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暴露于ISO 834-1火灾的混凝土中火灾后拉拔强度的PIRs评估

Evaluation of PIRs Post-Fire Pull-Out Strength in Concrete Exposed to ISO 834-1 Fire.

作者信息

Abdelrahman Alhajj Chehade Nagham, Lahouar Amine, Al-Mansouri Omar, Pinoteau Nicolas, Abate Marco, Remond Sébastien, Hoxha Dashnor

机构信息

Centre Scientifique et Technique du Bâtiment (CSTB), 84 Avenue Jean Jaurès, Champs-sur-Marne, CEDEX 2, 77447 Marne-la-Vallée, France.

Laboratoire de Mécanique Gabriel Lamé (LaMé), Université d'Orléans, 45100 Orléans, France.

出版信息

Materials (Basel). 2021 Sep 1;14(17):4998. doi: 10.3390/ma14174998.

Abstract

Post-installed rebars (PIRs) using mortar can offer bond strength at ambient temperature equal or higher to that of cast-in place rebars. However, high temperatures have the effect of weakening the bond, typically governed by the chemical and physical properties of the mortar which is often sensitive to temperature increase. Therefore, the behavior of PIRs in a fire situation becomes vulnerable. Moreover, after exposure of PIRs to high temperature, the heat transfer continues during the post-fire phase, which might endanger the construction after a fire event. In order to evaluate the evolution of the pull-out capacity during fire, Pinoteau et al. have developed the bond resistance integration method (Pinoteau's RIM) to predict the bond resistance value of a rebar subjected to various temperatures in accordance with the fire exposure curves. Therefore, accurate temperature profiles during the post-fire phase are needed to ensure a correct calculation of the post-fire behavior of the PIR connection. This paper presents 3D finite element thermal simulations of PIRs in concrete exposed to ISO 834-1 fire conditions then cooled with ambient air. Numerical thermal profiles are then compared to the experimental results (i.e., post-fire pull-out tests). The proposed model provides guidelines for conducting numerical simulations to determine the thermal entry data necessary for predicting thermal profiles in PIRs during heating and cooling phases. Then, the post-fire pull-out capacity of PIRs in concrete is calculated using Pinoteau's RIM, and compared to experimental post-fire pull-out results.

摘要

使用砂浆的后置钢筋(PIR)在环境温度下可提供与现浇钢筋相等或更高的粘结强度。然而,高温会削弱粘结力,其通常受砂浆的化学和物理性质支配,而砂浆往往对温度升高敏感。因此,PIR在火灾情况下的性能变得脆弱。此外,PIR暴露于高温后,在火灾后阶段热传递仍会持续,这可能会在火灾事件后危及建筑结构。为了评估火灾期间拔出力的演变,皮诺托等人开发了粘结抗力积分法(皮诺托的RIM),以根据火灾暴露曲线预测钢筋在不同温度下的粘结抗力值。因此,需要准确的火灾后阶段温度分布,以确保正确计算PIR连接的火灾后性能。本文介绍了在混凝土中PIR在ISO 834-1火灾条件下暴露然后用环境空气冷却的三维有限元热模拟。然后将数值热分布与实验结果(即火灾后拔出试验)进行比较。所提出的模型为进行数值模拟提供了指导,以确定预测PIR在加热和冷却阶段热分布所需的热输入数据。然后,使用皮诺托的RIM计算混凝土中PIR的火灾后拔出力,并与实验火灾后拔出结果进行比较。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/08b8/8434241/ee51f1defa6d/materials-14-04998-g001.jpg

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