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A theoretical analysis on the failure of unpressurized and pressurized pipelines

机译:无压管道和无压管道故障的理论分析

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摘要

A theoretical quasi-static analysis is proposed to predict the response and the onset of failure for pipelines. The maximum strain criterion, the effect of strain rate and an empirical formula for estimating the length of a plastic hinge are employed in the analysis. This theoretical study allows the local or denting deformation to continue during the global deformation phase. A good agreement has been achieved between the theoretical predictions and the corresponding experimental results for the threshold value of the impact energy and the maximum permanent transverse deflection for both unpressurized and pressurized pipelines. It transpires that both the maximum strain criterion and the empirical formula for the hinge length are applicable in the theoretical analysis. With a simple computer program, the theory can be used to predict the failure of pipelines. Discussions are made for the influence of internal pressure on the shape of the indentation and the threshold value of the impact energy.
机译:提出了理论上的准静态分析,以预测管道的响应和故障的发生。分析中采用了最大应变准则,应变速率的影响以及估算塑料铰链长度的经验公式。该理论研究允许局部变形或凹陷变形在整体变形阶段继续进行。在理论预测和相应的实验结果之间,对于未加压和加压管道的冲击能阈值和最大永久性横向挠度已经取得了良好的共识。可以看出,最大应变准则和铰链长度的经验公式均适用于理论分析。通过简单的计算机程序,该理论可用于预测管道的故障。讨论了内部压力对压痕形状和冲击能量阈值的影响。

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