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首页> 外文期刊>IEEE sensors journal >Investigation of the Effectiveness and Robustness of an MEMS-Based Structural Health Monitoring System for Composite Laminates
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Investigation of the Effectiveness and Robustness of an MEMS-Based Structural Health Monitoring System for Composite Laminates

机译:基于MEMS的复合材料层压板结构健康监测系统的有效性和鲁棒性研究

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摘要

Failure of layered composites can be triggered by small inner defects; such defects can be present inside the composite from the beginning, or can be incepted by external actions during the life cycle of the structure. Defects generally evolve, under repeated loadings, into a delamination or debonding between adjacent laminae, and cannot be easily detected as they are masked by the composite skin: ad hoc health monitoring systems are therefore required. To prevent any distortion of the composite microstructure, which may trigger by itself the nucleation of the aforementioned defects, sensors should not be embedded inside the composite; in addition, to avoid a mechanical interaction between the monitoring system and the structure, sensors should be as lighter as possible. To comply with these two major requirements, we have recently investigated a microelectromechanical system-based, surface-mounted health monitoring strategy for laminates. In this paper, we provide the results of an experimental campaign to show the effectiveness of this strategy, in terms of sensitivity to the length of delamination in standard specimens (independently of the loading conditions at the tip of the delamination), and its robustness, in terms of repeatability of the outcomes relevant to the monitored state. The experimental data are compared with analytical predictions based on beam bending theory, showing a good accuracy.
机译:层状复合材料的失效可能是由小的内部缺陷引起的。这样的缺陷可以从一开始就出现在复合材料内部,或者可以在结构的生命周期中被外部作用所接受。缺陷通常在重复加载下发展成相邻薄片之间的分层或脱粘,并且由于复合皮肤掩盖了缺陷,因此不易检测到:因此需要临时健康监测系统。为了防止复合物微观结构发生任何变形,而这种变形可能会自身触发上述缺陷的形核,因此不应将传感器嵌入复合物内部;此外,为避免监视系统与建筑物之间发生机械相互作用,传感器应尽可能轻。为了满足这两个主要要求,我们最近研究了一种基于微机电系统,用于层压板的表面安装式健康监测策略。在本文中,我们提供了一项实验活动的结果,以证明该策略的有效性,包括对标准样品中分层长度的敏感性(独立于分层尖端的加载条件)及其鲁棒性,与监视状态相关的结果的可重复性方面。将实验数据与基于梁弯曲理论的分析预测结果进行比较,显示出良好的准确性。

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