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Mechanical and optical properties of MgAl2O4 ceramics and ballistic efficiency of spinel based armour

机译:MgAl2O4陶瓷的力学和光学性能以及尖晶石基装甲的弹道效率

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? 2022 Elsevier Ltd and Techna Group S.r.l.This study was devoted to the understanding of the influence of MgAl2O4 ceramic properties on their ballistic performances. By modifying the processing parameters, ceramics with different microstructures were obtained. Among them, a transparent MgAl2O4 spinel with an in-line transmission between 77 and 83 in the visible range, an average grain size of 8.6 μm and good mechanical properties (11.3 GPa in Knoop hardness and 2.5 MPa√m in fracture toughness) was produced. A thorough characterisation of the ceramics was accomplished in order to establish a link between microstructure, mechanical properties and ballistic protective performances against an armour piercing projectile of calibre 7.62x51 mm. The ballistic evaluation demonstrated the advantage of using a spinel layer as the strike face to stop a threat, while reducing drastically the thickness and the areal density of the transparent multilayer, compared to a simple glass armour. MgAl2O4 spinel with fine grains presented a better combination of mechanical properties compared to coarser microstructures, hence a better potential to damage a projectile at the impact.
机译:?2022 Elsevier Ltd 和 Techna Group S.r.l.本研究致力于了解 MgAl2O4 陶瓷性能对其弹道性能的影响。通过修改加工参数,得到具有不同微观结构的陶瓷。其中,制备了一种透明的MgAl2O4尖晶石,在可见光范围内在线透射率在77%-83%之间,平均晶粒尺寸为8.6 μm,力学性能良好(努氏硬度为11.3 GPa,断裂韧性为2.5 MPa√m)。对陶瓷进行了彻底的表征,以便在微观结构、机械性能和防弹性能之间建立联系,以对抗口径为 7.62x51 毫米的穿甲弹。弹道评估表明,与简单的玻璃装甲相比,使用尖晶石层作为打击面来阻止威胁的优势,同时大大减少了透明多层的厚度和面密度。与较粗的微观结构相比,具有细晶粒的MgAl2O4尖晶石具有更好的力学性能组合,因此在撞击时损坏弹丸的可能性更大。

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