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The effect of the bend radius on the impulse transfer characteristics of V-hulls: Numerical simulations

机译:弯曲半径对V型船体脉冲传递特性的影响:数值模拟

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A study was performed to investigate the effects of geometry on impulse transfer to V-plates subjected to localised air-blast loading. The V-plates were designed to be 1:8 scale compared to the full-scale V-hulls used in landmine-protected vehicles. Simulations were performed using LS-DYNA and validated using results from blast experiments on scaled rigid V-plated structures of varying internal angle. The validated numerical models were then used to ascertain the influence of including the clamp, varying the stand-off distance, internal angle and V-tip radius on impulse transfer. The simulations showed that, in general, the impulse increased as V-tip radius increased. For the 90 degrees and 120 degrees V-plates, the impulse transferred was observed to plateau for bend radii greater than 160 mm. The increase in impulse was attributed to changes in the spatial and temporal load distribution due to the higher V-tip radius. There was no significant variation in the pressure distributions for larger bend radii (above 160 mm). For both the 90 degrees and 120 degrees V-plates, a dip in impulse was observed when the V-tip radii was between 0 and 20 mm. This was caused by reduced peak pressures and an increase in gas flow. Fixing the clearance height and increasing the V-tip radius (and therefore the stand-off distance) had no discernible effect on impulse transfer. However, it was shown to increase the arrival time and load duration, while decreasing the peak total force.
机译:进行了一项研究,以研究几何形状对承受局部鼓风载荷的V形板冲量传递的影响。与防雷车辆中使用的全尺寸V型船体相比,V型板的设计尺寸为1:8。使用LS-DYNA进行了仿真,并使用爆炸实验对不同内角的按比例缩放的刚性V镀层结构进行了验证。然后,使用经过验证的数值模型来确定包括夹具在内的影响,改变支座距离,内角和V型尖端半径对脉冲传递的影响。仿真表明,总体上,脉冲随着V型尖端半径的增加而增加。对于90度和120度的V形板,当弯曲半径大于160 mm时,可以观察到传递到平台的脉冲。脉冲的增加归因于较高的V型尖端半径导致的空间和时间负载分布的变化。对于较大的弯曲半径(大于160 mm),压力分布没有明显变化。对于90度和120度的V形板,当V形尖端的半径在0到20 mm之间时,可以观察到脉冲的下降。这是由于峰值压力降低和气流增加所致。固定间隙高度并增加V形尖端半径(从而增加了对峙距离)对脉冲传递没有明显的影响。但是,这表明增加了到达时间和载荷持续时间,同时减小了峰值总力。

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