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A PARAMETRIC STUDY ON BUCKLING RESPONSE OF HIGH STRENGTH STEEL PIPES WITH ANISOTROPIC MATERIAL PROPERTIES

机译:具有各向异性材料特性的高强度钢管的屈曲响应参数研究

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Highly pressurized pipelines crossing harsh environments need to have two chief materials properties; they should have high strength in transverse direction to resist high operating pressers; and high deformability in the longitudinal direction to accommodate externally induced deformations. Pipeline producers try to deal with this dual demand in their high strength steel (HSS) linepipe products by enhancing the yield strength in the transverse direction and maintaining deformability in the longitudinal direction. This practice results in significant level of anisotropy in yielding and early plastic regions. The effects of material anisotropy on complex pipeline limit states such as local bucking is not fully understood. This paper presents the results of a numerical study on the effects of material anisotropy on the buckling response of HSS pipes. The effects of operating pressure, diameter-to-thickness ratio, material grade, strain hardening and the ratio of longitudinal-to-transversal yield strength were taken into account. Combined (isotropic-kinematic) hardening material modeling technique- previously introduced by the authors- was employed in this study. The results of this study are presented in several graphs showing the variation of the critical buckling strain versus the level of material anisotropy of HSS pipes with different geometry, material and operation conditions. These results provide an insight into the effects of material properties on the buckling resistance of pipes, especially when anisotropy is present.
机译:穿越严酷环境的高压管道需要具有两种主要的材料特性:它们应在横向上具有较高的强度,以抵抗较高的压紧力;在纵向上具有很高的可变形性,以适应外部引起的变形。管道生产商试图通过提高横向屈服强度并保持纵向变形能力来解决其高强度钢(HSS)管线管产品的双重需求。这种做法导致屈服区和早期塑性区的各向异性水平显着提高。材料各向异性对复杂管道极限状态(例如局部屈曲)的影响尚不完全清楚。本文介绍了材料各向异性对高速钢管道屈曲响应影响的数值研究结果。考虑了工作压力,直径/厚度比,材料等级,应变硬化和纵向与横向屈服强度之比的影响。在这项研究中采用了作者先前介绍的组合(各向同性的)运动硬化材料建模技术。这项研究的结果显示在几张图表中,这些图表显示了在不同几何形状,材料和操作条件下,HSS管道的临界屈曲应变随材料各向异性水平的变化。这些结果提供了对材料特性对管道抗屈曲性的影响的洞察力,尤其是当存在各向异性时。

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