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Stress Wave Dispersion in Large-Diameter SHPB and Its Manifold Manifestations

机译:大直径SHPB中的应力波频散及其流形表现

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The wave dispersion due to the lateral inertia in the split Hopkinson pressure bar (SHPB) with large-diameter bar is numerically analyzed by means of the LS-DYNA3D code. The results show that, ① the stress distribution across the bar section is non-uniform along the radius direction and such non-uniformity depends on the material Poisson ratio and propagation distance; ② with increasing the bar diameter, the high frequency oscillations are notably enhanced and the rise time of wave front becomes longer, meanwhile the amplitude of the stress wave attenuates; ③ with decreasing the rise time of wave front, the wave dispersion markedly enhanced, particularly in the large diameter bar. All of those effects should not be neglected in order to obtain accurate results by the SHPB test.
机译:通过LS-DYNA3D代码,对带有大直径杆的分离式Hopkinson压力杆(SHPB)中由于横向惯性引起的波频散进行了数值分析。结果表明:①钢筋截面的应力分布沿半径方向不均匀,这种不均匀性取决于材料的泊松比和传播距离。 ②随着钢筋直径的增大,高频振荡明显增强,波前的上升时间变长,应力波的振幅减弱。 ③随着波前上升时间的减少,波的色散明显增强,特别是在大直径钢筋上。为了通过SHPB测试获得准确的结果,所有这些影响都不应忽略。

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