首页> 外文会议>American Helicopter Society national technical specialists' meeting on rotorcraft structures >NONDESTRUCTIVE EVALUATION OF COMPOSITE PART DETAILS USING DIGITAL ACOUSTIC VIDEO EVALUATION
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NONDESTRUCTIVE EVALUATION OF COMPOSITE PART DETAILS USING DIGITAL ACOUSTIC VIDEO EVALUATION

机译:数字声视频评估对复合零件细节的非破坏性评估

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The universal applicability of ultrasonic inspection to aircraft components has helped establish it as an essential nondestructive method. Composite detail parts such as attach pieces, stiffeners, and intercostals generally undergo manual contact ultrasonic inspection due to their complex shapes and relatively small size. These manual inspections involve scanning transducers as small as 0.635 cm (0.25 inch) in diameter across the part surface in order to provide 100% inspection coverage. These inspections are labor-intensive, tedious, and costly in terms of the time involved. Usually, the anomalies and defects associated with these parts are relatively simple to characterize, with the radius areas being the most difficult. Digital acoustic video evaluation essentially provides an ultrasonic "camera" capable of much broader coverage than the conventional transducer arrangement. This inspection is performed by placing the part in a tank of water while articulating it between a relatively large transducer and the digital acoustic camera. The results can then be viewed in real time. This method is, of course, faster than the conventional manual pulse-echo ultrasonic method by several times. In this paper, we will give the results of a study involving several part details having varied types of defects. We will also demonstrate the congruency between the conventional method and the digital acoustic video method as far as sensitivity is concerned. This is a major factor when deciding whether the faster method should replace the slower one.
机译:超声检查在飞机部件上的普遍适用性已将其确立为一种基本的非破坏性方法。诸如附接件,加劲肋和肋间之类的复合细部零件由于形状复杂且尺寸相对较小,通常需要进行手动接触超声检查。这些手动检查涉及扫描整个零件表面直径小至0.635厘米(0.25英寸)的换能器,以提供100%的检查覆盖率。这些检查是费力的,繁琐的,并且在所涉及的时间方面是昂贵的。通常,与这些零件相关的异常和缺陷的表征相对简单,其中半径区域最为困难。数字声频视频评估本质上提供了一种超声波“摄像机”,其覆盖范围比常规换能器布置要宽得多。通过将零件放置在水箱中同时在相对较大的换能器和数字声学摄像机之间进行铰接操作来执行此检查。然后可以实时查看结果。当然,该方法比常规的手动脉冲回波超声方法快几倍。在本文中,我们将给出一项研究结果,该研究涉及具有多种缺陷类型的多个零件细节。就灵敏度而言,我们还将展示常规方法与数字声视频方法之间的一致性。在决定是否应使用较快的方法来替代较慢的方法时,这是一个主要因素。

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