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Floor Vibration Experiment and Serviceability Test of iFLASH System

机译:IFLash系统的地板振动实验和可维修性测试

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摘要

Studies on novel composite structures that can decrease floor height and improve constructional efficiency in order to increase spatial efficiency and lease revenue have been actively conducted. An innovative fire-proof, lightweight, absorbed, shallow, and hybrid (iFLASH) system was developed to solve construction site issues, such as improving constructability, reducing construction time, and attaining structural efficiency by reducing the weight of the building structure. This system can shorten the construction duration and decrease the floor height and structural weight, owing to features such as a low thickness and light weight. However, studies on the vibration characteristics of this new floor system have not been performed yet. As the general thickness of the iFLASH system ranges from 25 to 30 mm, it must have a sufficient floor vibration performance in order to be utilized. To evaluate the floor vibration performance of the iFLASH system, an experiment was performed in two buildings where the system was applied. This paper presents the results of the dynamic characteristics and serviceability testing as basic data for the vibration characteristics of the iFLASH system.
机译:积极开展了关于可以减少楼层高度和提高结构效率的新型复合结构的研究,以提高空间效率和租赁收入。开发了一种创新的防火,轻质,吸收,浅和混合动力(IFLASH)系统,以解决施工现场问题,例如通过减少建筑结构的重量来提高构造性,减少施工时间和实现结构效率。该系统可以缩短施工持续时间并降低地板高度和结构重量,由于诸如低厚度和重量轻。然而,对这一新地板系统的振动特性的研究尚未进行。由于IFLash系统的一般厚度范围为25至30毫米,因此必须具有足够的地板振动性能以便使用。为了评估IFLash系统的地板振动性能,在应用系统的两个建筑物中进行实验。本文介绍了动态特性和可维护性测试作为IFLash系统振动特性的基本数据的结果。

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