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Enhancement of mechanical properties of low carbon steel based on heat treatment and thermo-mechanical processing routes

机译:通过热处理和热机械加工路线提高低碳钢的机械性能

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Thermal treatments and thermo-mechanical processing routes were applied on a conventional structural steel (st37 steel: 0.12C-1.11Mn-0.16Si) for improvement of tensile properties and enhancement of work-hardening behavior. Full annealing resulted in a sheet with coarse ferrite grains and pearlite colonies arranged alternatively in distinct bands, which showed high ductility, low strength, and the presence of the yield point elongation at the beginning of the plastic flow. The cold-rolled sheet, however, showed poor ductility but much higher strength level. The dual phase (DP) sheet, resulted from intercritical annealing in the austenite plus ferrite region, showed a remarkable strength-ductility balance. The latter was related to the excellent work-hardening behavior as a result of the glide and interaction of the quench-induced unpinned dislocations. A bimodal-sized ferritic structure with the appearance of a poor strain hardening regime after experiencing a high yield stress was obtained from the subcritically annealed cold-rolled DP microstructure. The ultrafine-grained sheet was processed by applying the abovementioned route on a martensitic microstructure, which resulted in low ductility but high strength at ambient temperature. These results demonstrated the ability to control the properties of conventional steels by simple thermal and thermo-mechanical treatments.
机译:在常规结构钢(st37钢:0.12C-1.11Mn-0.16Si)上进行了热处理和热机械加工工艺,以改善拉伸性能并增强加工硬化性能。充分退火后,钢板上的粗大铁素体晶粒和珠光体菌落交替排列在不同的带中,这显示出高延展性,低强度,并且在塑性流动开始时存在屈服点伸长。但是,冷轧板的延展性差,但强度水平高得多。在奥氏体加铁素体区域进行的临界退火导致的双相(DP)板材表现出显着的强度-延展性平衡。后者与滑移和淬火诱导的非固定位错的相互作用有关,具有出色的加工硬化性能。从亚临界退火冷轧DP显微组织中获得了双峰尺寸的铁素体组织,该组织在经历高屈服应力后表现出较差的应变硬化机制。通过在马氏体微结构上施加上述路径来加工超细颗粒片,这导致低延展性但在环境温度下具有高强度。这些结果证明了通过简单的热处理和热机械处理就能控制常规钢性能的能力。

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