Annealing separator for oriented electrical steel sheet, oriented electrical steel sheet, and manufacturing method of oriented electrical steel sheet
An annealing separator for an oriented electrical steel sheet includes: a first component including a Mg oxide or a Mg hydroxide; and a second component including one kind among oxides and hydroxides of a metal selected from Al, Ti, Cu, Cr, Ni, Ca, Zn, Na, K, Mo, In, Sb, Ba, Bi, and Mn, or two or more kinds thereof.
1. An oriented electrical steel sheet comprising:
an oriented electrical steel sheet; and
a primary film positioned on a surface of the oriented electrical steel sheet,
wherein the primary film is made of two or more phases,
the primary film includes a first phase including forsterite (Mg 2 SiO 4 ) and a second phase including one kind or two or more kinds among Mn oxides and
the second phase is more than 47 area % and less than 72 area % with respect to a total area of the primary film.
2. The oriented electrical steel sheet of claim 1 , wherein two or more phases included in the primary film have different thermal expansion coefficients from each other.
3. The oriented electrical steel sheet of claim 1 , wherein the oriented electrical steel sheet satisfies Equation 2 below:
[ C]≤[D] [Equation 2]
wherein [C] is a content of a metal selected from Al, Ti, Cu, Cr, Ni, Ca, Zn, Na, K, Mo, In, Sb, Ba, Bi, and Mn in the steel sheet before annealing at a temperature from 950° C. to 1250° C., and [D] is a content of a metal selected from Al, Ti, Cu, Cr, Ni, Ca, Zn, Na, K, Mo, In, Sb, Ba, Bi, and Mn in the steel sheet except for the primary film after completing high temperature annealing at 950° C. to 1250° C.
4. The oriented electrical steel sheet of claim 1 , wherein the second phase includes one kind among MnO, MnO 2 , MnO 3 , Mn 2 O 7 , Mn 2 O 3 , Mn 3 O 4 MnSiO 3 , Mn 2 SiO 4 , MnAl 2 O 4 , Mn 2 Al 4 Si 5 O 12 , and Mn 3 Al 2 Si 3 O 12 , or two or more kinds thereof.
5. The oriented electrical steel sheet of claim 4 , wherein the oriented electrical steel sheet satisfies Equation 3 below:
[ E]≤[F] [Equation 3]
wherein [E] is a content of Mn in the steel sheet before annealing at a temperature from 950° C. to 1250° C., and [F] is a Mn content of the steel sheet except for the primary film after completing high temperature annealing at 950° C. to 1250° C.