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首页> 外文期刊>Advances in Mechanical Engineering >Ricochet of steel spheres on sand with varying water content
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Ricochet of steel spheres on sand with varying water content

机译:钢球形ricochet在沙子的与不同的水含量

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The explosion of a building generates plenty of debris that flies far away. The flying debris is hazardous because it contains large amounts of kinetic energy. Therefore, determining the safety distance from the debris is essential. However, debris ricochet that collides onto the ground affects the safety distance because the ricochet phenomenon is influenced by the condition of the medium. In this study, experiments and finite element analysis were performed to investigate the ricochet based on the water content of sand. From a direct shear test, the internal friction angle and cohesion of sand were obtained based on the water content. The effects of internal friction angle and adhesion on the yield stress and ricochet were investigated. The results indicated that as the water content increased, the internal friction angle increased and then decreased, and the cohesion continued to decrease. The yield stress was proportional to the internal friction angle and inversely proportional to adhesion. Therefore, lower yield stress resulted in deeper penetration of debris, leading to higher energy loss, which increased the kinetic energy loss factor. Thus, the condition of the medium should be considered for setting a proper safety distance suitable for the surrounding environment of the building.
机译:建筑物的爆炸产生了很多碎片,差距远离。飞行碎片是危险的,因为它包含大量的动能。因此,确定与碎片的安全距离是必不可少的。然而,碰撞到地面上的碎片Ricochet会影响安全距离,因为Ricochet现象受培养基的状况的影响。在该研究中,进行实验和有限元分析以研究基于砂的含水量的Ricochet。从直接剪切测试,基于水含量获得砂的内部摩擦角和粘合。研究了内部摩擦角度和粘附对产屈屈克胁迫和Ricochet的影响。结果表明,随着水含量的增加,内部摩擦角增加然后降低,凝聚力继续降低。屈服应力与内部摩擦角成比例,并与粘附成反比。因此,降低屈服应力导致碎片的更深渗透,导致能量损失更高,这增加了动能损失因子。因此,应考虑介质的状况来设定适合于建筑物周围环境的适当安全距离。

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