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首页> 外文期刊>ISIJ international >Effects of dynamic recrystallization on gamma grain refinement and improvement of micro segregation of as cast austenite in 9 percent Ni steel
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Effects of dynamic recrystallization on gamma grain refinement and improvement of micro segregation of as cast austenite in 9 percent Ni steel

机译:动态再结晶对9%Ni钢中γ晶粒细化和铸奥氏体微观偏析的影响

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Effects of dynamic recrystallization on y grain refinement and improvement in micro segregation of elements such as Ni and Mn of as cast austenite in 9 percent Ni steel were investigated by two kinds of experimental methods. The first one was a hot compression test using the specimens prepared from the strand cast slab and the hot rolled plate of 9 percent Ni steel, and the other was a hot tensile straining test in the austenitic region after levitation melting and solidification. In the hot compression test, variations in onset strain and flow stress of steady state flow of dynamic recrystallization with hot deformation conditions were investigated. The onset strain was found to decrease below 0.25 at the temperatures above 1 523 K and the strain rate below 1 x10~2s~1. The activation energy value obtained from steady state flow stress was 421 kJ/mol. Dynamically recrystallized y grain size in as cast austenite of this steel was controlled simply by Zvalue with no dependence on the initial y grain size. This beneficial feature of dynamic recrystallization was confirmed by the experiment of tensile straining in austenite formed after levitation melting and solidification, where extremely coarse initial y grain size of around 1.9 mm was markedly refined down to 140 m by straining such a small strain as 0.40. Micro segregation ratio of Ni and Mn in the strand cast 9 percent Ni steel examined by EPMA analysis was 1.20 and 1.36, respectively. These values were found to decrease continuously with reduction in strain rate in hot deformation of austenite. That is, dynamic recrystallization in austenite taken place at lower strain rate deformation is much more effective for homogenization of segregated elements compared with high strain rate deformation.
机译:通过两种实验方法研究了动态再结晶对9%Ni钢中y晶粒细化和铸奥氏体元素如Ni和Mn的微观偏析的影响。第一个是使用由铸坯板坯和9%Ni钢制成的热轧板制备的试样进行的热压缩试验,另一个是在悬浮熔化和凝固后在奥氏体区域进行的热拉伸应变试验。在热压缩试验中,研究了在热变形条件下动态再结晶稳态流的起始应变和流变应力的变化。发现在高于1 523 K的温度和低于1 x10〜2s〜1的应变速率下,起始应变降低到0.25以下。由稳态流应力获得的活化能值为421 kJ / mol。作为该钢的铸造奥氏体的动态再结晶y晶粒尺寸仅通过Z值控制,而与初始y晶粒尺寸无关。动态再结晶的这一有益特征已通过悬浮熔化和凝固后形成的奥氏体中的拉伸应变实验得到了证实,其中,通过应变为0.40这样的小应变,可将1.9毫米左右的极粗初始y晶粒显着细化至140 m。通过EPMA分析测得的9%Ni铸钢坯中Ni和Mn的微观偏析率分别为1.20和1.36。发现这些值随着奥氏体热变形中的应变率的降低而连续降低。也就是说,与高应变速率变形相比,在较低应变速率变形下发生的奥氏体动态再结晶对于偏析元素的均质化更为有效。

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