Composition for coating an overhead conductor
A composition for coating an overhead conductor is disclosed comprising: (i) a reflective agent; (ii) a photocatalytic agent comprising ≥70 wt % anatase titanium dioxide (TiO 2 ) having an average particle size (“aps”)≤100 nm; (iii) a polyorganosiloxane binder; and (iv) a superhydrophobic agent comprising either: surface functionalised silica nanoparticles, a functional polysiloxane or a polymethylsilsesquioxane.
1 . A composition for coating an overhead conductor comprising:
a reflective agent;
a polyorganosiloxane binder; and
a superhydrophobic agent comprising either: (i) surface functionalised silica nanoparticles; (ii) a functional polysiloxane; or (iii) polymethylsilsesquioxane;
wherein
the reflective agent comprises rutile titanium dioxide (TiO 2 ) having an average particle size (“aps”) of ≥100 nm, sodium aluminosilicate (AlNa 12 SiO 5 ), zinc oxide (ZnO) or copper oxide (CuO); or
the composition further comprises an emissive agent which comprises: (i) calcium carbonate (CaCO 3 ); (ii) calcined kaolin (Al 2 O 3 ·2SiO 2 ); or (iii) talc (hydrated magnesium silicate (H 2 Mg 3 (SiO 3 ) 4 or Mg 3 Si 4 O 10 (OH) 2 )).
2 . The composition of claim 1 further comprising
a photocatalytic agent comprising ≥70 wt % anatase titanium dioxide (TiO 2 ) having an average particle size (“aps”)≤100 nm.
3 . The composition as claimed in claim 2 , wherein the composition comprises
from about 5 to about 25 wt. % reflective agent,
from about 0.1 to about 5 wt. % photocatalytic agent,
from about 10 to about 60 wt. % polyorganosiloxane binder, and
from about 1 to about 15 wt. % superhydrophobic agent.
4 . The composition as claimed in claim 1 , wherein the composition further comprises a solvent, wherein said solvent comprises xylol or dimethylbenzene ((CH 3 ) 2 C 6 H 4 ), toluene ((CH 3 )C 6 H 5 ), ethanol (C 2 H 5 OH), isopropanol (CH 3 CH(OH)CH 3 ), 2-ethoxyethanol (C 2 H 5 OC 2 H 4 OH) or 2-ethoxyethyl acetate (CH 3 C(O)OC 2 H 4 OC 2 H 5 ).
5 . The composition as claimed in claim 4 , wherein the composition comprises from about 15 to 70 wt. % solvent.
6 . The composition as claimed in claim 1 , wherein the reflective agent comprises a white filler, wherein the white filler comprises: (i) magnesium oxide (MgO); (ii) calcium oxide (CaO); (iii) aluminum oxide (Al2O3); (iv) calcium carbonate (CaCO3); (vi) kaolin (Al2O3·2SiO2); or (vii) barium sulphate (BaSO4).
7 . The composition as claimed in claim 1 , wherein the polyorganosiloxane binder is non-fluorinated.
8 . The composition as claimed in claim 1 , wherein the surface functionalised silica nanoparticles are functionalized by: (i) hexamethyldisilazane (“HMDS”); (ii) tetraethyl orthosilicate (“TEOS”); or (iii) tridecafluorooctyltriethoxysilane (“FAS”).
9 . The composition as claimed in claim 1 , wherein the functional polysiloxane is modified with one or more amine or fluoro-containing groups.
10 . The composition as claimed in claim 1 , wherein the composition when cured forms a coating having a water contact angle (“WCA”) >150°.
11 . The composition as claimed in claim 1 , further comprising a cross linking agent
wherein the cross linking agent comprises an alkoxy silane, wherein the alkoxy silane comprises either tetraethyl orthosilicate, octadecyltrichlorosilane, methyltrimethoxysilane, vinyltriethoxysilane, ethyltrimethoxysilane, propyltrimethoxysilane, 3-(2-aminoethyl)-aminopropyltrimethoxysilane, aminopropyltriethoxysilane, phenyltrimethoxysilane or glycidoxypropyltrimethoxysilane.
12 . The composition as claimed in claim 1 , further comprising a UV stabiliser.
13 . An overhead conductor at least partially coated with the composition as claimed in claim 1 , wherein, in use, the composition is cured so as to form a coating or film on at least a portion of the overhead conductor.
14 . The overhead conductor as claimed in claim 13 , wherein the coating or film has an average thermal emissivity coefficient E≥0.80, 0.85 or 0.90 across the infrared spectrum 2.5-30.0 μm; and/or
wherein the coating or film has an average solar reflectivity coefficient R≥0.80, 0.85 or 0.90 across the solar spectrum 0.3-2.5 μm; and/or
wherein the coating or film is substantially white in colour and has a L*≥80, L*≥85, L*≥90 or a L*≥95.
15 . A method comprising:
applying the composition as claimed in claim 1 to at least a portion of an overhead conductor; and
allowing the composition to cure.
16 . The method as claimed in claim 15 , wherein the step of allowing the composition to cure comprises allowing the composition to cure solely by moisture curing so as to form a coating or film on at least a portion of the overhead conductor.
17 . A kit for forming a composition for coating an overhead conductor comprising:
a first part comprising: (i) a reflective agent; (ii) a photocatalytic agent comprising ≥70 wt % anatase titanium dioxide (TiO 2 ) having an average particle size (“aps”)≤100 nm; (iii) a polyorganosiloxane binder; and (iv) a superhydrophobic agent; and
a second part comprising: (i) a solvent;
wherein the reflective agent comprises rutile titanium dioxide (TiO 2 ) having an average particle size (“aps”) of ≥100 nm, sodium aluminosilicate (AlNa 12 SiO 5 ), zinc oxide (ZnO) or copper oxide (CuO); or
the first part or the second part further comprises an emissive agent which comprises: (i) calcium carbonate (CaCO 3 ); (ii) calcined kaolin (Al 2 O 3 ·2SiO 2 ); or (iii) talc (hydrated magnesium silicate (H 2 Mg 3 (SiO 3 ) 4 or Mg 3 Si 4 O 10 (OH) 2 )
wherein, in use, the first and second parts are mixed together to form a composition which is applied to at least a portion of an overhead conductor in order to form a coating or film on at least a portion of the overhead conductor.