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Damage localization on composite structures: radial basis function application

机译:复合结构的损伤定位:径向基函数应用

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摘要

The main purpose of Structural Health Monitoring (SHM) is to determine the integrity of a structure or component during their operational life. This is done, in order to schedule proper and effective actions to remove or mitigate any damage/defect that could affect the integrity of the system. Composite materials, widely used in aerospace applications, are characterized by low out-of-plane mechanical properties. An impulsive event such as low velocity impact (LVI) on this class of materials could cause barely visible impact damage (BVID) that is not detectable by a simple visual inspection, reducing the strength of the structure. This research work proposes an improved damage detection technique overcoming the limitations of the methods presented in literature (knowledge of the mechanical properties, the direction dependency of the wave speed, the attenuation and dispersion effects). The damage detection and localization technique is based on an active approach, using an array of sparse piezo sensors. One transducer is used as an acoustic actuator, inducing ultrasonic waves which propagate through the component, and the others are used as receiving sensors. The routine is based on the signal power of the response in the sensor's location and their interpolation by the radial basis function, from which the location of the damage is determined. The experimental campaign was performed on a simple carbon fiber reinforced plate fitted with eight piezo transducers, with multiple configurations of sending-receiving pairs. Good results were obtained with a good level of accuracy in damage localization estimation.
机译:结构健康监测(SHM)的主要目的是确定结构或组件在其使用寿命期间的完整性。这样做是为了安排适当而有效的措施,以消除或减轻可能影响系统完整性的任何损坏/缺陷。复合材料广泛用于航空航天应用,其特征在于低的平面外机械性能。在此类材料上发生的冲动事件(例如低速冲击(LVI))可能会导致几乎看不见的冲击损伤(BVID),而这是通过简单的目视检查无法检测到的,从而降低了结构的强度。这项研究工作提出了一种改进的损伤检测技术,以克服文献中提出的方法的局限性(了解机械性能,波速的方向依赖性,衰减和色散效应)。损伤检测和定位技术基于主动方法,使用稀疏压电传感器阵列。一个换能器用作声致动器,感应通过组件传播的超声波,其他换能器用作接收传感器。该例程基于传感器位置中响应的信号功率及其通过径向基函数的插值,由此确定损坏的位置。该实验活动是在一个简单的碳纤维增强板上进行的,该板上装有八个压电换能器,具有多种发送接收对配置。获得了良好的结果,并且在损伤定位估计中具有很高的准确性。

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