ORIENTED ELECTRICAL STEEL SHEET AND MANUFACTURING METHOD THEREOF
An oriented electrical steel sheet according to an exemplary embodiment of the present invention includes C: 0.01% or less (excluding 0%), Si: 2.0%-4.0%, Mn: 0.01%-0.20%, acid soluble Al: 0.040% or less (excluding 0%), N: 0.008% (excluding 0%), S: 0.008% (excluding 0%), Se: 0.0001-0.008%, Cu: 0.002-0.1%, Ni: 0.005-0.1%, Cr: 0.005-0.1%, P: 0.005%-0.1% and Sn: 0.005%-0.20%, one or more among Sb: 0.0005%-0.10%, Ge: 0.0005%-0.10%, As: 0.0005%-0.10%, Pb: 0.0001%-0.10%, Bi: 0.0001%-0.10% and Mo: 0.001-0.1% as wt %, and consisting of the balance of Fe and other inevitable impurities, and after final secondary recrystallization, a magnetic flux density B8 is 1.92 Tesla or more.
1 . An oriented electrical steel sheet comprising C: 0.01% or less (excluding 0%), Si: 2.0%-4.0%, Mn: 0.01%-0.20%, acid soluble Al: 0.040% or less (excluding 0%), N: 0.008% (excluding 0%), S: 0.008% (excluding 0%), Se: 0.0001-0.008%, Cu: 0.002-0.1%, Ni: 0.005-0.1%, Cr: 0.005-0.1%, P: 0.005%-0.1% and Sn: 0.005%-0.20%, one or more among Sb: 0.0005%-0.10%, Ge: 0.0005%-0.10%, As: 0.0005%-0.10%, Pb: 0.0001%-0.10%, Bi: 0.0001%-0.10% and Mo:0.001-0.1% as wt %, and consisting of the balance of Fe and other inevitable impurities, and
after final secondary recrystallization, a magnetic flux density B8 is 1.92 Tesla or more.
2 . The oriented electrical steel sheet of claim 1 , wherein
an orientation difference (α 2 +β 2 ) 1/2 with an exact {110}<001> Goss texture for a secondary recrystallization grain after the final secondary recrystallization is 4° or less.
3 . A manufacturing method of an oriented electrical steel sheet, comprising:
preparing a slab including C: 0.01% or less (excluding 0%), Si: 2.0%-4.0%, Mn: 0.01%-0.20%, acid soluble Al: 0.040% or less (excluding 0%), N: 0.008% (excluding 0%), S: 0.008% (excluding 0%), Se: 0.0001-0.008%, Cu: 0.002-0.1%, Ni: 0.005-0.1%, Cr: 0.005-0.1%, P: 0.005%-0.1% and Sn: 0.005%-0.20%, one or more among Sb: 0.0005%-0.10%, Ge: 0.0005%-0.10%, As: 0.0005%-0.10%, Pb: 0.0001%-0.10%, Bi: 0.0001%-0.10%, and Mo:0.001-0.1% as wt %, and consisting of the balance of Fe and other inevitable impurities;
heating the slab below 1280° C.;
performing hot rolling and hot rolled sheet annealing to the heated slab to manufacture a hot rolled sheet;
manufacturing a cold rolled sheet by cold rolling and intermediate annealing the hot rolled sheet;
heating the cold-rolled sheet to a temperature of 600° C. or higher at a temperature increasing rate of 20° C./sec or higher to perform decarburization annealing and nitriding treatment for a primary recrystallization; and
applying an annealing separator including MgO as a main component to finally anneal the primary recrystallized steel sheet for secondary recrystallization,
wherein rough rolling is performed with a cumulative reduction ratio of 60% or more and rough rolling with a reduction ratio of 20% or more is performed once or more in the slab rough rolling before the hot rolling, and the hot rolling is performed.
4 . The manufacturing method of the oriented electrical steel sheet of claim 3 , wherein
decarburization annealing and nitridation treatments are performed in the primary recrystallization step so as to ensure a total nitrogen content of the steel sheet of 0.01-0.05%.
5 . The manufacturing method of the oriented electrical steel sheet of claim 4 , wherein
the rough rolling of which the cumulative reduction ratio is 70% or more is performed in the slab rough rolling.
6 . The manufacturing method of the oriented electrical steel sheet of claim 5 , wherein
the cold rolling is performed in the temperature range of 150-300° C. during the cold rolling.
7 . The manufacturing method of the oriented electrical steel sheet of claim 6 , wherein
the cold-rolled sheet is heated to a temperature of 600° C. or higher with a heating rate of 50° C./sec or higher in the primary recrystallization annealing.