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On the evaluation of mechanical properties and ballistic performance of two variants of boron carbide

机译:硼碳化硼两种变种的力学性能和弹道性能的评价

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摘要

A comparative study on the microstructure, rate-dependent compressive behavior, and ballistic performance of commercially available pressureless sintered boron carbide-titanium diboride (material Z) and hot-pressed boron carbide (material S) was conducted. Under quasi-static compression at rates of 1.4 to 1.6 x 10-4 s-1, the strength was found to be 3.07 ? 0.11 GPa for material Z and 4.72 ? 0.14 GPa for material S. At dynamic strain rates ranging from 185 to 1152 s-1, the compressive strength ranged from 3.56 to 4.07 GPa for material Z and 5.24 to 5.97 GPa for material S. Depth of penetration testing was performed using 7.62 mm AP M2 projectiles. The normalized ballistic efficiency of the two materials were found to be comparable at 932 m/s, while material S was superior to material Z at an impact velocity of 1078 m/s. Based on post-mortem SEM analysis of ballistic tile fragments, the inferior mechanical properties and ballistic performance of material Z are attributed to an uneven distribution of silicon impurities and a significant level of porosity.
机译:进行了商业无气可阻燃碳化硼 - 碳化硼(材料Z)和热压碳化硼(材料S)的微观结构,速率依赖性压缩行为和弹道性能的比较研究。在准静态压缩下,速率为1.4至1.6×10-4 s-1,发现强度为3.07? 0.11 GPA用于材料Z和4.72? 0.14 GPA用于材料S.在185至1152 S-1的动态应变速率下,压缩强度范围为3.56至4.07GPa的材料Z和5.24至5.97GPa,用于材料S.使用7.62 mm AP进行穿透性测试深度进行渗透测试。 M2射弹。发现两种材料的归一化的弹道效率在932m / s的情况下可比较,而材料S优于1078m / s的冲击速度的材料z。基于弹道砖片段的验验SEM分析,材料Z的劣割性能和弹道性能归因于硅杂质的不均匀分布和显着水平的孔隙率。

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