Abstract
In the frame of the common research project, the mechanical behaviour of recycled thin sheet Ti-Al based composites reinforced with scrap pure aluminium (AA1050) and boron, B reinforcement elements have been used with thin Ti-Al sheet recycled by hot forging method. The effects of chemical bonds during the production of these multifunctional sandwich composite structures were analyzed by 3-point bending tests to evaluated hyper elasticity behaviour. The same idea has been carried out this time on the Ti-Al based composites performed by sintered + forging through the powder metallurgy route by using different reinforcements such as TiB2, TiC, and B4C. Quasi static compression and low velocity impact (drop weight) tests have been performed on the sintered + forging specimens with a drop tower to observe the response of theses composites under the dynamic loading conditions. Interface and microstructure of these composites have been evaluated by Scanning Electron Microscope (SEM).
Keywords
- Recycled Ti-Al based composites
- Bond strength
- Mechanical behaviour
- Bending test
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References
Huang, S.C., Chesnutt, J.C.: Gamma TiAl and its alloys. In: Westbrook, J.H., Fleischer, R.L. (eds.) Intermetallic Compounds, vol. 2, pp. 73–90. Wiley, New York (1995)
Nathal, M.V., Darolia, R., Liu, C.T., Martin, P.L., Miracle, D.B., Wagner, R., Yamaguchi, M.: Structural Intermetallics, p. 157. TMS, Warrendale, PA (1997)
Balak, Z., Abbasi, S.M.: Influence of the Ti content, training cycles and pre-strain on the two-way shape memory effect in NiTi alloys. Mater. Des. 32, 3992–3996 (2011)
Khamei, A., Dehghani, K.: Microstructural evolution during the hot deformation of Ti−55Ni (at. pct) intermetallic alloy. Metall. Mater. Trans. A. 41, 2595–2605 (2010)
Bayraktar, E., Mora, R., Garcia, I.-M., Bathias, C.: Heat treatment, surface roughness and corrosion effects on the damage mechanism of mechanical components in the very high cycle fatigue regime. Int. J. Fatigue. 31, 1532–1540 (2009)
Kevorkijan, V.S., Škapin, D.: Fabrication and characterization of TiAl/Ti3Al-based intermetallic composites (IMCS) reinforced with ceramic particles. Assoc. Metall. Eng. Serbia AMES. 15, 75–89 (2009)
Katundi, D., Miskioglu, I., Bayraktar, E.: Design of Intermetallic Mg (Recycled Ti-Al) Based Composites Through Semi Powder Metallurgy Method, − Mechanics of Composite and Multi-functional Materials, vol. 5, pp. 27–34. Springer (2019). https://doi.org/10.1007/978-3-030-30028-9_4
Bayraktar, E., Bathias, C., Xue, H., Tao, H.: On the giga cycle fatigue behaviour of two-phase (α2/γ) Ti-Al alloy. Int. J. Fatigue. 26, 1263–1275 (2004)
Tetsui, T.: Development of a Ti-Al turbocharger for passenger vehicles. Mater. Sci. Eng. A. 329–331, 582–588 (2002)
Tetsui, T.: Effects of high niobium addition on the mechanical properties and high-temperature deformability of gamma TiAl alloy. Intermetallics. 10, 239–245 (2002)
Singh, J., Chauhan, A.: Characterization of hybrid aluminum matrix composites for advanced applications–a review. J. Mater. Res. Technol. 5(2), 159–169 (2016)
Bayraktar, E., Katundi, D.: Development of a new aluminium matrix composite reinforced with iron oxide (Fe3O4). J. Achieve. Mater. Manufact. Eng. 38(/1), 7–14 (2010)
Enginsoy, H., Gatamorta, F., Bayraktar, E., Robert, M., Miskioglu, I.: Experimental and numerical study of Al-Nb2Al composites via associated procedure of powder metallurgy and thixoforming. JCOMB, Compos. Part B Eng. 162, 397–410 (2019). https://doi.org/10.1016/j.compositesb.2018.12.138
Bayraktar, E., Miskioglu, I., Katundi, D., Gatamorta, F.: Manufacturing of Recycled Aluminum Matrix Composites Reinforced of TiC/MoS2/Al2O3 Fiber Through Combined Method: Sintered + Forging, Mechanics of Composite and Multi-functional Materials, vol. 5, pp. 15–26. Springer (2019). https://doi.org/10.1007/978-3-030-30028-9_3
Ezeddini, S., Zambelis, G., Bayraktar, E., Miskioglu, I., Katundi, D.: Experimental study of laser cutting process of titanium aluminium (Ti-Al) based composites designed through combined method of powder metallurgy and thixoforming. Mech. Compos. Multi-funct. Mater. 6, 21–31 (2017)
Xiao, C., Lin, Y.C., Dong, W.: Dynamic recrystallization behavior of a typical nickel-based superalloy during hot deformation. Mater. Des. 57, 568–577 (2014)
Bolzoni, L., Ruiz-Navas, E.M., Neubauer, E., Gordo, E.: Inductive hot-pressing of titanium and titanium alloy powders. Mater. Chem. Phys. 131(3), 672–679 (2012)
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Bayraktar, E., Katundi, D., Gatamorta, F., Miskioglu, I., Enginsoy, H.M. (2021). Design of Recycled Thin Sheet “Ti-Al” Based Composites Reinforced with AA1050, Boron, TiB2, TiC, and B4C Through Hot-Forged Bonding. In: Singh, R.P., Chalivendra, V. (eds) Mechanics of Composite, Hybrid and Multifunctional Materials , Volume 6. Conference Proceedings of the Society for Experimental Mechanics Series. Springer, Cham. https://doi.org/10.1007/978-3-030-59868-6_10
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DOI: https://doi.org/10.1007/978-3-030-59868-6_10
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