首页> 外文期刊>Journal of Chemical Engineering of Japan >Damping Characterisation of Particulate Materials Using Low Intensity Vibrations: Methodology for Determining Damping Properties from Acceleration Transmissibility Data and Comparison with Existing Direct Experimental Techniques
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Damping Characterisation of Particulate Materials Using Low Intensity Vibrations: Methodology for Determining Damping Properties from Acceleration Transmissibility Data and Comparison with Existing Direct Experimental Techniques

机译:使用低强度振动的颗粒材料阻尼特性:从加速度透射率数据确定阻尼特性的方法论以及与现有直接实验技术的比较

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References(53) Cited-By(5) A methodology to determine the damping and elastic properties of particulate materials subjected to low intensity vibration was investigated. Acceleration transmissibility through a shallow bed was measured by sensing two acceleration signals at both top and bottom of the bed using a top-cap mass mounted on the bed surface. An analogue model technique was employed, which enables the damping and elasticity to be identified simultaneously and conveniently, compared to existing direct experimental techniques. The effects of the model forms upon the acceleration transmissibility data were theoretically examined. From the experimental resonant characteristic curve, the loss factor and elastic modulus were deduced using the analogue model technique. The data gave a reasonable agreement with data generated by existing techniques.
机译:参考文献(53)Cited-By(5)研究了一种确定颗粒材料在低强度振动下的阻尼和弹性特性的方法。通过使用安装在床表面的顶盖质量感测床顶部和底部的两个加速度信号来测量通过浅床的加速度传递率。与现有的直接实验技术相比,采用了模拟模型技术,该技术能够同时方便地识别阻尼和弹性。理论上研究了模型形式对加速度传递率数据的影响。从实验共振特性曲线,使用模拟模型技术推导损耗因子和弹性模量。数据与现有技术生成的数据具有合理的一致性。

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