Laminate
The purpose of this embodiment is to provide a laminate equipped with a surface layer excellent in antifouling property that dirt can be easily removed and excoriation resistance. This embodiment is a laminate including a surface layer having a surface formed in a fine relief structure, wherein an elastic modulus of the surface layer is less than 250 MPa and a slope of a friction coefficient of the surface layer is 0.0018 or less.
1 . A laminate comprising a surface layer having a surface formed in a fine relief structure, wherein an elastic modulus of the surface layer is less than 250 MPa and a slope of a friction coefficient of the surface layer is 1.8×10 −3 or less.
2 . The laminate according to claim 1 , wherein the slope of the friction coefficient of the surface layer is −2.0×10 −3 or more.
3 . The laminate according to claim 1 , wherein the slope of the friction coefficient of the surface layer is −1.8×10 −3 or more and 1.0×10 −3 or less.
4 . The laminate according to claim 1 , wherein the elastic modulus of the surface layer is less than 160 MPa.
5 . The laminate according to claim 1 , wherein the elastic modulus of the surface layer is less than 100 MPa.
6 . The laminate according to claim 1 , wherein a contact angle of water on the surface layer is 25° or less or 130° or more.
7 . The laminate according to claim 1 , wherein the surface layer includes a layer composed of a cured product of an active energy ray-curable resin composition.
8 . The laminate according to claim 7 , wherein the active energy ray-curable resin composition contains a tri- or higher functional (meth)acrylate (A) at from 1 to 55 parts by mass and a bifunctional (meth)acrylate (B) at from 10 to 95 parts by mass provided that a total of polymerizable components in the active energy ray-curable resin composition is 100 parts by mass.
9 . The laminate according to claim 8 , wherein a content of the tri- or higher functional (meth)acrylate (A) is from 5 to 40 parts by mass and a content of the bifunctional (meth)acrylate (B) is from 20 to 80 parts by mass.
10 . The laminate according to claim 8 , wherein a content of the tri- or higher functional (meth)acrylate (A) is from 10 to 30 parts by mass and a content of the bifunctional (meth)acrylate (B) is from 30 to 70 parts by mass.
11 . The laminate according to claim 8 , wherein the active energy ray-curable resin composition further contains a silicone(meth)acrylate (C) at from 3 to 85 parts by mass provided that a total of polymerizable components in the active energy ray-curable resin composition is 100 parts by mass and each (A) and (B) excludes (C).
12 . The laminate according to claim 9 , wherein the active energy ray-curable resin composition further contains a silicone(meth)acrylate (C) at from 7 to 70 parts by mass provided that a total of polymerizable components in the active energy ray-curable resin composition is 100 parts by mass and each (A) and (B) excludes (C).
13 . The laminate according to claim 7 , wherein the active energy ray-curable resin composition contains a compound (D) having a SH group.
14 . The laminate according to claim 13 , wherein the active energy ray-curable resin composition contains a bi- or higher functional (meth)acrylate (E) at from 0 to 95 parts by mass, a silicone(meth)acrylate (C) at from 0 to 75 parts by mass, and the compound (D) having a SH group at from 1 to 60 parts by mass provided that a total of polymerizable components is 100 parts by mass.
15 . The laminate according to claim 7 , wherein the surface layer is constituted by a layer composed of a cured product of the active energy ray-curable resin composition.
16 . The laminate according to claim 7 , wherein the surface layer is constituted by a layer composed of a cured product of the active energy ray-curable resin composition and a surface treatment layer formed on the layer composed of a cured product of the active energy ray-curable resin composition as an outermost surface layer.
17 . The laminate according to claim 1 , wherein a pitch of the fine relief structure is 100 nm or more and 250 nm or less.
18 . An antireflection article comprising the laminate according to claim 1 .
19 . An image display device comprising the laminate according to claim 1 .
20 . A touch panel comprising the laminate according to claim 1 .