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Effect of Complex Carbide Precipitates on the Structure and Mechanical Properties of Cold-Rolled Ultra-Low Carbon Steels During Bell-Furnace Annealing

机译:复合碳化物沉淀对冷轧超低碳钢结构和力学性能的影响

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摘要

Features of the formation and evolution of nanosize carbonitride precipitates and their effect on the microstructure and mechanical properties of cold-rolled product of medium-carbon steels microalloyed (stabilizing) with titanium of an industrial melt with a different carbon content are studied. It is established that precipitates have a complex (Ti,Nb)C composition, there is almost no nitrogen within them, although Nb is present in spite of its low (impurity) content in the steel. Precipitate size increases with an increase in temperature, annealing duration, and carbon content in steel. It is shown that during annealing in bell furnaces the structure and properties of rolled product are determined by the action of three main factors: occurrence of primary and selective recrystallization, with a direct and indirect (by delaying recrystallization) effect of nanosize carbide precipitates, and also the degree of reduction during skin rolling. During annealing of test steel cold-rolled product in bell furnaces, it is possible to achieve a unique set of mechanical properties that are difficult to combine: a prescribed low value of yield and ultimate strength ratio (0.60-0.75) with relative reduction of area of 30%, which is important for manufacturing complex shape components by efficient forging methods and deep drawing. Optimum values of annealing and skin rolling parameters providing preparation of these mechanical properties are determined.
机译:研究了纳米氧化物沉淀物的形成和演化的特征及其对微合金化(稳定化)与不同碳含量的高合金化(稳定化)微合金化(稳定化)的冷轧产品的微观结构和力学性能的影响。建立沉淀物具有复合物(Ti,Nb)C组合物,它们在它们内部几乎没有氮,尽管尽管钢中的低(杂质)含量存在Nb。沉淀尺寸随温度,退火持续时间和钢中的碳含量的增加而增加。结果表明,在钟形炉中的退火过程中,轧制产品的结构和性质由三个主要因素的作用决定:初级和选择性重结晶的发生,直接和间接(通过延迟重结晶)纳米型碳化物沉淀物的效果,以及皮肤轧制过程中还有减少程度。在钟熔炉中试验钢冷轧产品的退火过程中,可以实现难以结合的独特机械性能:规定的产量和最终强度比(0.60-0.75)相对减少面积30%的30%,这对于通过有效的锻造方法和深图来制造复杂形状成分。确定了提供这些机械性能的制备的退火和皮肤轧制参数的最佳值。

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