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Monitoring and prediction of damage in filament wound composite pipes under pressure loading.

机译:压力载荷下长丝缠绕复合管损坏的监测和预测。

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A number of pressure loading tests were conducted on large-scale filament wound composite pipes. The objective of the program was to assess the effectiveness of existing failure criteria in predicting several limit states and to develop methods based on nondestructive evaluation techniques to monitor damage growth and predict residual capacity of composite pipes. The program consisted of internal pressure tests under static and fatigue pressure loading on specimens constructed following the ASME RTP-1 specifications for pressure vessels for corrosive or hazardous fluids. An external pressure test on a fullscale specimen constructed of carbon fiber was also part of the program. Finally, a series of impact tests on fiberglass pipe specimens were also performed. Acoustic emission (AE) and other nondestructive evaluation (NDE) monitoring techniques were used as part of the program. The AE method was selected for further study because of its applicability to existing structures and relative economy in its use. Results of the program indicated that AE may be used as a toot for predicting fatigue endurance of pressure vessels under internal loading. In addition, acoustic emission showed promising results as a tool for predicting residual capacity on impact damaged fiberglass pipes. In the external pressure (collapse) portion of the test program, AE monitoring presented with supporting and additional information for the interpretation of other measured data during a test where visual inspection at the time of loading was not possible. An analytical phase followed the experimental tests, in an effort to evaluate existing tools and their accuracy in predicting measured behavior. Results of the analysis are compared to the measured responses and limiting factor in their applicability are enumerated.
机译:在大型长丝缠绕复合管上进行了许多压力加载测试。该计划的目的是评估现有失效标准在预测几种极限状态方面的有效性,并开发基于无损评估技术的方法,以监测损伤的增长并预测复合管的剩余容量。该程序包括在承受静态和疲劳压力载荷的内部压力测试中,该载荷是根据ASME RTP-1规范设计的,用于腐蚀性或危险性流体的压力容器。该程序还包括对由碳纤维制成的满刻度样品进行外部压力测试。最后,还对玻璃纤维管样品进行了一系列冲击试验。该程序使用了声发射(AE)和其他无损评估(NDE)监测技术。选择AE方法是因为它适用于现有结构并且使用起来相对经济,因此需要进一步研究。该程序的结果表明,AE可以用作预测内部载荷下压力容器疲劳强度的工具。此外,声发射作为预测撞击损坏的玻璃纤维管上剩余容量的工具显示出令人鼓舞的结果。在测试程序的外部压力(塌陷)部分中,AE监视提供了支持和附加信息,以解释测试期间无法进行装载时的目视检查的其他测量数据。在实验测试之后的分析阶段,旨在评估现有工具及其在预测测量行为中的准确性。将分析结果与测得的响应进行比较,并列举其适用性的限制因素。

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