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Investigation on the ballistic performance of a dual phase steel against 7.62 mm AP projectile

机译:双相钢对7.62 mm AP弹丸弹道性能的研究

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摘要

Dual phase steels have the potential to reduce the weight of structural components because of the improved mechanical properties obtained from the two phases: soft ferrite and hard martensite. In this study, the ballistic performance of a low carbon and low alloy steel was investigated in intercrit-ically annealed conditions. To do this, intercritical heat treatments at three different temperatures were applied to the steel samples separately to get three groups of samples having various martensite volume fractions. The full annealing treatment was also performed on a fourth steel group sample for comparison with the dual phase samples. The ballistic testing was carried out using a 7.62 mm armor piercing (AP) projectile. The experimental results pointed out that the ballistic resistance of the dual phase steel increased by increasing martensite content. In addition, deformed shear bands and/or highly distorted microstructures were observed in all samples irrespective of heat treatment after the ballistic testing. Furthermore, there was a remarkable increase in the micro and macro hardness of the investigated steel samples due to the ballistic induced strain.
机译:由于从两相(软铁氧体和硬马氏体)获得的改善的机械性能,双相钢具有减轻结构部件重量的潜力。在这项研究中,研究了低碳低合金钢在临界退火条件下的弹道性能。为此,将三个不同温度下的临界热处理分别应用于钢样品,以获得三组具有不同马氏体体积分数的样品。还对第四钢组样品进行了完全退火处理,以与双相样品进行比较。弹道测试是使用7.62毫米装甲穿透(AP)弹丸进行的。实验结果表明,随着马氏体含量的增加,双相钢的弹道阻力增大。另外,在所有样品中均观察到变形的剪切带和/或高度变形的微观结构,而与防弹测试后的热处理无关。此外,由于弹道诱发的应变,所研究的钢样品的微观和宏观硬度显着提高。

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