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首页> 外文期刊>Journal of Sound and Vibration >Vibro-acoustic modulation baseline-free non-destructive testing
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Vibro-acoustic modulation baseline-free non-destructive testing

机译:振动声调制基线无损检测

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Vibro-Acoustic Modulation method for detection and characterization of various structural and material flaws has been actively researched for the last two decades. Most of the studies focused on detection and monitoring of macro-cracks requiring well established baseline (no-damage) value of the modulation index. The baseline value is specific for a particular structure, measuring setup, and other factors and can't be established in many practical situations without a long term monitoring looking for a relative change in the Modulation Index. In this work, we propose and investigate a baseline-free Vibro-Acoustic Modulation method, which does not require monitoring of relative Modulation Index change, unlike conventional approach. It was hypothesized that the nonlinear mechanisms (and respective nonlinear response) of a structure are different for undamaged and damaged material. For example: material without damage or at early stages of fatigue have classic elastic or hysteretic/dissipative nonlinearity while damaged (cracked) material may exhibit contact bi-linear or Hertzian nonlinear mechanisms. These mechanisms yield different power law dependencies of Modulation Index (MI) as function of applied vibration amplitude, B: MI similar to B-beta. Thus, quadratic nonlinearity yields linear dependence, beta=1, and Hertzian nonlinearity results in beta<1. Other nonlinear mechanisms yield different power laws. Therefore, measuring power damage coefficient beta instead of MI may offer testing without established reference value. It also offer some insights into the nonlinear mechanisms transformation during damage evolution. This approach was experimentally investigated and validated. (C) 2020 Elsevier Ltd. All rights reserved.
机译:在过去的二十年里,人们一直在积极研究用于检测和表征各种结构和材料缺陷的振动声调制方法。大多数研究侧重于宏观裂纹的检测和监测,需要确定调制指数的基线(无损伤)值。基线值是特定于特定结构、测量设置和其他因素的,在许多实际情况下,如果不长期监测调制指数的相对变化,就无法确定基线值。在这项工作中,我们提出并研究了一种无基线振动声调制方法,与传统方法不同,该方法不需要监测相对调制指数的变化。假设结构的非线性机制(以及相应的非线性响应)对于未受损和受损材料是不同的。例如:无损伤或处于疲劳早期阶段的材料具有典型的弹性或滞回/耗散非线性,而损伤(裂纹)材料可能表现出接触双线性或赫兹非线性机制。这些机制产生不同的调制指数(MI)幂律依赖性,作为施加振幅的函数,B:MI类似于B-β。因此,二次非线性产生线性相关性,β=1,赫兹非线性导致β<1。其他非线性机制产生不同的幂律。因此,测量功率损伤系数beta而不是MI可以提供测试,而无需确定参考值。这也为损伤演化过程中的非线性机制转换提供了一些见解。对这种方法进行了实验研究和验证。(C) 2020爱思唯尔有限公司版权所有。

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