Electrified vehicle busbar secured using a deformed area of an attachment structure
A busbar assembly includes, among other things, a busbar, a battery terminal, and a deformed area securing together the busbar and the battery terminal. A securing method includes, among other things, positioning a first portion of an attachment structure within an aperture, deforming a second portion of the attachment structure to provide a deformed area, and using the deformed area to secure a busbar relative to a battery terminal.
1. A battery assembly, comprising:
a busbar;
a battery terminal;
a deformed area securing together the busbar and the battery terminal; and
an attachment structure extending from the busbar or the battery terminal, the attachment structure including the deformed area, wherein the attachment structure includes array of fins and a collar, the array of fins and the collar circumferentially distributed about an axis.
2. The busbar assembly of claim 1 , wherein the attachment structure extends from the battery terminal through an aperture in the busbar.
3. The busbar assembly of claim 1 , wherein the array of fins are bent radially outward relative to the axis such that the array of fins are bent over the busbar to limit movement of the busbar relative to the battery terminal.
4. The busbar assembly of claim 1 , wherein the deformed area and the battery terminal are part of a singular, monolithic structure.
5. The busbar assembly of claim 1 , wherein the deformed area is secured directly to the battery terminal.
6. The busbar assembly of claim 1 , wherein the battery terminal is a first battery terminal and the deformed area is a first deformed area, and further comprising a second deformed area securing the busbar to a second battery terminal.
7. The busbar assembly of claim 6 , wherein the busbar is secured relative to the first and second terminals without a weld or a mechanical fastener.
8. The busbar assembly of claim 1 , further comprising a battery pack of an electrified vehicle having the battery terminal, the busbar, and the deformed area.
9. The busbar assembly of claim 1 , wherein the array of fins and the battery terminal are part of a single, monolithic structure.
10. The busbar assembly of claim 1 , wherein the busbar and the battery terminal are secured together without any thermal energy input.
11. The busbar assembly of claim 1 , wherein the busbar and the battery terminal are secured together without any welds.
12. The busbar assembly of claim 1 , wherein the terminal is aluminum and the busbar is copper.
13. The busbar assembly of claim 1 wherein the busbar and the battery terminal are mechanically joined.
14. The busbar assembly of claim 13 , wherein no portion of the busbar is fusion joined to the terminal.
15. The busbar assembly of claim 1 , wherein the array of fins includes a plurality of individual fins that are each circumferentially spaced a distance from one another.
16. The busbar assembly of claim 15 , wherein the individual fins are circumferentially spaced to provide a gap between each of the individual fins.
17. The busbar assembly of claim 3 , wherein the axis extends through a battery cell having the battery terminal.
18. A battery assembly, comprising:
a battery cell;
a battery terminal of the battery cell;
a busbar; and
an attachment structure including a collar and an array of fins circumferentially disposed about an axis, the collar of the attachment structure extending from the terminal away from the battery cell, the collar at least partially disposed within an aperture of the busbar, the array of fins folded against a surface of the busbar.
19. The battery assembly of claim 18 , wherein the surface of the busbar is a first surface facing in a first direction away from the battery cell, wherein the busbar includes an opposite second surface that faces in an opposite second direction toward the battery cell.
20. The busbar assembly of claim 18 , wherein the axis extends through a battery cell having the battery terminal.