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Uniaxial Compressive Strength and Fracture Mode of Lake Ice at Moderate Strain Rates Based on a Digital Speckle Correlation Method for Deformation Measurement

机译:基于数字散斑相关方法的适度应变率下湖冰单轴抗压强度和断裂模式

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Better understanding of the complex mechanical properties of ice is the foundation to predict the ice fail process and avoid potential ice threats. In the present study, uniaxial compressive strength and fracture mode of natural lake ice are investigated over moderate strain-rate range of 0.4–10 s ?1 at ?5 °C and ?10 °C. The digital speckle correlation method (DSCM) is used for deformation measurement through constructing artificial speckle on ice sample surface in advance, and two dynamic load cells are employed to measure the dynamic load for monitoring the equilibrium of two ends’ forces under high-speed loading. The relationships between uniaxial compressive strength and strain-rate, temperature, loading direction, and air porosity are investigated, and the fracture mode of ice at moderate rates is also discussed. The experimental results show that there exists a significant difference between true strain-rate and nominal strain-rate derived from actuator displacement under dynamic loading conditions. Over the employed strain-rate range, the dynamic uniaxial compressive strength of lake ice shows positive strain-rate sensitivity and decreases with increasing temperature. Ice obtains greater strength values when it is with lower air porosity and loaded vertically. The fracture mode of ice seems to be a combination of splitting failure and crushing failure.
机译:更好地了解冰的复杂机械性能是预测冰破坏过程并避免潜在冰威胁的基础。在本研究中,研究了自然湖冰在0.4–10 s?1的中等应变率范围内在?5°C和?10°C时的单轴抗压强度和断裂模式。通过预先在冰样表面上构建人工斑点,采用数字斑点相关法(DSCM)进行变形测量,并采用两个动载荷传感器测量动载荷,以监测高速载荷下两端力的平衡。 。研究了单轴抗压强度与应变率,温度,载荷方向和气孔率之间的关系,并讨论了中等速率下冰的破裂模式。实验结果表明,在动态载荷条件下,由执行机构位移得出的真实应变率与名义应变率之间存在显着差异。在所采用的应变率范围内,湖冰的动态单轴抗压强度显示出正应变率敏感性,并随温度升高而降低。当空气孔隙率较低且垂直加载时,冰获得更大的强度值。冰的破裂模式似乎是分裂破坏和破碎破坏的组合。

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