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WFeNiMo高熵合金弹丸高速撞击钢靶的数值模拟研究 被引量:1
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作者 郭凯 史芳颖 《世界有色金属》 2024年第17期25-27,共3页
随着现代武器装备防护能力的日益增强,提高穿甲弹侵彻能力的需求越发强烈,对穿甲弹的高效毁伤能力提出了更高的要求,常规的穿甲弹材料已不能满足现今侵彻毁伤目标的需求。由于高熵合金因其成分设计灵活和优异的力学性能,有望作为穿甲弹... 随着现代武器装备防护能力的日益增强,提高穿甲弹侵彻能力的需求越发强烈,对穿甲弹的高效毁伤能力提出了更高的要求,常规的穿甲弹材料已不能满足现今侵彻毁伤目标的需求。由于高熵合金因其成分设计灵活和优异的力学性能,有望作为穿甲弹芯材料取代贫铀和钨合金等。利用二级轻气炮开展了WFeNiMo高熵合金弹丸高速撞击钢靶实验,利用弹丸撞击铜网产生的电压信号,同步触发高速摄像机。利用高速摄像机采集的弹丸高速碰撞过程,确定撞击速度分别为1072m/s和1346m/s。靶板厚度分别为4mm和10mm,WFeNiMo高熵合金弹丸对钢靶的毁伤模式分别为成坑和穿透。同时,利用物质点法(MPM)对WFeNiMo高熵合金弹丸撞击钢靶过程进行数值模拟。分别从扩孔直径、侵彻深度、剩余弹丸长度和翻唇高度等方面,对比WFeNiMo高熵合金弹丸高速撞击钢靶实验结果和MPM数值模拟结果。研究结果表明:MPM数值模拟结果与实验结果数值上的平均误差约为2%,且MPM弹靶毁伤形貌与实验毁伤形貌吻合MPM适用于高速冲击的数值模拟,能够较好地模拟弹丸侵彻靶板过程,且具有较高的仿真精度,计算所需时间少。 展开更多
关键词 wfenimo高熵合金 高速撞击 MPM数值模拟
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Experimental study on WFeNiMo high-entropy alloy projectile penetrating semi-infinite steel target 被引量:5
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作者 Hai-hua Chen Xian-feng Zhang +3 位作者 Lan-hong Dai Chuang Liu Wei Xiong Meng-ting Tan 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2022年第8期1470-1482,共13页
The appearance of high-entropy alloys (HEAs) makes it possible for a material to possess both high strength and high ductility. It is with great potential to apply HEAs under extreme conditions such as in the penetrat... The appearance of high-entropy alloys (HEAs) makes it possible for a material to possess both high strength and high ductility. It is with great potential to apply HEAs under extreme conditions such as in the penetration process. In this paper, experiments of WFeNiMo HEA and tungsten heavy alloy (WHA) projectiles penetrating medium-carbon steel were conducted by using the ballistic gun and two-stage light-gas gun that can accelerate projectiles to impact velocities ranging from 1162 m/s to 2130 m/s. Depth of penetration (DOP) at elevated impact velocities of HEA and WHA projectiles were obtained firstly. Combined with the macroscopic and microscopic analysis of the residual projectiles, the transition of the penetration mode of the WFeNiMo HEA projectile was identified systemically. The experimental results indicated that the penetration mode of the HEA projectile changes from self-sharpening to mushrooming with the increase of impact velocity, while for the WHA projectile, the penetration mode is always mushrooming. The microstructure of the residual HEA projectiles showed that the phases tangle with each other and the morphology of the microstructure of the phases differs in the two penetration modes. Besides, the evolution of shear bands and fractures varies in the two modes. The evolution of the microstructure of HEAs causes the sharp-pointed nose to disappear and the HEA projectile ultimately becomes blunt as the impact velocity increases. 展开更多
关键词 wfenimo high-entropy alloys Tungsten heavy alloys Penetration mode Self-sharpening penetration Mushrooming deformation
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