The development of aluminium composite with the inclusion of advanced materials is a continuous research process due to the increasing industrial demand for advanced hybrid materials. To cater for this need, this research work focuses on the development of Al 7075 alloy reinforced with TiB(2) and graphene and on the evaluation of its strengthening mechanism. Two different modes of improving the strength of the hybrid composite have been followed; one is by the inclusion of graphene at three levels of 0.1, 0.2 and 0.3%, and another by the processing route, squeeze casting technique by compression of the molten hybrid composite slurry before casting. The microstructure and characterisation of the composite material are examined and analysed with the help of XRD, SEM, EDAX and chemical spectroscopy. A microstructure evaluation is employed to justify the homogenous dispersal and the existence of reinforced particles. A tensile test is conducted at room temperature and high temperature environments to assess the tensile strength. The research outcome affirms that a significant improvement in tensile and hardness has been noted in comparison with base alloy. The fracture-morphology results affirm the change in fracture mode from brittle to ductile when the tensile testing environment changes from room temperature to high temperature. Finally, the dispersion strengthening mechanism is validated with an empirical approach.
Room and High Temperature Tensile Responses of Tib(2)-Graphene Al 7075 Hybrid Composite Processed through Squeeze Casting.
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作者:Mathimurugan N, Vaishnav V, Praveen Kumar R, Boobalan P, Nandha S, Chenrayan Venkatesh, Shahapurkar Kiran, Tirth Vineet, Alarifi Ibrahim M, Eldirderi Moutaz Mustafa A, Khedher Khaled Mohamed, Najm Hadee Mohammed
| 期刊: | Nanomaterials | 影响因子: | 4.300 |
| 时间: | 2022 | 起止号: | 2022 Sep 9; 12(18):3124 |
| doi: | 10.3390/nano12183124 | ||
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