首页> 外文期刊>Transactions of the Indian Institute of Metals >Effect of Self-Tempering Temperature on Precipitation of Secondary Phase in V-Ti-N High-Strength Seismic Bars
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Effect of Self-Tempering Temperature on Precipitation of Secondary Phase in V-Ti-N High-Strength Seismic Bars

机译:自回火温度对V-Ti-N高强度地震棒中二相沉淀的影响

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摘要

The effect of self-tempering temperature on precipitation of secondary phase is studied by using a V-Ti-N hot-rolled anti-seismic reinforced bar (HRB500E) at 800-900 degrees C. The results show that the secondary phase precipitated in steel is mainly square titanium nitride and elliptical vanadium carbonitride, and the size of TiN is above 50 nm, while that of V(C, N) is below 20 nm. As the self-tempering temperature decreases, the size of V(C, N) decreases, but the amount of precipitates at 850 degrees C is close to 900 degrees C, and the size is slightly less than that at 800 degrees C. With the decrease in self-tempering temperature, ferrite grains are gradually refined, yield strength increases, and strength ratio and elongation decrease. By controlling self-tempering temperature at 850 degrees C, the excellent comprehensive performance can be acquired with matched strength and toughness simultaneously.
机译:通过使用800-900摄氏度的V-Ti-N热轧抗震抗震增强棒(HRB500E)研究了自回火温度对二次相沉淀的影响。结果表明,二次相沉淀在钢中 主要是方形氮化钛和椭圆钒碳氮化族,锡的尺寸高于50nm,而V(C,N)的尺寸低于20nm。 随着自回火温度降低,V(C,N)的尺寸降低,但850℃下的沉淀物的量接近900℃,尺寸略小于800℃。 减小自回火温度,铁氧体晶粒逐渐精制,屈服强度升高,强度比和伸长率降低。 通过控制850℃的自回火温度,可以同时以匹配的强度和韧性获得优异的综合性能。

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