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首页> 外文期刊>International Journal of Naval Architecture and Ocean Engineering >Low-cycle fatigue evaluation for girth-welded pipes based on the structural strain method considering cyclic material behavior
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Low-cycle fatigue evaluation for girth-welded pipes based on the structural strain method considering cyclic material behavior

机译:基于考虑循环材料行为的结构应变法的长周期疲劳评价

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One of the main concerns in the structural integrity of offshore pipelines is mechanical damage from external loads. Pipelines are exposed to fatigue failure in welded joints due to geometric discontinuity. In addition, fatigue loads such as currents, waves, and platform motions may cause significant plastic deformation and fracture or leakage within a relatively low-cycle regime. The 2007 ASME Div. 2 Code adopts the master S–N curve for the fatigue evaluation of welded joints based on the mesh-insensitive structural stress. An extension to the master S–N curve was introduced to evaluate the low-cycle fatigue strength. This structural strain method uses the tensile properties of the material. However, the monotonic tensile properties have limitations in describing the material behavior above the elastic range because most engineering materials exhibit hardening or softening behavior under cyclic loads. The goal of this study is to extend the cyclic stress-strain behavior to the structural strain method. To this end, structural strain-based procedure was established while considering the cyclic stress-strain behavior and compared to the structural strain method with monotonic tensile properties. Finally, the improved prediction method was validated using fatigue test data from full-scale girth-welded pipes.
机译:海上管道结构完整性的主要问题之一是外部载荷的机械损坏。由于几何不连续性,管道暴露于焊接接头中的疲劳失效。此外,疲劳负载如电流,波和平台运动可能在相对低循环状态下造成显着的塑性变形和裂缝或泄漏。 2007年ASME DIV。 2代码采用主S-N曲线,用于基于网眼不敏感结构应力的焊接接头的疲劳评估。引入了主S-N曲线的延伸,以评估低循环疲劳强度。该结构应变法使用材料的拉伸性能。然而,单调的拉伸性质具有限制描述弹性范围高于弹性范围的材料行为,因为大多数工程材料在环状负载下表现出硬化或软化行为。本研究的目标是将循环应力 - 应变行为扩展到结构应变法。为此,在考虑循环应力 - 应变行为的同时建立基于结构应变的程序,并与具有单调拉伸性能的结构应变法相比。最后,使用来自全尺寸周围焊接管道的疲劳测试数据验证了改进的预测方法。

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