Thermal pack
A thermal pack that includes a tubular body having a first opening, a second opening, an inner surface and an outer surface. The first opening, the inner surface and the second opening cooperate to define a passage through the tubular body for the limb. The inner surface and the outer surface of the tubular body are defined by a continuous eversion-limitless film of flexible material. A temperature-retaining fluid such as a water-based gel is received between the inner surface and the outer surface. The thermal pack can be positioned at a desired location on a limb by rolling the thermal pack onto the limb.
1. A thermal pack comprising a tubular body having a first opening, a second opening, an inner surface and an outer surface, wherein the first opening, the inner surface and the second opening cooperate to define a passage through the tubular body, wherein the inner surface and the outer surface of the tubular body are defined by a continuous eversion-limitless film of flexible material, wherein a water-based gel that does not become a hard solid at 32° F. is received between the inner surface and the outer surface of the tubular body, and wherein a plurality of free-flowing solid structures are dispersed in the gel.
2. The thermal pack according to claim 1 wherein the free-Flowing solid structures dispersed in the gel are selected from the group consisting of water-filled capsules, inorganic particulates, glass spheres, metal spheres, magnets and combinations thereof.
3. The thermal pack according to claim 1 wherein the passage through the tubular body is cylindrical, tapered or flared at the first opening and/or second opening.
4. The thermal pack according to claim 1 wherein the passage through the tubular body has a diameter of 2.5 inches or greater.
5. The thermal pack according to claim 1 wherein the continuous film of flexible material comprises a copolymer of polyester and polyurethane.
6. A thermal pack comprising a tubular body having a first opening, a second opening, an inner surface and an outer surface, wherein the first opening, the inner surface and the second opening cooperate to define a passage through the tubular body, wherein the inner surface and the outer surface of the tubular body are defined by a continuous eversion-limitless film of flexible material, wherein a non-gaseous temperature retaining fluid that does not become a hard solid at 32° F. is received between the inner surface and the outer surface of the tubular body, wherein a selectively pressurizeable radial air bladder is disposed on the outer surface of the tubular body, and wherein the radial air bladder comprises a plurality of partially-subdivided, interconnected air chambers.
7. The thermal pack according to claim 6 wherein the temperature-retaining fluid is a gel.
8. The thermal pack according to claim 7 wherein the gel is water-based.
9. The thermal pack according to claim 7 further comprising a plurality of free-flowing solid structures dispersed in the gel.
10. The thermal pack according to claim 9 wherein the free-Flowing solid structures dispersed in the gel are selected from the group consisting of water-filled capsules, inorganic particulates, glass spheres, metal spheres, magnets and combinations thereof.
11. The thermal pack according to claim 6 wherein the continuous film of flexible material comprises a copolymer of polyester and polyurethane.
12. The thermal pack according to claim 6 wherein the continuous film of flexible material exhibits a Shore A durometer hardness of greater than or equal to 85 as measured in accordance with the ASTM 2240.00 standard.
13. The thermal pack according to claim 6 wherein the continuous film of flexible material has a thickness of from about 3 to about 15 mils.
14. The thermal pack according to claim 6 wherein the partially-subdivided, interconnected air chambers comprise longitudinal columns.
15. A thermal pack comprising a tubular body having a first opening, a second opening, an inner surface and an outer surface, wherein the first opening, the inner surface and the second opening cooperate to define a passage through the tubular body, wherein the inner surface and the outer surface of the tubular body are defined by a continuous eversion-limitless film of flexible material, wherein a non-gaseous temperature retaining fluid that does not become a hard solid at 32° F. and an insert for inhibiting the displacement of temperature retaining fluid are received between the inner surface and the outer surface of the tubular body, wherein the insert comprises a plurality of sealed pockets that are filled with a temperature retaining fluid and are joined together to form a tubular structure.
16. The thermal pack according to claim 15 wherein the sealed pockets comprise individually sealed longitudinal tubes.