IP Library › Granted Patent US 12,368,170
Granted Patent B2
US 12,368,170 · App. 18/123,175 · Granted Jul 22, 2025

Collapsible storage container for liquid reserve batteries

Inventor: Jahangir S Rastegar (Stony Brook, NY)
Assignee: OMNITEK PARTNERS LLC
H01M6/38H01M50/463H01M50/60H01M50/636H01M50/70
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 12,368,170
App. No.
18/123,175
Granted
Jul 22, 2025
Kind
B2
Abstract

A collapsible storage unit including: a plurality of triangular sidewalls at least partially defining a cavity for storing a liquid electrolyte therein; wherein the plurality of triangular sidewalls are configured to collapse in a longitudinal direction about a hinge disposed between adjacent sides of each of the plurality of triangular sidewalls.

Claims (45)

1. A collapsible storage unit comprising:

a plurality of triangular sidewalls at least partially defining a cavity for storing a liquid electrolyte therein;

wherein the plurality of triangular sidewalls are configured to collapse in a longitudinal direction about a hinge disposed between adjacent sides of each of the plurality of triangular sidewalls; and

the plurality of triangular sidewalls are integrally formed of a metal.

2. The collapsible storage unit of claim 1 , wherein the collapsible storage unit having a top plate and a bottom plate between which the plurality of triangular sidewalls extend upon collapse of the collapsible storage unit, the top plate and the bottom plate do not rotate relative to each other.

3. The collapsible storage unit of claim 1 , further comprising a pyrotechnic material disposed adjacent the collapsible storage unit such that initiation of the pyrotechnic material provides pressure to collapse the collapsible storage unit to heat and force the liquid electrolyte through an outlet from the cavity and into gaps.

4. The collapsible storage unit of claim 1 , wherein the collapsible storage unit has a top plate and a bottom plate between which the plurality of triangular sidewalls extend.

5. The collapsible storage unit of claim 2 , wherein one of the top plate and the bottom plate has an outlet for ejecting the liquid electrolyte into battery cell.

6. The collapsible storage unit of claim 5 , wherein the outlet is covered by a diaphragm.

7. The collapsible storage unit of claim 6 , wherein the diaphragm has first portions weaker than second portions to facilitate breakage of the diaphragm along the first portions.

8. A collapsible storage unit comprising:

a plurality of triangular sidewalls at least partially defining a cavity for storing a liquid electrolyte therein;

wherein the plurality of triangular sidewalls are configured to collapse in a longitudinal direction about a hinge disposed between adjacent sides of each of the plurality of triangular sidewalls;

the collapsible storage unit having a top plate and a bottom plate between which the plurality of triangular sidewalls extend upon collapse of the collapsible storage unit, the top plate and the bottom plate do not rotate relative to each other;

one of the top plate and the bottom plate has an outlet for ejecting the liquid electrolyte into battery cell; and

the outlet is covered by a diaphragm; and

further comprising a puncture member movable with collapse of the collapsible storage unit to puncture the diaphragm.

9. The collapsible storage unit of claim 1 , further comprising an initiation device configured to initiate collapse of the collapsible storage unit.

10. The collapsible storage unit of claim 9 , wherein the initiation device initiates the collapse of the collapsible storage unit upon an acceleration event having an acceleration greater than a predetermined magnitude and duration.

11. The collapsible storage unit of claim 9 , wherein the initiation device initiates the collapse of the collapsible storage unit upon pulling of a lanyard attached to the initiation device.

12. A collapsible storage unit comprising:

a plurality of triangular sidewalls at least partially defining a cavity for storing a liquid electrolyte therein;

wherein the plurality of triangular sidewalls are configured to collapse in a longitudinal direction about a hinge disposed between adjacent sides of each of the plurality of triangular sidewalls;

the collapsible storage unit having a top plate and a bottom plate between which the plurality of triangular sidewalls extend upon collapse of the collapsible storage unit, the top plate and the bottom plate do not rotate relative to each other; and

one of the top plate and the bottom plate has an outlet for ejecting the liquid electrolyte into battery cell; and

further comprising a base plate having an opening in fluid communication with the collapsible cavity, the base plate having two or more channels in fluid communication with the opening, each of the channels having an outlet in fluid communication with the battery cell.

13. The collapsible storage unit of claim 12 , wherein the base plate comprises the one of the top plate or the bottom plate having the outlet and the opening comprises the outlet.

14. The collapsible storage unit of claim 3 , wherein at least a portion of the pyrotechnic material is disposed adjacent to two or more channels.

15. The collapsible storage unit of claim 9 , further comprising one or more springs positioned such that, upon initiation, apply a force to collapse the collapsible storage unit.

16. The collapsible storage unit of claim 1 , wherein the hinges joining the adjacent sides of each of the plurality of triangular sidewalls are formed having a thickness thinner than other portions of the plurality of triangular sidewalls.

17. A collapsible storage unit comprising:

a plurality of first triangular sidewalls at least partially defining a cavity for storing a liquid electrolyte therein; and

a plurality of second triangular sidewalls at least partially defining the cavity;

wherein the plurality of first triangular sidewalls are stacked on the plurality of second triangular sidewalls in a longitudinal direction and the plurality of first triangular sidewalls are configured to collapse in the longitudinal direction about a first hinge disposed between adjacent sides of each of the plurality of first triangular sidewalls and the plurality of second triangular sidewalls are configured to collapse in the longitudinal direction about a second hinge disposed between adjacent sides of each of the plurality of second triangular sidewalls; and

the plurality of first and second triangular sidewalls are integrally formed of a metal.

18. The collapsible storage unit of claim 17 , wherein

the collapsible storage unit having a top plate and a bottom plate between which the plurality of first and second triangular sidewalls extend upon collapse of the collapsible storage unit;

one of the top plate and the bottom plate has an outlet for ejecting the liquid electrolyte into battery cell; and

the outlet is covered by a diaphragm; and

further comprising a puncture member movable with collapse of the collapsible storage unit to puncture the diaphragm.

19. The collapsible storage unit of claim 17 , wherein the collapsible storage unit having a top plate and a bottom plate between which the plurality of first and second triangular sidewalls extend upon collapse of the collapsible storage unit, the top plate and the bottom plate do not rotate relative to each other.

20. The collapsible storage unit of claim 17 , wherein

the collapsible storage unit having a top plate and a bottom plate between which the plurality of first and second triangular sidewalls extend upon collapse of the collapsible storage unit;

one of the top plate and the bottom plate has an outlet for ejecting the liquid electrolyte into battery cell; and

further comprising a base plate having an opening in fluid communication with the collapsible cavity, the base plate having two or more channels in fluid communication with the opening, each of the channels having an outlet in fluid communication with the battery cell.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 22, 2025
From: RASTEGAR, JAHANGIR S.
To: OMNITEK PARTNERS LLC
Reel/Frame 071475/0236 →
Continuity (4)
Continuation 17736880 · May 4, 2022
Continuation 17095660 · Nov 11, 2020
Provisional Application 62933596 · Nov 11, 2019
Related Publication 20230231149A1 · Jul 20, 2023
References Cited (5)
US 2824164A · Bauman · 1958 [cited by examiner]
US 5894960A · Rodden, Jr. · 1999 [cited by examiner]
US 20110218499A1 · Cahen · 2011 [cited by examiner]
US 20130168391A1 · Hunter · 2013 [cited by examiner]
US 20170062778A1 · Mille · 2017 [cited by examiner]