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In-Situ Damage Evaluation of Pure Ice under High Rate Compressive Loading

机译:高速压缩载荷下纯冰的原位损伤评估

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摘要

The initiation and propagation of damage in pure ice specimens under high rate compressive loading at the strain rate range of 100 s−1 to 600 s−1 was studied by means of Split Hopkinson Pressure Bar measurements with incorporated high-speed videography. The results indicate that local cracks in specimens can form and propagate before the macroscopic stress maximum is reached. The estimated crack velocity was in the range of 500 m/s to 1300 m/s, i.e., lower than, but in similar order of magnitude as the elastic wave speed within ice. This gives reason to suspect that already at this strain rate the specimen is not deforming under perfect force equilibrium when the first cracks initiate and propagate. In addition, in contrast to quasi-static experiments, in the high rate experiments the specimens showed notable residual load carrying capacity after the maximum stress. This was related to dynamic effects in fractured ice particles, which allowed the specimen to carry compressive load even in a highly damaged state.
机译:利用Split方法研究了高冰压试样在100 s -1 至600 s -1 应变速率范围内的损伤的萌生和传播。霍普金森压力棒测量,并带有高速摄像功能。结果表明,在达到宏观应力最大值之前,试样中的局部裂纹可以形成并扩展。估计的裂纹速度在500m / s至1300m / s的范围内,即低于冰中的弹性波速度,但在数量级上与之相似。这使我们有理由怀疑,在第一个裂纹开始并扩展时,在此应变速率下,试样在理想的力平衡下并未变形。此外,与准静态实验相反,在高速率实验中,样品在最大应力后显示出显着的残余载荷承载能力。这与破裂的冰粒中的动力效应有关,这使试样即使在高度损坏的状态下也能承受压缩载荷。

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