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Experimental and Numerical Analyses of the Rational Loading Waveform in SHPB Test for Rock Materials

机译:岩石材料SHPB检验中合理负载波形的实验与数值分析

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摘要

Aiming at the determination of the rational loading waveform for rock materials, the comparative impact tests under the loadings of rectangular and half-sine stress waves were performed on red sandstone using an Ø50 mm SHPB apparatus. Experimental results with the rectangular stress wave affirm that the waveform dispersion and stress-strain curve oscillation frequently exist during the test of rock materials, which signifies that the accuracy of test results derived from the rectangular stress wave loading cannot be guaranteed. Under the loading of the half-sine stress wave, the phenomenon of wave dispersion during the tests has been eliminated radically, and there is no oscillation in the stress-strain curves. To further demonstrate the rationality of the half-sine wave loading in the SHPB test, by utilizing the three-dimensional numerical simulation approach, the propagations of rectangular, triangular, and half-sine stress waves travelling in the axial and radial directions of the SHPB with four elastic bar diameter sizes are analyzed and compared. The results show that the waveform dispersion of the rectangular and triangular stress waves always exists and will be more and more serious with increasing diameter size and propagation distance. For the half-sine stress wave, the waveform dispersion effect is very weak and not affected by the bar diameter size and propagation distance. The half-sine stress wave is the rational loading waveform for rock SHPB tests with different bar diameters.
机译:旨在确定岩石材料的合理负载波形,使用Ø50mmSHPB装置对红色砂岩进行矩形和半正弦波的负荷下的比较冲击试验。矩形应力波的实验结果确认,在岩石材料的测试期间经常存在波形色散和应力 - 应变曲线振荡,这表示无法保证衍生自矩形应力波载荷的测试结果的准确性。在半正弦应力波的装载下,在测试期间的波形分散现象已经从根本上被消除,并且应力 - 应变曲线没有振荡。为了进一步证明SHPB测试中半正弦波加载的合理性,通过利用三维数值模拟方法,矩形,三角形和半正弦应力波在SHPB的轴向和径向方向上行驶的传播分析了四个弹性杆直径尺寸并进行比较。结果表明,矩形和三角应力波的波形分散总是存在,并且随着直径尺寸和传播距离的增加,将越来越严重。对于半正弦应力波,波形色散效果非常弱,不受杆直径尺寸和传播距离的影响。半正弦应力波是具有不同条形直径的岩石SHPB测试的合理负载波形。

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  • 作者

    Song Luo; Fengqiang Gong;

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  • 年度 2018
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  • 原文格式 PDF
  • 正文语种 eng
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