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Bauschinger Effect in Microalloyed Steels: Part II. Influence of Work Softening on Strength Development During UOE Line-Pipe Forming

机译:微合金钢的Bauschinger作用:第二部分。工作软化对UOE线管成形期间力量发展的影响

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摘要

The Bauschinger effect (a reduced yield stress at the start of reverse deformation following forward prestrain) is an important factor of strength development for cold metal forming technology. In steels, the magnitude of the Bauschinger effect depends on composition, through the presence of microalloy precipitates, and prior processing, through the size and distribution of the microalloy precipitates and the presence of retained work hardening. In this article, the parameters of the Bauschinger effect and work hardening (coefficient and exponent) in forward and reverse deformations were quantitatively related to the particle number density and dislocation density for two high-strength low-alloy (HSLA) steels. An example of the application of the obtained dependences is discussed with respect to the strength development during UOE forming of large diameter line pipes.
机译:Bauschinger效应(在前向Presthea出来的反转变形开始时降低的屈服应力)是冷金属成形技术强度发展的重要因素。在钢中,Bauschinger效应的幅度取决于组合物,通过微合金沉淀物和优先处理,通过微合金沉淀物的尺寸和分布和保留的工作硬化的存在。在本文中,Bauschinger效应的参数和正向和反转的工作硬化(系数和指数)与两个高强度低合金(HSLA)钢的颗粒数密度和位错密度定量相关。关于大直径线管道的UOE形成期间的强度显影讨论了所得依赖性的应用的一个例子。

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