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Ultrasonic Testing Combined with Pattern Recognition for the Detection of Kissing Bonds

机译:超声波测试与模式识别相结合,用于检测键合键

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Kissing bonds are defects in the adhesive bonds with intimate contact of touching surface but considerably lowered shear strength. Their detection specifically in the aerospace area is so not satisfactory. Usually, kissing bonds are inconspicuous in ultrasonic C-scans. However, the determination of attributes in the time domain and the frequency domain of an ultrasound signal provides the opportunity to derive a pattern for bonded area. Deviations from the pattern found in inconspicuous bonding areas indicate kissing bonds. The survey described here deals with the manufacturing of adhesively joint samples that purposefully include kissing bonds, as well as potential solutions for detecting them through ultrasonic testing combined with pattern recognition. The properties of the epoxy-based adhesive were varied by changing the mixing ratios between resin and hardener. Samples with a mixing ratio far apart from the manufacturer’s recommendation with an inconspicuous appearance in a C-scan, but low shear strength values were taken for further evaluation. After a definition and learning phase, a 100 percent hit rate to separate good bondings from kissing bonds could be derived in a blind test. The discriminating feature found is due to the frequency shift between good and kissing bonds as well as the relative amplitude of the second peak.
机译:接触键是粘合剂表面接触面紧密接触的缺陷,但剪切强度大大降低。因此,它们在航空航天领域的检测并不令人满意。通常,在超声波C扫描中,接吻键并不明显。然而,超声信号的时域和频域中属性的确定提供了导出结合区域的图案的机会。在不显眼的粘合区域发现的图案偏离表示吻合。此处描述的调查涉及有目的地包括亲吻键的粘合接头样品的制造,以及通过超声测试与模式识别相结合来检测它们的潜在解决方案。通过改变树脂与硬化剂之间的混合比例来改变环氧基粘合剂的性能。样品的混合比与制造商的建议相距甚远,并且在C扫描中外观不明显,但样品的剪切强度值较低,以作进一步评估。在定义和学习阶段之后,可以通过盲测得出将良好粘合与亲吻粘合分离的100%命中率。发现的区别特征是由于良键和接键之间的频率偏移以及第二个峰的相对幅度引起的。

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