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Elastic Dynamic Young's Modulus and Permeability of Concrete in Fire Damaged Structural Members

机译:火灾后结构构件中弹性动态杨氏模量和混凝土的渗透性

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摘要

This article reviews the results of two studies examining the effects of exposure to elevated temperatures on the dynamic elastic (Young's) modulus (E_d) and air permeability index (API) of concrete. The relationship between E_d and API in fire damaged concrete, and the use of E_d and API to determine both the extent of damage due to exposure to fire and the presence and extent of damage gradients are reviewed. Cores were removed from a precast, prestressed concrete beam containing lightweight aggregate and from a reinforced concrete structural wall containing conventional mineral aggregates. Both of these structures were exposed to intense fires and the laboratory investigation of cores was part of a forensic engineering evaluation to determine the extent of damage to the structure and the necessary repairs prior to returning to service. The E_d and API were determined using 25 mm thick disks sawn from the cores. The findings of the study suggest that E_d and API are linearly related for a given set of raw materials until damage is significant and permeability increases nonlinearly when significant damage is sustained for both types of concrete that were evaluated. The findings also suggest that permeability of lightweight aggregate concrete increases more rapidly than conventional mineral aggregate concrete per unit change in Young's modulus, under exposure to fire. Analyzing E_d and API of concrete disks at 25 mm (1 in.) depths provided insight into damage gradients and was found to be an effective tool in the assessment of damage gradients. API was found to be particularly sensitive to fire damage.
机译:本文回顾了两项研究的结果,这些研究检查了高温对混凝土的动态弹性(杨氏)模量(E_d)和透气系数(API)的影响。审查了火灾中受损混凝土中E_d和API之间的关系,以及使用E_d和API来确定由于暴露于火而造成的破坏程度以及破坏梯度的存在和程度。从包含轻质骨料的预制预应力混凝土梁和包含常规矿物骨料的钢筋混凝土结构墙中取出芯子。这两个结构都暴露在强烈的火灾之下,对岩心的实验室研究是法医工程评估的一部分,以确定对结构的损坏程度以及恢复使用之前的必要维修。 E_d和API是使用从岩心上锯开的25毫米厚的圆盘确定的。研究结果表明,对于给定的一组原材料,E_d和API呈线性关系,直到两种评估的混凝土均遭受明显破坏时,破坏显着且渗透率非线性增加。研究结果还表明,在暴露于火的情况下,每单位杨氏模量变化,轻质骨料混凝土的渗透性比常规矿物骨料混凝土的增长更快。分析25毫米(1英寸)深度的混凝土圆盘的E_d和API可提供对破坏梯度的深入了解,并被发现是评估破坏梯度的有效工具。发现API对火灾特别敏感。

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