US2015152277A1PendingUtilityA1
Top coating for indoor and outdoor temporary removable graphics and system and method for making, applying and removing such graphics
Est. expiryApr 26, 2027(~0.7 yrs left)· nominal 20-yr term from priority
C09D 101/14C09D 133/12C09D 7/1233C09D 7/63C08K 5/10C09D 5/008C09D 9/005
58
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Claims
Abstract
A composition for a removable top coating for protecting the exposed face of a temporary removable graphic is provided. A remover for the transferred graphic image is provided that completely dissolves the temporary removable graphic, but does not affect the commonly encountered substrates such as concrete, brick, wooden floors, asphalt surfaces, terrazzo and motor vehicle body surfaces, marine and aeronautical craft surfaces. A method for making, applying and removing the temporary removable graphic is provided.
Claims
exact text as granted — not AI-modified1 - 26 . (canceled)
27 . A composition comprising by percentage dry weight, based on the total dry weight of components a), b) and c) combined:
a) 40 to 80% of cellulose acetate butyrate ester having a molecular weight in the range of 10,000 to 500,000; b) 15 to 60% of at least one acrylic polymer, wherein the at least one acrylic polymer is at least one methyl methacrylate copolymer; and c) 2 to 10% of sucrose acetate isobutyrate;
in an amount of solvent effective to dissolve the dry components of the composition, wherein the solvent comprises at least one organic solvent, and
wherein the composition is useful for preparing a removable top coat.
28 . The composition of claim 27 , further comprising at least one plasticizer other than sucrose acetate isobutyrate.
29 . The composition of claim 27 , wherein the cellulose acetate butyrate ester is selected from CAB 553-0.4 and CAB 531.1, wherein CAB 553-0.4 is a cellulose acetate butyrate having, on the average, butyryl content of about 46 wt %, acetyl content of about 2 wt %, hydroxyl content of about 4.8 wt %, glass transition temperature about 136° C., melting point about 150-160° C., and molecular weight about 20,000, and wherein CAB-531.1 is a cellulose acetate butyrate having, on the average, butyryl content of about 50 wt %, acetyl content of about 3 wt %, hydroxyl content of about 1.7 wt %, melting point about 135-150° C., glass transition temperature about 115° C., and molecular weight about 40,000.
30 . The composition of claim 27 , wherein the cellulose acetate butyrate ester has a hydroxyl content of approximately 3 to 6% by dry weight of the cellulose acetate butyrate ester.
31 . The composition of claim 27 , wherein the at least one organic solvent is at least one lower molecular weight alcohol selected from methyl alcohol, ethyl alcohol, isopropyl alcohol and n-propyl alcohol.
32 . The composition of claim 27 , wherein the sucrose acetate isobutyrate is SAIB-100 and SAIB-100 is sucrose acetate isobutyrate having a molecular weight of from 832 to 856 and soluble in lower molecular weight alcohols.
33 . The composition of claim 27 further comprising a flow improver.
34 . The composition of claim 33 , wherein the dry weight of the flow improver is 0.66 to 1% by weight of the composition after evaporation of the solvent.
35 . The composition of claim 33 , wherein the flow improver contains alkoxylated polydimethylsiloxane and ethyleneglycol n-butyl ether.
36 . The composition of claim 27 , wherein the solvent comprises at least one lower molecular weight alcohol.
37 . The composition of claim 27 , wherein the cellulose acetate butyrate ester is used in an amount of approximately 68% by dry weight of the composition and the acrylic polymer is a mixture of: a methyl methacrylate and n-butyl methacrylate copolymer with a molecular weight of approximately 80,000 or higher in an amount of approximately 15% by dry weight of the composition and a copolymer of methyl methacrylate and n-butyl methacrylate with a molecular weight of approximately 80,000 or lower in an amount of approximately 10% by dry weight of the composition.
38 . The composition of claim 27 , wherein the methyl methacrylate copolymer is NEOCRYL B-734, wherein NEOCRYL B-734 is a methyl methacrylate copolymer having, on the average, molecular weight 105,000, glass transition temperature 45° C. and acid value of zero.
39 . The composition of claim 27 , wherein the at least one acrylic polymer is at least a copolymer of methyl methacrylate and n-butyl methacrylate.
40 . The composition of claim 39 , wherein the copolymer of methyl methacrylate and n-butyl methacrylate is NEOCRYL B-723, wherein NEOCRYL B-723 is a copolymer of n-butyl methacrylate and methyl methacrylate having, on the average, molecular weight of about 200,000, glass transition temperature of 48° C., and acid value 5.5.
41 . The composition of claim 39 , wherein the copolymer of methyl methacrylate and n-butyl methacrylate is BR-106, wherein BR-106 is a copolymer of n-butyl methacrylate and methyl methacrylate having, on the average, molecular weight of approximately 60,000, glass transition temperature of 58° C. and acid value of 3.
42 . The composition of claim 32 , wherein the at least one acrylic polymer comprises methyl methacrylate copolymer, or a copolymer of n-butyl methacrylate and methyl methacrylate.
43 . The composition of claim 27 further comprising at least one additive.
44 . The composition of claim 43 , wherein the at least one additive is selected from UV absorbers, optical brightening agents, UV tracers, heat stabilizers, phosphorescence agents and anti-oxidants.
45 . The composition of claim 31 , wherein the at least one lower molecular weight alcohol is selected from methyl alcohol, ethyl alcohol, isopropyl alcohol, n-propyl alcohol and diacetone alcohol.
46 . The composition of claim 45 , wherein the at least one organic solvent further comprises at least one solvent selected from ethylene glycol n-butyl ether, ethyl 3-ethoxypropionate, propylene glycol monomethyl ether acetate and tetrahydrofurfuryl alcohol.
47 . The composition of claim 27 , wherein the at least one acrylic polymer is a mixture of NEOCRYL B-734 and BR-106, wherein NEOCRYL B-734 is a methyl methacrylate copolymer having, on the average, molecular weight 105,000, glass transition temperature 45° C. and acid value of zero, and wherein BR-106 is a copolymer of n-butyl methacrylate and methyl methacrylate having, on the average, molecular weight of approximately 60,000, glass transition temperature of 58° C. and acid value of 3.
48 . The composition of claim 27 , further comprising a pigmented compound.
49 . The composition of claim 38 , wherein the at least one acrylic polymer further comprises NEOCRYL B-723, wherein NEOCRYL B-723 is a copolymer of n-butyl methacrylate and methyl methacrylate having, on the average, molecular weight of about 200,000, glass transition temperature of 48° C., and acid value 5.5.
50 . The composition of claim 41 , wherein the at least one acrylic polymer further comprises NEOCRYL B-723, wherein NEOCRYL B-723 is a copolymer of n-butyl methacrylate and methyl methacrylate having, on the average, molecular weight of about 200,000, glass transition temperature of 48° C., and acid value 5.5.Join the waitlist — get patent alerts
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