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首页> 外文期刊>Engineering failure analysis >Assessment of API X65 steel pipe puffiness by a strain based design (SBD) approach under bi-axial loading
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Assessment of API X65 steel pipe puffiness by a strain based design (SBD) approach under bi-axial loading

机译:双轴载荷下基于菌株的设计(SBD)方法评估API X65钢管浮肿

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摘要

Puffiness formation can occur during process of pipelines component fabrication and transportation or during construction, operation, maintenance and their repair processes. The present paper addresses issues related to pipeline design and associated with the unintended actions due to external loads or ground movements. These may introduce longitudinal strains in the pipeline owing to combinations of curvatures and axial forces. Such scenarios can be tackled with Strain-Based Design approaches. Elaboration on checking the strain capacity of pipelines was achieved via the material testing in which a full-scale test was performed on a pressurized pipe under bending load. Numerical modeling procedures for predicting the structural behavior using certain assumptions are also described in this study. The result in local buckling hereafter referred to as puffiness. Such local damages are associated with large plastic deformations, substantial changes of the pipeline geometry and mechanical properties of its material.
机译:在管道组件制造和运输过程中或在施工,操作,维护及其修复过程中可能发生浮肿形成。本文涉及与管道设计相关的问题,并由于外部负载或地面运动而与意外行动相关联。由于曲率和轴向力的组合,这些可能在管道中引入纵向菌株。这种情况可以用基于应变的设计方法来解决。通过材料测试实现了检测管道的应变能力的阐述,其中在弯曲载荷下对加压管进行全规模试验。本研究还描述了用于预测使用某些假设的结构行为的数值建模程序。下文中的结果在局部屈曲被称为浮肿。这种局部损坏与大的塑性变形相关,管道几何形状的大量变化和其材料的机械性能。

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