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首页> 外文期刊>Journal of Korean Institute of Metal and Materials >Assessment of Hot Ductility Behavior of 16Mn-0.5C Steel
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Assessment of Hot Ductility Behavior of 16Mn-0.5C Steel

机译:16Mn-0.5C钢的热延性行为评估

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This work assesses the hot ductility behavior of high manganese steel under hot working conditions. Reduction of area (RA) behavior, of 16 Mn-0.5 C steel was investigated to consider it for production in a slab and subsequent hot rolling process. All specimens were machined from the as-cast slab. A hot ductility test was accomplished by a cast simulator through a temperature range of 650℃ -1200℃ with 50℃ intervals. The obtained RA values ranged between 30% and 60%, with a maximum at 850℃, and this is far from the general RA behavior of low carbon steel. This result could be attributed to the fact that the specimen is fully austenitic through all test temperatures, and that there is no ferrite at the low temperature end and reduced dynamic recrystallization at the high temperature end. Microstructural evaluation of the fractured specimen revealed that the deformation was concentrated at the grain boundary, and there was little matrix deformation. These results suggest that the grain boundary sliding is the basic cause of the fracture and low values of hot ductility in high manganese steel.
机译:这项工作评估了高锰钢在热加工条件下的热延性行为。研究了减少16 Mn-0.5 C钢的面积(RA)行为,以考虑将其用于板坯生产和随后的热轧工艺。所有试样均从铸坯上加工而成。通过铸造模拟器在650℃-1200℃的温度范围内以50℃的间隔完成热延展性测试。所得的RA值在30%到60%之间,最高在850℃,与低碳钢的一般RA行为相去甚远。该结果可归因于以下事实:在所有测试温度下,试样均为奥氏体,并且在低温端没有铁素体,在高温端没有动态再结晶。断裂试样的显微组织评价表明变形集中在晶界,基体变形很小。这些结果表明,晶界滑动是高锰钢断裂和热延展性较低的根本原因。

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