IP Library › Granted Patent US 10,253,821
Granted Patent B2
US 10,253,821 · App. 14/620,953 · Granted Apr 9, 2019

Self-aligning driveshaft coupler

Inventor: Thomas M. Knuth (Thomson, GA)
Assignee: DEERE & COMPANY
F16D3/387B60K17/28F16D1/108A01B71/06B60Y2200/221Y10S464/901Y10S464/905
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 10,253,821
App. No.
14/620,953
Granted
Apr 9, 2019
Kind
B2
Abstract

A self-aligning driveshaft coupler includes a receiving clutch having a spiral channel around its neck, and a locking clutch assembly with a first ring shaped member and a second ring shaped member that rotate together. A locking pin extends radially from the second ring shaped member and into the spiral channel and pulls the locking clutch assembly toward the receiving clutch as the receiving clutch rotates. A plurality of drive pins extend axially from the first ring shaped member and engage the receiving clutch when the locking pin is at the end of the spiral channel.

Claims (36)

1. A self-aligning driveshaft coupler, comprising:

a receiving clutch on a tractor PTO output shaft that is rotatable and has a neck with a spiral channel around the outer circumference of the neck; the spiral channel having a first end and a second end;

a locking clutch assembly on an implement shaft with a first ring shaped member and a second ring shaped member that are splined together;

a locking pin extending radially from the second ring shaped member and into the first end of the spiral channel and pulling the locking clutch assembly axially toward the receiving clutch as the receiving clutch rotates until the locking pin is in the second end of the spiral channel; and

a plurality of drive pins extending axially from the first ring shaped member, the plurality of drive pins being spaced from the receiving clutch when the locking pin is in the first end of the spiral channel and engaging the receiving clutch when the receiving clutch rotates until the locking pin is in the second end of the spiral channel and the plurality of drive pins are in a plurality of receiving holes to prevent further rotation of the receiving clutch relative to the locking clutch assembly.

2. The self-aligning driveshaft coupler of claim 1 further comprising a base on the receiving clutch having a plurality of ramps contacted by the drive pins during rotation of the receiving clutch until each drive pin enters one of the plurality of receiving holes at the bottom of each ramp.

3. The self-aligning driveshaft coupler of claim 1 further comprising a spring urging the locking pin into the spiral channel.

4. The self-aligning driveshaft coupler of claim 3 further comprising a release button connected to the locking pin to pull the locking pin out of the spiral channel.

5. The self-aligning driveshaft coupler of claim 1 further comprising a slot at the second end of the spiral channel dimensioned for holding the locking pin in place.

6. The self-aligning driveshaft coupler of claim 1 wherein the first end of the spiral channel is wider than the second end of the spiral channel.

7. A self-aligning driveshaft coupler, comprising:

a receiving clutch on a tractor PTO output shaft having a neck with an outer circumferential surface with a spiral channel, and a base with a plurality of receiving holes; and

a locking clutch assembly on an implement yoke having a splined connection between a first ring shaped member and a second ring shaped member, a plurality of drive pins on the first ring shaped member and an inwardly and radially extending locking pin on the second ring shaped member that enters and follows the spiral channel and pulls the locking clutch assembly and the plurality of drive pins axially toward the base as the receiving clutch rotates until the plurality of drive pins contact the base before entering the receiving holes to stop further rotation of the receiving clutch relative to the locking clutch assembly.

8. The self-aligning driveshaft coupler of claim 7 further comprising at least one spring on the locking clutch assembly that urge the drive pins into the receiving holes.

9. The self-aligning driveshaft coupler of claim 7 further comprising a plurality of ramps from the base into each of the receiving holes.

10. A self-aligning driveshaft coupler, comprising:

a receiving clutch on a tractor PTO output shaft having a neck with an outer circumferential surface with a spiral channel, and a base with a plurality of receiving holes; and

a locking clutch assembly on an implement yoke having a first ring shaped member and a second ring shaped member splined to the first ring shaped member, a plurality of drive pins, and an inwardly and radially extending locking pin that enters and follows the spiral channel and pulls the locking clutch assembly and the plurality of drive pins axially toward the base as the receiving clutch rotates until the plurality of drive pins enter the receiving holes to stop further rotation of the receiving clutch relative to the locking clutch assembly.

11. The self-aligning driveshaft coupler of claim 10 further comprising a slot in the spiral channel that engages the locking pin when the drive pins enter the receiving holes.

12. The self-aligning driveshaft coupler of claim 10 further comprising a raised surface on the base that is contacted by one of the drive pins during rotation of the receiving clutch before the drive pins reach the receiving holes.

13. A self-aligning driveshaft coupler, comprising:

a locking clutch assembly on an implement yoke and having a splined connection between a first ring-shaped member and a second ring-shaped member;

a receiving clutch on a PTO output shaft;

a locking pin on the second ring-shaped member of the locking clutch assembly;

a spiral channel on the outer circumference of the receiving clutch that guides the locking pin and pulls the locking clutch assembly axially onto the receiving clutch during rotation of the receiving clutch; and

a plurality of axially extending drive pins on the first ring-shaped member of the locking clutch assembly that contact the receiving clutch as the receiving clutch rotates and enter a plurality of receiving holes to stop further rotation of the receiving clutch relative to the locking clutch assembly.

14. The self-aligning driveshaft coupler of claim 13 wherein the locking pin is spring biased into the spiral channel.

15. The self-aligning driveshaft coupler of claim 13 wherein the axially extending drive pins are spring biased into the receiving holes.

16. The self-aligning driveshaft coupler of claim 13 wherein the spiral channel has a wide first end and a narrower second end.

17. A self-aligning driveshaft coupler, comprising:

a locking clutch assembly on an implement yoke and a receiving clutch on a PTO output shaft;

a first ring shaped member and a second ring shaped member engaged together by splines on the locking clutch assembly;

a locking pin on the locking clutch assembly;

a spiral channel on the outer circumference of the receiving clutch that guides the locking pin and pulls the locking clutch assembly axially onto the receiving clutch during rotation of the receiving clutch; and

a plurality of axially extending drive pins on the locking clutch assembly that are pulled toward a plurality of receiving holes in the receiving clutch, and enter the plurality of receiving holes to stop further rotation of the receiving clutch relative to the locking clutch assembly.

18. The self-aligning driveshaft coupler of claim 17 wherein each of the receiving holes is at the bottom of a ramp.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 13, 2015
From: KNUTH, THOMAS M.
To: DEERE & COMPANY
Reel/Frame 034955/0654 →
Continuity (1)
Related Publication 20160238081A1 · Aug 18, 2016