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Measurement systems to detect the time-dependant development of concrete spalling under fire exposure

机译:测量系统,用于检测火灾下混凝土剥落随时间的变化

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In order to analyse the behaviour of concrete under fire exposure experimental investigations are used [1]. This practice is expensive and very time-consuming. So, it is essential to get as most suitable information out of such experiments as possible. At the present, most standard experiments are only capable of comparing a condition of concrete before and after the experiments [1]. Unfortunately, information of the time-dependent development of the damaging process cannot be resolved. In order to fully understand the mechanism of dynamic concrete damage under fire exposure, this information is crucial. Therefore, it is necessary to develop measurement systems which are able to monitor and detect the entire exposure process and its consequences. These systems should be applied additionally to the temperature monitoring, the visual inspection and a weighting of the specimen before and after the experiments. For this purpose volume-oriented non-destructive testing methods are considered. It is possible to use ultrasonic systems or impact-echo methods, but the most suitable are acoustic emission techniques. With this method it is possible to monitor damage processes of the complete specimen volume and during the whole time of the experiments. The paper will present results of experimental investigations where such systems have been successfully applied to test the feasibility, practicability and the usefulness of different measurement systems to verify the time-dependant development of concrete spalling under fire exposure.
机译:为了分析混凝土在火灾下的行为,进行了实验研究[1]。这种做法既昂贵又非常耗时。因此,从此类实验中获取最合适的信息至关重要。目前,大多数标准实验只能比较实验前后的混凝土状况[1]。不幸的是,破坏过程随时间变化的信息无法解决。为了充分了解火灾下动态混凝土损伤的机理,此信息至关重要。因此,有必要开发一种能够监视和检测整个曝光过程及其后果的测量系统。这些系统应另外用于温度监测,目视检查以及实验前后的样品称重。为此,考虑了面向体积的无损检测方法。可以使用超声波系统或冲击回波方法,但最合适的是声发射技术。使用这种方法可以监视整个样品体积以及整个实验过程中的损坏过程。本文将提供实验研究的结果,其中已成功地将此类系统用于测试不同测量系统的可行性,实用性和实用性,以验证受火暴露下混凝土剥落的时间依赖性。

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