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Performance of TMCP steel with respect to mechanical properties after cold forming and post-forming heat treatment

机译:TMCP钢在冷成型和后成型热处理后的机械性能方面的性能

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The paper describes the results of work done in the Finnish part of the ECOPRESS project on the mechanical properties of pressure vessels made from the TMCP steel grade P420ML2. Dished end (DE)-cylinder assemblies with diameters of 2500 mm and thicknesses of 15 and 30 mm have been examined using DE in both the cold-formed (CF) and CF and post-forming heat treated conditions. The blanks for the DEs contained welds to enable the effect of cold forming on weld metal to be evaluated. Cold forming increases both the transition temperature and the strength of the DEs. Nevertheless, toughness against brittle fracture in the CF state is good for all parts of the DEs and girth weld with T_(27J) < - 50 deg C in the absence of blank welds and < - 20 deg C when blank welds are present. For PFHT DEs T_(27J) < - 50 deg C even for the blank welds. T_(27J) was found to correlate with the fracture toughness reference temperature T0 which can be used to determine the minimum operating temperature. The impact toughness of the CF DE can be determined by compressing plate specimens 15% and ageing 30 min at 250 deg C. Such a procedure can form the basis for an additional requirement on PxxxM/ML grades when high cold forming strains are involved in vessel manufacture. Ductile fracture is not of concern, as upper shelf toughness remains high in all parts of the DE. The yield and tensile strengths of a CF DE are much greater than those of the cylinder, whereas the membrane stresses on the cylinder are greater than those on the DE. Consequently, design can be safely based on the properties of the nominally unformed cylinder. Furthermore, tensile instability will be first reached in the cylinder before it is reached in the DE, even though Y/T is at its lowest in the cylinder. Secondary bending stresses are greatest at the DE knuckle, but the CF DE has more than sufficient ductility in bending to accommodate the bending strain. The high YIT of CF DE is combined with high material ductility and is therefore fully acceptable.
机译:本文描述了在ECOPRESS项目的芬兰部分中完成的工作成果,该工作涉及由TMCP钢P420ML2制成的压力容器的机械性能。直径为2500 mm,厚度为15和30 mm的雾化端(DE)气缸组件已经在冷成型(CF)和CF以及成型后热处理条件下使用DE进行了检查。 DE的毛坯包含焊缝,以便能够评估冷成形对焊缝金属的影响。冷成型会同时提高转变温度和DE的强度。但是,对于无缺陷焊缝且T_(27J)<-50℃<-50℃且无空白焊缝且<-20℃的DE和环焊缝的所有部分,在CF态下抗脆性断裂的韧性都很好。对于PFHT DE,T_(27J)<-50℃甚至对于空白焊缝也是如此。发现T_(27J)与断裂韧性参考温度T0相关,该参考温度可用于确定最低工作温度。 CF DE的冲击韧性可以通过将板状试样压缩15%并在250摄氏度下老化30分钟来确定。当容器中包含高冷成形应变时,该程序可以作为对PxxxM / ML等级的附加要求的基础制造。延性断裂是无关紧要的,因为DE的所有部分的上层货架韧性仍然很高。 CF DE的屈服强度和拉伸强度远远大于圆柱体的屈服强度和拉伸强度,而圆柱体上的膜应力大于DE的应力。因此,可以根据名义上未成型的圆柱体的特性安全地进行设计。此外,即使Y / T在圆柱体中处于最低位置,也要先在圆柱体中达到拉伸不稳定性,然后再在DE中达到它。在DE转向节处,二次弯曲应力最大,但是CF DE在弯曲时具有足够的延展性以适应弯曲应变。 CF DE的高YIT与高材料延展性相结合,因此完全可以接受。

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