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MEMS-based surface mounted health monitoring system for composite laminates

机译:用于复合材料层压板的基于MEMS的表面安装健康监测系统

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Composite structures subjected to extreme loadings like, e.g., impacts, can undergo a reduction of their stiffness and strength properties, due to the nucleation and subsequent propagation of cracks along the interfaces between different phase materials. This phenomenon turns out to be difficult to detect through cheap monitoring procedures. Here, we discuss a methodology to monitor the state of crack-containing composite laminates through low-cost, commercial off-the-shelf MEMS accelerometers. By adopting cyclic loading conditions, we track the evolution of the cracked, or debonded region in a double cantilever beam; this is achieved by surface mounting a MEMS (along with its board) and by monitoring the drift in the compliance of the specimen induced by crack growth. The methodology is validated through an analytical model of the experimental test, which highlights the sensitivity of the monitoring scheme to the crack length.
机译:由于成核作用和随后沿不同相材料之间的界面传播裂纹,复合结构承受的极限载荷(例如冲击)可能会降低其刚度和强度性能。事实证明,通过廉价的监视程序很难检测到这种现象。在这里,我们讨论一种通过低成本,现成的MEMS加速度计监测含裂纹的复合层压板状态的方法。通过采用循环载荷条件,我们跟踪了双悬臂梁中破裂或脱胶区域的演变;这是通过表面安装MEMS(及其板)并监测由裂纹扩展引起的试样柔度的漂移来实现的。该方法通过实验测试的分析模型进行了验证,该模型突出了监控方案对裂纹长度的敏感性。

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