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Precipitation Behavior of VN in High Nitrogen and Vanadium Micro-alloyed Low Carbon Weathering Steel

机译:高氮和钒微合金低碳耐压钢VN的沉淀行为

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In this study, the high nitrogen and vanadium micro-alloyed low carbon weathering steel (0.0320%N-0.096V) with excellent mechanical properties was produced. TEM and EDS tests of the hot rolled specimens were conducted and it was found that a great number of VN precipitates were generated and the size of VN particles was in the range of 10-300 nm, which exceeded the critical size of 7.89 nm for pinning dislocation line. Thermodynamic calculation results showed that, at high temperature, the precipitation performance of VN remarkably increased due to high nitrogen content. For the experimental steel, the initial precipitation temperature of VN reached 1133 A degrees C and the precipitation rate of V exceeded 90% at the finish rolling temperature of 850 A degrees C. The precipitation temperature time (PTT) curves drawn from kinetic data showed that the fastest precipitation temperature was about 950 A degrees C. The total precipitation time was shortened from 110 to 10 s at 850 A degrees C due to the high dislocation density caused by deformation, and the VN particles could thus be completely precipitated with a brief relaxation process. High nitrogen and vanadium micro-alloying was beneficial for improving the grain refinement and precipitation strengthening effect of vanadium.
机译:在本研究中,制备高氮和钒微合金低碳耐压钢(0.0320%N-0.096V),具有优异的机械性能。进行热轧样品的TEM和EDS测试,发现产生大量的VN沉淀物,VN颗粒的尺寸在10-300nm的范围内,超过7.89nm的临界尺寸错位线。热力学计算结果表明,在高温下,由于高氮含量,VN的沉淀性能显着增加。对于实验钢,VN的初始沉淀温度达到1133℃,v℃的沉淀速率在850℃的终止轧制温度下超过90%。从动力学数据中汲取的降水温度时间(PTT)曲线显示最快的沉淀温度为约950℃。由于由于变形引起的高分声密度,总沉淀时间在850℃下从110℃缩短110至10秒,因此通过短暂的松弛可以完全沉淀VN颗粒过程。高氮和钒微合金化有利于改善钒的晶粒细化和沉淀强化作用。

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