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Conditions for Complex Precipitate Formation and Their Effect on Low-Carbon Steel Cold-Rolled Product Properties

机译:复杂沉淀物形成的条件及其对低碳冷轧产品性能的影响

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The effect of chemical composition and recrystallization annealing regimes in continuously operating units on the mechanical properties of cold-rolled product of type 08Yu steels is studied. It is established that with a sulfur content of 0.012-0.018% during hot rolling an optimum amount and size distribution of manganese sulfide particles is achieved providing the formation on them of cementite and aluminum nitride precipitates. Complex MnS-cementite particles formed in an equalization chamber of a continuously operating hot galvanizing unit facilitate an increase in formability as a result of a reduction in the degree of the difference in grain size of the microstructure and an increase in cementite distribution uniformity. Precipitation of AlN on MnS particles in the course of metal hot rolling and cooling provides more complete removal of nitrogen from solid solution, and consequently a reduction in steel tendency towards strain ageing. A significant reduction in the proportion of fine AlN particles increases the rate of cold worked metal recrystallization, and this leads to a reduction in fineness of the microstructure and a corresponding reduction in yield strength and an increase in relative elongation.
机译:研究了化学组成和再结晶退火制度在08型钢的冷轧产品机械性能下的效果。在热轧期间,在热轧期间,在热轧期间,在热轧期间硫含量为0.012-0.018%,达到硫化锰颗粒的最佳量和尺寸分布,为它们提供渗碳盐和氮化铝沉淀物的形成。在连续操作的热镀锌单元的均衡室中形成的复杂MNS渗碳矿颗粒有助于可成形性的增加,这是由于微观结构的晶粒尺寸的差异的降低以及渗碳石分布均匀性的增加。金属热轧和冷却过程中MNS颗粒上的ALN沉淀提供了从固溶体中更完全地除去氮,因此钢趋势降低了抗菌株衰老。细AlN颗粒比例的显着降低增加了冷加工金属重结晶的速率,这导致微观结构的细度降低和屈服强度的相应降低和相对伸长率的增加。

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