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Determination of Dynamic Compressive and Tensile Behavior of Rocks from Numerical Tests of Split Hopkinson Pressure and Tension Bars

机译:从霍普金森压力杆和张力杆的数值试验确定岩石的动态压缩和拉伸行为。

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摘要

FEM-based numerical testing systems of the split Hopkinson pressure bar (SHPB) and the split Hopkinson tensile bar (SHTB) are established to study the characteristics of rock materials under dynamic compressive and tensile loadings. First of all, the accuracy and applicability of the numerical testing system are validated and calibrated through comparison between the laboratory measurements and the simulation results. Subsequently, the dynamic behavior of rock is analyzed in detail with the numerical testing system followed by the underlying physical mechanism. For the SHPB tests, the simulation results demonstrate that the incident waveform is determined by the striker length, the striker shape and the pulse shaper. The dynamic increase factor (DIF) of the rock specimen varies with different impact velocities, which is attributed to the strain rate effect. The rock specimen size and bar size also have effects on the DIF. In addition, the interfacial friction between the rock specimen and the bars cannot be ignored. For the SHTB tests, it is found that the incident waveform is dependent on the striker tube length and the striker tube thickness. In addition, similar to the SHPB tests, the impact velocity, rock specimen size and bar size all have strong effects on the rock dynamic tensile strength.
机译:建立了基于FEM的霍普金森剖分压力杆(SHPB)和霍普金森剖分拉伸杆(SHTB)的数值测试系统,以研究岩石材料在动态压缩和拉伸载荷下的特性。首先,通过比较实验室测量值和仿真结果来验证和校准数字测试系统的准确性和适用性。随后,通过数值测试系统以及潜在的物理机制,详细分析了岩石的动力学行为。对于SHPB测试,仿真结果表明入射波形由撞针长度,撞针形状和脉冲整形器确定。岩石试样的动态增加因子(DIF)随冲击速度的不同而变化,这归因于应变率效应。岩石样本的大小和钢筋的大小也会影响DIF。此外,岩石试样和钢筋之间的界面摩擦也不能忽略。对于SHTB测试,发现入射波形取决于撞针管长度和撞针管厚度。此外,类似于SHPB测试,冲击速度,岩石试样尺寸和棒材尺寸均对岩石动态抗张强度产生很大影响。

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