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EXPERIMENTAL INVESTIGATION OF RESIDUAL ULTIMATE STRENGTH OF DAMAGED METALLIC PIPELINES

机译:损坏的金属管道的残余极限强度的实验研究

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The ultimate strength of metallic pipelines will be inevitably affected when they have suffered from structural damage. The present experiments aim to investigate the residual ultimate bending strength of metallic pipes with structural damage based on large-scale pipe specimens. Artificial damage such as dent, metal loss, crack and combinations thereof is introduced on the pipe surface in advance. The entire test project consists of 34 seamless pipes with a relative low Diameter-to-thickness (D/t) ratio around 21.3, among which four intact specimens and thirty damaged specimens have been carried out for mutual comparison. Extensive measurements on structural damage and pipe geometries including wall thickness and outer diameter are performed. The material properties are measured by tensile tests with specimens from both pipe longitudinal and hoop direction. The four-point bending tests are performed to investigate the structural behaviors of metallic pipes. The bending strength associating with failure mode of each specimen is documented extensively, and the bending moment-curvature curves are presented and discussed. The fundamental research of experiments on damaged pipes in the present paper will be deployed for the following numerical and analytical research in the near future.
机译:当金属管道遭受结构破坏时,其最终强度将不可避免地受到影响。本实验旨在基于大型管道样本研究具有结构损伤的金属管道的残余极限弯曲强度。预先在管道表面引入诸如凹痕,金属损失,裂缝及其组合的人为损坏。整个测试项目包括34条无缝钢管,直径/厚度(D / t)比率相对较低,约为21.3,其中进行了四个完整试样和30个受损试样的比较。对结构损坏和管道几何形状(包括壁厚和外径)进行了广泛的测量。通过从管道纵向和箍向两个方向进行的拉伸试验,对材料的性能进行了测量。进行四点弯曲测试以研究金属管的结构行为。大量记录了与每个试样的破坏模式相关的弯曲强度,并给出并讨论了弯矩-曲率曲线。本文对受损管道的实验基础研究将在不久的将来用于以下数值和分析研究。

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