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Effect of blast pressure on discrete models using a shock tube

机译:冲击压力对使用冲击管的离散模型的影响

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There has been a spike in the number of terrorist attacks in the past few years and this has shown the need to study the effect of blast loads on buildings and to be taken into consideration in the design process. This threat shows the need for understanding blast mitigation techniques with materials primarily in the construction of buildings. The eruption of high energy materials produces blast waves. This kind of eruption causes tremendous losses and irreparable damages to both man and man-made structures. The effect of the blast wave is most atrocious closer at the middle or at the point of constructive interference. Shock tubes are used to mimic blast waves. For the purpose of studying the science behind the effects of blast pressure on buildings, experiments were done in the shock tube on discrete configurations are done at various pressures. Various methods are used to vary the strength of shock wave is for example by changing the driver gases or by changing the diaphragm thickness. Discrete models selected are suitably scaled cylinder, cone and cubical blocks with different materials such as Wood, Nylon and Mild steel. Pressures are measured by using PCB Piezo electronic transducers with suitable PCB Piezo electronic signal conditioner and NI data acquisition system. The present work proves that cone was a better option in reducing the impact pressure of shock on the body.
机译:过去几年中,恐怖袭击的数量激增,这表明需要研究爆炸荷载对建筑物的影响,并在设计过程中予以考虑。这种威胁表明有必要主要在建筑物的建造过程中了解爆炸缓解技术的材料。高能材料的喷发会产生爆炸波。这种喷发给人造和人造结构造成巨大的损失和不可弥补的损害。爆炸波的影响在中间或相长干涉点最接近。冲击管用于模拟爆炸波。为了研究爆炸压力对建筑物的影响背后的科学,我们在冲击管中进行了各种压力下离散配置的实验。例如通过改变驱动气体或通过改变膜片厚度,使用各种方法来改变冲击波的强度。选择的离散模型是具有不同材质(例如木材,尼龙和低碳钢)的按比例缩放的圆柱,圆锥和立方块。通过使用带有合适的PCB压电电子信号调节器和NI数据采集系统的PCB压电电子传感器来测量压力。目前的工作证明,锥体是降低震动对身体的冲击压力的更好选择。

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