EP3573136A2

Method for manufacturing lithium ion batteries

Abstract

A method for manufacturing a multi-core lithium ion battery wherein the multi-core lithium ion battery (100) includes a sealed enclosure (116) and a support member (120) disposed within the sealed enclosure (116). The support member (120) includes a plurality of cavities (122) and a plurality of lithium ion core members (102) which are disposed the plurality of cavities (122). The lithium ion core members (122) are directly exposed to a shared atmosphere region (128) in the enclosure (116). The battery further includes a plurality of cavity liners (124), each of which is positioned between a corresponding one of the lithium ion core members (102) and a surface of a corresponding one of the cavities (122).

EP3573136A2, drawing sheet 1
Sheet 1 of 13

Term

Projected expiry 11 October 2033.

  1. Priority
  2. Filed
  3. Published
  4. Today
  5. Projected expiry

15 claims: 10 independent, 5 dependent

  1. 1
    A method for manufacturing a multi-core lithium ion battery, comprising:providing an enclosure (116) that includes: (i) a lithium ion cell region (118) in the interior of the enclosure;(ii) a shared atmosphere region (128) in the interior of the enclosure;(iii) a support member (120) disposed within the lithium ion cell region of the enclosure, the support member (120) including a plurality of cavities (122), each cavity having a closed end and an open end (126), wherein the open end is open to the shared atmosphere region;(iv) a plurality of lithium ion core members (102), each having an anode and a cathode disposed within a corresponding one of the plurality of cavities, and a separator disposed between the anode and the cathode, wherein said anode and said cathode are directly exposed to the shared atmosphere region by way of the open end of the cavity and said anode and said cathode are surrounded by said cavity along their lengths;and(v) holes in enclosure (116) which can be filled and sealed,filling an electrolyte through the holes such that the electrolyte is introduced to the cavities and is contained within each of the cores;andsealing said holes such that the enclosure (116) is hermetically sealed after the electrolyte is introduced to the cavities.
  2. 5
    The method of any one of claims 2 to 4 further comprising capacity grading the multi-core lithium ion battery during a charge/discharge process, where the cell is fully discharged to a lower voltage, then charged to highest voltage, and subsequently discharged again.
  3. 6
    The method of any one of claims 1-5, wherein the assembly is placed in a vacuum to facilitate the filling process.
  4. 7
    The method of any one of claims 1-6, wherein the support member includes of one of aluminum foam, ceramic, and plastic.
  5. 8
    The method of any one of claims 1-7 wherein the enclosure further includes a plurality of cavity liners (124), each positioned between a corresponding one of the lithium ion core members (102) and a surface of a corresponding one of the cavities, wherein the cavity liners are formed of a plastic material, a ceramic material or a metal material that are moisture and electrolyte impermeable.
  6. 10
    The method of any one of claims 1-9, wherein the support member is in the form of a honeycomb structure.
  7. 11
    The method of any one of claims 1-10, wherein the enclosure further includes a protective sleeve (121) surrounding each of the lithium ion core members.
  8. 12
    The method of any one of claims 1-11, wherein the sealed enclosure includes a fire retardant member and the fire retardant member comprises a fire retardant mesh material affixed to the exterior of the enclosure.
  9. 13
    The method of any one of claims 1-12, wherein the enclosure further comprises, in empty spaces inside the enclosure, filler material containing fire retardant materials.
  10. 15
    The method of any one of claims 1-14, wherein the electrolyte is introduced such that each core member has the equivalent amount of electrolyte from core to core with a variation of less than 5% of the total amount of electrolyte per core.