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Heterodyning Effect in Composites Bond Inspection

机译:复合材料粘结检查中的异质效应

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With daily increase of application composite materials in commercial and military aircrafts, longevity of composite bonds has become a substantial factor in aerospace industry. Although tremendous amount of research has been conducted on monitoring the integrity of composite bonds, developing new structural health monitoring (SHM) techniques for evaluating bond strength could be essential. In this study, heterodyning method is implemented for exploring bond strength and detecting delamination in composite materials. Heterodyne effect may be utilized for the evaluation of debonded area when the linear characteristics of the system changes to nonlinear. The light contact in the bonding zone can result in this conversion from linear to nonlinear behavior. The nonlinear system responds to two appropriate excitation frequencies with new frequencies. For some nonlinear systems, the output has these new frequencies at the subtraction and summation of excitation frequencies. This is called heterodyne effect This experimental setup was designed to detect debonding in a composite coupon. In the experiment, two composite coupons are manufactured and bonded together by using film adhesive. To create a 2-inch-long debonding, no adhesive was applied in the left side of the bonded coupons. Three piezoelectric disks were attached to the bonded coupons while the middle disk acting as the exciter. The objective of the experiment was to study the alteration of the signals received by the piezoelectric disks attached to the opposite ends due to nonlinear behavior of the structure. The experimental setup was designed for the investigation of undesirable bonding conditions. Since the method evaluates the bond strength by detection of the changes of linear characteristics of the system to nonlinear, there is no need for baseline data. Results show that the proposed method can be used effectively for the composite bond inspection purposes.
机译:随着商用和军用飞机中复合材料应用的日增,复合材料键的寿命已成为航空航天工业的重要因素。尽管已进行了大量研究以监测复合材料粘结的完整性,但是开发新的结构健康监测(SHM)技术以评估粘结强度可能是必不可少的。在这项研究中,采用杂化法来探索粘结强度并检测复合材料中的分层。当系统的线性特征变为非线性时,外差效应可用于评估脱胶面积。结合区中的光接触可导致这种从线性行为到非线性行为的转换。非线性系统以新的频率响应两个适当的激励频率。对于某些非线性系统,输出在激励频率的减法和总和上具有这些新频率。这称为外差效应。此实验设置旨在检测复合试片中的脱胶。在实验中,制造了两个复合试样,并使用薄膜粘合剂将它们粘结在一起。为了产生2英寸长的脱胶,在粘合试样的左侧不施加粘合剂。将三个压电盘连接到结合的试片上,而中间的盘用作激励器。该实验的目的是研究由于结构的非线性行为而使附着在相对两端的压电磁盘接收到的信号发生变化。设计实验装置是为了研究不良的粘合条件。由于该方法通过检测系统的线性特性向非线性的变化来评估粘结强度,因此不需要基准数据。结果表明,所提出的方法可以有效地用于复合材料粘结检查的目的。

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