IP Library › Granted Patent US 10,239,670
Granted Patent B2
US 10,239,670 · App. 14/942,869 · Granted Mar 26, 2019

No spill cap assembly

Inventors: Gary Lee Snow (Rock Falls, IL); Chad Edward Aulwes (Sterling, IL)
B65D47/261B65D47/243
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Quick Facts
Patent No.
US 10,239,670
App. No.
14/942,869
Granted
Mar 26, 2019
Kind
B2
Abstract

A cap assembly connected to a container for dispensing the contents of the container includes an inner cap and an outer cap. The inner cap includes a cylindrical inner cap surface between a proximal end and a distal end that includes an inner cap opening. The outer cap is positioned over and secured to the inner cap. The outer cap includes a cylindrical outer cap surface between the proximal end and distal end, and the cylindrical outer cap surface includes an outer cap opening. The cap assembly includes an open configuration and a closed configuration. The outer cap can be rotated about the inner cap between the open configuration and the closed configuration.

Claims (27)

1. A dispensing cap connected to a container for dispensing the contents of the container, comprising:

an inner cap having a proximal end and a distal end, the proximal end includes a proximal opening and the distal end includes an inner cap opening that includes an inner funnel shaped portion having a stepped configuration, and the inner cap including a locking groove disposed in its surface; and

an outer cap that is positioned over and secured to the inner cap, the outer cap having a proximal end and a distal end, the proximal end includes a proximal opening and the distal end includes an outer cap opening that includes an outer funnel shaped portion having a stepped configuration, and the outer cap includes a plurality of locking tabs that engage the locking groove disposed on the surface of the inner cap and the locking tabs disengage from the locking groove when the outer cap rotates around the inner cap;

wherein the outer cap rotates around the inner cap into an open configuration when the inner funnel shaped portion of the inner cap opening at least partially overlaps the outer funnel shaped portion of the outer cap opening allowing the contents of the container to be dispensed through the dispensing cap, wherein the size of the opening is adjustable based on the amount of overlap between the opening of the inner cap and the opening of the outer cap, and wherein the outer cap rotates around the inner cap into a closed configuration wherein the inner cap opening does not overlap the outer cap opening.

2. The dispensing cap of claim 1 , wherein the inner cap and outer cap both include a generally circular shaped cross-section.

3. The dispensing cap of claim 1 , wherein the inner cap and the outer cap have the same shape.

4. The dispensing cap of claim 3 , wherein the inner cap has a smaller cross section than the outer cap.

5. The dispensing cap of claim 1 , wherein the inner cap opening is smaller than the outer cap opening.

6. The dispensing cap of claim 1 , wherein the inner cap has a generally cylindrical shape and the inner cap opening is disposed at least partially on the cylindrical side of the inner cap and at the first distal end.

7. The dispensing cap of claim 1 , wherein the outer cap has a generally cylindrical shape and the outer cap opening is disposed at least partially on the cylindrical side of the outer cap and at least partially at the distal end.

8. The dispensing cap of claim 1 , wherein the inner cap includes a threaded cylindrical portion that attaches to a threaded portion of the container.

9. The dispensing cap of claim 1 , wherein the inner cap includes a radial rib and the outer cap includes a groove that snaps over the radial rib of the inner cap.

10. The dispensing cap of claim 1 , wherein the outer cap can be rotated about the inner cap between the open configuration and the closed configuration.

11. A cap assembly connected to a container for dispensing the contents of the container, comprising:

an inner cap having a proximal end and a distal end, the proximal end includes a proximal opening, the inner cap includes a cylindrical inner cap surface between the proximal end and distal end, and the cylindrical inner cap surface includes an inner cap opening that includes an inner funnel shaped portion having a stepped configuration, and the inner cap including a locking groove disposed in its surface; and

an outer cap is positioned over and secured to the inner cap, the outer cap having a proximal end and a distal end, the proximal end includes a proximal opening, and the outer cap includes a cylindrical outer cap surface between the proximal end and distal end, and the cylindrical outer cap surface includes an outer cap opening that includes an outer funnel shaped portion having a stepped configuration, and the outer cap includes a plurality of locking tabs that engage the locking groove disposed on the surface of the inner cap, and the locking tabs disengage from the locking groove when the outer cap rotates around the inner cap;

wherein the outer cap rotates around the inner cap into an open configuration when the inner funnel shaped portion of the inner cap opening at least partially overlaps the outer funnel shaped portion of the outer cap opening allowing the contents of the container to be dispensed through the cap assembly, wherein the size of the opening is adjustable based on the amount of overlap between the opening of the inner cap and the opening of the outer cap, and wherein the outer cap rotates around the inner cap into a closed configuration wherein the inner cap surface blocks the outer cap opening.

12. The cap assembly of claim 11 , wherein the inner cap and outer cap both include a circular cross-section adjacent the proximal ends of the inner cap and outer cap.

13. The cap assembly of claim 12 , wherein the outer cap opening is disposed at least partially on the cylindrical outer cap surface and at least partially on the distal end of the outer cap.

14. The cap assembly of claim 11 , wherein the inner cap opening is disposed at least partially on the cylindrical inner cap surface and at least partially on the distal end of the inner cap.

15. The cap assembly of claim 11 , wherein the outer cap can be rotated about the inner cap between the open configuration and the closed configuration.

16. A dispensing cap connected to a container for dispensing the contents of the container, comprising:

an inner cap having a proximal end and a distal end, the proximal end includes a proximal opening and the distal end includes a distal opening, the inner cap includes a cylindrical inner cap surface having a stepped configuration between the proximal end and distal end, and the cylindrical inner cap surface includes a groove; and

an outer cap is positioned over and secured to the inner cap, the outer cap having a proximal end and a distal end, the proximal end includes a proximal opening and the distal end includes at least one distal opening, and the outer cap includes a cylindrical outer cap surface having a stepped configuration between the proximal end and distal end, and the distal end of the outer cap has a funnel shaped portion and the outer cap includes a plurality of locking tabs that engage the groove disposed on the surface of the inner cap, and the locking tabs disengage from the groove disposed on the surface of the inner cap when force is exerted down on the outer cap;

a seal attached to the outer cap near the at least one distal opening of the outer cap; and

a spring disposed between the inner cap and the outer cap, the spring biases the outer cap away from the inner cap such that the seal completely covers the at least one distal opening of the outer cap to place the dispensing cap in a closed configuration.

17. The dispensing cap of claim 16 , wherein the dispensing cap is in an open configuration when the outer cap is pressed against the spring such that the seal no longer completely covers the at least one distal opening of the outer cap.

Continuity (3)
Provisional Application 62123422 · Nov 18, 2014
Provisional Application 62179006 · Apr 27, 2015
Related Publication 20160137361A1 · May 19, 2016