首页> 外文会议>21st International Symposium on Ballistics v.1 >INVESTIGATION OF THE INFLUENCE OF NIOBIA ADDITIONS IN ALUMINA FOR BALLISTIC APPLICATIONS
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INVESTIGATION OF THE INFLUENCE OF NIOBIA ADDITIONS IN ALUMINA FOR BALLISTIC APPLICATIONS

机译:铝粉中铌的添加对弹道应用的影响的调查

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Variational analysis was employed to evaluate the effect of niobia addition in alumina to be used as component in armor systems. A good ceramic for armor applications requires high hardness, densification, and absorbed energy under dynamic impact. The latter property measures the material dynamic fracture toughness. Statistical analysis was conducted using the program called STATISTICA. The output properties were hardness, densification, and absorbed energy under ballistic impact which are essentials for ceramic armor protection. The input variables were concentration niobia and sintering conditions. The response surfaces for the output properties for niobia concentrations ranging from 0 wt% to 6 wt% showed a maximum for 4 wt% of niobia. By analyzing the average values using the LSD method with a confidence level of 95% for all cases including the reference, it became clear that the alumina with 4 wt% of niobia sintered at 1400℃ / 3 h showed simultaneous maxima for hardness, densification, and energy absorption. Such processing condition is very attractive for alumina-based ceramic applications in armor systems.
机译:采用变分分析来评估在氧化铝中添加氧化铌作为装甲系统的组成部分的效果。一种用于装甲应用的良好陶瓷需要高硬度,致密化和动态冲击下吸收的能量。后一特性测量材料的动态断裂韧性。使用名为STATISTICA的程序进行统计分析。输出特性是在弹道冲击下的硬度,致密化和吸收能,这是保护陶瓷铠装的基本要素。输入变量是浓度纳米比亚和烧结条件。纳米比亚浓度范围为0 wt%至6 wt%时,输出特性的响应面显示出最大含量为4 wt%的纳米比亚。通过使用LSD方法分析所有情况(包括参考值)的置信水平为95%的平均值,可以清楚地看出,在1400℃/ 3 h烧结的氧化铌含量为4 wt%的氧化铝同时显示出最大的硬度,致密化,和能量吸收。这种处理条件对于装甲系统中的氧化铝基陶瓷应用非常有吸引力。

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