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Compressive strength of ice at impact strain rates

机译:冲击应变率下冰的抗压强度

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摘要

The compressive strength of ice was measured at high strain rates of 103 s?1 order of magnitude. Since ice compressive strength is known to be strongly dependent on strain rate, properties corresponding to high strain rates are needed for engineering predictions of the behavior of ice under dynamic crushing scenarios. The split Hopkinson pressure bar (SHPB) apparatus was used to successfully measure compressive strength over a strain rate range of 400–2,600 s?1. Strain rate variation was achieved by adjusting the specimen length and the velocity of the SHPB striker bar; increased velocity and reduced specimen length produced higher strain rates. Since the compressive strength was found to be nearly uniform over the measured strain rate range, an average value of 19.7 MPa is reported. However, when comparing the present results with data in the existing literature spanning several orders of magnitude in strain rate, a trend of continuously increasing strength for strain rates beyond 101 s?1 can be observed.
机译:在103 s?1 s数量级的高应变速率下测量了冰的抗压强度。由于已知冰的抗压强度强烈依赖于应变率,因此在动态破碎情况下对冰的行为进行工程预测时需要与高应变率相对应的特性。剖分式霍普金森压力杆(SHPB)仪器用于成功测量应变率范围为400–2,600 s?1 的抗压强度。通过调节试样的长度和SHPB撞针的速度来实现应变率变化。增加的速度和减小的标本长度会产生更高的应变率。由于发现在测得的应变速率范围内抗压强度几乎是均匀的,因此报告的平均值为19.7 MPa。但是,将当前结果与现有文献中涉及应变率几个数量级的数据进行比较时,可以观察到超过101 ss?1 的应变率强度会不断增加的趋势。

著录项

  • 来源
    《Journal of Materials Science》 |2007年第8期|2802-2806|共5页
  • 作者

    Hyonny Kim; John N. Keune;

  • 作者单位

    Department of Structural Engineering University of California San Diego CA USA;

    The Boeing Company Everett WA USA;

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  • 原文格式 PDF
  • 正文语种 eng
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