Study of the mechanism of structural state alteration in the strain ageing process and its influence on properties of bainitis type pipe steel

A. R. Mishet’yan, I. Shabalov, О. N. Chevskaya, G. Filippov
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引用次数: 1

Abstract

A pipeline is refered to metal structures of increased danger. To provide a high operational safety of pipe lines it is common to follow requirements to steels by level of strength, ductility, impact strength, cold resistance, fracture strength, weldability, corrosion resistance and other properties, forming of which is influenced by a complex of different factors (both technological and operational).At present structural low carbon low alloyed steels with increased level of properties, completely meeting all complex of presented requirements are used for production of sheet rolled products for pipes. However, during longtime operation of a pipeline, properties degradation demonstration is possible, that can result in decreasing of safety and originating of a structure destroying probability. A passing of strain ageing can be one of the reasons, responsible for state alteration of longtime operation pipes metal, resulted in increasing of yield strength to ultimate strength (σ0,2/σв) relation, decreasing of impact strength and cold resistance.Results of study of strain ageing influence on complex of properties and structural state of sheet rolled product of X80 strength class presented, the product being widely used for pipes production. It was shown, that in the process of the strain ageing, apart from decreasing of complex of standard properties, an increase of relaxation effect takes place. It speaks for an increased level of local strains, arising at loading and deformation as a result of fixing of dislocations by interstitial atoms. Concentration of the atoms is increasing in the process of preliminary deformation, which is confirmed by Snuk peak arising during measuring of internal friction.Study of structural state by different methods enabled to formulate peculiarities of strain deformation mechanism, typical for a steel with a structure of low carbon bainite type (bainite ferrite) with austenite insertions. Alteration of properties during strain ageing of bainite steel is linked with simultaneous arising of two processes in structure at different scale levels, having contrary influence on resistance to deformation. Increase of yield strength as a result of strengthening takes place because of fixing of dislocations by interstitial atoms. At the same time the weakening is caused by disappearing of M/A phase islands, which is strengthening the metal at the initials state, as a result of TRIP-effect during preliminary deformation and martensite disintegration during the following heating.
贝氏体型管钢应变时效过程中组织状态变化机理及其对性能影响的研究
管道是指危险较大的金属结构。为了提供管道的高运行安全性,通常按照强度、延展性、冲击强度、耐寒性、断裂强度、可焊性、耐腐蚀性和其他性能对钢提出要求,这些要求的形成受到多种不同因素(技术和操作)的复杂影响。目前,低碳低合金钢结构的性能水平提高,完全满足所有复杂的要求,用于生产管材薄板轧制产品。然而,在管道的长期运行过程中,可能会出现性能退化现象,从而降低管道的安全性,引发结构破坏的可能性。长期使用的管道金属,由于应变老化的发生,导致屈服强度与极限强度(σ0,2/σ 10)的关系增大,冲击强度和抗寒性降低。本文研究了应变老化对X80强度级薄板轧制产品性能和结构状态的影响,该产品广泛应用于管材生产。结果表明,在应变老化过程中,除了标准性能的复合体降低外,松弛效应也有所增加。它表示由于间隙原子固定位错而在加载和变形时产生的局部应变水平增加。在初始变形过程中,原子的浓度不断增加,内摩擦测量时出现的Snuk峰证实了这一点。通过不同方法对结构状态的研究,得出了具有奥氏体插入的低碳贝氏体(贝氏体铁素体)结构钢的应变变形机制的特点。贝氏体钢应变时效过程中性能的改变与两种过程在不同尺度上同时发生有关,对变形抗力有相反的影响。屈服强度的提高是由于间隙原子对位错的固定造成的。与此同时,由于初始变形过程中的trip效应和后续加热过程中马氏体的解体,M/A相岛的消失使金属处于初始强化状态。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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