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Mechanical Anisotropy in Steels for Pipelines

机译:管道用钢中的机械各向异性

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There has been a huge expansion in the laying of pipelines for the transmission of fossil fuels over large distances and in dire environments. Large diameter pipes can be manufactured by welding spirals of hot–rolled linepipe steels. This process has a cost advantage relative to one in which the steel is seam welded after bending into a tubular shape. However, one particular problem associated with the steels used to fabricate the pipes is that of the anisotropy of mechanical properties, especially the toughness. Even though properties such as the Charpy toughness and strength meet minimum specifications, the existence of orientation dependence can compromise, for example, the stability of the pipe to buckling. There is, therefore, a large international activity on understanding the anisotropy of pipeline steels. This review represents an attempt to critically assess the steels and the orientation dependence of their mechanical properties, with the aim of establishing a basis for further progress.
机译:在远距离和恶劣环境中铺设化石燃料输送管道的铺设已大大扩展。大直径管道可以通过焊接热轧管线钢的螺旋线来制造。相对于在弯曲成管状之后将钢缝焊的方法,该方法具有成本优势。但是,与用于制造管道的钢有关的一个特殊问题是机械性能,特别是韧性的各向异性。即使诸如夏比韧性和强度之类的特性满足最低规格,但方向依赖性的存在也​​会损害例如管道的屈曲稳定性。因此,在理解管道钢的各向异性方面有大量的国际活动。这篇综述代表了一种对钢及其机械性能的取向依赖性进行严格评估的尝试,旨在为进一步的发展奠定基础。

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