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首页> 外文期刊>Metallurgical and Materials Transactions A >Bauschinger Effect in Microalloyed Steels: Part II. Influence of Work Softening on Strength Development During UOE Line-Pipe Forming
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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:微合金钢中的鲍辛格效应:第二部分。 UOE管材成形过程中工作软化对强度发展的影响

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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:鲍辛格效应(正向预应变后反向变形开始时屈服应力降低)是冷成形技术发展强度的重要因素。在钢中,包辛格效应的大小取决于组成,通过存在微合金沉淀物,以及在先的加工过程,通过微合金沉淀物的大小和分布以及是否存在保留的加工硬化。在本文中,两种高强度低合金(HSLA)钢的包辛格效应和正向和反向变形的加工硬化参数(系数和指数)与颗粒数密度和位错密度定量相关。关于在大直径管线管的UOE成形过程中的强度发展,讨论了获得的依赖关系的应用示例。

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