火灾对钢筋混凝土的影响

Rubén Rodríguez Elizalde
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引用次数: 0

摘要

混凝土是一种结构材料,可因各种自然作用而被破坏。其中,火是重要的:火是一种具有巨大破坏力的物理行为,同时,火是一种偶然行为。一般来说,火灾是一种破坏行为或意外事件,可以影响到每一个结构元素。一般来说,对于建筑,特别是混凝土结构构件,火经常是一种侵略剂。火力攻击总是很复杂的。它作用于由钢铁和混凝土组成的材料,对温度上升有不同的行为和反应。因此,有必要研究对混凝土力学特性产生的变化,对钢筋力学特性产生的变化,对钢与混凝土之间粘附性产生的变化,以及由此产生的变形等其他现象。防止膨胀或由温度分布梯度产生的应力。本文旨在分析劣化机制的抵抗能力和安全水平,比较真实机制和标准规范理论假设。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fire Effects on Reinforced Concrete
Concrete is a structural material that can be destroyed as a result of varied nature actions. Among them, fire is important: fire is a physical action of great destructive capacity and, at the same time, fire is an accidental action. In general, a fire is a vandalism action or an accidental event, which can affect every structural element. Fire is frequently an aggressor agent for constructions, in general, and for concrete structural elements, in particular. The fire attack is always complex. It acts over material made up of steel and concrete, with different behaviors and reactions to rising temperatures. Thus, it is necessary to study the alterations produced on the mechanical characteristics of the concrete, the alterations produced on the mechanical characteristics of the steel reinforcement and the alterations produced on the adherence between the steel and the concrete, and other phenomena such as the deformations imposed as a consequence. of the prevented expansions or the stresses produced by the temperature distribution gradients. This article aims to analyse the resistant capacity and the safety level of deterioration mechanisms, comparing real mechanisms and standard normative theoretical postulates.
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