基于lamb波模拟的裂纹尺寸量化新方法

Jingjing He, Yunmeng Ran, Jingsong Yang, Wei Zhang
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引用次数: 4

摘要

近年来,由于兰姆波在结构中传播距离大,能量损失小,在结构完整性评估和寿命预测方面显示出巨大的潜力。然而,现有的基于Lamb波的损伤检测研究大多集中在特定目标系统上。与裂纹尺寸和损伤敏感特征相关的物理模型可能因不同的结构几何形状、加载剖面等而变化。因此,开发一种适用于不同结构的可靠、高效、准确的裂纹量化方法具有重要意义。提出了一种基于有限元模拟的裂纹尺寸量化方法。利用Abaqus模拟研究了兰姆波的传播机理。利用Abaqus CAE软件对健康板和不同裂纹尺寸板进行了一系列数值模拟。根据现有文献,兰姆波的S0模态对裂纹损伤敏感。因此,选择S0模式的第一波包从测量时间序列中提取损伤特征。通过对仿真结果的分析,确定了归一化幅度和相关系数两个损伤敏感特征,并利用这两个特征建立了裂纹尺寸量化模型。考虑到不同制造条件和环境条件带来的不确定性,进行了一系列的联片试验,提取了试验数据的相同损伤敏感特征。裂纹尺寸量化方法的有效性通过试件试验数据得到验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A novel crack size quantification method based on lamb wave simulation
In recent years, Lamb wave has shown great potential in structural integrity assessment and life prediction due to the capability of traveling at large distances in structures with little energy loss. However, most of existing researches of Lamb wave based damage detection mainly focus on specific target systems. Physical models which correlate the crack size and damage sensitive features may vary with different structural geometry, loading profile et al. Therefore, it is of significant interest to develop a general methodology for reliable, efficient and accurate crack quantification for different structures. This paper presents a crack size quantification method based on finite element simulation. Lamb wave propagation mechanism is studied by Abaqus simulation. A series of simulations of both healthy plate and plates with different crack sizes are performed using Abaqus CAE. According to existing literatures, S0 mode of Lamb wave is sensitive with crack damage. Thus first wave package of S0 mode is chosen to extract damage features from measured time series. Two damage sensitive features: normalized amplitude and correlation coefficients are identified by analyzing simulation results and employed to establish a crack size quantification model. Considering the uncertainties caused by different manufacturing and environmental conditions, series of coupon tests are performed and the same damage sensitive features of testing data are extracted. The effectiveness of the proposed crack size quantification method is verified by data of coupon test.
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