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Low frequency vibration approach for assessing performance of wood floor systems.

机译:低频振动方法,用于评估木地板系统的性能。

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摘要

The primary means of inspecting buildings and other structures is to evaluate each structure member individually. This is a time-consuming and expensive process, particularly if sheathing or other covering materials must be removed to access the structural members. The objective of this study was to determine if a low frequency vibration method could be used to effectively assess the structural performance of wood floors as component systems. Twelve wood floors were constructed with solid sawn wood joists in the laboratory and were tested with both vibration and static load methods at the Michigan Technological University (Michigan, USA). The results indicated that the forced vibration method was capable of measuring the fundamental natural frequency (bending mode) of the wood floors investigated. An analytical model derived from the flexural beam theory was found to fit the physics of the floor structures and can be used to correlate natural frequency to section modulus (EI product) of the floor systems..
机译:检查建筑物和其他结构的主要方法是分别评估每个结构构件。这是一个耗时且昂贵的过程,特别是如果必须去除护套或其他覆盖材料以进入结构构件时。这项研究的目的是确定是否可以使用低频振动方法来有效评估作为组成系统的木地板的结构性能。十二个木地板在实验室中用实木锯木托梁建造,并在密歇根技术大学(美国密歇根州)通过振动和静载荷方法进行了测试。结果表明,强迫振动法能够测量所研究木地板的基本固有频率(弯曲模式)。发现了一种基于弯曲梁理论的分析模型,它适合地板结构的物理性质,可用于将固有频率与地板系统的截面模量(EI乘积)相关联。

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