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Effect of one way reinforced concrete slab characteristics on structural response under blast loading

机译:一种钢筋混凝土板特性对爆破载荷结构应答的影响

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摘要

In evaluating explosion-protection capacity, safety distance is broadly accepted as the distance at which detonation of a given explosive causes acceptable structural damage. Safety distance can be calculated based on structural response under blast loading and damage criteria. For the applicability of the safety distance, the minimum required stand-off distance should be given when the explosive size is assumed. However, because of the nature of structures, structural details and material characteristics differ, which requires sensitivity analysis of the safety distance. This study examines the safety-distance sensitivity from structural and material property variations. For the safety-distance calculation, a blast analysis module based on the Kingery and Bulmash formula, a structural response module based on a Single Degree of Freedom model, and damage criteria based on a support rotation angle were prepared. Sensitivity analysis was conducted for the Reinforced Concrete one-way slab with different thicknesses, reinforcement ratios, reinforcement yield strengths, and concrete compressive strengths. It was shown that slab thickness has the most significant influence on both inertial force and flexure resistance, but the compressive strength of the concrete is not relevant.
机译:在评估爆炸保护容量时,广泛接受安全距离作为给定炸药的爆炸导致可接受的结构损伤的距离。安全距离可以根据爆炸负荷和损伤标准下的结构响应来计算。对于安全距离的适用性,当假设爆炸尺寸时,应给出最小所需的脱扣距离。然而,由于结构的性质,结构细节和材料特性不同,这需要对安全距离的敏感性分析。本研究检查了结构和材料性能变化的安全距离灵敏度。对于安全距离计算,制备基于王子和泡沫制备的爆炸分析模块,基于单一自由度模型的结构响应模块以及基于支撑旋转角度的损伤标准。对具有不同厚度,增强比,增强屈服强度和混凝土抗压强度的钢筋混凝土单向板进行敏感性分析。结果表明,板坯厚度对惯性力和挠性电阻具有最大的影响,但混凝土的抗压强度无关。

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