IP Library Patent Application 12176086
Patent Application
App. No. 12/176,086

SILICONE COATINGS, METHODS OF MAKING SILICONE COATED ARTICLES AND COATED ARTICLES THEREFROM

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Patent No.
US None
App. No.
12/176,086
Abstract

An adhesive release coating for paper, plastic films, metal films, and other materials as well as a method of making the coated material with a silicone composition containing an inorganic mineral filler is provided. Use of the inorganic mineral filler results in a release coating that has an equivalent or lesser viscosity than a pure silicone release composition.

Claims (45)

1 . A silicone coating composition useful as a release coating with adhesives, comprising:

a) between about 5 wt % and about 80 wt % inorganic hydrophobic mineral filler; and

b) between about 20 wt % and about 95 wt % silicone resin.

2 . The composition of claim 1 , wherein the inorganic hydrophobic mineral filler has a contact angle with water of at least about 90°.

3 . The composition of claim 1 , wherein the inorganic hydrophobic mineral filler has a contact angle with water of at least about 120°.

4 . The composition of claim 1 , wherein the inorganic hydrophobic mineral filler comprises talc.

5 . The composition of claim 1 , wherein the inorganic hydrophobic mineral filler has a moisture content of less than about 45 wt %.

6 . The composition of claim 1 , wherein at least about 50 wt % of the inorganic hydrophobic mineral filler comprises particles having a particle size of less than about 45 μm.

7 . The composition of claim 1 , wherein the inorganic hydrophobic mineral filler comprises from about 10 wt % to about 70 wt % of the silicone coating composition.

8 . The composition of claim 1 , wherein the inorganic hydrophobic mineral filler comprises from about 20 wt % to about 60 wt % of the silicone coating composition.

9 . The composition of claim 1 , wherein the inorganic hydrophobic mineral filler comprises about 40 wt % of the silicone coating composition.

10 . The composition of claim 1 , wherein the silicone resin is selected from the group consisting of vinyl silicone, hexenyl silicone, and mixtures thereof.

11 . The composition of claim 10 , wherein the silicone resin further comprises a hydride-functional cross-linker and a catalyst.

12 . The composition of claim 10 , wherein the silicone resin has been treated by a process selected from the group consisting of thermal setting and energy setting.

13 . The composition of claim 1 , wherein the silicone coating composition has a viscosity from about 50 centipoise to about 20,000 centipoise at about 25° C.

14 . The composition of claim 1 , wherein the inorganic hydrophobic mineral is selected from the group consisting of clays, calcium carbonates, dolomites, micas, alumina trihydrates, magnesium hydroxides, titanium dioxides, barium sulfates, silicas, alkali metal aluminosilicates, talcs, alkaline-earth metal aluminosilicates, phyllosilicate minerals, and mixtures thereof.

15 . The composition of claim 1 , wherein the inorganic hydrophobic mineral filler is formed by one of surface treatment, bulk treatment or compounding of an inorganic hydrophilic mineral, and wherein the inorganic hydrophilic mineral is selected from the group consisting of clays, calcium carbonates, dolomites, micas, alumina trihydrates, magnesium hydroxides, titanium dioxides, barium sulfates, silicas, alkali metal aluminosilicates, talcs, alkaline-earth metal aluminosilicates, phyllosilicate minerals, and mixtures thereof.

16 . The composition of claim 1 , wherein the silicone resin is a solventless silicone resin.

17 . A silicone coating composition useful as a release coating with adhesives, comprising:

a) between about 5 wt % and about 80 wt % talc; and

b) between about 20 wt % and about 95 wt % silicone resin.

18 . The composition of claim 17 , wherein the talc has a contact angle with water of at least about 90°.

19 . The composition of claim 17 , wherein the talc has a contact angle with water of at least about 120°.

20 . The composition of claim 17 , wherein the talc has a moisture content of less than about 45 wt %.

21 . The composition of claim 17 , wherein at least about 50 wt % of the talc comprises particles having a particle size of less than about 45 μm.

22 . The composition of claim 17 , wherein the talc comprises from about 10 wt % to about 70 wt % of the composition.

23 . The composition of claim 17 , wherein the talc comprises from about 20 wt % to about 60 wt % of the composition.

24 . The composition of claim 17 , wherein the inorganic hydrophobic mineral filler comprises about 40 wt % of the silicone coating composition.

25 . The composition of claim 17 , wherein the silicone resin is selected from the group consisting of vinyl silicone, hexenyl silicone and mixtures thereof.

26 . The composition of claim 25 , wherein the silicone resin further comprises a hydride-functional cross-linker and a catalyst.

27 . The composition of claim 25 , wherein the silicone resin has been treated by a process selected from the group consisting of thermal setting and energy setting.

28 . The composition of claim 17 , wherein the silicone coating composition has a viscosity from about 50 centipoise to about 20,000 centipoise at about 25° C.

29 . The composition of claim 17 , wherein the silicone resin is a solventless silicone resin.

30 . A silicone coating composition useful as a release coating, comprising:

a) a silicone resin; and

b) a talc filler comprising from about 5 wt % to about 80 wt % of the silicone coating composition.

31 . The composition of claim 30 , wherein the talc has a contact angle with water of at least about 90°, wherein at least about 50 wt % of the talc comprises particles having a particle size of less than about 45 μm, and wherein the talc has a moisture content of less than about 45% by weight.

32 . The composition of claim 30 , wherein the silicone resin further comprises a hydride-functional cross-linker and a catalyst, wherein the silicone resin is selected from the group consisting of vinyl silicone, hexenyl silicone, and mixtures thereof, and wherein the solventless silicone mixture has been treated by a process selected from the group consisting of thermal setting and energy setting.

33 . The composition of claim 30 , wherein the talc filler comprises from about 20 wt % to about 60 wt % of the coating.

34 . The composition of claim 30 , wherein the silicone coating composition has a viscosity of less than about 10,000 centipoise at 25° C.

35 . The composition of claim 30 , wherein the silicone resin is a solventless silicone resin.

36 . A coated article, comprising:

a) a release substrate; and

b) a silicone coating comprising a silicone resin and an inorganic hydrophobic mineral filler, wherein the inorganic hydrophobic filler has a contact angle with water of at least about 110°, wherein the coating is in contact with the release substrate.

37 . A method of making a coated article comprising applying a silicone coating composition comprising a silicone resin and an inorganic hydrophobic mineral filler having a contact angle with water of at least about 110° to at least one surface of a release substrate to form the coated article.

Assignments (2)
CHANGE OF NAME Recorded Oct 28, 2011
From: LUZENAC AMERICA, INC.
To: IMERYS TALC AMERICA, INC.
Reel/Frame 027145/0090 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 25, 2008
From: WUU, FUUSHERN
To: LUZENAC AMERICA, INC.
Reel/Frame 021436/0916 →