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首页> 外文期刊>Ultrasonics >Novel slanted incidence air-coupled ultrasound method for delamination assessment in individual bonding planes of structural multi-layered glued timber laminates
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Novel slanted incidence air-coupled ultrasound method for delamination assessment in individual bonding planes of structural multi-layered glued timber laminates

机译:新型倾斜入射空气耦合超声方法,用于结构多层胶合木材层压板各个粘结面的分层评估

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摘要

Non-destructive assessment of delaminations in glued laminated timber structures is required during their full life cycle. A novel air-coupled ultrasound (ACU) method has been developed, which is able to separately detect delaminations in individual bonding planes of arbitrarily high and long laminated stacks and typically 200 mm wide. The 120 kHz ACU transmitter-receiver pair is positioned at two opposite lateral faces of the sample, with a small inclination with respect to the inspected bonding planes, so that an ultrasound beam is excited at a user-defined refraction angle within the sample, interacting with defects in a limited height portion of the stack. The attenuation of the ultrasound beam transmitted across the defect (negative detection) provided better sensitivity to defects than the scattered fields (positive detection), which are masked by spurious fields. Dedicated finite-difference time-domain (FDTD) simulations provided understanding on the wave propagation and defect detectability limits, with respect to the heterogeneous anisotropic material structure introduced by the curvature of the annual rings in individual timber lamellas. A simplified analytical expression was derived to calculate refraction angles in timber in function of insonification angle and ring angle. Experimental results show that the method is able to detect >20% wide defects in both isotropic material and in glulam with straight year rings, and >50% wide and 100 mm long defects in commercial glulam beams. The discrimination of defects from background variability is optimized by normalizing the images with respect to reference defect-free sample sections (normalization) or previous measurements (difference imaging), and by combining readings obtained with distinct ultrasound beam refraction angles (spatial diversity). Future work aims at the development of a tomographic defect inspection by combining the described theoretical and experimental methods.
机译:需要在胶合层压木结构的整个生命周期中对脱层进行无损评估。已经开发了一种新颖的空气耦合超声(ACU)方法,该方法能够分别检测任意高和长的叠层堆栈(通常为200毫米宽)的各个粘结平面中的分层。 120 kHz ACU发射器-接收器对位于样品的两个相对侧面,相对于检查的结合面有较小的倾斜度,因此超声波束以样品中用户定义的折射角被激发,从而相互作用在堆栈的有限高度部分存在缺陷。穿过缺陷的超声波束的衰减(负检测)比被杂散场掩盖的散射场(正检测)对缺陷的灵敏度更高。专用的有限差分时域(FDTD)模拟提供了有关波传播和缺陷可检测性极限的理解,以及单个木材薄层中年轮曲率所引入的异质各向异性材料结构。推导了一个简化的解析表达式来计算木材中折射角和环角的函数角。实验结果表明,该方法能够检测均质材料和具有直年环的胶合层中大于20%的缺陷,以及商用胶合木梁中大于50%的宽度和100 mm长的缺陷。通过相对于参考无缺陷样品切片(归一化)或先前的测量值(差值成像)对图像进行归一化,并结合不同超声束折射角(空间分集)获得的读数,可以优化从背景可变性中区分缺陷的方法。未来的工作旨在通过结合所描述的理论方法和实验方法来开发断层摄影缺陷检查。

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