Claims
- 1. A breathable microporous membrane product formed into a net-shaped layer from the process comprising the steps of:
forming a polymeric solution; and, electrostatically spinning microporous membranes of polymeric fibers from the solution into a microporous membrane product, wherein the average fiber size ranges from about 0.1 microns to about 1 micron and the average pore size ranges from about 0.4 to about 3.0 microns.
- 2. The membrane structure product of claim 1, wherein the product moisture vapor diffusion resistance ranges from about 40 s/m to about 250 s/m.
- 3. The membrane structure product of claim 1, wherein the product vapor diffusion resistance ranges from about 60 s/m to about 150 s/m.
- 4. The microporous membrane product of claim 1, wherein the product elasticity ranges from about 200% to about 700%.
- 5. The microporous membrane product of claim 4, wherein the product elasticity ranges from about 300% to about 500%.
- 6. The microporous membrane product of claim 1, wherein the product tensile strength ranges from about 100 psi to about 5,000 psi.
- 7. The microporous membrane product of claim 1, wherein the product airflow resistance ranges from about 3 times 108 m−1 to about 1010 m−1.
- 8. The microporous membrane product of claim 1, wherein the product geometry conforms to a desired shape.
- 9. The microporous membrane product of claim 8, wherein the product geometry conforms to a desired shape in a one-step direct spray application.
- 10. The microporous membrane product of claim 9, further comprising at least a second direct spray application capable of varying thickness and composition from region to region.
- 11. The microporous membrane product of claim 1, further comprises additive inclusion within the product.
- 12. The microporous membrane product of claim 11, wherein the additives are selected from the group consisting of solid additives, reactive compounds and fusible components.
- 13. The microporous membrane product of claim 12, wherein the reactive compounds are selected from the group consisting of bactericide, decontamination reaction catalyst, enzymes, crosslinking agents, sorptive ingredients and short wicking fibers.
- 14. The microporous membrane product of claim 12, wherein the reactive compounds are encapsulated with the forming fibers.
- 15. The microporous membrane product of claim 12, wherein the reactive compounds are entangled with the forming fibers and embedded in the microporous membranes.
- 16. The microporous membrane product of claim 1, wherein the product composition and thickness are varied to build different properties within different areas of the structure.
- 17. The microporous membrane product of claim 1, wherein the product comprises an article of manufacture selected from the group consisting of clothing, tents, gloves, socks, and boots.
- 18. The microporous membrane product of claim 1, wherein the product comprises a filtration medium.
- 19. The microporous membrane product of claim 1, wherein the product comprises a controlled flow airbag.
- 20. A method for forming a microporous membrane net-shape structure comprising the steps of:
forming a polymeric solution; and, electrostatically spinning polymeric fibers from the solution into a microporous membrane structure.
- 21. The method of claim 18, wherein the step of electrostatically spinning fibers incorporates inclusion products within the structure selected from the group consisting of solid additives, reactive compounds and fusible components.
- 22. A microporous membrane net-shape structure comprising an average fiber size ranging from about 0.1 microns to about 1 micron and an average pore size ranging from about 0.4 to about 3.0 microns.
- 23. The microporous membrane structure of claim 21, further comprising:
a moisture vapor diffusion resistance of from about 40 m/s to about 200 m/s; an elasticity of from about 200% to about 700%; an airflow resistance ranging from about 3 times 108 m−1 to about 1010 m−1; and, a tensile strength of from about 100 to about 5,000 psi.
STATEMENT REGARDING FEDERALLY SPONSORED RESEARCH OR DEVELOPMENT
[0001] The invention described herein may be manufactured and used by or for the government of the United States of America for governmental purposes without the payment of any royalties thereon or therefor.