Structural composites with electromagnetic compatibility for battery enclosures
A molded composite battery enclosure containing top and bottom composite covers attached together. The joined top and bottom composite cover structures form an enclose or open area for housing a battery system of battery cells and cooling devices. The composite battery enclosures are lightweight and made of materials that can function to absorb energy and insulate the battery housing area. The composite structures contain a core material adhered and sandwiched between skin fiber layers and an electromagnetic shielding material or resin incorporated into one of the composite structures.
1 . A composite battery enclosure with electromagnetic shielding properties comprising:
a. a molded top composite cover comprising
i. a first core sandwiched between a first top composite cover skin and a second top composite cover skin;
b. a molded bottom composite cover comprising
i. a second core sandwiched between a first bottom composite cover skin and a second bottom composite cover skin,
wherein at least one of the first top composite cover skin, the second top composite cover skin, the first bottom composite cover skin and the second bottom composite cover skin comprises a electromagnetic shielding resin matrix.
2 . The composite battery enclosure of claim 1 , wherein the electromagnetic shielding resin matrix further comprises fibers, wherein the fibers are inert and not electrically conducting.
3 . The composite battery enclosure of claim 1 , wherein the conductive filler comprises metal particles.
4 . The composite battery enclosure of claim 1 , wherein the conductive filler comprises carbon black, graphite, graphene, or mixtures thereof.
5 . The composite battery enclosure of claim 1 , wherein
the at least one of the first top composite cover skin, the second top composite cover skin, the first bottom composite cover skin and the second bottom composite cover skin comprising the electromagnetic shielding resin matrix further comprises fibers, wherein the fibers are inert and not electrically conducting.
6 . The composite battery enclosure of claim 5 , wherein the electromagnetic shielding resin matrix comprises a blend of conductive fillers, the blend of conductive fillers comprising carbon black, carbon fibers, graphite, graphene, or a combination thereof.
7 . The composite battery enclosure of claim 1 , wherein at least one of the first core or the second core comprises the electromagnetic shielding resin matrix.
8 . The composite battery enclosure of claim 7 , wherein at least one of the first core or the second core is a honeycomb core material.
9 . The composite battery enclosure of claim 1 , wherein the electromagnetic shielding resin matrix comprising 0.5 to 5 weight percent of the conductive filler based on the total weight of the first top composite cover skin, the second top composite cover skin, the first bottom composite cover skin, or the second bottom composite cover skin that comprises the electromagnetic shielding resin matrix.
10 . The composite battery enclosure of claim 1 , wherein at least one of the first core or the second core comprises the electromagnetic shielding resin matrix, the electromagnetic shielding resin matrix comprising 0.5 to 10 weight percent of the conductive filler based on the total weight of the first core or the second core that comprises the electromagnetic shielding resin matrix.
11 . A composite battery enclosure with electromagnetic shielding properties comprising:
a. a molded top composite cover comprising
i. a first core sandwiched between a first top composite cover skin and a second top composite cover skin;
b. a molded bottom composite cover comprising
i. a second core sandwiched between a first bottom composite cover skin and a second bottom composite cover skin
wherein at least one of the first top composite cover skin, the second top composite cover skin, the first bottom composite cover skin and the second bottom composite cover skin comprises a layer of electromagnetic shielding material.
12 . The composite battery enclosure of claim 11 , wherein the conductive filler comprises at least one of metal particles, the metal particles being selected from the group consisting of steel, aluminum, copper, zinc, nickel, lead, silver, gold and mixtures thereof, carbon black, graphite, graphene and conductive carbon fibers.
13 . The composite battery enclosure of claim 11 , wherein at least one of the first core or the second core comprises the layer of electromagnetic shielding material.
14 . A composite battery enclosure with electromagnetic shielding properties comprising:
a. a molded top composite cover comprising
i. a first core sandwiched between a first top composite cover skin and a second top composite cover skin;
b. a molded bottom composite cover comprising
i. a second core sandwiched between a first bottom composite cover skin and a second bottom composite cover skin,
wherein the first core and the second core comprises a low density, crushable core that deforms upon impact, the first core and the second core comprising a honeycomb core;
wherein at least the first core or the second core comprises an electromagnetic shielding resin matrix, the electromagnetic shielding resin matrix comprising a conductive filler, the conductive filler comprises at least one of metal particles, the metal particles being selected from the group consisting of steel, aluminum, copper, zinc, nickel, lead, silver, gold and mixtures thereof, carbon black, graphite, and graphene.