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Carbide precipitation kinetics of a 2000 MPa grade highstrength spring steel

机译:2000 MPa级高强度弹簧钢的碳化物析出动力学

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摘要

The carbide strain-induced precipitation kinetics of a 2000 MPa grade Nb-V high-strength spring steel during isothermal deformation is quantitatively investigated using the stress relaxation method. The stress relaxation technique was employed to determine the precipitation start (P-s) and finish (P-f) times. The evolution of carbides during the isothermal holding is observed by Transmission Electron Microscope (TEM). The results show that the precipitation-time-temperature (PTT) diagrams of the carbides in the experimental steel exhibit a C-curve, with a nose temperature of 900 degrees C. The precipitation kinetics of carbides in the experimental steel is slower than that of plain carbon steels, which is attributed to the reduced activity of Nb. The result indicates that the precipitate is a Nb, V, Ti and C-containing complex carbide at deformation temperatures ranging from 850 degrees C to 1050 degrees C. Large parts of the precipitates are (Nb, V) C, and there is also a tiny amount of TiC. The carbides are dispersed below 900 degrees C and distributed in clusters near dislocations and grain boundaries above 950 degrees C.
机译:使用应力松弛法定量研究了2000 MPa级Nb-V高强度弹簧钢在等温变形过程中碳化物应变诱发的析出动力学。应力松弛技术用于确定沉淀开始(P-s)和结束(P-f)时间。通过透射电子显微镜(TEM)观察到等温保持期间碳化物的演变。结果表明,实验钢中碳化物的析出-时间-温度(PTT)图呈C形曲线,鼻温为900℃。实验钢中碳化物的析出动力学较慢。碳素钢,这归因于Nb活性降低。结果表明,在850℃至1050℃的变形温度下,析出物为含Nb,V,Ti和C的复合碳化物。大部分析出物为(Nb,V)C,并且还存在少量的TiC。碳化物在900摄氏度以下散布,并以高于950摄氏度的位错和晶界附近的簇状分布。

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