Yapıştırma ile Oluşturulmuş Al-Çe Katmanlı Sacların Dizilime Bağlı Olarak Mekanik Özelliklerinin Belirlenmesi
Abstract
Keywords
Katmanlı sac, anizotropi, kulaklanma, derin çekme
Supporting Institution
Project Number
Thanks
References
- Aghchai, A.J.,, Shakeri, M., and Dariani, B.M., (2013). Influences of material properties of components on formability of two-layer metallic sheets. The International Journal of Advanced Manufacturing Technology, 66(5–8), 809–823.
- Aghchai, A.J.,, Shakeri, M., and Mollaei-Dariani, B., (2008). Theoretical and experimental formability study of two-layer metallic sheet (Al1100/St12). Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture, 222(9), 1131–1138.
- ASTM-E517-00, (2011). Standard Test Method for Plastic Strain Ratio r for Sheet Metal. ASTM Standard.
- ASTM-E8/E8M-15a, (2015). Standard Test Methods for Tension Testing of Metallic Materials. ASTM Standard.
- Choi, S.H.,, Kim, K.H.,, Oh, K.H., and Lee, D.N., (1997). Tensile deformation behavior of stainless steel clad aluminum bilayer sheet. Materials Science and Engineering A, 222(2), 158–165.
- Fereshteh-Saniee, F.,, Alavi-Nia, A., and Atrian-Afyani, A., (2008). An experimental investigation on the deep drawing process of steel–brass bimetal sheets. Proceedings of metal forming p. Krakow, Poland.
- Harhash, M., (2017). Forming Behaviour of Multilayer Metal/Polimer/Metal Systems. Technische Universitat Clausthal.
- Kagzi, S.A.,, Gandhi, A.H.,, Dave, H.K., and Raval, H.K., (2016). An analytical model for bending and springback of bimetallic sheets. Mechanics of Advanced Materials and Structures, 23(1), 80–88.
- Kim, I.K., and Hong, S.I.G., (2013). Roll-bonded tri-layered Mg/Al/stainless steel clad composites and their deformation and fracture behavior. Metallurgical and Materials Transactions A: Physical Metallurgy and Materials Science, 44(8), 3890–3900.
- Kim, K.J.,, Kim, D.,, Choi, S.H.,, Chung, K.,, Shin, K.S.,, Barlat, F., et al., (2003). Formability of AA5182/polypropylene/AA5182 sandwich sheets. Journal of Materials Processing Technology, 139(1–3), 1–7.