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Fatigue crack growth of filament wound GRP pipes with a surface crack under cyclic internal pressure

机译:循环内压下长丝缠绕玻璃钢管道表面裂纹的疲劳裂纹扩展

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摘要

In this study, fatigue damage behavior of (±753) filament wound composite pipes with a surface crack under alternating internal pressure was investigated. The specimens were tested at room temperature and exposed to open ended fatigue tests in which the pipe can be deformed freely in the axial direction. The tests were carried out in accordance with the ASTM D-2992 standard. The alternating internal pressure was generated by conventional hydraulic oil. The low cycle tests were performed with 0.42 Hz frequency and R = 0.05 stress ratio. Glass reinforced polymer pipes (GRP) are made of E-glass/epoxy and have (±753) configuration. Surface cracks were machined in the axial direction of the pipes which have depth-to-thickness ratios a/t = 0.25–0.38–0.50 and depth to length ratio of a/c = 0.2. Tests were performed at three different loads of 50%, 40%, and 30% of ultimate hoop stress strength of unnotched pipes. The failure behavior of GRP pipes during the test was observed and fatigue test results were presented by means of (S–N) curves and delamination damage zone area-cycle (A–N) curves.
机译:本研究研究了(±75 3 )长丝缠绕复合管在内部交变压力下的表面裂纹的疲劳损伤行为。在室温下对样品进行测试,并进行开放式疲劳测试,在该测试中,管道可以沿轴向自由变形。测试是根据ASTM D-2992标准进行的。交替的内部压力由常规液压油产生。低周期测试是在0.42 Hz频率和R = 0.05应力比下进行的。玻璃增强聚合物管(GRP)由电子玻璃/环氧树脂制成,并具有(±75 3 )构型。表面裂纹是沿管道的轴向加工的,其深度与厚度之比为a / t = 0.25-0.38-0.50,深度与长度之比为a / c = 0.2。在无缺口管道的极限环向应力强度的50%,40%和30%的三种不同载荷下进行测试。观察了GRP管在测试过程中的失效行为,并通过(S–N)曲线和分层损坏区域面积-周期(A–N)曲线表示了疲劳测试结果。

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