爆炸荷载作用下钢筋混凝土单垫板的有限元分析及试验验证

Gunjan Ashok Shetye
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引用次数: 5

摘要

本文的研究工作是研究钢筋混凝土板在爆炸荷载作用下的响应,因为钢筋混凝土板可以作为主结构周围的保护结构。在另一项研究中,对12块钢筋混凝土板在激波管(爆炸荷载模拟器)中进行了爆炸试验。该实验研究的数据可用于进行先进的有限元分析,以研究这些板在爆炸载荷下的行为。本研究使用了非线性瞬态动力有限元分析程序LS-DYNA®。这12块板的有限元模型是在LS-DYNA®中开发的,并将相当于实验中产生的爆炸压力应用于它们。这些楼板根据其强度包括两种材料组合,即高强度混凝土加高强度钢板和普通强度混凝土加普通强度钢板。主要目的是利用LS-DYNA中提供的两种不同的混凝土材料模型,即winfrwith混凝土模型和混凝土损伤模型Release 3,研究材料组合对爆炸荷载的响应,并将其与实验结果进行比较。用实验数据对这些模型进行验证,将为今后的研究提供参考
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Finite Element Analysis and Experimental Validation of Reinforced Concrete Single-Mat Slabs Subjected to Blast Loads
The work done in this research is to study the response of reinforced concrete slabs subjected to blast loading as they can be used as protective structures around the main structure. An experimental investigation has been performed in a separate study involving blast-testing of 12 reinforced concrete slabs in a shock tube (Blast Load Simulator). The data from this experimental investigation was made available for performing advanced finite element analysis done in this research to study the behavior of these slabs towards blast loading. A non-linear transient dynamic finite element analysis program LS-DYNA® is used for this study. The finite element models of these 12 slab panels are developed in LS-DYNA® and blast pressures equivalent to those generated in the experiment are applied to them. These slabs include two material combinations based on their strength namely, the high-strength concrete reinforced with high-strength steel slabs and normal-strength concrete reinforced with normalstrength steel slabs. The primary objective is to study the response of material combinations to blast loading by using two different concrete material models available in LS-DYNA namely, Winfrith Concrete Model and Concrete Damage Model Release 3 and comparing it with the experimental results. Validation of these models with experimental data will provide a
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Modeling The Response of Concrete Slabs Under Blast Loading Parameters Influencing Finite Element Results for Concrete Structures Simulation of Concrete Slabs Subjected To Blast Using The Cohesive Crack Model Numerical Modelling For Reinforced Concrete Response to Blast Load: Understanding The Demands On Material Models Blind Simulation of Blast Loaded Slabs Using Rcblast Software
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