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Abstrakty
Explosive welding is a solid state welding process, which uses a controlled explosive detonation to force two metals together at high pressure. The process has been fully developed with large-scale applications in the manufacturing industry. The explosive bonding technique has an ability to bond a variety of similar and dissimilar materials, and has been applied to fabricate the clad materials and some composites such as multilayered and wire-reinforced materials. In this study, aluminum plates were explosively welded by placing a steel wire mesh between them in order to produce wire mesh reinforced composite materials. The steel wire meshes were placed at two different orientations (45° and 90°). The wire mesh was used to improve the mechanical properties of the explosively welded aluminum plates. Hardness, tensile strength, toughness, bending and microstructure of the explosively welded composite materials were evaluated. The tensile and toughness tests results showed that the 45° wire mesh reinforced composites exhibited higher strength than unreinforced explosively bonded Al plates. No separation was observed in the interface of the welded composite materials after three-point bending. The highest hardness value was measured for the area near the joining interface.
Czasopismo
Rocznik
Tom
Strony
1--8
Opis fizyczny
Bibliogr. 25 poz., rys., wykr.
Twórcy
autor
- Gazi University, Technology Faculty, 06500 Ankara, Turkey
autor
- Karabük University, Technology Faculty, 78050 Karabük, Turkey
autor
- Gazi University, Technology Faculty, 06500 Ankara, Turkey
autor
- Gazi University, Technology Faculty, 06500 Ankara, Turkey
autor
- Gazi University, Technology Faculty, 06500 Ankara, Turkey
autor
- Karabük University, Technology Faculty, 78050 Karabük, Turkey
Bibliografia
- [1] X. Hong-bo, W. Shao-gang, B. Hai-feng, Microstructure and mechanical properties of Ti/Al explosive cladding, Materials and Design 56 (2014) 1014–1019.
- [2] M. Kwiecien, J. Majta, D. Dziedzic, Shear deformation and failure of explosive welded Inconel-microalloyed steels bimetals, Archives of Civil and Mechanical Engineering 14 (1) (2014) 32–39.
- [3] B. Gülenç, Investigation of interface properties and weldability of aluminum and copper plates by explosive welding method, Materials and Design 29 (1) (2008) 275–278.
- [4] M. Acarer, B. Gülenç, F. Fındık, The Influence of some factors on steel/steel bonding quality on their characteristics of explosive welding joints, Journal of Materials Science 39 (2004) 6457–6466.
- [5] M.H. Bina, F. Dehghani, M. Salimi, Effect of heat treatment on bonding interface in explosive welded copper/stainless steel, Materials and Design 45 (2013) 504–509.
- [6] R. Mendes, J.B. Ribeiro, A. Loureiro, Effect of explosive characteristics on the explosive welding of stainless steel to carbon steel in cylindrical configuration, Materials and Design 51 (2013) 182–192.
- [7] N. Kahraman, B. Gülenç, F. Fındık, Corrosion and mechanical–microstructural aspects of dissimilar joints of Ti–6Al–4V and Al plates, International Journal of Impact Engineering 34 (2007) 1423–1432.
- [8] N. Kahraman, B. Gülenç, Metallurgical and corrosion properties of explosively welded Ti6Al4V/low carbon steel clad, Journal of Materials Processing Technology 21 (05) (2005) 743–748.
- [9] N. Kahraman, B. Gülenç, Microstructural and mechanical properties of Cu–Ti plates bonded through explosive welding process, Journal of Materials Processing Technology 169 (1) (2005) 67–71.
- [10] N. Zhou, J. Wang, C. Peng, Z. Tong, Experimental and numerical study on the ballistic resistance of steel-fibre reinforced two-layer explosively welded plates, Materials and Design 54 (2014) 104–111.
- [11] M. Acarer, B. Demir, An investigation of mechanical and metallurgical properties of explosive welded aluminum-dual phase steel, Materials Letters 62 (2008) 4158–4160.
- [12] B. Wang, W. Chen, J. Li, Z. Liu, X. Zhu, Microstructure and formation of melting zone in the interface of Ti/NiCr explosive cladding bar, Materials and Design 47 (2013) 74–79.
- [13] F. Fındık, Recent developments in explosive welding, Materials and Design 32 (2011) 1081–1093.
- [14] H.H. Yan, X.J. Li, Strain rate distribution near welding interface for different collision angles in explosive welding, International Journal of Impact Engineering 35 (2008) 3–9.
- [15] Y. Wang, H.G. Beom, M. Sun, S. Lin, Numerical simulation of explosive welding using the material point method, International Journal of Impact Engineering 38 (2011) 51–60.
- [16] G. Xunzhong, T. Jie, W. Wentao, L. Huaguan, W. Chen, Effects of the inner mould material on the aluminium-316L stainless steel explosive clad pipe, Materials and Design 49 (2013) 116– 122.
- [17] W. Walczak, Explosive welding of metals – present state and prospects for future investigations and applications in Poland, Welding International 16 (7) (2002) 509–512.
- [18] A. Abe, Numerical simulation of the plastic flow field near the bonding surface of explosive welding, Journal of Materials Processing Technology 85 (1999) 162–165.
- [19] Y. Kaya, N. Kahraman, An investigation into the explosive welding/cladding of Grade A ship steel/AISI 316L austenitic stainless steel, Materials and Design 52 (2013) 367–372.
- [20] I.S. Los, A.V. Khorin, E.G. Troshkina, M.S. Gus'kov, Al–Cu composite by explosive welding, in: X International Symposium on Explosive Production of New Materials: Science, Technology, Business and Innovations (EPNM-2010), Bechichi, Montenegro, June 7–11, (2010) 1–14.
- [21] A.K. Bhalla, J.D. Williams, Production of stainless steel wire- reinforced aluminium composite sheet by explosive compaction, Journal of Materials Science 12 (3) (1977) 522–530.
- [22] H.R. Pakzaman, M. Divandari, A.R. Khavandi, Effect of nickel coating on steel wire reinforcement on mechanical properties of aluminum matrix composites produced via lost foam casting, in: Proceedings of Iran International Aluminum Conference (IIAC2012), Arak, I.R. Iran, May 15– 16, (2012) 1–7.
- [23] ISO 5173-2000 Destructive tests on welds in metallic materials-Bend tests, 2000.
- [24] W. Jiang, Y. Luo, G. Zhang, W. Woo, S.T. Tu, Experimental to study the effect of multiple weld-repairs on microstructure, hardness and residual stress for a stainless steel clad plate, Materials and Design 51 (2013) 1052–1059.
- [25] A. Durgutlu, B. Gülenç, F. Fındık, Examination of copper/ stainless steel joints formed by explosive welding, Materials and Design 26 (6) (2005) 497–507.
Uwagi
PL
Opracowanie ze środków MNiSW w ramach umowy 812/P-DUN/2016 na działalność upowszechniającą naukę
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-e08eabbd-4e6f-4ca2-93be-29de38e0528b