Claims
- 1. A filter media formed from a multicomponent sheet, the sheet comprising
at least two enmeshed layers of a melt blown electret polymer fiber web, each having a melt processable fatty acid amide present within the web, wherein the amide is present at a concentration in the range of about 0.5% to 11% by weight.
- 2. The of filter media claim 1, further including an outermost supporting layer.
- 3. The filter media of claim 2, wherein the outermost supporting layer is polypropylene.
- 4. The filter media of claim 2, wherein the outermost supporting layer has a weight in the range of about 0.9 ounces/yd2 to about 4.0 ounces/yd2.
- 5. The filter media of claim 4, wherein the outermost supporting layer has a weight of about 1.6 ounces/yd2.
- 6. The filter media of claim 1, wherein the sheet comprises two pairs of enmeshed melt blown electret polymer fiber webs having the melt processable fatty acid amide present within each of the melt blown electret polymer fiber web layers.
- 7. The filter media of claim 6, wherein the melt blown electret polymer fiber webs are polypropylene.
- 8. The filter media of claim 6, wherein the multicomponent sheet comprises two pairs of two enmeshed layers of the melt blown electret polymer fiber web, the two pairs being joined together.
- 9. The filter media of claim 1, wherein the concentration of the fatty acid amide is about 1%.
- 10. The filter media of claim 1, wherein the fatty acid amide is selected from the group consisting of a stearamide, ethylene bis-stearamide, and mixtures thereof.
- 11. A method for manufacturing a composite filter media comprising the steps of:
melt blowing onto a collecting belt a first polymer resin having a charge stabilizing fatty acid amide incorporated therein at a concentration from about 0.5% to about 11% by weight to produce a first web of melt blown polymer fibers; treating the first melt blown web to form substantially permanent charge; melt blowing onto the first web of melt blown polymer fibers, a second polymer resin having a charge stabilizing fatty acid amide incorporated therein at a concentration from about 0.5% to about 11% by weight to produce a second web of melt blown polymer fibers; and treating the second melt blown web to form substantially permanent charge pairs.
- 12. The method of claim 11, further comprising the step of laminating the first web of melt blown polymer fibers onto a support layer.
- 13. The method of claim 11, further comprising the steps of
melt blowing onto a collecting belt a third polymer resin having a charge stabilizing fatty acid amide incorporated therein at a concentration from about 0.5% to about 11% by weight to produce a third web of melt blown polymer fibers; treating the third melt blown web to form substantially permanent charge pairs; melt blowing onto the third web of melt blown polymer fibers, a fourth polymer resin having a charge stabilizing fatty acid amide incorporated therein at a concentration from about 0.5% to about 11% by weight to produce a fourth web of melt blown polymer fibers; treating the fourth web of melt blown polymer fibers to form substantially permanent charge pairs; and contacting the second web of melt blown polymer fibers to the fourth web of melt blown polymer fibers, forming a composite including the first, second, third and fourth webs of melt blown polymer fibers.
- 14. The method of claim 13, further comprising the step of laminating the first web of melt blown polymer fibers onto a support layer.
- 15. The method of claim 11, wherein the fatty acid amide is selected form the group consisting of a stearamide, ethylene bis-stearamide and mixtures thereof.
- 16. The method of claim 11, wherein the polymer resin is a polypropylene.
- 17. The method of claim 11, wherein the steps of treating the first and second melt blown webs are performed using AC and/or DC corona discharge.
- 18. The method of claim 16, wherein the steps of treating the third and fourth melt blow webs are performed using AC and/or DC corona discharge.
- 19. A vacuum bag, comprising:
an outermost support layer; and a filter media in the form of a multicomponent sheet having a first spunbond layer contacted to the outermost support layer, at least two enmeshed layers of a melt blown electret polymer fiber web, each having a melt processable fatty acid amide present within the web, wherein the amide is present at a concentration in the range of about 0.5% to 11% by weight.
- 20. The vacuum bag of claim 19, wherein the outermost supporting layer is polypropylene.
- 21. The filter media of claim 20, wherein the multicomponent sheet comprises two pairs of two enmeshed layers of the melt blown electret polymer fiber web, the two pairs being joined together.
- 22. The filter media of claim 21, wherein the melt blown electret polymer fiber web is polypropylene.
- 23. The filter media of claim 21, wherein the weight of the fibers that form the melt blown web is in the range of 10 to 100 g/m2.
- 24. The filter media of claim 21, wherein the average fiber diameter of the fibers that form each melt blown web is in the range of about 1 to 15 micrometers.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application claims priority from U.S. Provisional Patent Application Serial No. 60/189,652, filed on Mar. 15, 2000, entitled “Melt Blown Composite HEPA Vacuum Bag ,” which is expressly incorporated by reference herein.
Provisional Applications (1)
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Number |
Date |
Country |
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60189652 |
Mar 2000 |
US |