Multiplanar EMI shielding gasket and method of making
View Patent ↗A multiplanar, conductive gasket material having a foam core, a conductive web layer comprising a blended mixture of conductive fibers and nonconductive fibers, and a plurality of blended mixture fibers interspersed through the foam core. The blended mixture fibers are heat set within the gasket material.
1. A multiplanar electromagnetic interference (EMI) conductive gasket material comprising:
a foam core;
at least one conductive web layer comprising a blended mixture of a plurality of conductive and nonconductive fibers disposed on a first side of said foam core; and
a predefined quantity of said blended mixture of said plurality of conductive and nonconductive fibers extending completely through said foam core to a second side of said foam core.
2. The conductive gasket material of claim 1 further comprising a nonconductive stiffener fabric disposed between said at least one conductive web layer and said foam core.
3. The conductive gasket material of claim 2 wherein said plurality of conductive and nonconductive fibers are locked into position by said plurality of nonconductive fibers.
4. The conductive gasket material of claim 3 wherein said plurality of nonconductive fibers are made of bi-component polyester.
5. The conductive gasket material of claim 2 wherein said stiffener fabric is a web of nonconductive fibers having a blend of bi-component polyester and regular polyester fibers.
6. The conductive gasket material of claim 1 further comprising a second conductive web layer disposed on said second side of said foam core.
7. The conductive gasket material of claim 1 wherein said plurality of conductive fibers of said blended mixture of said plurality of conductive and nonconductive fibers are locked into position by said plurality of nonconductive fibers.
8. The conductive gasket material of claim 1 wherein said at least one conductive web material has a blended ratio in the range of about 1 to 1 to about 3 to 1 of said conductive fibers to said nonconductive fibers.
9. The conductive gasket material of claim 1 wherein said at least one conductive web material has a blend ratio of at least 1 to 1 of said conductive fibers to said nonconductive fibers.
10. The conductive gasket material of claim 1 wherein said plurality of nonconductive fibers are made of a bi-component polyester having a softening point of about 240° C. to about 280° C.
11. The conductive gasket material of claim 1 further comprising an aluminum foil layer disposed between said at least one conductive web layer and said foam core.