Four Point Bend Test of 5LPP – Concrete Coated Pipe

Sachin Mathakari, Cameran Cox, Phillip Rattenbury
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Abstract

The objective of this paper is to present a 4-point bend test of 5LPP (Five Layer Polypropylene) concrete coated pipe. This is the first of its kind of bend test for a complex coating combination of 5LPP and concrete layers. The bend tests have been carried out to simulate S-Lay installation loading conditions to assess the coating integrity of the pipeline during installation. This paper reports the test arrangements including instrumentation, load schedule, test procedure and the challenges involved. Finally, the preliminary results and conclusions of the tests are documented. Two separate full scale four-point bend tests are carried out to study the behavior of the 5LPP concrete coated pipe. The purpose of the first test is to understand the complex behavior of the 5LPP/CWC coated test pipe and validate previously made industry standard assumptions regarding the calculated coated joint stiffness. The purpose of the second test is to observe the coating integrity of the test joint and slippage behavior due to the simulated installation conditions (overbend and sagbend bending moments and/or corresponding curvatures). The nonlinear moment-curvature for the concrete coated pipe is estimated based on an analytical approach taking into consideration plane bending theory and slippage behavior of the coating layers. The moment-curvature is used to prepare the load schedule for the tests. The test string consists of a test joint (40ft) welded to half joints at the ends. The bend test is performed using industry established full scale 4-point bend test arrangements. A global finite element model is used to simulate the tests using the analytical moment-curvature of the concrete coated pipe. The stiffness of the test pipe is calculated using the first bend test and compared against the analytical stiffness. The second test is carried out by applying loads corresponding to an estimated maximum overbend bending moment and then the test string is unloaded and rebent in opposite direction by applying loads corresponding to an estimated maximum sagbend bending moment. The results of the second test are documented at each load step and the integrity of the coating is measured against specified concrete coating damage criteria for tension as well as compression. Finally, field observations from the actual installation operation are compared against the bend test results. Conclusions are presented to address various aspects of concrete coated pipe for S-Lay installations.
5LPP -混凝土包覆管四点弯曲试验
本文的目的是提出5LPP(五层聚丙烯)混凝土包覆管的四点弯曲试验。这是第一次对5LPP和混凝土层的复杂涂层组合进行此类弯曲试验。进行了弯曲试验,模拟S-Lay安装加载条件,以评估管道安装过程中涂层的完整性。本文报告了试验安排,包括仪器、负荷计划、试验程序和所涉及的挑战。最后,给出了试验的初步结果和结论。为研究5LPP混凝土包覆管材的弯曲性能,进行了两次全尺寸四点弯曲试验。第一个测试的目的是了解5LPP/CWC涂层测试管的复杂行为,并验证之前关于计算涂层接头刚度的行业标准假设。第二个测试的目的是观察测试接头的涂层完整性和由于模拟安装条件(上弯和下弯弯矩和/或相应的曲率)而产生的滑移行为。基于平面弯曲理论和涂覆层滑移特性的解析方法,对混凝土涂覆管的非线性弯矩曲率进行了估计。弯矩曲率用于准备试验的加载计划。测试管柱包括一个测试接头(40英尺),焊接在两端的半接头上。弯曲试验是使用工业上建立的全尺寸4点弯曲试验安排进行的。采用整体有限元模型,利用混凝土包覆管的解析弯矩曲率对试验进行了模拟。利用第一次弯曲试验计算测试管的刚度,并与分析刚度进行比较。第二次测试通过施加与估计最大过弯弯矩相对应的载荷来进行,然后卸载测试管柱,并通过施加与估计最大下弯弯矩相对应的载荷向相反方向弯曲。第二次测试的结果记录在每个加载步骤中,涂层的完整性根据特定的混凝土涂层拉伸和压缩损伤标准进行测量。最后,将实际安装作业的现场观测结果与弯曲试验结果进行比较。提出结论,以解决混凝土涂层管的各个方面的S-Lay装置。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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