IP Library Granted Patent US 10,370,171
Granted Patent B1
US 10,370,171 · App. 15/959,089 · Granted Aug 6, 2019

Insulated liquid storage container

Inventor: Taylor Krenz (Tempe, AZ)
B65D81/3841B65D43/0227B65D47/122B65D51/18G01F23/0069
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Quick Facts
Patent No.
US 10,370,171
App. No.
15/959,089
Granted
Aug 6, 2019
Kind
B1
Abstract

A liquid storage container that includes a lid and a body. The body defines a storage cavity. The body has a double-walled vacuum insulated layer that defining the storage cavity. A membrane is formed around the double-walled vacuum insulated layer and a coating is formed on the outside of the membrane.

Claims (36)

1. A liquid storage container comprising:

a two-part lid having an upper portion removably connected to a lower portion, wherein the lower portion comprises a cavity having an inlet and a spout, wherein the two-part lid may be removably coupled to the body, wherein the body defines a storage cavity and comprises:

a double-walled vacuum insulated layer defining the storage cavity;

a membrane formed on an outside of the double-walled vacuum insulated layer; and

a coating formed on an outside of the membrane.

2. The liquid storage container of claim 1 , wherein the membrane comprises a polycarbonate.

3. The liquid storage container of claim 1 , wherein the membrane comprises at least one of a polypropylene (PP), polystyrene (PS), high impact polystyrene (HIPS), acrylonitrile butadiene styrene (ABS), polyethylene terephthalate (PET or PETE), polyester (PES), polyamides (PA) (Nylons), poly (vinyl chloride) (PVC), polyurethanes (PU), polyethylene (PE), polylactic acid (PLA), perylic (PMMA), or acetal (Polyoxymethlene, POM).

4. The liquid storage container of claim 1 , wherein the coating comprises an aromatic polyurethane-based coating.

5. The liquid storage container of claim 1 , wherein the coating comprises at least one of a hardide-based coating, a thermoplastic elastomer (TPE)-based coating, a silicone-based coating, a rubber-based coating, a cerakote-based coating, or a D3O-based coating.

6. The liquid storage container of claim 1 , wherein the upper portion is removably connected to a lower portion by a half-turn of the upper portion relative to the lower portion.

7. The liquid storage container of claim 1 , wherein the inlet defines a half-circle shaped passage between the storage cavity and the cavity, wherein the cavity is defined by:

an upper cavity surface that extends from a flat side of the inlet to a spout, wherein the upper cavity surface comprises a parabolic shape that curves around a center of the first cavity; and

a lower cavity surface that extends from the curved side of the spout, wherein the lower cavity surface comprises a multi-curved shape having a curved shape with a decreasing slope and then an increasing slope until the slope becomes substantially vertical near the spout.

8. The liquid storage container of claim 1 , wherein the lid comprises a liquid measuring circuit.

9. The liquid storage container of claim 8 , wherein the liquid measuring circuit comprises an optical sensor configured to measure a distance from a bottom of the lid to a surface of a liquid in the storage cavity.

10. A liquid storage container comprising:

a two-part lid, comprising an upper portion that is removably coupled to a lower portion, wherein the lower portion is removably coupled to a body, wherein the body comprises:

a storage cavity defined by a double-walled vacuum insulated layer;

a polycarbonate membrane formed on an outside of the double-walled vacuum insulated layer; and

an aromatic polyurethane-based coating formed on an outside of the membrane.

11. The liquid storage container of claim 10 , wherein the lower portion comprises a liquid measuring circuit.

12. A liquid storage container comprising:

a lid removably coupled to the body, wherein the body defines a storage cavity and comprises:

a double-walled vacuum insulated layer defining the storage cavity;

a membrane formed on an outside of the double-walled vacuum insulated layer; and

a coating formed on an outside of the membrane;

wherein the lid comprises a liquid measuring circuit.

13. The liquid storage container of claim 12 , wherein the membrane comprises a polycarbonate.

14. The liquid storage container of claim 12 , wherein the membrane comprises at least one of a polypropylene (PP), polystyrene (PS), high impact polystyrene (HIPS), acrylonitrile butadiene styrene (ABS), polyethylene terephthalate (PET or PETE), polyester (PES), polyamides (PA) (Nylons), poly (vinyl chloride) (PVC), polyurethanes (PU), polyethylene (PE), polylactic acid (PLA), perylic (PMMA), or acetal (Polyoxymethlene, POM).

15. The liquid storage container of claim 12 , wherein the coating comprises an aromatic polyurethane-based coating.

16. The liquid storage container of claim 12 , wherein the coating comprises at least one of a hardide-based coating, a thermoplastic elastomer (TPE)-based coating, a silicone-based coating, a rubber-based coating, a cerakote-based coating, or a D3O-based coating.

17. The liquid storage container of claim 12 , wherein the lid comprises a two-part lid having an upper portion removably connected to a lower portion.

18. The liquid storage container of claim 17 , wherein the lower portion comprises a cavity having an inlet and a spout.

19. The liquid storage container of claim 18 , wherein the inlet defines a half-circle shaped passage between the storage cavity and the cavity, wherein the cavity is defined by:

an upper cavity surface that extends from a flat side of the inlet to a spout, wherein the upper cavity surface comprises a parabolic shape that curves around a center of the first cavity; and

a lower cavity surface that extends from the curved side of the spout, wherein the lower cavity surface comprises a multi-curved shape having a curved shape with a decreasing slope and then an increasing slope until the slope becomes substantially vertical near the spout.

Cited By (10)
US 1,067,772 US 1,075,411 US 1,076,592 US 1,077,578 US 1,102,225 US 1,113,346 US 1,113,350 US 1,126,669 US 1,126,670 US 1,140,644