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ON THE IDENTIFICATION OF RESIDUAL IMPACT PROPERTIES OF MATERIALS BY ACOUSTO-ULTRASONICS — A PATTERN RECOGNITION APPROACH

机译:声-超声识别材料的残余冲击特性的研究-一种模式识别方法

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摘要

This paper deals with the application of Acousto-ultrasonics, in conjunction with Pattern Recognition and Classification techniques, to the identification of residual impact properties of a class of polymeric material, namely, Polyvinylchlo-ride (PVC). PVC specimens of different low-energy repeated impact damage states are processed by Acousto-ultrasonics (AU) to retrieve AU signals in the form of dig-italized records. These AU signals are grouped as distinct classes, each pertaining to a known level of repeated impact damage. Describing features of these AU signals are used to build Pattern Recognition (PR) Classifiers. These classifiers are used to identify unknown damage states in other PVC specimens by classifying the retrieved AU signals as belonging to one of the classes. The obtained results indicate that Acousto-ultrasonics in combination with Pattern Recognition and Classification techniques can be used for the quantitative non-destructive identification of damage states in PVC specimens of unknown low-energy repeated impact conditions.
机译:本文将声学超声技术与模式识别和分类技术结合起来,用于识别一类聚合物材料,即聚氯乙烯(PVC)的残余冲击性能。通过声学超声(AU)处理具有不同低能量重复冲击破坏状态的PVC标本,以数字化记录的形式检索AU信号。这些AU信号分为不同的类别,每个类别都属于已知水平的重复冲击破坏。这些AU信号的描述特征用于构建模式识别(PR)分类器。这些分类器用于通过将检索到的AU信号分类为其中一个类别来识别其他PVC样本中的未知损坏状态。所得结果表明,声-超声波结合模式识别和分类技术可用于定量地对未知低能重复冲击条件的PVC样品中的损伤状态进行定量无损鉴定。

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