Experimental Validation of Dynamic Response of Small-Scale Metaconcrete Beams at Resonance Vibration

振动 共振(粒子物理) 材料科学 梁(结构) 结构工程 振幅 声学 物理 光学 工程类 粒子物理学
作者
Meisam Ansari,Fabiola Tartaglione,Carsten Koenke
出处
期刊:Materials [Multidisciplinary Digital Publishing Institute]
卷期号:16 (14): 5029-5029 被引量:2
标识
DOI:10.3390/ma16145029
摘要

Structures and their components experience substantially large vibration amplitudes at resonance, which can cause their failure. The scope of this study is the utilization of silicone-coated steel balls in concrete as damping aggregates to suppress the resonance vibration. The heavy steel cores oscillate with a frequency close to the resonance frequency of the structure. Due to the phase difference between the vibrations of the cores and the structure, the cores counteract the vibration of the structure. The core-coating inclusions are randomly distributed in concrete similar to standard aggregates. This mixture is referred to as metaconcrete. The main goal of this work is to validate the ability of the inclusions to suppress mechanical vibration through laboratory experiments. For this purpose, two small-scale metaconcrete beams were cast and tested. In a free vibration test, the metaconcrete beams exhibited a larger damping ratio compared to a similar beam cast from conventional concrete. The vibration amplitudes of the metaconcrete beams at resonance were measured with a frequency sweep test. In comparison with the conventional concrete beam, both metaconcrete beams demonstrated smaller vibration amplitudes. Both experiments verified an improvement in the dynamic response of the metaconcrete beams at resonance vibration.
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