Reducing cleaning roller amplitude and speed oscillations of a cleaning robot
US-11678780-B2 · Jun 20, 2023 · US
US11930989B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11930989-B2 |
| Application number | US-202318203153-A |
| Country | US |
| Kind code | B2 |
| Filing date | May 30, 2023 |
| Priority date | May 10, 2019 |
| Publication date | Mar 19, 2024 |
| Grant date | Mar 19, 2024 |
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A roller assembly for a mobile cleaning system for cleaning a work surface can include a drive shaft, a sheath, a bushing, and a bushing shroud. The drive shaft can be rotatable about a drive axis, and the drive shaft can include a driven end and an opposite bushing end. The sheath can be supported by the drive shaft and the sheath can be rotatable with the drive shaft. The sheath can include a shell engageable with the work surface. The bushing can be located about the bushing end of the drive shaft. The bushing shroud can be connected to the bushing. The sheath and the drive shaft can be together rotatable with respect to the bushing and the bushing shroud, the bushing shroud can include an outer portion defining a first radius of curvature and a recessed portion connected to the outer portion.
Opening claim text (preview).
The invention claimed is: 1. A roller assembly for a mobile cleaning system, the roller assembly comprising: a drive shaft rotatable about a drive axis, the drive shaft including a driven end and bushing end; a sheath supported by the drive shaft and rotatable therewith to engage a floor surface, the sheath comprising: a shell extending longitudinally along the drive axis and rotatable about the drive axis; and a plurality of vanes circumferentially spaced around the shell, each vane of the plurality of vanes extending radially outward from the shell and configured to engage the floor surface; and a plurality of spokes connected to the drive shaft and connected to the sheath between two of the vanes. 2. The roller assembly of claim 1 , wherein each spoke of the plurality of spokes includes: a radially inner portion connected to the drive shaft and extending a radial distance; a radially outer portion connected to the sheath and extending radially inward; and a middle portion connected to the radially inner portion and the radially outer portion. 3. The roller assembly of claim 2 , wherein the middle portion extends a circumferential distance greater than the radial distance. 4. The roller assembly of claim 1 , wherein each spoke of the plurality of spokes forms at least a portion of a spiral between the drive shaft and the sheath. 5. The roller assembly of claim 4 , wherein the plurality of spokes includes four spokes. 6. The roller assembly of claim 4 , wherein the plurality of spokes includes six spokes. 7. The roller assembly of claim 4 , wherein the plurality of spokes includes eight spokes. 8. The roller assembly of claim 4 , wherein the plurality of spokes are evenly circumferentially spaced about the drive axis. 9. The roller assembly of claim 4 , wherein the plurality of spokes each have a uniform thickness between the drive shaft and the sheath. 10. A roller assembly for a mobile cleaning system, the roller assembly comprising: a drive shaft rotatable about a drive axis, the drive shaft including a driven end and bushing end; a sheath comprising: a shell connected to the drive shaft and rotatable therewith to engage a floor surface, the sheath extending longitudinally along the drive axis; and a plurality of vanes circumferentially spaced around the shell, each vane of the plurality of vanes extending radially outward from the shell and configured to engage the floor surface; and a plurality of spokes connected to the drive shaft and connected to the sheath. 11. The roller assembly of claim 10 , wherein each spoke of the plurality of spokes includes: a radially inner portion connected to the drive shaft and extending a radial distance; a radially outer portion connected to the sheath and extending radially inward; and a middle portion connected to the radially inner portion and the radially outer portion. 12. The roller assembly of claim 11 , wherein the middle portion extends a circumferential distance greater than the radial distance. 13. The roller assembly of claim 12 , wherein the middle portion has is curved from an axial perspective. 14. The roller assembly of claim 12 , wherein the middle portion is shaped to deflect radially under a compressive load applied to the sheath by the floor surface. 15. The roller assembly of claim 12 , wherein each spoke of the plurality of spokes connects to the sheath between two vanes of the plurality of vanes. 16. The roller assembly of claim 12 , wherein each spoke of the plurality of spokes has a uniform thickness between the drive shaft and the sheath. 17. The roller assembly of claim 12 , wherein the middle portion is connected to the radially inner portion by a first bend and wherein the middle portion is connected to the radially outer portion by a second bend. 18. A roller assembly for a mobile cleaning system, the roller assembly comprising: a drive shaft rotatable about a drive axis, the drive shaft including a driven end and bushing end; a sheath comprising: a shell connected to the drive shaft and rotatable therewith to engage a floor surface, the sheath extending longitudinally along the drive axis; and a plurality of vanes circumferentially spaced around the shell, each vane of the plurality of vanes extending radially outward from the shell and configured to engage the floor surface; and a plurality of spokes connected to the drive shaft and connected to the sheath. 19. The roller assembly of claim 18 , wherein each spoke forms at least a portion of a spiral in cross-section between the drive shaft and the sheath. 20. The roller assembly of claim 18 , wherein the plurality of spokes includes between four spokes and eight spokes.
Bearing means therefor · CPC title
Cylindrical or annular brush bodies · CPC title
power-driven {carriers} · CPC title
Rolls · CPC title
Brushes for cleaning or polishing · CPC title
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