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Damage mechanics model for fracture process of steel-concrete composite slabs

机译:钢-混凝土复合板断裂过程的损伤力学模型

摘要

Composite slab construction using permanent cold-formed steel decking has become one of the most economical and industrialized forms of flooring systems in modern building structures. Structural performance of the composite slab is affected directly by the horizontal shear bond phenomenon at steel-concrete interface layer. This study utilizes 3D nonlinear finite element quasistatic analysis technique to analyze the shear bond damage and fracture mechanics of the composite slabs. Fracture by opening and sliding modes of the plain concrete over the corrugated steel decking had been modeled with concrete damaged plasticity model available in ABAQUS/Explicit module. The horizontal shear bond was simulated with cohesive element. Cohesive fracture properties such as fracture energy and initiation stress were derived from horizontal shear bond stress versus end slip curves. These curves were extracted from bending tests of narrow width composite slab specimens. Results of the numerical analyses match the experimental results accurately. This study demonstrated that the proposed finite element model and analysis procedure can predict the behavior of composite slabs accurately. The procedure can be used as a cheaper alternative to experimental work for investigating the ultimate strength and actual fracture and damage behavior of steel-concrete composite slab systems.
机译:使用永久性冷弯钢地板的复合板结构已经成为现代建筑结构中最经济和工业化形式的地板系统之一。钢-混凝土界面层的水平剪切粘结现象直接影响复合板的结构性能。本研究利用3D非线性有限元准静态分析技术来分析复合板的剪切粘结破坏和断裂力学。波纹钢面板上的普通混凝土的开裂和滑动模式断裂已通过ABAQUS / Explicit模块中可用的混凝土破损塑性模型进行建模。利用内聚单元模拟了水平剪切粘结。内聚断裂性能(例如断裂能和初始应力)是从水平剪切粘结应力与端部滑动曲线得出的。这些曲线是从窄宽度复合板样品的弯曲试验中提取的。数值分析结果与实验结果准确匹配。这项研究表明,所提出的有限元模型和分析程序可以准确地预测复合板的性能。该程序可作为研究钢-混凝土复合板系统的极限强度以及实际断裂和破坏行为的实验工作的廉价替代方案。

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