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Ballistic Studies on TiB_2-Ti Functionally Graded Armor Ceramics

机译:TiB_2-Ti功能梯度铠装陶瓷的弹道研究

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摘要

The objective of this paper is to discuss the results of the ballistic testing of spark plasma sintered TiB_2-Ti based functionally graded materials (FGMs) with an aim to assess their performance in defeating small-calibre armor piercing projectiles. We studied the efficacy of FGM design and compared its ballistic properties with those of TiB_2-based composites as well as other competing ceramic armors. The ballistic properties are critically analyzed in terms of depth of penetration, ballistic efficiency, fractographs of fractured surfaces as well as quantification of the shattered ceramic fragments. It was found that all the investigated ceramic compositions exhibit ballistic efficiency (η) of 5.1 -5.9. We also found that by increasing the thickness of FGM from 5 mm to 7.8 mm, the ballistic property of the composite degraded. Also, the strength of the ceramic compositions studied is sufficient to completely fracture the nose of the pointed projectile used. Analysis of the ceramic fragments (2 μm-10 mm) showed that harder the ceramic, coarser were the fragments formed. On comparing the results with available armor systems, it has been concluded that TiB_2 based composites can show better ballistic properties, except B4C. SEM analysis of the fragments obtained after testing with FGM showed formation of cleavage steps as well as presence of intergranular cracks, indicating that the FGM fractured by mixed mode of failure. It can be concluded that the FGM developed has lower ballistic properties compared to its monolith TiB_2-20 wt.% 71
机译:本文的目的是讨论火花等离子体烧结TiB_2-Ti基功能梯度材料(FGM)的弹道测试结果,以评估其在击败小口径穿甲弹时的性能。我们研究了FGM设计的功效,并将其弹道性能与基于TiB_2的复合材料以及其他竞争性陶瓷装甲的弹道性能进行了比较。弹道性能会根据穿透深度,弹道效率,断裂表面的分形图以及破碎的陶瓷碎片的定量进行严格分析。发现所有研究的陶瓷组合物均显示出5.1 -5.9的弹道效率(η)。我们还发现,通过将FGM的厚度从5 mm增加到7.8 mm,复合材料的弹道性能会降低。而且,所研究的陶瓷组合物的强度足以完全使所使用的尖弹头的鼻部断裂。对陶瓷碎片(2μm-10mm)的分析表明,陶瓷越硬,形成的碎片越粗糙。通过将结果与可用的装甲系统进行比较,可以得出结论,除B4C外,基于TiB_2的复合材料可显示更好的弹道性能。用FGM测试后获得的碎片的SEM分析显示形成了裂解步骤以及存在晶间裂纹,表明FGM因混合破坏模式而破裂。可以得出结论,与整体式TiB_2-20 wt。%71相比,开发的FGM具有较低的弹道性能

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