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首页> 外文期刊>Materials Science and Technology: MST: A publication of the Institute of Metals >Effect of microalloying additions on steel plate to pipe property variations during UOE linepipe processing
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Effect of microalloying additions on steel plate to pipe property variations during UOE linepipe processing

机译:UOE管道加工过程中微合金化添加剂对钢板对管道性能变化的影响

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摘要

Composition variations have been used to generate three steels, developing plate strengths in the range 350-530 MPa for the same rolling schedules. The tensile properties of the plate have been determined and compared with those of first, pipe formed by the UOE process and second, specimens from the same pipe after flattening. It has been shown that the difference between plate and pipe strength levels for the specific pipe geometry investigated is related to the steel grade. In particular, changes have been related to the Bauschinger stress parameter, optical microstructure, fine particle distribution (from TEM replicas) and stored energy (measured using differential scanning calorimetry) differences between the steels. The trends in property variation result from the balance of work hardening behaviour and Bauschinger effect, and have been related to the presence of fine microalloying element precipitates in higher strength grades, increasing the Bauschinger effect and forming a more highly ordered dislocation structure during the various deformation stages. [References: 17]
机译:成分变化已被用于生产三种钢,对于相同的轧制进度,钢板强度在350-530 MPa之间。确定了板的拉伸性能,并将其与第一,通过UOE工艺形成的管,以及第二,在压平后来自同一管的样品的抗拉性能进行了比较。已经显示,对于所研究的特定管道几何形状,板和管道强度水平之间的差异与钢种有关。尤其是,变化与钢之间的包辛格应力参数,光学显微结构,细颗粒分布(来自TEM副本)和储能(使用差示扫描量热法测量)的差异有关。性能变化的趋势是由加工硬化行为和鲍辛格效应的平衡引起的,并且与更高强度等级的细微合金元素沉淀的存在有关,增加了鲍辛格效应并在各种变形过程中形成了更有序的位错结构阶段。 [参考:17]

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