Walk behind mower
US-2017265385-A1 · Sep 21, 2017 · US
US10183707B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10183707-B2 |
| Application number | US-201615338619-A |
| Country | US |
| Kind code | B2 |
| Filing date | Oct 31, 2016 |
| Priority date | Feb 11, 2014 |
| Publication date | Jan 22, 2019 |
| Grant date | Jan 22, 2019 |
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Official abstract text for this publication.
The disclosed technology relate to a device and system that include an outdoor power equipment power unit or cart configured to releasably couple a number of different interchangeable attachments or work implements to a common power unit, where some attachments include and/or require operator presence control, while other attachments do not include and/or require operator presence control. The outdoor power equipment power unit includes a power transfer coupling member operatively coupled to the drive shaft and configured to transfer rotational power to the associated attachment; and an operator presence actuation member operatively coupled to the operator presence control member, the operator presence actuation member configured to rotate in response to user actuation of the operator presence control member.
Opening claim text (preview).
What is claimed is: 1. A power transfer coupling device configured to couple a base power unit to an outdoor power equipment accessory, the power transfer coupling device comprising: a base; a plurality of engagement teeth extending from the base, each of the plurality of engagement teeth having a lower portion including a pair of side walls, an outer wall, and an inner wall disposed radially inward from the outer wall, and a top portion have a pair of top walls that extend from the side walls and meet at an angle. 2. The power transfer coupling device of claim 1 , wherein the angle formed by the top walls is greater at the outer wall than at the inner wall. 3. The power transfer coupling device of claim 1 , wherein the angle formed by the top walls is approximately the same at the outer wall and at the inner wall. 4. The power transfer coupling device of claim 1 , wherein the engagement teeth are positioned about a perimeter of the base. 5. The power transfer coupling device of claim 1 , wherein the engagement teeth are positioned about the perimeter of the base with approximately equal spacing between adjacent engagement teeth. 6. The power transfer coupling device of claim 1 , wherein the engagement teeth are positioned about the perimeter of the base with variable spacing between the engagement teeth. 7. The power transfer coupling device of claim 1 , wherein the base is round. 8. The power transfer coupling device of claim 1 , wherein the angle formed by the top walls is between about 90 degrees and about 50 degrees. 9. The power transfer coupling device of claim 1 , wherein the angle formed by the top walls is between about 80 degrees and about 60 degrees. 10. The power transfer coupling device of claim 1 , wherein the angle formed by the top walls varies from about 75 degrees to about 45 degrees. 11. The power transfer coupling device of claim 1 , wherein the device includes 12 engagement teeth. 12. The power transfer coupling device of claim 1 , wherein the device includes at least 6 engagement teeth. 13. The power transfer coupling device of claim 1 , wherein the device includes no more than 6 engagement teeth. 14. The power transfer coupling device of claim 1 , wherein the base is round with a diameter of about 3 inches to about 5 inches. 15. The power transfer coupling device of claim 1 , wherein the base is round with a diameter of about 4 inches to about 6 inches. 16. A dog clutch assembly configured to rotationally transfer power from a base power unit to an outdoor power equipment attachment releasably coupled to the base power unit, the dog clutch assembly comprising: a first member, the first member comprising a base and a plurality of engagement teeth extending from the base, each of the plurality of engagement teeth having a lower portion including a pair of side walls, an outer wall, and an inner wall, and a top portion have a pair of top walls that extend from the side walls and meet at an angle; and a second member, the second member comprising a base and a plurality of engagement teeth extending from the base, each of the plurality of engagement teeth having a lower portion including a pair of side walls, an outer wall, and an inner wall, and a top portion have a pair of top walls that extend from the side walls and meet at an angle; wherein the first member and second member are configured to engage one another by way of the engagement teeth associated with the first member and the second member. 17. The dog clutch assembly of claim 16 , wherein the first member and the second member are substantially identical. 18. The dog clutch assembly of claim 16 , wherein the second member includes one or more vibration damping members. 19. The dog clutch assembly of claim 18 , wherein the one or more vibration damping members are positioned within one or more recesses formed in one or more of the engagement teeth. 20. The dog clutch assembly of claim 16 , wherein the first member and the second member include the same number of engagement teeth. 21. The dog clutch assembly of claim 16 , wherein the first member and the second member have a different number of engagement teeth. 22. The dog clutch assembly of claim 16 , wherein the angle formed by the top walls of the first member is greater at the outer wall than at the inner wall. 23. The dog clutch assembly of claim 16 , wherein the angle formed by the top walls of the second member is approximately the same at the outer wall and at the inner wall. 24. A power transfer coupling device configured to couple a base power unit to an outdoor power equipment accessory, the power transfer coupling device comprising: a base; a plurality of engagement teeth extending from the base, each of the plurality of engagement teeth having a lower portion including a pair of side surface, an outer surface, and an inner surface disposed radially inward from the outer surface, and a top portion have a pair of top surfaces that extend from the side surfaces and meet at an angle. 25. The power transfer coupling device of claim 24 , wherein the angle formed by the top surfaces is greater at the outer surface than at the inner surface. 26. The power transfer coupling device of claim 24 , wherein the angle formed by the top surfaces is approximately the same at the outer surface and at the inner surface.
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