Method and Product for Protecting and Extending the Life of Hydrant Markers
The present invention provides weather-, sunlight-, and use-protected hydrant markers, and methods of protecting and extending the useful life of hydrant markers by protecting them against weather, sunlight, and use, through the application of a heat shrinkable material onto the marker.
1 . A method of protecting and extending the useful life of hydrant markers comprising:
(a) contacting at least a portion of a hydrant marker with a heat shrinkable material;
(b) applying an effective amount of heat to said heat shrinkable material to shrink the heat shrinkable material onto the hydrant marker while maintaining the integrity of the hydrant marker.
2 . The method of claim 1 , further comprising trimming away excess heat shrinkable material after the heat shrinkable material has shrunken onto the hydrant marker.
3 . The method of claim 1 , wherein the heat shrinkable material is a flat sheet, tape or tubing.
4 . The method of claim 1 , wherein the heat shrinkable material comprises a material selected from the group consisting of a reaction product of dicarboxylic acids and diols, a polyolefin material, a copolymer or terpolymer with at least one monomer type of an alpha-olefin, a phenol/formaldehyde material, a phenoxy material, and polyurethane, a styrene butadiene rubber, a modified ethylene copolymer blend, a polyester, an epoxy polyester, and mixtures thereof.
5 . The method of claim 1 , wherein the heat shrinkable material comprises polyvinyl chloride.
6 . The method of claim 1 , wherein said heat shrinkable material comprises at least one additive selected from the group consisting of a colorant, a tackifier, a filler, a plasticizer, a processing oil, an antimicrobial agent, a ultraviolet (UV) curing agents, a magnetic/magnetisable material and mixtures thereof.
7 . The method of claim 1 , wherein said heat shrinkable material shrinks at a temperature of about 85° C. to about 200° C.
8 . The method of claim 1 , wherein said heat shrinkable material provides ultraviolet (UV) protection.
9 . The method of claim 1 , wherein the heat shrinkable material has a thickness of from about 0.030 to about 0.50 after recovery.
10 . A hydrant marker comprising a heat shrinkable material surrounding at least a portion of the hydrant marker, wherein said heat shrinkable material has been exposed to an effective amount of heat to shrink the heat shrinkable material onto the hydrant marker.
11 . The hydrant marker of claim 10 , wherein said heat shrinkable material provides protection from damage of the hydrant marker.
12 . The hydrant marker of claim 10 , wherein the heat shrinkable material is in the shape of a flat sheet, tape or tubing prior to application to the hydrant marker.
13 . The hydrant marker of claim 10 , wherein the heat shrinkable material is a material selected from the group consisting of a reaction product of dicarboxylic acids and diols, a polyolefin material, a copolymer or terpolymer with at least one monomer type of an alpha-olefin, a phenol/formaldehyde material, a phenoxy material, and polyurethane, a styrene butadiene rubber, a modified ethylene copolymer blend, a polyester, an epoxy polyester, and mixtures thereof.
14 . The hydrant marker of claim 10 , wherein the heat shrinkable material comprises polyvinyl chloride.
15 . The hydrant marker of claim 10 , wherein said heat shrinkable material comprises at least one additive selected from the group a colorant, a tackifier, a filler, a plasticizer, a processing oil, an antimicrobial agent, a ultraviolet (UV) curing agents, a magnetic/magnetisable material and mixtures thereof.
16 . The hydrant marker of claim 10 , wherein said heat shrinkable material shrinks at a temperature of from about 85° C. to about 200° C.
17 . The hydrant marker of claim 10 , wherein said heat shrinkable material provides protection against ultraviolet (UV) light.
18 . A method of beautifying and extending the useful life of a hydrant marker comprising:
(a) inserting at least a portion of a hydrant marker into a tubing comprising a polyvinyl chloride-based heat shrinkable material which provides protection against ultraviolet (UV) light; and
(b) exposing the heat shrinkable material to a heat source which causes the temperature of the heat shrinkable material to reach about 90° C. to about 110° C. to shrink the heat shrinkable material onto the hydrant marker while maintaining the integrity of the hydrant marker.