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HP295焊瓶钢生产实践 总被引:1,自引:0,他引:1
介绍了济钢ASP热连轧生产线上HP295焊瓶钢的生产工艺;研究了其化学成分、显微组织、卷取温度和冷却方式等对HP295性能的影响规律。生产实践表明,通过采用两段冷却方式并控制带钢卷取温度,可使HP295的屈强比(ReL/Rm)低于0.8,各项力学性能满足GB6653-1994的要求。 相似文献
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针对焊瓶用钢带HP295、力学性能有波动的现状,本对相关工艺因素与性能不合格项进行了分析,并试图从显微组织角度进行探讨,指出了改善力学性能(主要指屈强比)的一些思路。 相似文献
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通过合理的化学成分设计和控制轧制、控制冷却技术的应用,包钢钢联公司薄板坯连铸连轧厂成功地开发和研制出了HP295焊接气瓶用热轧钢带,并对批量试生产产品的性能和金相组织进行了分析。 相似文献
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通过对梅山HP295热轧板生产焊瓶过程中冲压开裂件进行试验分析,找出梅山HP295冲压开裂的原因,并提出提高HP295产品质量建议。 相似文献
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A mathematical model was developed to describe the in‐line hot rolling deformation and recrystallization behaviour of austenite after the solidification on a thin slab casting plant. The most significant features of the cast rolling process were taken into consideration: through‐thickness thermal gradients, inhomogeneous stress and strain, temperature discontinuity between the strip and the rolls. A HSLA (High Strength Low Alloy) steel has been chosen to perform the experiments of cast rolling. The characteristic constants ruling the microstructural evolution of that steel were computed and integrated into the computational module which manages the structural stress‐strain and strain rate computation. The developed approach is based on the Navier‐Stokes’ equations which were used to compute the speed field in the strip during the deformation. Then a model providing a proper constitutive equation was structured on the basis of the Yada's model based on evolution of the dislocation populations. The use of the Navier‐Stokes’ formalism allows to reach the resolution of the structural problem from the data measured easily during the industrial practice (i.e. speed of the rolled product at the entry and at the exit of a stand, the temperature of the rolled material). The validation of this computational approach was obtained by a comparison between the prior austenite grain size of the strip in different positions of the hot rolling process, as well as by a comparison between the computed deformation power and the measured one provided by the engines moving the rolls. 相似文献
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介绍了首钢迁钢公司通过应用微量钒钛复合微合金化和控轧控冷技术研制与生产高强度HP345焊接气瓶用热轧带钢的过程。分析了批量生产的高强焊瓶钢HP345的化学成分、冶金质量和力学性能。结果表明:对0.17%C-0.25%Si-1.40%Mn成分体系的低碳锰钢进行钒钛复合微合金化(wv≤0.025%、wTi≤0.025%),可以开发生产出符合国家标准和用户需求的低屈强比高强HP345钢。轧制时可以采用较高的终轧温度和卷取温度。复合添加的微量V、Ti元素对HP345钢的显微组织影响很小,没有明显的细晶强化作用,但有足够数量的析出相颗粒,从而产生明显的沉淀强化作用。 相似文献