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Effect of strength and ductility on anti-penetration performance of low-carbon alloy steel against blunt-nosed cylindrical projectiles

机译:强度和延展性对低碳合金钢抗钝鼻圆柱弹丸侵彻性能的影响

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摘要

As a traditional protective material, steel has been developing towards higher strength and better ductility. The dynamic mechanical behavior, ballistic resistance, together with the deformation and fracture modes of steels vary with the characteristics of strength and ductility. In this study, three kinds of low-carbon alloy steel including Q235A, lOCrNiMo and 22SiMnTi, which have great differences in strength and ductility, were selected as research objectives. To compare the anti-penetration performance of these steel plates subjected to the ultra-high strength blunt-nosed cylindrical projectiles, the perforation tests were conducted with the impact velocity of 750 ± 5 m/s in both. The analysis of pre and post-impact microstructure indicates that with the densest lath martensite structure, the highest strength steel 22SiMnTi forms adiabatic shearing fracture as the stress exceeds the shear strength; with better ductility, Q235A and 10CrNiMo are characterized by more compact post-impact microstructures and obvious plastic flow. Consistent with above analysis, the validation tests showed that 10CrNiMo exhibited the best resistance to blunt-nosed cylindrical projectiles, and followed by 22SiMnTi and Q235A. The excellent anti-penetration performance of low-carbon alloy steel is due to the integrated optimization of strength and ductility.
机译:作为一种传统的防护材料,钢已朝着更高的强度和更好的延展性发展。动态力学行为,弹道阻力以及钢的变形和断裂模式随强度和延展性而变化。本研究选择了强度和延展性差异较大的三种低碳合金钢,包括Q235A,10CrNiMo和22SiMnTi。为了比较这些钢板在超高强度钝头圆柱弹丸作用下的抗穿透性能,在两种冲击速度均为750±5 m / s的条件下进行了穿孔试验。冲击前后的显微组织分析表明,在板条马氏体组织最密的情况下,强度最高的22SiMnTi钢在应力超过剪切强度时会形成绝热剪切断裂。 Q235A和10CrNiMo具有更好的延展性,其特点是冲击后的组织更加紧凑,塑性流动性明显。与上述分析一致,验证测试表明10CrNiMo表现出对钝头圆柱弹丸的最佳抵抗力,其次是22SiMnTi和Q235A。低碳合金钢出色的抗渗透性能归因于强度和延展性的综合优化。

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