首页> 外文期刊>Materials Science and Engineering. A, Structural Materials: Properties, Microstructure and Processing >Effect of intermediate cooling on precipitation behavior and austenite decomposition of V-Ti-N steel for non-quenched and tempered oil-well tubes
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Effect of intermediate cooling on precipitation behavior and austenite decomposition of V-Ti-N steel for non-quenched and tempered oil-well tubes

机译:中间冷却对非调质油井管V-Ti-N钢析出行为和奥氏体分解的影响

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摘要

The effect of intermediate cooling stop temperatures (T_s) during tube rolling and reheating on the precipitation behaviors of steel 33Mn2V was investigated on a real manufacture process of N80 grade non-quenched and tempered (non-Q&T) hot-rolling seamless oil-well tubes. The results show that the vanadium precipitation characteristics in austenite are of vital importance for the subsequent phase transformation in the manufacturing process of medium carbon non-Q&T seamless steel tube. The higher T_s results in complex precipitation of vanadium predominantly in the latter procedures, inducing the harmful bainite. Whereas, the lower T_s leads to the precipitation of fine V(C, N) in austenite before its decomposition starts in the final cooling process and promotes the formation of intragranular ferrite, resulting in optimized combination of toughness and strength.
机译:在N80级非调质(非Q&T)热轧无缝油井管的实际生产过程中,研究了轧制和再加热过程中中间冷却停止温度(T_s)对33Mn2V钢的析出行为的影响。 。结果表明,奥氏体中钒的析出特性对于中碳非Q&T无缝钢管制造过程中的后续相变至关重要。较高的T_s导致钒在主要过程中复杂地沉淀,从而诱发有害贝氏体。而较低的T_s会导致奥氏体中的细V(C,N)在最终冷却过程开始分解之前就在奥氏体中析出,并促进晶内铁素体的形成,从而优化了韧性和强度的组合。

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