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Numerical simulation of hollow steel profiles for lightweight concrete sandwich panels

机译:轻质混凝土夹芯板空心钢型材的数值模拟

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摘要

The focus of the present study is to investigate both local and global behaviour of a precast concrete sandwich panel. The selected prototype consists of two reinforced concrete layers coupled by a system of cold-drawn steel profiles and one intermediate layer of insulating material. High-definition nonlinear finite element (FE) models, based on 3D brick and 2D interface elements, are used to assess the capacity of this technology under shear, tension and compression. Geometrical nonlinearities are accounted via large displacement-large strain formulation, whilst material nonlinearities are included, in the series of simulations, by means of Von Mises yielding criterion for steel elements and a classical total strain crack model for concrete; a bond-slip constitutive law is additionally adopted to reproduce steel profile-concrete layer interaction. First, constitutive models are calibrated on the basis of preliminary pull and pull-out tests for steel and concrete, respectively. Geometrically and materially nonlinear FE simulations are performed, in compliance with experimental tests, to validate the proposed modeling approach and characterize shear, compressive and tensile response of this system, in terms of global capacity curves and local stress/strain distributions. Based on these experimental and numerical data, the structural performance is then quantified under various loading conditions, aimed to reproduce the behaviour of this solution during production, transport, construction and service conditions.
机译:本研究的重点是研究预制混凝土夹芯板的局部和整体性能。选定的原型包括两层钢筋混凝土层,一层冷拉钢型材系统和一层中间绝缘材料。基于3D砖块和2D界面元素的高清非线性有限元(FE)模型用于评估该技术在剪切,拉伸和压缩下的能力。几何非线性是通过大位移-大应变公式解决的,而材料非线性则包括在一系列模拟中,通过钢构件的冯·米塞斯屈服准则和混凝土的经典总应变裂缝模型实现;此外,还采用了粘结滑移本构关系来重现钢型材与混凝土层之间的相互作用。首先,分别基于对钢和混凝土进行的初步拉拔试验对本构模型进行校准。根据实验测试,进行了几何上和材料上的非线性有限元仿真,以验证所提出的建模方法并根据整体能力曲线和局部应力/应变分布来表征该系统的剪切,压缩和拉伸响应。根据这些实验和数值数据,然后在各种载荷条件下对结构性能进行量化,目的是在生产,运输,建造和使用条件下重现该解决方案的行为。

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