2055 (2006).CrossRef P. Manikandan, K. Hokamoto, A. A. Deribas, et al., “Welding of titanium/stainless steel by controlling energetic conditions,” Mater. Trans., 47, No. 8, 2049–2055 (2006).CrossRef
14.
Zurück zum Zitat P. Manikandan, K. Hokamoto. M. Fujita, et al., “Control of energetic conditions by employing interlayer of different thickness for explosive welding of titanium/304 stainless steel,” J. Mater. Proc. Tech., 195, 232–240 (2008).CrossRef P. Manikandan, K. Hokamoto. M. Fujita, et al., “Control of energetic conditions by employing interlayer of different thickness for explosive welding of titanium/304 stainless steel,” J. Mater. Proc. Tech., 195, 232–240 (2008).CrossRef
15.
Zurück zum Zitat J. Song, A. Kostka, M. Veehmayer, and D. Raabe, “Hierarchical microstructure of explosive joints: Example of titanium to steel cladding,” Mat. Sci. Eng., Ser. A, 528, 2641–2647 (2011).CrossRef J. Song, A. Kostka, M. Veehmayer, and D. Raabe, “Hierarchical microstructure of explosive joints: Example of titanium to steel cladding,” Mat. Sci. Eng., Ser. A, 528, 2641–2647 (2011).CrossRef
16.
Zurück zum Zitat L. M. Gurevich, V. G. Shmorgun, O. V. Slautin, and A. I. Bogdanov, Layered Intermetallic Composites and Coatings [in Russian], Metallurgizdat, Moscow (2016). L. M. Gurevich, V. G. Shmorgun, O. V. Slautin, and A. I. Bogdanov, Layered Intermetallic Composites and Coatings [in Russian], Metallurgizdat, Moscow (2016).
17.
Zurück zum Zitat Yu. P. Trykov, L. M. Gurevich, and V. N. Arisova, Diffusion in Layered Composites [in Russian], VolgGTU, Volgograd (2006). Yu. P. Trykov, L. M. Gurevich, and V. N. Arisova, Diffusion in Layered Composites [in Russian], VolgGTU, Volgograd (2006).
18.
Zurück zum Zitat V. G. Shmorgun, Yu. P. Trykov, and O. V. Slautin, “Complex technological processes aimed at getting layered intermetallic composites,” Konstr. Kompoz. Mater., No. 3, 3–9 (2005). V. G. Shmorgun, Yu. P. Trykov, and O. V. Slautin, “Complex technological processes aimed at getting layered intermetallic composites,” Konstr. Kompoz. Mater., No. 3, 3–9 (2005).
19.
Zurück zum Zitat Yu. P. Trykov, V. N. Arisova, S. A. Volobuev, et al., “Investigation of the fine structures of titanium-steel joints obtained by explosion welding,” Svar. Proizvod., No. 7, 9–11 (1998). Yu. P. Trykov, V. N. Arisova, S. A. Volobuev, et al., “Investigation of the fine structures of titanium-steel joints obtained by explosion welding,” Svar. Proizvod., No. 7, 9–11 (1998).
20.
Zurück zum Zitat Yu. P. Trykov, O. V. Slautin, and D. Yu. Dontsov, “Influence of hot rolling on the properties of three-layer titanium–steel composite obtained by explosion welding,” Izv. Vyssh. Uchebn. Zaved., Ser. Chern. Metallurg., No. 1, 68–69 (2007). Yu. P. Trykov, O. V. Slautin, and D. Yu. Dontsov, “Influence of hot rolling on the properties of three-layer titanium–steel composite obtained by explosion welding,” Izv. Vyssh. Uchebn. Zaved., Ser. Chern. Metallurg., No. 1, 68–69 (2007).
Metadaten
Titel
Structure Formation in the Zones of Joints Obtained by Explosion Welding with Subsequent Rolling of a Five-Layer Titanium-Steel Composite
verfasst von
V. N. Arisova
L. M. Gurevich
A. F. Trudov
A. G. Serov
V. G. Kharlamov
Publikationsdatum
22.05.2019
Verlag
Springer US
Erschienen in
Metallurgist / Ausgabe 1-2/2019
Print ISSN: 0026-0894
Elektronische ISSN: 1573-8892
DOI
https://doi.org/10.1007/s11015-019-00798-8

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