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Timber Steel Fiber-Reinforced Concrete Floor Slabs in Fire: Experimental and Numerical Modeling

机译:火灾中的木材钢纤维混凝土楼板:实验和数值模型

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摘要

Timber-concrete composite floors represent an efficient possibility for strengthening timber beam ceilings and stiffening timber frame structures. The results of this construction method are higher stiffness and load bearing capacity, improved sound insulation, and better fire resistance. Replacing conventional RC with an innovative and efficient material, such as fiber RC, leads to improvements in the construction progress, material properties, and load transfer and to a reduction in the slab thickness. The subject of this paper is the numerical simulation of the behavior of composite timber-fiber concrete floor, consisting of a fiber concrete slab and timber beams. The primary point of this work is to explore the membrane action of the fiber concrete slab with timber beams and investigate the behavior of the load floor structure by using finite-element (FE) models. This paper presents a three-dimensional FE model developed to predict the mechanical behavior of timber-fiber concrete composite floors, to derive simpler models for representing the partially protected composite floors in fire. The analysis of these structures is nonlinear and considers the orthotropic behavior for timber and isotropic behavior for concrete. The description of the model, general parameters, and values are given in this paper. All modeling was prepared by using an FE software program. The numerical models are validated against the results of full-scale furnace, material property, push-out, and beam tests. (C) 2014 American Society of Civil Engineers.
机译:木材-混凝土复合地板是加强木梁天花板和加固木框架结构的有效方法。这种施工方法的结果是更高的刚度和承载能力,改善的隔音性和更好的耐火性。用创新,高效的材料(例如纤维RC)代替传统的RC,可改善施工进度,材料性能和荷载传递,并减小板坯厚度。本文的主题是由纤维混凝土板和木梁组成的复合木纤维混凝土地板性能的数值模拟。这项工作的主要目的是利用木梁探索纤维混凝土板的膜作用,并通过有限元(FE)模型研究楼板结构的性能。本文提出了一种三维有限元模型,用于预测木纤维混凝土复合地板的力学性能,从而得出用于表示火灾中部分受保护的复合地板的简单模型。这些结构的分析是非线性的,并考虑了木材的正交各向异性行为和混凝土的各向同性行为。该模型的描述,一般参数和值在本文中给出。所有建模都是通过使用FE软件程序进行的。根据全尺寸炉,材料性能,推出和梁测试的结果对数值模型进行了验证。 (C)2014年美国土木工程师学会。

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  • 来源
    《Journal of structural engineering》 |2015年第9期|04014214.1-04014214.14|共14页
  • 作者单位

    Czech Tech Univ, Prague 16629, Czech Republic;

    Designtec Sro, Brno 61600, Czech Republic;

    Czech Tech Univ, Dept Steel & Timber Struct, Prague 16629, Czech Republic;

    Czech Tech Univ, Dept Steel & Timber Struct, Prague 16629, Czech Republic;

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