IP Library Patent Application 11852134
Patent Application
App. No. 11/852,134

DECORATIVE ARTICLE WITH CONTROL SHRINKAGE CARRIER

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Quick Facts
Patent No.
US None
App. No.
11/852,134
Abstract

The present invention is directed to flocked articles comprising a control shrinkage carrier film to absorb thermally induced shrinkage of other layers in the flocked article.

Claims (49)

1 . A method, comprising:

(a) applying a release adhesive to a shrinkage control carrier film; and

(b) electrostatically flocking the release adhesive to form of a flock layer;

(c) applying a permanent adhesive to a free surface of the flock, the flock being positioned between the permanent adhesive and release adhesive, to form a transfer; and

(d) drying the permanent adhesive of the transfer, causing the permanent adhesive to shrink and/or deform in at least one dimension, wherein the carrier film has at least one of the following features:

(D1) a thermal expansion coefficient that ranges from about 75% to about 125% of a thermal expansion coefficient of the permanent adhesive;

(D2) a softening temperature less than the drying temperature;

(D3) a primary component that is the same as a primary component of the permanent adhesive;

(D4) a porous and/or cellular structure; and

(D5) a high degree of flexibility.

whereby at least most of the shrinkage and/or deformation is absorbed by the carrier film.

2 . The method of claim 1 , wherein the carrier film has feature (D1).

3 . The method of claim 2 , wherein the thermal expansion coefficient of the carrier sheet ranges from about 90% to about 110% of a thermal expansion coefficient of the permanent adhesive.

4 . The method of claim 1 , wherein the carrier film has feature (D2).

5 . The method of claim 1 , wherein the carrier film has feature (D3).

6 . The method of claim 1 , wherein the carrier film has feature (D4).

7 . The method of claim 6 , wherein the porous film is a microporous film, wherein the microporous film comprises an inorganic filler, wherein the porous film comprises a matrix of substantially water insoluble thermoplastic organic polymer and filler particles and is gas permeable but water impermeable.

8 . The method of claim 6 , wherein the porous film comprises a substantially nonporous coating, the coating comprising a film forming polymer.

9 . The method of claim 6 , wherein the porous film is a microporous film, wherein the microporous film comprises a particulate filler, wherein the filler comprises from about 40 to about 90 weight percent of the porous film, wherein the filler particles have a maximum dimension of less than about 5 micrometers, wherein the pores of the porous film are from about 35 to about 95 percent by volume of the porous film, wherein the filler is a metal oxide, wherein the porous film comprises a substantially nonporous coating, wherein the coating comprises a binder, wherein the binder is a film-forming polymer, and wherein the binder has a molecular weight ranging from about 100,000 to about 300,000.

10 . The method of claim 6 , wherein the porous film has a thickness of less than 14 mils.

11 . The method of claim 1 , wherein the carrier film has feature (D5).

12 . The method of claim 1 , wherein the carrier film has a thickness of no more than about 12 mils.

13 . A flocked article, comprising:

(a) a permanent adhesive layer;

(b) a plurality of flock fibers;

(c) a release adhesive, the flock fibers being positioned between the permanent adhesive layer and release adhesive; and

(d) a control shrinkage carrier film adhered to the release adhesive, the release adhesive being located between the control shrinkage carrier film and the flock fibers, wherein the control shrinkage carrier film has at least one of the following features:

(D1) a thermal expansion coefficient ranging from about 75% to about 125% of a thermal expansion coefficient of the permanent adhesive;

(D2) a softening temperature less than the elevated temperature;

(D3) a primary component that is the same as a primary component of the permanent adhesive;

(D4) a porous and/or cellular structure; and

(D5) a high degree of flexibility.

14 . The flocked article of claim 13 , wherein the carrier film has feature (D1).

15 . The flocked article of claim 14 , wherein the thermal expansion coefficient of the carrier sheet ranges from about 90% to about 110% of a thermal expansion coefficient of the permanent adhesive.

16 . The flocked article of claim 13 , wherein the carrier film has feature (D2).

17 . The flocked article of claim 13 , wherein the carrier film has feature (D3).

18 . The flocked article of claim 13 , wherein the carrier film has feature (D4).

19 . The flocked article of claim 18 , wherein the porous film is a microporous film, wherein the microporous film comprises an inorganic filler, wherein the porous film comprises a matrix of substantially water insoluble thermoplastic organic polymer and filler particles and is gas permeable but water impermeable.

20 . The flocked article of claim 18 , wherein the porous film comprises a substantially nonporous coating, the coating comprising a film forming polymer.

21 . The flocked article of claim 18 , wherein the porous film is a microporous film, wherein the microporous film comprises a particulate filler, wherein the filler comprises from about 40 to about 90 weight percent of the porous film, wherein the filler particles have a maximum dimension of less than about 5 micrometers, wherein the pores of the porous film are from about 35 to about 95 percent by volume of the porous film, wherein the filler is a metal oxide, wherein the porous film comprises a substantially nonporous coating, wherein the coating comprises a binder, wherein the binder is a film-forming polymer, and wherein the binder has a molecular weight ranging from about 100,000 to about 300,000.

22 . The flocked article of claim 13 , wherein the carrier film has feature (D5).

23 . A method, comprising:

(a) applying a release adhesive to a porous and/or cellular carrier film; and

(b) electrostatically flocking the release adhesive to locate a plurality of flock fibers in the release adhesive, the fibers being transverse to an adjacent surface of the carrier film;

(c) applying a permanent adhesive to a free surface of the flock, the flock being positioned between the permanent adhesive and release adhesive, to form a transfer;

(d) heating the transfer to an elevated temperature to cause the permanent adhesive to shrink in at least one dimension;

(e) absorbing, by the carrier film, at least most of the shrinkage of the permanent adhesive.

24 . The method of claim 23 , wherein the porous film is a microporous film, wherein the microporous film comprises an inorganic filler, wherein the porous film comprises a matrix of substantially water insoluble thermoplastic organic polymer, filler particles and is gas permeable but water impermeable, wherein the filler comprises from about 40 to about 90 weight percent of the porous film, wherein the filler particles have a maximum dimension of less than about 5 micrometers, wherein the pores of the porous film are from about 35 to about 95 percent by volume of the porous film, wherein the filler is a metal oxide, and wherein the porous film comprises a substantially nonporous coating, the coating comprising a film forming polymer, wherein the coating comprises a binder, wherein the binder is a film-forming polymer, and wherein the binder has a molecular weight ranging from about 100,000 to about 300,000.

25 . The method of claim 17 , wherein the porous film has a thickness of less than about 14 mil.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 15, 2008
From: ABRAMS, LOUIS BROWN
To: HIGH VOLTAGE GRAPHICS, INC.
Reel/Frame 020364/0793 →