Thermal runaway shield for shipping battery packs/cells
An apparatus for shipping or storage of Li-ion batteries comprises a sealable outer bag fabricated from heat-resistant, permeable fabric, a first flexible thermal runaway shield (“TRS”) fabricated from low-permeability film configured to line a first inside surface of the outer bag, a second flexible TRS fabricated from low-permeability film configured to line a second inside surface of the outer bag, and at least one Li-ion battery configured to be disposed between the first flexible TRS and the second TRS of the sealable outer bag to provide a sealed outer bag.
1. An apparatus for shipping or storage of Li-ion batteries comprising:
a sealable outer bag fabricated from heat-resistant, permeable fabric;
a first flexible thermal runaway shield (“TRS”) fabricated from low-permeability film configured to line a first inside surface of the outer bag;
a second flexible TRS fabricated from low-permeability film configured to line a second inside surface of the outer bag; and
at least one Li-ion battery configured to be disposed between the first flexible TRS and the second TRS of the sealable outer bag to provide a sealed outer bag.
2. The apparatus of claim 1 , wherein:
the first flexible TRS is configured to wrap around a first Li-ion battery;
the second flexible TRS is configured to wrap around a second Li-ion battery; and
the sealable outer bag is configured to wrap around the first flexible TRS and the second TRS to provide a TRS sealed battery pack.
3. The apparatus of claim 1 , wherein the sealable outer bag includes a slit on each side of the bag.
4. The apparatus of claim 1 , wherein the sealable outer bag is made of aramid.
5. The apparatus of claim 1 , wherein the flexible TRS is made of polyethylene terephthalate/aluminum foil laminated film.
6. The apparatus of claim 1 , wherein the Li-ion battery is an 18650 rechargeable battery.
7. The apparatus of claim 2 , wherein the flexible TRS includes a cavity to enclose elements for heat dissipation including water-based coolant.
8. The apparatus of claim 2 , wherein the flexible TRS includes a cavity to enclose a heat spreader for heat dissipation.
9. The apparatus of claim 2 , wherein the flexible TRS includes a cavity to enclose a carbon veil for heat dissipation.
10. The apparatus of claim 2 further comprising a rigid divider consisting of phenolic thermoset laminate substantially sized to separate the first flexible TRS from the second flexible TRS in the TRS sealed battery pack.
11. The apparatus of claim 10 , wherein the rigid divider encloses a third flexible TRS fabricated from low-permeability film substantially sized as the rigid divider.
12. The apparatus of claim 10 , wherein the rigid divider includes a third flexible TRS fabricated from low-permeability film substantially sized as the rigid divider configured to attach to one side of the rigid divider, and a fourth flexible TRS fabricated from low-permeability film substantially sized as the rigid divider configured to attach to another side of the rigid divider.
13. An apparatus for shipping or storage of Li-ion batteries comprising:
a sealable flexible thermal runaway shield (“TRS”) bag fabricated from low-permeability film configured to store at least one Li-ion battery; and
a sealable outer bag fabricated from heat-resistant, permeable fabric configured to store the sealable flexible TRS bag.
14. The apparatus of claim 13 , wherein the sealable flexible TRS bag is made of polyethylene terephthalate/aluminum foil laminated film and includes a second low-permeability film forming a cavity.
15. The apparatus of claim 13 , wherein the sealable outer bag is made of aramid.
16. The apparatus of claim 13 , wherein the sealable outer bag includes a slit on each side of the bag.
17. The apparatus of claim 13 , wherein the flexible TRS bag includes a second low-permeability film forming a cavity to enclose elements for heat dissipation including water-based coolant.
18. The apparatus of claim 13 , wherein the flexible TRS bag includes a second low-permeability film forming a cavity to enclose a heat spreader for heat dissipation.
19. The apparatus of claim 13 , wherein the flexible TRS bag includes a second low-permeability film forming a cavity to enclose a carbon veil for heat dissipation.
20. An apparatus for shipping or storage of Li-ion batteries comprising:
a sealable outer bag fabricated from heat-resistant, permeable fabric;
a first flexible thermal runaway shield (“TRS”) fabricated from low-permeability film configured to line a first inside surface of the outer bag;
a second flexible TRS fabricated from low-permeability film configured to line a second inside surface of the outer bag;
a rigid divider configured to separate an interior of the sealable outer bag into a first compartment and a second compartment;
a first sealable flexible TRS bag fabricated from low-permeability film configured to enclose at least one Li-ion battery within a first compartment of the sealable outer bag; and
a second sealable flexible TRS bag fabricated from low-permeability film configured to enclose at least one other Li-ion battery within a second compartment of the sealable outer bag.
21. The apparatus of claim 20 , wherein the sealable outer bag includes a slit on each side of the bag.
22. The apparatus of claim 20 further comprising a third flexible TRS substantially size as the rigid divider fabricated from low-permeability film, wherein the rigid divider includes a cavity configured to enclose a third flexible TRS.
23. The apparatus of claim 20 further comprising a third flexible TRS substantially sized as the rigid divider fabricated from low-permeability film and a fourth flexible TRS substantially sized as the rigid divider fabricated from low-permeability film, wherein the third flexible TRS and the fourth flexible TRS is attached to each side of the rigid divider.