温度梯度
热的
材料科学
一致性(知识库)
数字图像相关
结构工程
重复性
边值问题
热流密度
试验数据
温度测量
变形(气象学)
防火性能
耐火性
岩土工程
计算机科学
复合材料
机械
传热
工程类
数学分析
化学
物理
数学
色谱法
量子力学
人工智能
气象学
程序设计语言
作者
Xuan Le,Vinh Dao,José L. Torero,Cristián Maluk,Luke Bisby
标识
DOI:10.1177/1369433217746347
摘要
To assure adequate fire performance of concrete structures, appropriate knowledge of and models for performance of concrete at elevated temperatures are crucial yet currently lacking, prompting further research. This article first highlights the limitations of inconsistent thermal boundary conditions in conventional fire testing and of using constitutive models developed based on empirical data obtained through testing concrete under minimised temperature gradients in modelling of concrete structures with significant temperature gradients. On that basis, this article outlines key features of a new test setup using radiant panels to ensure well-defined and reproducible thermal and mechanical loadings on concrete specimens. The good repeatability, consistency and uniformity of the thermal boundary conditions are demonstrated using measurements of heat flux and in-depth temperature of test specimens. The initial collected data appear to indicate that the compressive strength and failure mode of test specimens are influenced by both temperature and temperature gradient. More research is thus required to further quantify such effect and also to effectively account for it in rational performance-based fire design and analysis of concrete structures. The new test setup reported in this article, which enables reliable thermal/mechanical loadings and deformation capturing of concrete surface at elevated temperatures using digital image correlation, would be highly beneficial for such further research.
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