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Blistering of a terrazzo floor in a university campus building

机译:大学校园大楼的水磨石地板起泡

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This paper concerns the blistering of a terrazzo flooring system in a university campus building. The terrazzo began to blister only ten months after installation and became increasingly worse with time. A typical failure analysis sequence was applied to this nonmetallurgical problem in order to determine the cause of the blisters. It was determined that a vapor pressure differential caused moisture to travel up through the concrete slab subfloor and become trapped beneath the terrazzo, creating blisters. This differential in above-slab and below-slab vapor pressure was attributed to a lack of circulating conditioned air in the building at the time of terrazzo installation. Although acceptable moisture measurements of the concrete slab were taken prior to terrazzo installation, they were invalid due to this lack of circulating conditioned air. It was recommended that the entire terrazzo flooring system be removed and an additional curing time be employed to ensure the concrete slab is acceptable to receive a new terrazzo flooring system. It was emphasized that the above-slab air conditions must closely match in-service operating conditions in order to eliminate the vapor pressure differential.
机译:本文涉及大学校园建筑中水磨石地板系统的起泡。水磨石在安装后仅十个月就开始起泡,并且随着时间的流逝变得越来越糟。为了确定起泡的原因,将典型的故障分析顺序应用于该非冶金问题。可以确定,蒸汽压差导致湿气向上流过混凝土板底层地板,并被困在水磨石下面,形成水泡。平板上方和平板下方蒸气压的这种差异是由于在安装水磨石时建筑物中缺乏循环的调节空气。尽管在安装水磨石之前对混凝土板进行了可接受的水分测量,但由于缺乏循环的调节空气,因此它们无效。建议移除整个水磨石地板系统,并采用额外的固化时间以确保混凝土板可以接受新的水磨石地板系统。要强调的是,平板上方的空气条件必须与运行中的操作条件紧密匹配,以消除蒸气压差。

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