Conductive sealant compositions

US9484123B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-9484123-B2
Application numberUS-201213608241-A
CountryUS
Kind codeB2
Filing dateSep 10, 2012
Priority dateSep 16, 2011
Publication dateNov 1, 2016
Grant dateNov 1, 2016

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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Abstract

Official abstract text for this publication.

Embodiments of the present disclosure are directed to sealant compositions including a base composition with at least one sulfur-containing polymer, a curing agent composition, and an electrically conductive filler including carbon nanotubes and stainless steel fibers. The electrically conductive filler can be in either or both of the base composition and the curing agent composition. The sealant compositions are substantially Ni-free and exhibit unexpectedly superior EMI/RFI shielding effectiveness.

First claim

Opening claim text (preview).

What is claimed is: 1. A sealant composition comprising: a base composition comprising a sulfur-containing polymer; a curing agent composition comprising a curing agent; and an electrically conductive filler in at least one of the base composition or the curing agent composition, the electrically conductive filler comprising carbon nanotubes and stainless steel fibers; wherein the stainless steel fibers have an average particle dimension larger than an average particle dimension of the carbon nanotubes wherein the stainless steel fibers have an average first dimension of about 8 μm to about 22 μm, and an average second dimension of about 330 μm to about 1 mm. 2. The sealant composition of claim 1 , wherein the electrically conductive filler is in the base composition. 3. The sealant composition of claim 1 , wherein the electrically conductive filler is in the curing agent composition. 4. The sealant composition of claim 1 , wherein the electrically conductive filler is in both the curing agent composition and the base composition. 5. The sealant composition of claim 1 , wherein the sealant composition is substantially nickel free. 6. The sealant composition of claim 1 , wherein the carbon nanotubes have an average length dimension of about 5 μm to about 30 μm, and an average diameter dimension of about 10 nm to about 30 nm. 7. The sealant composition of claim 1 , wherein a volume ratio of the carbon nanotubes to the stainless steel fibers is about 1:5 to 1:50. 8. The sealant composition of claim 1 , further comprising at least one of an adhesion promoter, a corrosion inhibitor or a plasticizer in at least one of the base composition or the curing agent composition. 9. The sealant composition of claim 1 , wherein the sulfur-containing polymer is a polysulfide or a polythioether. 10. A sealant composition comprising: a base composition comprising a sulfur-containing polymer; a curing agent composition comprising a curing agent; and an electrically conductive filler in at least one of the base composition or the curing agent composition, the electrically conductive filler comprising carbon nanotubes and stainless steel fibers; wherein the carbon nanotubes have an average particle dimension larger than an average particle dimension of the stainless steel fibers wherein the stainless steel fibers have an average first dimension of about 8 μm to about 22 μm, and an average second dimension of about 330 μm to about 1 mm. 11. The sealant composition of claim 10 , wherein the electrically conductive filler is in the base composition. 12. The sealant composition of claim 10 , wherein the electrically conductive filler is in the curing agent composition. 13. The sealant composition of claim 10 , wherein the electrically conductive filler is in both the curing agent composition and the base composition. 14. The sealant composition of claim 10 , wherein the sealant composition is substantially nickel free. 15. The sealant composition of claim 10 , wherein the carbon nanotubes have an average length dimension of about 5 μm to about 30 μm, and an average diameter dimension of about 10 nm to about 30 nm. 16. The sealant composition of claim 10 , wherein a volume ratio of the carbon nanotubes to the stainless steel fibers is about 1:5 to 1:50. 17. The sealant composition of claim 10 , further comprising at least one of an adhesion promoter, a corrosion inhibitor or a plasticizer in at least one of the base composition or the curing agent composition. 18. The sealant composition of claim 10 , wherein the sulfur-containing polymer is a polysulfide or a polythioether. 19. A sealant composition comprising: a substantially nickel-free base composition comprising a sulfur-containing polymer; a substantially nickel-free curing agent composition comprising a curing agent; and a substantially nickel-free electrically conductive filler in at least one of the base composition or the curing agent composition, the electrically conductive filler comprising carbon nanotubes and stainless steel fibers; wherein the stainless steel fibers have an average particle dimension larger than an average particle dimension of the carbon nanotubes fibers wherein the stainless steel fibers have an average first dimension of about 8 μm to about 22 μm, and an average second dimension of about 330 μm to about 1 mm. 20. The sealant composition of claim 19 , wherein the carbon nanotubes have an average length dimension of about 5 μm to about 30 μm, and an average diameter dimension of about 10 nm to about 30 nm. 21. The sealant composition of claim 19 , wherein a volume ratio of the carbon nanotubes to the stainless steel fibers is about 1:5 to 1:50. 22. A sealant composition comprising: a substantially nickel-free base composition comprising a sulfur-containing polymer; a substantially nickel-free curing agent composition comprising a curing agent; and a substantially nickel-free electrically conductive filler in at least one of the base composition or the curing agent composition, the electrically conductive filler comprising carbon nanotubes and stainless steel fibers; wherein the carbon nanotubes have an average particle dimension larger than an average particle dimension of the stainless steel fibers wherein the stainless steel fibers have an average first dimension of about 8 μm to about 22 μm, and an average second dimension of about 330 μm to about 1 mm. 23. The sealant composition of claim 22 , wherein the carbon nanotubes have an average length dimension of about 5 μm to about 30 μm, and an average diameter dimension of about 10 nm to about 30 nm. 24. The sealant composition of claim 22 , wherein a volume ratio of the carbon nanotubes to the stainless steel fibers is about 1:5 to 1:50.

Assignees

Inventors

Classifications

  • Carbon nanotubes, CNTs · CPC title

  • H01B1/22Primary

    the conductive material comprising metals or alloys · CPC title

  • H01B1/04Primary

    mainly consisting of carbon-silicon compounds, carbon or silicon · CPC title

  • H01B1/24Primary

    the conductive material comprising carbon-silicon compounds, carbon or silicon · CPC title

  • Carbon nanotubes · CPC title

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What does patent US9484123B2 cover?
Embodiments of the present disclosure are directed to sealant compositions including a base composition with at least one sulfur-containing polymer, a curing agent composition, and an electrically conductive filler including carbon nanotubes and stainless steel fibers. The electrically conductive filler can be in either or both of the base composition and the curing agent composition. The seala…
Who is the assignee on this patent?
Sharaby Ahmed, Tan Ponchivy, Prc Desoto Int Inc
What technology area does this patent fall under?
Primary CPC classification H01B1/22. Mapped technology areas include Electricity.
When was this patent published?
Publication date Tue Nov 01 2016 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).