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首页> 外文期刊>Journal of the Brazilian Society of Mechanical Sciences and Engineering >A Procedure for the Parametric Identification of Viscoelastic Dampers Accounting for Preload
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A Procedure for the Parametric Identification of Viscoelastic Dampers Accounting for Preload

机译:考虑预载的粘弹性阻尼器参数辨识的程序

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摘要

Passive vibration isolators are usually made of viscoelastic materials. These materials have non-linear characteristics that change their dynamical properties with temperature, frequency and strain level. The vibration isolator’s mathematical modeling and optimal design requires the prior knowledge of the stiffness and damping of the applied viscoelastic material. This work presents a dynamical characterization methodology to identify the stiffness and damping of three samples of viscoelastic rubber with hardness of 25, 33 and 48 SHORE A. The experimental apparatus is a one-degree of freedom vibratory mechanical system coupled to the viscoelastic damper. Sweep sine excitations are applied to the system and the resulting forces and vibration levels are measured. The amplitude of the excitation is controlled to achieve a constant RMS level of strain in the viscoelastic samples. The experimental results are obtained for conditions of no pre-strain and with a 10% of pre-strain. The time domain data is post-processed to generate frequency response functions that are used to identify the damping and stiffness properties of the viscoelastic damper.
机译:被动隔振器通常由粘弹性材料制成。这些材料具有非线性特性,可随温度,频率和应变水平改变其动态特性。隔振器的数学模型和最佳设计需要对所应用的粘弹性材料的刚度和阻尼具有先验知识。这项工作提出了一种动力学表征方法,以鉴定三个硬度分别为25、33和48 SHORE A的粘弹性橡胶样品的刚度和阻尼。实验设备是与粘弹性阻尼器耦合的单自由度振动机械系统。扫描正弦激励应用于系统,并测量合力和振动水平。控制激发的振幅以在粘弹性样品中获得恒定的RMS应变水平。在没有预应变且预应变为10%的条件下获得了实验结果。对时域数据进行后处理以生成频率响应函数,这些函数用于识别粘弹性阻尼器的阻尼和刚度特性。

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