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Effect of Tempering Temperature on Microstructure and Mechanical Properties of Steel Containing Ni of 9%

ZHAO Xiqing , PAN Tao , WANG Qingfeng , SU Hang , YANG Caifu , YANG Qingxiang

钢铁研究学报(英文版)

Mechanical properties of quenching, intercritical quenching and tempering (QLT) treated steel containing Ni of 9% were evaluated from specimens subject to various tempering temperatures. The detailed microstructures of steel containing Ni of 9% at different tempering temperatures were observed by optical microscope (OM) and transmission electron microscope (TEM). The volume fraction of austenite was estimated by XRD. The results show that high strength and cryogenic toughness of steel containing Ni of 9% are obtained when the tempering temperature are between 540 and 580 ℃. The microstructure keeps the dual phase lamellar structure after the intercritical quenching and there is cementite created in the Nirich constituents when tempering temperature is 540 ℃. When tempering temperatures are between 560 and 580 ℃, the reversed austenites (γ′) grow up and the dual phase lamellar structure is not clear. The γ′ becomes instable at 600 ℃. When tempered at temperature ranging from 500 to 520 ℃, the increase of dislocation density in the lamellar matrix makes both tensile strength and yield strength decrease. When tempered at 540 ℃ and higher temperature, the yield strength decreases continuously because the C and alloying elements in the matrix are absorbed by the cementite and the γ′, so the yield ratio is decreased by the γ′. There are two toughness mechanisms at different tempering temperatures. One is that the precipitation of cementite absorbs the carbon in the steel which plays a major role in improving cryogenic toughness at lower temperature. Another is that the γ′ and the purified matrix become major role at higher tempering temperature. When the tempering temperature is 600 ℃, the stability of γ′ is decreased quickly, even the transformation takes place at room temperature, which results in a sharp decrease of CharpyV impact energy at 77 K. The tempering temperature range is enlarged by the special distribution of cementite and the lamellar structure.

关键词: steel containing Ni of 9% , tempering temperature , cementite , reversed austenite , cryogenic toughness

碳化物对非调质钢零件淬硬层组织及性能的影响

张英建,鹿云,陈思联,惠卫军,董瀚

钢铁

在扭转疲劳试验中,非调质钢FAS2340半轴零件性能比调质钢42CrMoH零件高出50%以上。为研究其原因,对上述两种半轴零件进行了研究。金相观察发现,在感应淬火过程中FAS2340钢中形成大量规则排列的微小质点,经TEM和相分析对比发现,质点主要由未熔解的渗碳体颗粒构成,并且占总数70%以上Fe3C质点尺寸分布在5~9nm范围内。大量的Fe3C质点促进零件表层晶粒细化,并在随后的淬火冷却过程中形成均匀细小的马氏体组织,零件使用性能得到显著提高。

关键词: 非调质 , carbide , Fe3C , cementite , microstructure refinement , martensite

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