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FLEXURE BEHAVIOR OF COMPOSITE SPOOLABLE TUBES

机译:复合可挠管的挠曲性能

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摘要

Composite tubes are a realistic alternative to metals in many offshore applications, offering high specific stiffness and strength as well as tailorability to sustain environmental loads. Furthermore the manufacturing options that are available enable them to be coiled onto spools for ease of storage, handling, and ease of installation. Some current applications of inland spoolable composite tubulars include buried and above ground flowlines, pipeline relining applications, and downhole injection strings. Our objective is to develop a synergistic methodology that integrates testing and computational modeling to identify the minimum spool radius for storage without introducing damage in the composite tube. Four-point flexure tests are conducted to simulate the spooling conditions. The computational models are based on the two dimensional shell elements of ABAQUS finite element package. These models incorporate non-linear geometry effects as well as a user material subroutine with residual stresses to predict damage progression. Parametric studies are conducted to assess the effects of lay-up, geometry, and constitutive material on the flexural behavior of the composite tubes and compared with the experimental data.
机译:复合管在许多海上应用中是金属的现实替代品,具有高的比刚度和强度以及可承受环境负荷的可定制性。此外,可用的制造选项使它们可以盘绕到线轴上,以易于存储,搬运和安装。内陆可缠绕复合管的一些当前应用包括地下和地上流水线,管道衬砌应用以及井下注入管柱。我们的目标是开发一种将测试和计算模型集成在一起的协同方法,以识别最小的卷轴半径以进行存储,而不会在复合管中造成损坏。进行四点弯曲测试以模拟绕线条件。计算模型基于ABAQUS有限元程序包的二维壳单元。这些模型结合了非线性几何效应以及带有残余应力的用户材料子例程,以预测损伤的进展。进行参数研究以评估叠层,几何形状和本构材料对复合管弯曲性能的影响,并与实验数据进行比较。

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