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首页> 外文期刊>Journal of Wood Science >A statistical algorithm for comparing mode shapes of vibration testing before and after damage in timbers
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A statistical algorithm for comparing mode shapes of vibration testing before and after damage in timbers

机译:一种统计算法,用于比较木材损坏前后振动测试的模式形状

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摘要

Instances of local damage in timber such as knots, decay, and cracks can be translated into a reduction of service life due to mechanical and environmental loadings. In wood construction, it is very important to evaluate the weakest location and to detect damage at the earliest possible stage to avoid future catastrophic failure. In this study, modal testing was used on wood beams to generate the first two mode shapes. A novel statistical algorithm was proposed to extract a damage indicator by computing mode shapes of vibration testing before and after damage in timbers. The different damage severities, damage locations, and damage counts were simulated by removing mass from intact beams to verify the algorithm. The results showed that the proposed statistical algorithm is effective and suitable for the designed damage scenarios. It is reliable for the detection and location of local damage of different severities, location, and number. The peak values of the damage indicators computed from the first two mode shapes were sensitive to different damage severities and locations. They were also reliable for the detection of multiple cases of damage.
机译:由于机械和环境负荷,木材局部损坏(例如打结,腐烂和裂缝)的情况可以转化为使用寿命的降低。在木结构建筑中,评估最薄弱的位置并尽早发现损坏非常重要,以避免将来发生灾难性故障。在这项研究中,模态测试用于木梁以生成前两个模态形状。提出了一种新颖的统计算法,通过计算木材破坏前后振动测试的模式形状来提取破坏指标。通过从完整光束中去除质量来模拟不同的损伤严重程度,损伤位置和损伤计数,以验证算法。结果表明,所提出的统计算法是有效的,适用于设计的损伤场景。它对于检测和定位不同严重性,位置和数量的局部损坏是可靠的。由前两种模式形状计算出的损伤指标的峰值对不同的损伤严重度和位置敏感。它们对于检测多种损坏情况也是可靠的。

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