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Re-dissolution of VN during Tempering in High Chromium Heat Resistant Martensitic Steel

机译:高铬耐热马氏体钢回火过程中VN的再溶解

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Precipitation behavior of VN during isothermal tempering at 740-800 deg C of 7 percent Cr-0.4 percent V-0.09 percent N steel (percent denotes mass percent, hereinafter) has been studied. Initially, rapid softening takes place accompanied by the precipitation of VN and, after that, the quasi-steady state in a hardness vs. tempering time diagram is continuing for a while. After the quasi-steady state, re-dissolution of VN particles rapidly occurs followed by final precipitation of VN. Just before the peak time of the re-dissolution of VN particles, both the temporal decrease in hardness and the temporal increase in the integral breadth of an X-ray diffraction peak take place. The similar precipitation phenomenon is confirmed in 0.14 percent C-9 percent Cr-1 percent Mo-0.2 percent V-0.09 percent Nb steel. In both steels the re-dissolution of VN or NbC (hereinafter MX) accompanies the decomposition of martensite. The following reactions are suggested as a mechanism for the re-dissolution of MX type particles: local stresses induced by the recovery of martensite unlock the pinning of dislocations by the MX type particles and the consequent isolated particles, which become energetically unstable, are re-dissolving into the matrix.
机译:研究了在740-800℃等温回火期间,7%Cr-0.4%V-0.09%N钢(以下百分数表示质量百分比)时VN的析出行为。最初,伴随着VN的沉淀而发生快速软化,此后,硬度对回火时间图中的准稳态持续了一段时间。在准稳态之后,VN颗粒迅速重新溶解,随后VN最终析出。在VN颗粒再溶解的峰值时间之前,X射线衍射峰的硬度随时间下降并且积分宽度随时间增大。在0.14%C-9%Cr-1%Mo-0.2%V-0.09%Nb钢中证实了类似的沉淀现象。在两种钢中,VN或NbC(以下称为MX)的再溶解都伴随着马氏体的分解。建议以下反应作为MX型颗粒再溶解的机制:由马氏体恢复引起的局部应力释放了MX型颗粒对位错的钉扎作用,随后分离出的颗粒在能量上变得不稳定,因此被重新溶解。溶解到矩阵中。

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