IP Library › Granted Patent US 12,202,115
Granted Patent B2
US 12,202,115 · App. 17/939,031 · Granted Jan 21, 2025

Rotary power tool including transmission housing bushing

Inventors: Ryan A. Dedrickson (Sussex, WI); Ian Allen Duncan (Milwaukee, WI); Tian Yu (Dongguan, CN); Jian Wei Li (Dongguan, CN)
Assignee: MILWAUKEE ELECTRIC TOOL CORPORATION
B25D16/006B25D11/106B25D16/003B25B21/026B25D17/04B25D2216/0023B25D2216/0038B25D2216/0084B25D2250/005B25D2250/095B25D2250/121B25D2250/165B25D2250/221B25D2250/265B25D2250/321B25D2250/331B25D2250/335
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Quick Facts
Patent No.
US 12,202,115
App. No.
17/939,031
Granted
Jan 21, 2025
Kind
B2
Abstract

A rotary power tool comprises a drive mechanism including an electric motor and a transmission, a housing enclosing at least a portion of the drive mechanism, a spindle rotatable in response to receiving torque from the drive mechanism, a first ratchet coupled for co-rotation with the spindle, a second ratchet rotationally fixed to the housing, a sleeve bushing supported by the housing, and a bearing rotatably supporting the spindle. The spindle has an outer race. And, the outer race of the bearing moves along the sleeve bushing during reciprocation of the spindle when the first ratchet and second ratchet are engaged.

Claims (52)

1. A rotary power tool comprising:

a drive mechanism including an electric motor and a transmission;

a housing enclosing at least a portion of the drive mechanism;

a spindle rotatable in response to receiving torque from the drive mechanism;

a first ratchet coupled for co-rotation with the spindle;

a second ratchet rotationally fixed to the housing;

a sleeve bushing supported by the housing; and

a bearing rotatably supporting the spindle, the bearing having an outer race,

wherein the spindle is movable relative the housing in response to contact with a workpiece, causing the first and second ratchets to engage and the spindle to reciprocate while rotating,

wherein the outer race of the bearing moves along the sleeve bushing during reciprocation of the spindle when the first ratchet and second ratchet are engaged, and

wherein the sleeve bushing is formed of a first material and the housing is formed of a second material that is softer than the first material.

2. The rotary power tool of claim 1 , wherein the first ratchet and the bearing are set within a cavity defined within the housing.

3. The rotary power tool of claim 1 , wherein the housing includes an annular portion, wherein the sleeve bushing is supported by the annular portion, and wherein the spindle is movable relative to the annular portion.

4. The rotary power tool of claim 1 , wherein the housing is at least partially formed of aluminum.

5. The rotary power tool of claim 1 , wherein the sleeve bushing is press fit with the housing.

6. The rotary power tool of claim 1 , further comprising a hammer lockout mechanism adjustable between a first mode and a second mode, the hammer lockout mechanism including an aperture in the housing and a detent radially movable within the aperture between a locking position and an unlocking position,

wherein, in the first mode, the detent is moveable from the locking position to the unlocking position, such that the spindle is movable relative to the housing in response to contact with a workpiece, causing the first and second ratchets to engage, and

wherein, in the second mode, the detent is prevented from moving from the locking position to the unlocking position, such that the spindle is blocked by the detent from moving relative to the housing in response to contact with a workpiece and a gap is maintained between the first and second ratchets.

7. The rotary power tool of claim 6 , wherein at least a portion of the sleeve bushing is arranged in front of the aperture, such that no portion of the sleeve bushing intersects the aperture.

8. A rotary power tool comprising:

a drive mechanism including an electric motor and a transmission;

a housing enclosing at least a portion of the drive mechanism;

a spindle rotatable in response to receiving torque from the drive mechanism;

a first ratchet coupled for co-rotation with the spindle;

a second ratchet rotationally fixed to the housing;

a sleeve bushing supported by the housing; and

a bearing rotatably supporting the spindle, the bearing having an outer race,

wherein the spindle is movable relative the housing in response to contact with a workpiece, causing the first and second ratchets to engage and the spindle to reciprocate while rotating,

wherein the outer race of the bearing moves along the sleeve bushing during reciprocation of the spindle when the first ratchet and second ratchet are engaged, and

wherein the sleeve bushing is shrink fit with the housing.

9. A rotary power tool comprising:

a drive mechanism including an electric motor and a transmission;

a housing enclosing at least a portion of the drive mechanism, the housing including an annular portion;

a spindle rotatable in response to receiving torque from the drive mechanism;

a first ratchet coupled for co-rotation with the spindle;

a second ratchet rotationally fixed to the housing;

a sleeve bushing disposed between the spindle and the housing; and

a bearing rotatably supporting the spindle,

wherein the spindle is movable relative to the annular portion of the housing in response to contact with a workpiece, causing the first and second ratchets to engage and the spindle to reciprocate while rotating,

wherein the bearing moves along the sleeve bushing during reciprocation of the spindle when the first ratchet and second ratchet are engaged, and

wherein the sleeve bushing is formed of a first material and the housing is formed of a second material that is softer than the first material.

10. The rotary power tool of claim 9 , wherein the sleeve bushing is formed of steel.

11. The rotary power tool of claim 10 , wherein the housing is at least partially formed of aluminum.

12. The rotary power tool of claim 9 , wherein the first ratchet and the bearing are set within a cavity defined within the annular portion of the housing.

13. The rotary power tool of claim 9 , wherein the sleeve bushing is press fit within the annular portion of the housing.

14. The rotary power tool of claim 9 , further comprising a hammer lockout mechanism adjustable between a first mode and a second mode, the hammer lockout mechanism including an aperture in the housing and a detent radially movable within the aperture between a locking position and an unlocking position,

wherein, in the first mode, the detent is moveable from the locking position to the unlocking position such that the spindle is movable relative to the housing in response to contact with a workpiece, causing the first and second ratchets to engage, and

wherein, in the second mode, the detent is prevented from moving from the locking position to the unlocking position, such that the spindle is blocked by the detent from moving relative to the housing in response to contact with a workpiece and a gap is maintained between the first and second ratchets.

15. The rotary power tool of claim 14 , wherein at least a portion of the sleeve bushing is arranged in front of the aperture, such that no portion of the sleeve bushing intersects the aperture.

16. The rotary power tool of claim 9 , wherein an outer race of the bearing moves along the sleeve bushing during reciprocation of the spindle.

17. The rotary power tool of claim 9 , wherein an inner race of the bearing is coupled to the spindle.

18. The rotary power tool of claim 9 , wherein the bearing rotatably supports the spindle at a position further from the electric motor than the first ratchet.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 28, 2022
From: DEDRICKSON, RYAN A.; DUNCAN, IAN ALLEN; YU, TIAN; LI, JIAN WEI
To: MILWAUKEE ELECTRIC TOOL CORPORATION
Reel/Frame 061245/0943 →
Continuity (4)
Continuation 17477762 · Sep 17, 2021
Continuation 16360585 · Mar 21, 2019
Provisional Application 62650741 · Mar 30, 2018
Related Publication 20230017720A1 · Jan 19, 2023
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