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A novel approach to in-depth fa?ade assessments: Improved corrosion test methods for embedded steel framing in historic masonry clad buildings

机译:深入外观评估的一种新方法:改进历史性砌体建筑中嵌入式钢框架的腐蚀测试方法

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Corrosion of structural steel frames and associated steel assemblies within ‘vintage’ buildings circa 1880s to 1930s pose a health and safety risk to the public in major urban centers. The projecting masonry elements pose a particular concern when the underlying steel assemblies and anchorage begin to corrode. Failed masonry has fallen from buildings, leading to death in worst case scenarios. While some signs of masonry cracking or displacement are usually visible prior to failure, the level of degradation of the embedded steel is not. With the equipment available to test these unforeseen conditions, methodologies need to be shifted to understand unobservable conditions to assist in condition state ratings of embedded steel. In many cities, building owners are being faced with large expenditures to strip and replace terra cotta or stone elements where the underlying steel is in fair condition. This paper will discuss the field-testing programs where a building elevations' masonry clad, steel assemblies (outriggers, anchorage and cross bracing) were evaluated for corrosion. The testing program assessed various steel components which either projected from the structure or were embedded at great depth with a bespoke, in-depth advanced testing program geared towards the development of condition state ratings for the fa?ade elements.
机译:1880年代至1930年代“老式”建筑物内结构钢框架和相关钢组件的腐蚀对主要城市中心的公众构成了健康和安全风险。当下面的钢组件和锚固件开始腐蚀时,突出的砌体元素会引起特别的关注。失败的砖石从建筑物上掉下来,在最坏的情况下导致死亡。尽管在破坏之前通常可以看到一些砌体开裂或位移的迹象,但嵌入钢的降解程度却不明显。借助可用于测试这些不可预见条件的设备,需要改变方法以了解不可观察的条件,以帮助预埋钢的条件状态等级。在许多城市中,在基础钢材状况良好的情况下,业主要面对大量支出,以剥离和更换兵马俑或石材。本文将讨论现场测试程序,其中评估了建筑物立面的砌体,钢组件(支腿,锚固和交叉支撑)的腐蚀性能。该测试程序评估了各种钢构件,这些钢构件要么是从结构伸出,要么是使用定制的,深入的高级测试程序深度嵌入,以针对外观元素的状态评估。

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