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首页> 外文期刊>International Journal of Mechanical Sciences >Parametric identification for material of viscoelastic SHPB from wave propagation data incorporating geometrical effects
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Parametric identification for material of viscoelastic SHPB from wave propagation data incorporating geometrical effects

机译:从包含几何效应的波传播数据中对粘弹性SHPB材料进行参数识别

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摘要

In the application of Split Hokinson Pressure Bar (SHPB) techniques, test bars made of viscoelastic materials are frequently used for their low impedance to test soft materials. Wave propagations in such bars are susceptible to dispersions caused by the viscoelastic effects of the bar material along with the lateral inertia of the bar particularly when large diameters are used. Thus, the time shifting of the strain signals from the recording gauges on the bars to the bar-specimen interface requires corrections based on both the material properties and the diameter of the bar. Most of the methods available in the open literature, for viscoelastic material identification using wave propagation tests, are based on one-dimensional wave propagation theory in which signal dispersions due to the lateral inertia are ignored and hence are appropriate for the bars with small diameters. A method of parametric identification is proposed in the current study, using the frequency domain information, for the viscoelastic properties of a relatively large diameter bar made from polymethyl methacrylate (PMMA). A three-dimensional wave propagation analysis is employed using recorded strain data at a single location on the PMMA bar. It is found that the proposed parametric identification procedure, compared with the results of a non-parametric identification, helps to rectify the uncertainties in the identified material characteristics in the form of a highly oscillatory trend caused by the noise in the recorded signals and by the data reduction procedures. Strain signals predicted using the identified material parameters by the proposed method correlate well with the measured experimental strains, indicating accuracy in the identified parameters and the presented procedure. (C) 2014 Elsevier Ltd. All rights reserved.
机译:在斯普利特霍金森压力棒(SHPB)技术的应用中,由粘弹性材料制成的测试棒因其低阻抗而经常用于测试软材料。在这种棒中的波传播容易受到由棒材料的粘弹性效应以及棒的横向惯性引起的色散的影响,特别是当使用大直径时。因此,应变信号从棒上的记录规到棒-试样界面的时移需要基于棒的材料特性和直径两者进行校正。在公开文献中,用于通过波传播测试识别粘弹性材料的大多数方法都是基于一维波传播理论,该理论忽略了由于横向惯性而引起的信号色散,因此适用于小直径的钢筋。当前研究中提出了一种使用频域信息的参数识别方法,以用于由聚甲基丙烯酸甲酯(PMMA)制成的相对较大直径的棒的粘弹性质。使用记录的应变数据在PMMA条上的单个位置进行三维波传播分析。结果发现,与非参数识别的结果相比,所提出的参数识别程序有助于纠正由所记录信号中的噪声和噪声引起的高度振荡趋势形式的已识别材料特性中的不确定性。数据缩减程序。通过所提出的方法使用识别出的材料参数预测的应变信号与测得的实验应变具有很好的相关性,表明识别出的参数和所提出的过程的准确性。 (C)2014 Elsevier Ltd.保留所有权利。

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