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Viscoelastic vibration damping identification methods. Application to laminated glass.

机译:粘弹性减振识别方法。适用于夹层玻璃。

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摘要

Laminatedglass is composed of two glass layers and a thin intermediate PVB layer, strongly influencing PVB's viscoelastic behaviour its dynamic response. While natural frequencies are relatively easily identified even with simplified FE models, damping ratios are not identified with such an ease. In order to determine to what extent external factors influence dampingidentification, different tests have been carried out. The external factors considered, apart from temperature, are accelerometers, connection cables and the effect of the glass layers. To analyse the influence of the accelerometers and their connection cables a laser measuring device was employed considering three possibilities: sample without instrumentation, sample with the accelerometers fixed and sample completely instrumented. When the sample is completely instrumented, accelerometer readings are also analysed. To take into consideration the effect of the glass layers, tests were realised both for laminatedglass and monolithic samples. This paper presents in depth data analysis of the different configurations and establishes criteria for data acquisition when testing laminatedglass.
机译:夹层玻璃由两个玻璃层和一个薄的中间PVB层组成,强烈影响PVB的粘弹性行为及其动态响应。尽管即使使用简化的有限元模型也可以相对容易地识别出固有频率,但是阻尼比的识别却不那么容易。为了确定外部因素在多大程度上影响阻尼识别,已进行了不同的测试。除了温度以外,考虑的外部因素还包括加速度计,连接电缆和玻璃层的影响。为了分析加速度计及其连接电缆的影响,使用了一种激光测量设备,该设备考虑了三种可能性:无仪器的样品,固定有加速度计的样品和完全仪器化的样品。样品完全装好后,还会分析加速度计的读数。考虑到玻璃层的影响,对夹层玻璃和整体样品均进行了测试。本文介绍了不同配置的深度数据分析,并建立了测试夹层玻璃时数据采集的标准。

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