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Effect of Heating Rate Before Tempering on Reversed Austenite in Fe-9Ni-C Alloy

ZHANG Kun , TANG Di , WU Hui-bin

钢铁研究学报(英文版)

The alloy was reheated to 580 ℃ for tempering at rates of 2, 5, 10, 20, and 40 ℃/s, respectively, after quenching. The amount, distribution, and stability of reversed austenite were investigated by X-ray diffraction (XRD) and electron back scatter diffraction (EBSD). The microstructure and cryogenic impact energy were studied by scanning electron microscope (SEM), transmission electron microscope (TEM) and Charpy V-notch (CVN) tests. The results showed that when the sample was heated at 10 ℃/s, the volume fraction of reversed austenite exhibited maximum of 8%; the reversed austenite was uniform along all kinds of boundaries; the reversed austenite contained higher concentration of carbon which enabled it to be more stable. The cryogenic toughness of the alloy was greatly improved when heated at 10 ℃/s, as the fracture surface observation showed that it mainly fractured in ductile rupture mode, which was consistent with the results of cryogenic impact energy.

关键词: 9Ni steel , heating rate , reversed austenite , cryogenic toughness

High Temperature Deformation Behavior of Fe-9Ni-C Alloy

ZHANG Kun , WU Hui-bin , TANG Di

钢铁研究学报(英文版)

The high temperature deformation behavior of the 9Ni steel has been studied by the Gleeble-3500 tester. The relationship between deformation resistance and deformation degree, deformation temperature and deformation rate was revealed. The results show that when the deformation degree is less than 02, the deformation resistance increases by about 70 to 200 MPa, while the deformation degree varied between 02 and 04, the deformation resistance increases by about 30-40 MPa, when the deformation degree is larger than 04, the deformation resistance increases slowly, some become stable gradually. The influence of deformation temperature on deformation resistance is larger, and deformation resistance at higher temperature is about 160 MPa smaller than at lower temperature. Higher deformation rate leads to larger deformation resistance. The deformation resistance increases about 70 to 110 MPa with the increase of the deformation rate. A new and highly accurate mathematical model of the steel was established to describe the deformation behavior during rolling.

关键词: 9Ni steel , high temperature deformation resistance , mathematical model

9Ni钢薄板的奥氏体化温度及强韧化因素分析

谢章龙,刘振宇,陈俊,徐蓉,王国栋

钢铁研究学报

研究了奥氏体化温度对9Ni钢薄板组织性能的影响,并分析了薄板与厚板低温韧性差异的原因。奥氏体化温度高于800℃后,随着奥氏体化温度升高,奥氏体化温度对逆转奥氏体(γ′)的体积分数没有影响;奥氏体化后奥氏体晶粒尺寸减小,晶粒趋于等轴;组织均匀化程度提高;最终组织中取向差大于15°区域尺寸减小,低温韧性增加;板条或亚板条束的平均尺寸增加,强度降低。薄板中较小的平均取向差是其低温韧性较低的主要原因。

关键词: 9Ni钢 , austenitizing temperature , cryogenic toughness , EBSD , tempered martensite

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