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Experimental investigation of stress transients of blasted RC columns in the blasting demolition of buildings

机译:爆破拆除中钢筋混凝土柱应力瞬态的试验研究。

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Blasting demolition is the preferred method for safely and efficiently demolishing high-rise buildings, and numerical simulation is very helpful for the design of complicated blasting schemes. In simulations of demolition projects, the explosion processes and blast loadings are usually ignored to save computer time. However, the stress transients of blasted columns at the bottom of buildings are important boundary conditions, which may affect the accuracy of simulation results. Yet, few works have investigated it and provided a detailed model. To investigate the features of stress transients of reinforced concrete (RC) columns, an experiment was conducted in the present study. In a 56-m-high frame structure demolished by controlled blasting technology, a 1000 mm x 700 mm x 4100 mm column was blasted. The collected data include strain-time histories and failure mode of the column. The study shows that explosion-induced stress-time history curves far from the blastholes are jagged-triangular, which may have multiple peaks because of the delay time errors of detonators. After detonation of explosives, the bearing capacity of the column gradually decreases, which takes several milliseconds. When the bearing capacity reduces to less than the initial axial compressive stress in the column, the initial stress releases linearly, which also takes several milliseconds. The movements of the concrete fragments bent the longitudinal reinforcement bars, which induces a strong tensile stress in the residual column; their stress-time history curves are triangular. Based on the experiment results, a stress transient concept model is proposed to detailly describe the stress state of blasted RC columns in demolished high-rising buildings, which can be applied in the numerical simulation of demolition blasting.
机译:爆破拆除是安全高效地拆除高层建筑的首选方法,数值模拟对于设计复杂的爆破方案非常有帮助。在拆除项目的模拟中,爆炸过程和爆炸荷载通常被忽略以节省计算机时间。但是,建筑物底部爆破柱的应力瞬变是重要的边界条件,可能会影响模拟结果的准确性。然而,很少有作品对此进行过调查并提供了详细的模型。为了研究钢筋混凝土(RC)柱的应力瞬变特征,在本研究中进行了一项实验。在通过受控爆破技术拆除的56米高的框架结构中,爆破了1000 mm x 700 mm x 4100 mm的圆柱。收集的数据包括应变时间历史记录和柱的破坏模式。研究表明,远离爆破孔的爆炸引起的应力-时间历史曲线呈锯齿三角形,由于雷管的延迟时间误差,可能会有多个峰。炸药爆炸后,圆柱的承载能力逐渐下降,这需要几毫秒的时间。当承载力减小到小于柱中的初始轴向压缩应力时,初始应力会线性释放,这也需要几毫秒的时间。混凝土碎片的运动使纵向钢筋弯曲,从而在残余柱中产生强烈的拉应力。它们的应力时间历史曲线是三角形的。根据试验结果,提出了应力瞬变概念模型,详细描述了拆除高层建筑中爆破钢筋混凝土柱的应力状态,可用于拆除爆破的数值模拟。

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