NANOCLAY FILLED FLUOROPOLYMER DISPERSIONS AND METHOD OF FORMING SAME
Disclosed herein is an aqueous dispersion and a method for making said dispersion, and more particularly, a dispersion that comprises a nanoclay such as a tubular clay (e.g. halloysite), a fluoropolymer and the requisite surfactants for dispersion stability. In various embodiments, and applications thereof to substrates and the like, the dispersion improves the manufacturability of articles that include coating fluoropolymer dispersions while retaining the unique properties of the fluoropolymer coating.
1 . A nanoclay filled fluoropolymer dispersion produced by a method comprising:
preparing a mixture of nanoclay particles and at least water; and
adding the mixture to a fluoropolymer dispersion to produce the nanoclay filled fluoropolymer dispersion.
2 . The dispersion according to claim 1 , wherein the mixture is produced as a nanoclay paste.
3 . The dispersion according to claim 2 , wherein the nanoclay paste is produced by a method comprising:
introducing the nanoclay particles into an extruder system;
adding a solution of surfactant into the extruder system; and
mixing the nanoclay particles and the surfactant solution down the length of the extruder barrel to produce a wet nanoclay paste.
4 . The dispersion according to claim 1 , wherein the mixture has a concentration of at least about 25% solids.
5 . The dispersion according to claim 4 , wherein the mixture has a concentration of at least about 40% solids.
6 . The dispersion according to claim 1 , wherein the mixture includes a dilute dispersion of nanoclay particles and a surfactant.
7 . The dispersion according to claim 6 , wherein the dilute dispersion is produced by a method comprising adding nanoclay to a surfactant and de-ionized water solution while mixing in a high shear mixer, and wherein the method further comprises concentrating and collecting nanoclay sediment from the dilute dispersion.
8 . The dispersion of claim 1 wherein said nanoclay particles include tubular nanoclay particles.
9 . The dispersion of claim 8 , wherein said tubular nanoclay particles include halloysite to produce a halloysite filled fluoropolymer dispersion.
10 . The dispersion according to claim 1 , wherein the method further comprises adding additional water to achieve a desired solids content for the dispersion.
11 . The dispersion according to claim 1 , wherein the method further comprises adding fluoropolymer dispersion to achieve a desired nanoclay/fluoropolymer ratio.
12 . The dispersion according to claim 1 , wherein the method further comprises adding at least one processing aid.
13 . The dispersion according to claim 1 , wherein the method further comprises adding at least one colorant.
14 . The dispersion according to claim 1 , wherein the method further comprises:
applying the dispersion to a substrate as a coating; and
drying the coating.
15 . The dispersion according to claim 1 , wherein applying the dispersion to a substrate further comprises applying the dispersion in a single pass thickness to achieve a dried coating thickness of at least about 1.0 mil.
16 . The dispersion according to claim 15 , wherein the dried coating thickness is at least about 1.2 mil.
17 . The dispersion according to claim 1 , wherein applying the dispersion to a substrate further comprises applying the dispersion in a single pass thickness to achieve a dried coating thickness of at least 2.0 mil.
18 . The dispersion according to claim 16 , wherein the dried coating thickness is at least about 2.8 mil.
19 . A coating comprising a dispersion of at least one nanoclay and at least one fluoropolymer.
20 . The coating according to claim 19 , wherein said nanoclay includes tubular nanoclay particles.
21 . The coating according to claim 19 , wherein said nanoclay includes halloysite.
22 . The coating according to claim 19 , wherein said coating is applied in a single pass to a substrate to achieve a dried coating thickness of at least about 1.0 mil.
23 . A method for producing a nanoclay filled fluoropolymer dispersion including:
preparing a dispersion of nanoclay particles in a surfactant and water solution;
concentrating the nanoclay dispersion to form a nanoclay paste;
adding the nanoclay paste to a fluoropolymer dispersion, to produce a highly filled fluoropolymer dispersion; and
adding additional constituents to achieve a desired solids content for the dispersion.
24 . The method of claim 23 , further including adding at least one processing aid to the dispersion to achieve a desired nanoclay filled fluoropolymer coating formulation.
25 . The method of claim 24 , further including applying the nanoclay filled fluoropolymer dispersion to a substrate as a coating, and drying the coating.
26 . The method of claim 22 , wherein said fluoropolymer dispersion is selected from the group of fluoropolymers consisting of: PTFE (polytetrafluoroethylene), PFA (copolymers of tetrafluoroethylene with perfluoroalkoxy side groups), FEP (copolymers of tetrafluoroethylene with hexafluoropropylene), MFA (copolymers of tetrafluoroethylene with perfluoromethyl vinyl ether), PVDF (polyvinylidene fluoride), and fluorinated copolymers of vinylidene fluoride.
27 . The method of claim 23 , further including adding water.
28 . The method of claim 23 , further including adding fluoropolymer dispersion.
29 . The method according to claim 23 , further including adding at least one additional constituent selected from the group consisting of:
processing aids,
performance aids, and
colorants.
30 . The method of claim 23 , further including applying the nanoclay filled fluoropolymer dispersion to a surface as a coating, using a process selected from the group consisting of: dip coating, spin coating, spraying, flow coating, slot die coating, gravure coating, reverse roll coating, knife over roll coating, rod coating, curtain coating and other wet coating application methods.
31 . The method of claim 23 , further comprising pre-treating the surface to be coated.
32 . The method of claim 23 , further comprising at least one drying, baking and sintering operation to adhere the coating to the surface.
33 . The method of claim 23 , further including incorporating the nanoclay filled fluoropolymer dispersion in an article, wherein the method of inclusion is selected from the group consisting of:
coated onto a substrate to form a strippable film;
coating an object; and
impregnation of fibrous substrates.
34 . A method of producing a nanoclay filled fluoropolymer dispersion including:
introducing the nanoclay and a surfactant solution into an operating extruder system at calibrated rates;
mixing the nanoclay and surfactant solution in the extruder barrel, to produce a wet nanoclay paste; and
introducing the paste into a stirring fluoropolymer dispersion to achieve a desired solids content for the dispersion.
35 . The method according to claim 34 , further including adding water.
36 . The method according to claim 34 , further including adding fluoropolymer dispersion.
37 . The method according to claim 34 , further including adding at least one additional constituent selected from the group consisting of:
processing aids,
performance aids, and
colorants.
38 . The method according to claim 34 , further including applying the nanoclay filled fluoropolymer dispersion to a surface as a coating, using a process selected from the group consisting of: dip coating, spin coating, spraying, flow coating, slot die coating, gravure coating, reverse roll coating, knife over roll coating, rod coating, curtain coating and other wet coating application methods.
39 . The method according to claim 38 , further comprising pre-treating the surface to be coated.
40 . The method according to claim 38 , further comprising at least one drying, baking and sintering operation to cause the coating to adhere to the surface.
41 . The method according to claim 38 , further including incorporating the nanoclay filled fluoropolymer dispersion in an article, wherein the method of inclusion is selected from the group consisting of:
coated onto a substrate to form a strippable film;
coating an object; and
impregnation of fibrous substrates.
42 . The method according to claim 34 , wherein said fluoropolymer dispersion is selected from the group of fluoropolymers consisting of: PTFE (polytetrafluoroethylene), PFA (copolymers of tetrafluoroethylene with perfluoroalkoxy side groups), FEP (copolymers of tetrafluoroethylene with hexafluoropropylene), MFA (copolymers of tetrafluoroethylene with perfluoromethyl vinyl ether), PVDF (polyvinylidene fluoride), and fluorinated copolymers of vinylidene fluoride.
43 . A fluoropolymer coating, comprising a single-layer nanoclay filled fluoropolymer dispersion applied to a substrate at an application thickness greater than about 1.0 mil, said coating, after drying, having a thickness of at least about 1.0 mil.
44 . The fluoropolymer coating of claim 43 , wherein the application thickness is at least about 2.0 mil and where said coating, after drying, has a thickness of at least about 2.0 mil.
45 . The dispersion according to claim 44 , wherein the dried coating thickness is at least about 2.8 mil.
46 . The fluoropolymer coating of claim 43 , wherein said nanoclay includes tubular nanoclay particles.
47 . The fluoropolymer coating of claim 45 , wherein said tubular nanoclay particles include halloysite.
48 . The fluoropolymer coating of claim 43 , wherein said fluoropolymer dispersion is selected from the group of fluoropolymers consisting of: PTFE (polytetrafluoroethylene), PFA (copolymers of tetrafluoroethylene with perfluoroalkoxy side groups), FEP (copolymers of tetrafluoroethylene with hexafluoropropylene), MFA (copolymers of tetrafluoroethylene with perfluoromethyl vinyl ether), PVDF (polyvinylidene fluoride), and fluorinated copolymers of vinylidene fluoride.