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Effect of tempering conditions on adiabatic shear banding during dynamic compression and ballistic impact tests of ultra-high-strength armor steel

机译:超高强度铠装钢动态压缩和弹道冲击试验期间,回火条件对绝热剪切带的影响

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摘要

In this study, roles of strain-hardening rate on susceptibility of adiabatic shear band (ASB) formation and subsequent cracking were investigated in two ultra-high-strength armor steel plates heat-treated differently. The quenched and tempered steel contained ~2% of retained austenite in the tempered martensitic matrix, while the quenched and austempered steel contained ~4% retained austenite in the bainitic matrix partly with the tempered martensite. The actual ballistic impact test results revealed the lower sensitivity of ASB formation in the austempered steel than in the tempered steel, which corresponded well to the higher critical strain for ASB formation in the dynamic compressive test using a laboratory-scale split Hopkinson pressure bar (SHPB). The austempered steel caused the higher internal stress among various constituents, and all the retained austenite transformed into martensite during the deformation, thereby leading to transformation-induced plasticity (TRIP) effect. The higher strain-hardening rate induced by these higher internal stress and TRIP effect increased resistance to ASB formation, which was confirmed by a calculation of ASB susceptibility. Thus, the austempered steel was much less susceptible to the ASB formation during the ultra-high-speed deformation. Consequently, the increased resistance to ASB formation retarded the initiation and propagation of ASBs and cracks.
机译:在这项研究中,在两种超高强度铠装钢板中进行了不同的不同,研究了应变 - 硬化率对绝热剪切带(ASB)形成和随后的裂缝的敏感性的作用。淬火和钢化钢在钢化马氏体基质中含有约2%的保留奥氏体,而淬火和奥氏体型钢部分在贝氏体基质中含有〜4%的奥氏体,部分地用钢化马氏体含有〜4%的奥氏体。实际的弹道冲击试验结果显示,在钢化钢中,在稳压钢中的ASB形成较低的灵敏度,其对应于使用实验室级拆分霍普金森压力棒(SHPB )。奥斯特普钢钢引起各种成分之间的内应力较高,所有保留的奥氏体在变形过程中转化成马氏体,从而导致转化诱导的可塑性(跳闸)效应。通过这些较高的内部应力和跳闸效果引起的较高应变硬化速率增加了对ASB形成的抗性,通过计算ASB易感性来证实。因此,在超高速变形期间,稳定的钢的易受易于ASB形成的影响。因此,增加对ASB形成的抗性延迟了ASB和裂缝的起始和繁殖。

著录项

  • 来源
    《Materials Science and Engineering》 |2020年第5期|139818.1-139818.11|共11页
  • 作者单位

    Center for Advanced Aerospace Materials Pohang University of Science and Technology Pohang 790-784 South Korea;

    Center for Advanced Aerospace Materials Pohang University of Science and Technology Pohang 790-784 South Korea;

    Graduate Institute of Ferrous Technology Pohang University of Science and Technology Pohang 37673 South Korea;

    Materials Directorate Agency for Defense Development Daejeon 305-600 South Korea;

    Materials Directorate Agency for Defense Development Daejeon 305-600 South Korea;

    Department of Materials Science and Engineering Korea University Seoul 02841 South Korea;

    Center for Advanced Aerospace Materials Pohang University of Science and Technology Pohang 790-784 South Korea;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Adiabatic shear band (ASB); Tempering; Split hopkinson pressure bar (SHPB); Ballistic impact; Strain-hardening rate;

    机译:绝热剪切带(ASB);回火;拆分霍普金森压力棒(SHPB);弹道撞击;应变硬化率;

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