IP Library Granted Patent US 11,479,408
Granted Patent B2
US 11,479,408 · App. 16/774,837 · Granted Oct 25, 2022

Storage system and associated platform feeder

Inventor: Alexander Kozlenok (London, GB)
Assignee: Arrival Limited
B65G1/10B65G1/0492B65G1/06
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Quick Facts
Patent No.
US 11,479,408
App. No.
16/774,837
Granted
Oct 25, 2022
Kind
B2
Abstract

The storage assembly has four column structures which may each include a belt mounted on an upper pulley and a lower pulley. The lower pulley of each column is driven by an electric motor, which is synchronized with a controller coupled to logistic-control software system. Shelves are coupled to the belts which are used to hold storage platforms. Parts are placed on the storage platforms which are moved from the storage assembly to robotic vehicles or storage racks.

Claims (68)

1. An automated storage system in a robotic manufacturing system, comprising:

a first column assembly comprising:

a first front column coupled to a first upper pulley and a first lower pulley;

a first front belt mounted on the first upper pulley and the first lower pulley;

a first rear column coupled to a first upper rear pulley and a first lower rear pulley;

a first rear belt mounted on the first upper rear pulley and the first lower rear pulley;

a first plurality of shelves mounted to the first front belt and the first rear belt, wherein the first plurality of shelves are in a horizontal orientation;

a second column assembly comprising:

a second front column coupled to a second upper pulley and a second lower pulley;

a second front belt mounted on the second upper pulley and the second lower pulley;

a second rear column coupled to a second upper rear pulley and a second lower rear pulley;

a second rear belt mounted on the second upper rear pulley and the second lower rear pulley;

a second plurality of shelves mounted to the second front belt and the second rear belt, wherein the second plurality of shelves are in a horizontal orientation and substantially parallel to the first plurality of shelves;

a palletiser coupled to a first vertical rail on the first front column and a second vertical rail on the second front column, wherein the palletiser moves vertically on the first vertical rail and the second vertical rail;

a plurality of storage platforms wherein each of the plurality of storage platforms is configured to be placed on one of the first plurality of shelves and one of the second plurality of shelves, wherein each of the shelves is configured to carry a side portion of a storage platform; and

robotic vehicles for transporting the storage platforms, wherein the robotic vehicles are positioned in a loading area between the first column assembly and the second column assembly to remove the storage platforms from the first plurality of shelves and the second plurality of shelves or to load the storage platforms onto the first plurality of shelves and the second plurality of shelves.

2. The automated storage system of claim 1 further comprising:

a first motor coupled to the first upper pulley or the first lower pulley; and

a second motor coupled to the second upper pulley or the second lower pulley.

3. The automated storage system of claim 2 further comprising:

a controller coupled to the first motor and the second motor for controlling and synchronizing movements of the first motor and the second motor.

4. The automated storage system of claim 1 wherein the palletiser comprises a push mechanism for pushing a storage platform from one of the first plurality of shelves and one of the second plurality of shelves.

5. The automated storage system of claim 1 wherein the palletiser comprises a scissor mechanism for moving a storage platform onto and off of one of the first plurality of shelves and one of the second plurality of shelves.

6. The automated storage system of claim 1 wherein the robotic vehicles comprise couplings for coupling to cylindrical structures extending from the storage platforms.

7. The automated storage system of claim 1 wherein a storage platform is transported by two robotic vehicles, a first robotic vehicle and a second rob otic vehicle, and the shelves are configured to remove the storage platform from the first robotic vehicle and the second robotic vehicle.

8. The automated storage system of claim 1 , further comprising:

a front horizontal track wherein front portions of the first column assembly and the second column assembly move over the front horizontal track; and

a rear horizontal track wherein rear portions of the first column assembly and the second column assembly move over the rear horizontal track.

9. The automated storage system of claim 8 , wherein

the palletiser loads and unloads the storage platforms from the first plurality of shelves and the second plurality of shelves.

10. The automated storage system of claim 9 further comprising:

a plurality of storage racks placed adjacent to the rear horizontal track wherein the plurality of storage racks includes storage shelves arranged in a vertical and a horizontal array and wherein the palletiser places the storage platforms on the storage shelves of the plurality of racks and the palletiser may remove storage platforms from the storage shelves of the plurality of racks.

11. An automated storage system in a robotic manufacturing system, comprising:

a first column assembly comprising:

a first front column coupled to a first upper pulley and a first lower pulley;

a first front belt mounted on the first upper pulley and the first lower pulley;

a first rear column coupled to a first upper rear pulley and a first lower rear pulley;

a first rear belt mounted on the first upper rear pulley and the first lower rear pulley;

a first plurality of shelves mounted to the first front belt and the first rear belt, wherein the first plurality of shelves are in a horizontal orientation;

a second column assembly comprising:

a second front column coupled to a second upper pulley and a second lower pulley;

a second front belt mounted on the second upper pulley and the second lower pulley;

a second rear column coupled to a second upper rear pulley and a second lower rear pulley;

a second rear belt mounted on the second upper rear pulley and the second lower rear pulley;

a second plurality of shelves mounted to the second front belt and the second rear belt, wherein the second plurality of shelves are in a horizontal orientation and substantially parallel to the first plurality of shelves;

a plurality of storage platforms wherein each of the plurality of storage platforms is configured to be placed on one of the first plurality of shelves and one of the second plurality of shelves, wherein each of the shelves is configured to carry a side portion of a storage platform;

robotic vehicles for transporting the storage platforms, wherein the robotic vehicles are positioned in a loading area between the first column assembly and the second column assembly to remove the storage platforms from the first plurality of shelves and the second plurality of shelves or to load the storage platforms onto the first plurality of shelves and the second plurality of shelves;

a front horizontal track wherein front portions of the first column assembly and the second column assembly move over the front horizontal track; and

a rear horizontal track wherein rear portions of the first column assembly and the second column assembly move over the rear horizontal track.

12. The automated storage system of claim 11 further comprising:

a first vertical rail on the first front column;

a second vertical rail on the second front column; and

a palletiser coupled to the first vertical rail and the second vertical rail, wherein the palletiser moves vertically on the first vertical rail and the second vertical rail and the palletiser loads and unloads the storage platforms from the first plurality of shelves and the second plurality of shelves.

13. The automated storage system of claim 12 further comprising:

a plurality of storage racks placed adjacent to the rear horizontal track wherein the plurality of storage racks includes storage shelves arranged in a vertical and a horizontal array and wherein the palletiser places the storage platforms on the storage shelves of the plurality of racks and the palletiser may remove storage platforms from the storage shelves of the plurality of racks.

14. The automated storage system of claim 11 further comprising:

a first vertical rail on the first front column;

a second vertical rail on the second front column; and

a palletiser coupled to the first vertical rail and the second vertical rail, wherein the palletiser moves vertically on the first vertical rail and the second vertical rail.

15. The automated storage system of claim 14 wherein the palletiser comprises a push mechanism for pushing a storage platform from one of the first plurality of shelves and one of the second plurality of shelves.

16. The automated storage system of claim 14 wherein the palletiser comprises a scissor mechanism for moving a storage platform onto and off of one of the first plurality of shelves and one of the second plurality of shelves.

17. The automated storage system of claim 11 further comprising:

a first motor coupled to the first upper pulley or the first lower pulley; and

a second motor coupled to the second upper pulley or the second lower pulley.

18. The automated storage system of claim 17 further comprising:

a controller coupled to the first motor and the second motor for controlling and synchronizing movements of the first motor and the second motor.

19. The automated storage system of claim 11 wherein the robotic vehicles comprise couplings for coupling to cylindrical structures extending from the storage platforms.

20. The automated storage system of claim 11 wherein a storage platform is transported by two robotic vehicles, a first robotic vehicle and a second robotic vehicle, and the shelves are configured to remove the storage platform from the first robotic vehicle and the second robotic vehicle.

Assignments (11)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 9, 2024
From: MAGNA NEW MOBILITY USA, INC.
To: MAGNA INTERNATIONAL INC.
Reel/Frame 067363/0459 →
DEED OF RELEASE Recorded Mar 14, 2024
From: GLAS TRUST CORPORATION LIMITED
To: ARRIVAL UK LTD; ARRIVAL AUTOMOTIVE UK LIMITED; ARRIVAL GERMANY GMBH
Reel/Frame 066798/0422 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 7, 2024
From: ARRIVAL UK LTD
To: MAGNA NEW MOBILITY USA, INC.
Reel/Frame 066684/0215 →
CHANGE OF NAME Recorded Mar 5, 2024
From: ARRIVAL LIMITED
To: ARRIVAL UK LTD
Reel/Frame 066655/0986 →
DEED OF RELEASE Recorded Jan 26, 2024
From: IMA FUNDING, AS SECURITY AGENT
To: ARRIVAL UK LTD (FKA ARRIVAL LIMITED)
Reel/Frame 066374/0704 →
SECURITY INTEREST Recorded Dec 1, 2023
From: ARRIVAL UK LTD
To: GLAS TRUST CORPORATION LIMITED
Reel/Frame 065740/0374 →
RELEASE OF SECURITY INTEREST Recorded Oct 5, 2023
From: IMA FUNDING, AS SECURITY AGENT
To: ARRIVAL UK LTD
Reel/Frame 065132/0727 →
SECURITY INTEREST Recorded Aug 29, 2023
From: ARRIVAL UK LTD (FORMERLY KNOWN AS ARRIVAL LIMITED)
To: IMA FUNDING, AS SECURITY AGENT
Reel/Frame 064740/0991 →
DEBENTURE Recorded Aug 29, 2023
From: ARRIVAL UK LTD (FKA ARRIVAL LIMITED)
To: IMA FUNDING, AS SECURITY AGENT
Reel/Frame 064745/0690 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 18, 2020
From: ARRIVAL ROBOTICS LIMITED
To: ARRIVAL LIMITED
Reel/Frame 054407/0146 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 28, 2020
From: KOZLENOK, ALEXANDER
To: ARRIVAL ROBOTICS LIMITED
Reel/Frame 051646/0309 →
Priority Claims (1)
GB 1901118 · Jan 28, 2019 · national
Continuity (1)
Related Publication 20200239230A1 · Jul 30, 2020