IP Library Granted Patent US 12,695,110
Granted Patent B2
US 12,695,110 · App. 18/047,044 · Granted Jul 28, 2026

Battery assembly systems and methods

Inventor: Daniel Bayat (Reno, NV)
Assignee: Rivian IP Holdings, LLC
H01M10/0404H01M10/049
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Quick Facts
Patent No.
US 12,695,110
App. No.
18/047,044
Granted
Jul 28, 2026
Kind
B2
Abstract

A system to assemble a battery cell can include a first conveyor mechanism and a second conveyor mechanism. The first conveyor mechanism can move an electrode layer stack and a cap in a first direction. The electrode layer stack can abut the cap and extend from the cap in a second direction. The second conveyor mechanism can include a screw. The second conveyor mechanism can receive a housing, rotate the housing about the screw, and provide the housing over the electrode layer stack.

Claims (65)

1 . A system to assemble a battery cell, comprising:

a first conveyor mechanism to move an electrode layer stack and a cap in a first direction, the electrode layer stack abutting the cap and extending from the cap in a second direction; and

a second conveyor mechanism including a screw extending in the first direction, the second conveyor mechanism to receive a housing, rotate the screw to convey the housing about the screw, and provide the housing over the electrode layer stack.

2 . The system of claim 1 , comprising:

the screw of the second conveyor mechanism defining a supportive surface that corresponds to a form factor of the housing and receives the housing to move the housing in the first direction.

3 . The system of claim 1 , comprising:

the screw of the second conveyor mechanism defining a supportive surface that corresponds to a form factor of the housing;

wherein the second conveyor mechanism rotates the housing via the screw from a first position to a second position, wherein the housing receives the electrode layer stack in the second position.

4 . The system of claim 1 , comprising:

the housing including a cavity and an open end to access the cavity;

wherein the second conveyor mechanism rotates the housing from a first position to a second position, wherein the cavity extends from the open end in the second direction to receive the electrode layer stack with the housing in the second position.

5 . The system of claim 1 , comprising:

the housing including a cavity, an open end to access the cavity, and a form factor; and

the screw defining a supportive surface that corresponds to the form factor of the housing;

wherein the second conveyor mechanism rotates the housing via the screw from a first position to a second position, wherein the cavity extends from the open end in the second direction to receive the electrode layer stack with the housing in the second position.

6 . The system of claim 1 , wherein the screw is a first screw, the system comprising:

the first screw defining a supportive surface that corresponds to a form factor of the housing; and

the second conveyor mechanism including a second screw defining a second supportive surface that corresponds to the form factor of the housing, the first screw and the second screw to move the housing in the first direction.

7 . The system of claim 1 , comprising:

the screw including a screw diameter and a screw pitch; and

the second conveyor mechanism including a guide positioned around the screw, the guide defining a guide diameter that is greater than the screw diameter and a guide pitch that is greater than the screw pitch.

8 . The system of claim 1 , comprising:

the screw including a screw diameter and a screw pitch;

the second conveyor mechanism including a guide positioned around the screw, the guide defining a guide diameter that is greater than the screw diameter and a guide pitch that is greater than the screw pitch; and

the second conveyor mechanism to move the housing between the screw and the guide along a helical path in the first direction.

9 . The system of claim 1 , comprising:

the housing including a cavity, an open end to access the cavity, and a form factor;

the screw defining a supportive surface that corresponds to the form factor of the housing, a screw diameter, and a screw pitch;

the second conveyor mechanism including a guide positioned around the screw, the guide defining a guide diameter that is greater than the screw diameter and a guide pitch that is greater than the screw pitch; and

the second conveyor mechanism to move the housing between the screw and the guide along a helical path in the first direction to rotate the housing from a first position to a second position, wherein the cavity extends from the open end in the second direction to receive the electrode layer stack with the housing in the second position.

10 . The system of claim 1 , comprising:

a fixture coupled with the first conveyor mechanism, the fixture to receive the cap and the electrode layer stack and to move the cap and the electrode layer stack in the first direction via the first conveyor mechanism.

11 . The system of claim 1 , comprising:

the first conveyor mechanism including at least one screw defining a supportive surface corresponding to the cap or the electrode layer stack and configured to move the cap and the electrode layer stack in the first direction.

12 . The system of claim 1 , wherein the screw is a first screw, the system comprising:

the first screw of the second conveyor mechanism defining a first supportive surface that corresponds to a form factor of the housing and receives the housing to move the housing in the first direction at a first rate; and

the first conveyor mechanism including a second screw, the second screw including a second supportive surface corresponding to a form factor of the cap or the electrode layer stack and configured to receive the cap or the electrode layer stack to move the cap and the electrode layer stack in the first direction at the first rate.

13 . The system of claim 1 , wherein the screw is a first screw, the system comprising:

the first screw of the second conveyor mechanism including a first supportive surface that corresponds to a form factor of the housing, a first screw diameter, and a first screw pitch;

the first conveyor mechanism including a second screw, the second screw including a second supportive surface corresponding to the cap or the electrode layer stack and configured to move the cap and the electrode layer stack in the first direction at a first rate;

the second conveyor mechanism including a guide positioned around the first screw, the guide defining a guide diameter that is greater than the first screw diameter and a guide pitch that is greater than the first screw pitch; and

the second conveyor mechanism to move the housing between the screw and the guide along a helical path in the first direction at the first rate.

14 . The system of claim 1 , wherein the screw is a first screw, the system comprising:

the housing including a cavity, an open end to access the cavity, and a form factor;

the first screw of the second conveyor mechanism including a first supportive surface that corresponds to the form factor of the housing, a first screw diameter, and a first screw pitch;

the first conveyor mechanism including a second screw, the second screw including a second supportive surface corresponding to the cap or the electrode layer stack and configured to move the cap and the electrode layer stack in the first direction at a first rate;

the second conveyor mechanism including a guide positioned around the first screw, the guide defining a guide diameter that is greater than the first screw diameter and a guide pitch that is greater than the first screw pitch;

the second conveyor mechanism to move the housing between the screw and the guide along a helical path in the first direction at the first rate to rotate the housing from a first position to a second position, wherein the cavity extends from the open end in the second direction to receive the electrode layer stack with the housing in the second position; and

the second conveyor mechanism to secure the cap to the open end of the housing.

15 . A method, comprising:

moving, via a first conveyor mechanism, an electrode layer stack and a cap in a first direction, the electrode layer stack extending from the cap in a second direction;

moving, via a second conveyor mechanism, a housing from a first position to a second position, the housing including a cavity extending from an open end, the second conveyor mechanism including a screw extending in the first direction, the second conveyor mechanism to receive the housing and rotate the housing about the screw to convey the housing in the first direction and provide the housing over the electrode layer stack; and

securing, via the second conveyor mechanism, the open end to the cap with the electrode layer stack within the cavity and with the cavity extending from the open end in the second direction.

16 . The method of claim 15 , wherein the second conveyor mechanism includes the screw to move the housing from the first position to the second position along a helical path extending in the first direction.

17 . The method of claim 15 , wherein the screw is a first screw, wherein the first conveyor mechanism includes a second screw to move the electrode layer stack and the cap in the first direction at a first rate;

wherein the second conveyor mechanism includes the first screw to move the housing from the first position to the second position along a helical path extending in the first direction at the first rate.

18 . The method of claim 15 , wherein the screw is a first screw, wherein the first conveyor mechanism includes a second screw to move the electrode layer stack and the cap in the first direction at a first rate;

wherein the second conveyor mechanism includes a guide positioned around the first screw, the first screw including a first screw diameter and a first screw pitch, the guide including a guide diameter that is greater than the first screw diameter and a guide pitch that is greater than the first screw pitch, the second conveyor mechanism to move the housing from the first position to the second position along a helical path extending in the first direction at the first rate between the first screw and the guide.

19 . An electric vehicle, comprising:

a battery cell comprising an electrode layer stack within a housing, the battery cell produced by:

moving, via a first conveyor mechanism, the electrode layer stack and a cap in a first direction, the electrode layer stack extending from the cap in a second direction;

moving, via a second conveyor mechanism, the housing from a first position to a second position, the housing including a cavity extending from an open end, the second conveyor mechanism including a screw extending in the first direction, the second conveyor mechanism to receive the housing and rotate the housing about the screw to convey the housing in the first direction and to provide the housing over the electrode layer stack; and

securing, via the second conveyor mechanism, the open end to the cap with the electrode layer stack within the cavity and with the cavity extending from the open end in the second direction.

20 . The electric vehicle of claim 19 , wherein the screw is a first screw, wherein the first conveyor mechanism includes a second screw to move the electrode layer stack and the cap in the first direction at a first rate;

wherein the second conveyor mechanism includes a guide positioned around the first screw, the first screw including a first screw diameter and a first screw pitch, the guide including a guide diameter that is greater than the first screw diameter and a guide pitch that is greater than the first screw pitch, the second conveyor mechanism to move the housing from the first position to the second position along a helical path extending in the first direction at the first rate between the first screw and the guide.