Batteries and battery systems
View Patent ↗A non-hermetically sealed, electrochemical power source, includes a first electrode, a second electrode, a separator between the first electrode and the second electrode, and a membrane in fluid communication with an environment external to the battery. The second electrode is between the separator and the membrane. The membrane includes a first portion having a different property, e.g., density, porosity, mass transport resistance, thickness, or gas permeability, than a second portion of the membrane. Methods of designing an electrochemical cell cartridge are also disclosed.
1. A non-hermetically sealed, electrochemical power source, comprising:
a first electrode;
a second electrode;
a separator between the first electrode and the second electrode;
a membrane in fluid communication with an environment external to the power source, the second electrode being between the separator and the membrane; and
a container having an air access opening,
wherein the membrane comprises a first portion having a higher density than a second portion of the membrane, the first portion being adjacent to the air access opening and having an area greater than the area of the air access opening,
wherein the second portion is farther from the air access opening than the first portion is from the air access opening; and
wherein the first portion is compressed relative to the second portion.
2. The power source of claim 1 , wherein the first portion is aligned with the air access opening.
3. The power source of claim 1 , wherein the membrane is permeable to a gas.
4. The power source of claim 1 , wherein the first and second portions are integrally formed as one component.
5. The power source of claim 1 , wherein the membrane comprises polytetrafluoroethylene.
6. The power source of claim 1 , wherein the power source comprises a metal-air cell.
7. The power source of claim 1 , wherein the container has a plurality of air access openings, and wherein the membrane has uniform mass transport resistance to a gas flowing through the air access openings.
8. The power source of claim 1 , wherein the air access opening is circular in shape.
9. The power source of claim 1 , wherein the air access opening is non-circular in shape.
10. The power source of claim 9 , wherein the air access opening is in the form of a slit.
11. The power source of claim 9 , wherein the air access opening is oval in shape.