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Mechanical characterization of unplasticised polyvinylchloride thick pipes by optical methods

机译:未增塑聚氯乙烯厚管的光学表征

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摘要

In this work a number of techniques (electronic speckle pattern interferometry, holographic interferometry, strain gauge and finite element method) are brought to bear in order to establish consistency in the results of strain measurement. This is necessary if optical nondestructive testing methods, such as those used here, are to gain acceptance for routine industrial use. The FE model provides a useful check. Furthermore, ESPI fringe data facilitates the extension of FE models, an approach that is of growing importance in component testing. The use of in-plane and out-of-plane sensitive electronic speckle pattern interferometry (ESPI) for non-destructive material characterization of thick unplasticised polyvinylchloride (uPVC) pipes is presented. A test rig has been designed for stressing pipes by internal pressure. ESPI gives a complete mapping of the displacement field over the area imaged by the video camera. The results for the strain of uPVC obtained from ESPI data and from strain gauges are in good agreement. The value of Young's modulus has been obtained from the fringe data and compared with results obtained using holographic interferometry and from strain gauge measurements. The FE model also produces fringe data that is consistent with the ESPI results.
机译:在这项工作中,采用了多种技术(电子散斑干涉法,全息干涉法,应变仪和有限元方法)以建立应变测量结果的一致性。如果光学无损检测方法(如此处使用的方法)获得常规工业用途的接受,则这是必要的。 FE模型提供了有用的检查。此外,ESPI条纹数据促进了FE模型的扩展,这种方法在组件测试中变得越来越重要。提出了使用面内和面外敏感电子散斑图干涉仪(ESPI)来对厚的未塑化聚氯乙烯(uPVC)管进行无损材料表征的方法。已经设计了一种测试装置,用于通过内部压力对管道施加压力。 ESPI在摄像机成像的区域上提供了位移场的完整映射。从ESPI数据和应变仪获得的uPVC应变结果非常吻合。杨氏模量的值已经从条纹数据中获得,并且与使用全息干涉法和应变仪测量获得的结果进行了比较。 FE模型还会产生与ESPI结果一致的边缘数据。

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