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M_2C Precipitates in Isothermal Tempering of High Co-Ni Secondary Hardening Steel

机译:高Co-Ni二次硬化钢的等温回火中的M_2C析出物

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The effects of isothermal tempering on the coarsening behavior of hexagonal M_2C precipitates and the secondary hardening reaction in ultrahigh-strength AerMet 100 steel were investigated. The tempering temperatures were 468℃, 482℃, and 510℃, and the tempering time spanned the range from 1 to 400 hours. Experimental studies of the coarsening behavior of the carbides were made by utilizing transmission electron microscopy (TEM), scanning electron microscopy (SEM), and X-ray diffractometry (XRD). The hardness at the secondary hardening peak was about HRc 55. The average length and diameter of M_2C carbides were 4 to 8 nm and 1.5 to 2.5 nm, respectively, at all three tempering temperatures; hence, the aspect ratio was almost 3, an equilibrium value in this case. The size of the M_2C carbides increased monotonically with time, but the growth kinetics did not exactly follow the classical coarsening behavior. The amount of precipitated austenite increased with tempering time and temperature. M_2C precipitates were still relatively fine even after 200 hours of tempering. This feature seemed to be closely related to the high hardness maintained after prolonged tempering.
机译:研究了等温回火对六角形M_2C析出物的粗化行为和超高强度AerMet 100钢二次硬化反应的影响。回火温度为468℃,482℃和510℃,回火时间为1至400小时。利用透射电子显微镜(TEM),扫描电子显微镜(SEM)和X射线衍射仪(XRD)对碳化物的粗化行为进行了实验研究。二次硬化峰的硬度约为HRc55。在所有三个回火温度下,M_2C碳化物的平均长度和直径分别为4至8 nm和1.5至2.5 nm。因此,纵横比几乎为3,在这种情况下为平衡值。 M_2C碳化物的尺寸随时间单调增加,但生长动力学并不完全遵循经典的粗化行为。奥氏体的析出量随回火时间和温度的增加而增加。即使回火200小时,M_2C沉淀仍相对较细。此特征似乎与长时间回火后保持的高硬度密切相关。

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