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A Study on High speed tension property of C-grade bullet proof steel plate

机译:C级子弹防钢板高速张力性能研究

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In this paper, the high speed tension experiments have been performed on ultra high strength bullet proof steel. The samples were cut from the bullet proof steel plate after hard-module quenching with thickness of 3.7 mm. The mechanical properties at strain rates of 0.001 s~(-1), 0.01 s~(-1), 0.1 s~(-1) and 1 s~(-1) were carried out on MTS810, while those at higher strain rates of 200 s~(-1), 500s~(-1) and 1000s~(-1) were tested on HTM5020 high speed tension tester and Hopkinson bar. The data from the high-speed tension experiments were fitted via Johnson-Cook constitutive equation, and the fracture surface of each sample was analyzed by SEM. The results indicate that, the shoot-resistance capability of bullet proof steel is closely related to its strength, thickness and flow behaviors under high strain rate. The shoot-resistance will be improved in the case of higher strength and better matching between strength and elongation. The Johnson-Cook equation fitted via experimental data provides fundament to numerical simulation. With the increase of strain rate, the size and depth of dimple trend to decrease and the depth of dimple changes less in steel with lower strength and higher elongation. The SEM analysis of fracture is benefit for further understanding of deformation and fracture mode under high strain rate.
机译:在本文中,在超高强度子弹焊料上进行了高速张力实验。在硬模块淬火后从子弹防钢板切割样品,厚度为3.7mm。在MTS810上进行0.001 s〜(-1),0.01s〜(-1),0.1s〜(-1),0.1s〜(-1),0.1(-1)和1 s〜(-1)的力学性能,同时以较高的应变率在HTM5020高速张力测试仪和Hopkinson Bar上测试了200秒〜(-1),500s〜(-1)和1000〜(-1)。来自高速张力实验的数据通过Johnson-Cook组成方程装配,通过SEM分析每个样品的断裂表面。结果表明,防弹钢的防防抗能力与高应变率下的强度,厚度和流动性密切相关。在更高的强度和强度和伸长率之间的情况下,抗抗抗性将得到改善。通过实验数据拟合Johnson-Cook方程提供了对数值模拟的基础。随着应变率的提高,凹坑趋势的尺寸和深度降低,凹坑深度较小,钢筋较低,伸长率较高。骨折的SEM分析是在高应变率下进一步了解变形和断裂模式的益处。

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