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Quantitative ultrasonic characterization of environmental degradation of adhesive bonds

机译:胶粘剂环境降解的定量超声表征

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摘要

Environmental degradation of adhesive joints is characterized using angle beam ultrasonic spectroscopy.The method is based on reconstruction of bulk and interfacial properties of an adhesive bond from ultrasonic experimental data using the inverse model,which uses normal and transverse effective springs to simulate poor contact between substrates and adhesive layer.Using standard manufacturing processes,phosphoric acid surface pretreated and unpretreated aluminum alloy 2024-T3 bonded samples were prepared and exposed to accelerated environmental degradation: immersion in saturated NaCl solution at 68°C and 4.45 kN (1000 Ib) load.It is shown that property-reconstruction-based angle beam ultrasonic spectroscopy provides an efficient measurement of adhesive bond degradation in the environment.Pixel-by-pixel normal and angle beam ultrasonic measurements were made to quantify the degradation of bondline properties by reconstructing absolute values of adhesive-bond parameters,such as thickness,effective longitudinal and shear moduli,density and ultrasonic longitudinal- and shear-wave attenuations.The properties were monitored as a function of time in the environment and by measuring these parameters over the joint area,environmentally degraded areas in the bonded structure were determined.In particular,it was concluded from measurements on a large set of samples that parameters reconstructed from ultrasonic measurements began to vary significantly after about 70% of the lap shear joint lifetime.To isolate the interfacial degradation from changes in bulk properties of the adhesive,aluminum adherends were prepared without anodization and priming assuring fast interface degradation without degradation of the adhesive layer.Reconstruction of interfacial and bulk properties of the bondline was performed over the bonded area from normal and oblique reflection spectra.The reconstruction was validated by independent measurements of the bulk parameters on the adhesive film extracted from the joint after degradation.
机译:使用角束超声光谱法表征粘合剂接头的环境降解。该方法基于使用逆模型从超声实验数据重建粘合剂的体积和界面特性的过程,该模型使用法向和横向有效弹簧来模拟基材之间的不良接触。使用标准制造工艺,制备磷酸表面经过预处理和未经预处理的铝合金2024-T3粘结样品,并将其暴露于加速的环境降解中:将其浸入68°C和4.45 kN(1000 Ib)负载的饱和NaCl溶液中。结果表明,基于性能重建的角束超声光谱技术可以有效测量环境中粘合剂的粘合性能。通过像素像素法线和角度束超声测量,可以通过重建粘合剂的绝对值来量化粘合层性能的退化键参数,例如thickne ss,有效的纵向和剪切模量,密度以及超声波纵向和剪切波衰减。在环境中,随时间对性能进行监测,并通过测量接缝区域的这些参数,确定粘结结构中的环境退化区域特别是,从对大量样品的测量得出的结论是,在大约70%的搭接剪切接头寿命后,通过超声测量重建的参数开始发生显着变化。为了将界面降解与胶粘剂整体性能的变化隔离开,制备铝被粘物时不进行阳极氧化和底涂处理,以确保界面快速降解而不会造成粘合剂层的降解。根据正反射和斜向反射光谱对键合区域的界面和整体性质进行重建,并通过独立测量胶膜提取物的体积参数从退化后的关节。

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