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- W2895564437 abstract "Now a day simulation has gained wide attention because of its versatility to predict the results with a nearer approximation to obtained experimental values. This investigation is of similar kind to access the ballistic performance of surface modified armour grade AA7075 aluminium alloy using 3D-nonlinear dynamic explicit finite element code AUTODYN and comparing with that of experimentally obtained one. Scanty of literature is available in the domain of direct evaluation of ballistic limit of performance of material for combat vehicles. Based on recent literature, lead projectile of 7.62mm diameter, armour grade 7075 aluminium monolithic material and boron carbide surfaced with 7075 aluminium alloy i.e. surface metal matrix (target) has been modeled using CATIA. The modeled entities are imported into the ANSYS workbench and were assigned with similar boundary conditions and material properties as available in literature. During the simulation, model has been analysed for accessing the ballistic performance of surface composites using 3D-nonlinear dynamic explicit finite element code AUTODYN. The results obtained are compared with experimental findings as available in open literature and maximum deviation of 10% was found. Thus, the present developed model can be used successfully to for accessing the ballistic performance of any kind of materials." @default.
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- W2895564437 date "2018-01-01" @default.
- W2895564437 modified "2023-09-27" @default.
- W2895564437 title "Simulation and validation of ballistic performance of armor grade AA7075 aluminum alloy using friction stir processing" @default.
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- W2895564437 doi "https://doi.org/10.1016/j.matpr.2018.06.388" @default.
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