EP2244318B1

Battery pack enclosure with controlled thermal runaway release system

Abstract

This record has no abstract on file.

EP2244318B1, drawing sheet 1
Sheet 1 of 9

Term

3.6 yearsleft in the term

Expires 13 April 2030.

  1. Priority and filed
  2. Granted
  3. Today
  4. Expires

4 claims: 2 independent, 2 dependent

  1. 1
    A battery pack thermal management system, comprising:a battery pack enclosure (101) configured to hold a plurality of batteries (303), wherein said battery pack enclosure (101) is comprised of a high temperature material, wherein said high temperature material is comprised of a metal with a melting temperature greater than 800°C;and an enclosure failure port (321) integrated into a wall (501) of said battery pack enclosure (101), wherein said enclosure failure port (321) remains closed during normal operation of said battery pack, and wherein said enclosure failure port (321) opens when an internal battery pack temperature exceeds a preset temperature indicating a battery pack thermal runaway event, and wherein said open enclosure failure port (321) provides a flow path for exhausting hot gas from within said battery pack enclosure (101);wherein said enclosure failure port (321) is comprised of a cover (503) attached to said wall (501) and covering a port (603) within said wall (501) of said battery pack enclosure (101), and a sealant (601) which attaches said cover (503) to said wall (501) of said battery pack enclosure (101), wherein said sealant (601) fails during said battery pack thermal runaway event and allows detachment of said cover (503) from said wall (501), wherein two different materials are used for said sealant, a first material (1301) along most of the cover/wall junction, and a second material (1303) along a small portion of the cover/wall junction and wherein the second material (1303) has a higher melting point than the first material (1301);or wherein said enclosure failure port (321) is comprised of a region (1503) of said wall (501) that is thinner than a surrounding portion of said wall (501) that surrounds said region (1503), wherein said region (1503) of said wall (501) fails during said battery pack thermal runaway event and allows hot gas from within said battery pack enclosure (101) to exhaust through said region (1503) and wherein the thickness is increased in a portion (1501) of the perimeter of said region (1503) relative to the remaining portion (1505) of the perimeter of said region (1503);or wherein said enclosure failure port (321) is comprised of a region (801) of said wall (501) that is surrounded by scoring (803), wherein said region (801) of said wall (501) fails during said battery pack thermal runaway event and allows hot gas from within said battery pack enclosure (101) to exhaust through said failed region, and wherein said scoring (803) has a variable depth thereby allowing said region (801) to open in a predetermined manner.
  2. 4
    The battery pack thermal management system of claims 1, 2 or 3, wherein said battery pack enclosure (101) further comprises:a first housing member (305) configured to hold said plurality of batteries (303);a second housing member (307) configured to be coupled to said first housing member (305);means (313) to secure said first housing member (305) to said second housing member (307);and a sealing gasket (309) configured to fit between a first sealing surface (311) corresponding to said first housing member (305) and a second sealing surface corresponding to said second housing member (307), said sealing gasket (309) further configured to be interposed between said first and second sealing surfaces when said first housing member (305) is secured to said second housing member (307).