IP Library › Granted Patent US 12,649,217
Granted Patent B2
US 12,649,217 · App. 18/414,335 · Granted Jun 9, 2026

Impact tool anvil with friction ring

Inventors: Mackenzie J. Nick (Theresa, WI); Jacob P. Schneider (Cedarburg, WI)
Assignee: MILWAUKEE ELECTRIC TOOL CORPORATION
B25B23/0035B25B21/02
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Quick Facts
Patent No.
US 12,649,217
App. No.
18/414,335
Granted
Jun 9, 2026
Kind
B2
Abstract

An anvil for an impact tool includes a body rotatable about a longitudinal axis, a driving end portion configured to receive a tool element over a distal end thereof, the driving end portion including a bore extending through the driving end portion of the anvil in a direction transverse to the longitudinal axis, and a groove located between the bore and the distal end. A friction ring is disposed within groove and includes a curved section extending toward the distal end.

Claims (43)

1 . An anvil for an impact tool, the anvil comprising:

a body rotatable about a longitudinal axis,

a driving end portion configured to receive a tool element over a distal end thereof, the driving end portion including;

a bore extending through the driving end portion of the anvil in a direction transverse to the longitudinal axis, and

a groove located between the bore and the distal end; and

a friction ring disposed within the groove, wherein the friction ring includes a curved section extending toward the distal end.

2 . The anvil of claim 1 , wherein the groove includes a curved portion converging toward the distal end, and wherein the friction ring follows a contour of the groove.

3 . The anvil of claim 2 , wherein the groove includes a linear portion.

4 . The anvil of claim 1 , wherein the bore extends through a first side and a second side of the driving end portion, the driving end portion including a first curved surface extending from the first side and a second curved surface extending from the second side.

5 . The anvil of claim 4 , wherein the first curved surface and the second curved surface define the curved portion of the groove.

6 . The anvil of claim 1 , wherein the bore is configured to receive a pin to selectively retain the tool element on the anvil.

7 . The anvil of claim 1 , wherein the driving end portion includes a head having a T-shape profile.

8 . The anvil of claim 1 , wherein the groove includes a linear portion, and wherein the driving end portion includes a head including an inner surface extending over the linear portion of the groove.

9 . The anvil of claim 1 , wherein the curved section is a first curved section, and wherein the friction ring further includes a second curved section opposite the first curved section.

10 . The anvil of claim 9 , wherein the friction ring further includes a first intermediate section and a second intermediate section extending between the first curved section and the second curved section, and wherein the driving end portion includes a head having an inner surface extending over the first intermediate section and the second intermediate section.

11 . The anvil of claim 1 , wherein the friction ring is made of rubber and is configured to retain the tool element on the driving end portion via friction.

12 . An impact tool comprising:

a housing;

a motor supported within the housing;

the anvil of claim 1 ; and

a drive assembly configured to convert a continuous rotational input from the motor to intermittent applications of torque to the anvil, the drive assembly including a camshaft driven by the motor and a hammer configured to reciprocate along the camshaft.

13 . An anvil for an impact tool, the anvil comprising:

a body rotatable about a longitudinal axis,

a driving end portion configured to receive a tool element over a distal end thereof, the driving end portion including

a bore extending through the driving end portion of the anvil in a direction transverse to the longitudinal axis, and

a groove located between the bore and the distal end;

wherein the groove includes a curved portion converging toward the distal end, the groove being configured to receive a friction ring such that the friction ring follows a contour of the groove.

14 . The anvil of claim 13 , wherein the curved portion of the groove follows a contour of the bore.

15 . The anvil of claim 13 , wherein the bore is configured to receive a pin to selectively retain the tool element on the anvil.

16 . The anvil of claim 15 , wherein:

the bore extends through a first side and a second side of the driving end portion, the driving end portion including a first curved surface extending from the first side and a second curved surface extending from the second side,

the first curved surface and the second curved surface define the curved portion of the groove, and

the driving end portion includes a head having a T-shaped profile.

17 . The anvil of claim 16 , wherein the groove further includes a linear portion, and wherein the head includes an inner surface extending over the linear portion of the groove.

18 . An anvil for an impact tool, the anvil comprising:

a body rotatable about a longitudinal axis,

a driving end portion configured to receive a tool element, the driving end portion including

a bore extending through a first side and a second side of the driving end portion of the anvil in a direction transverse to the longitudinal axis, the bore configured to receive a pin to retain the tool element,

a non-circular head defining a distal end of the driving end portion,

a groove wrapping around the anvil between the bore and the head; and

a friction ring disposed within the groove such that the friction ring follows a contour of the groove.

19 . The anvil of claim 18 , wherein the groove is curvilinear such that the friction ring includes a curved portion extending toward the distal end.

20 . The anvil of claim 19 , wherein the head includes an inner surface extending over a linear portion of the groove.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 17, 2024
From: NICK, MACKENZIE J.; SCHNEIDER, JACOB P.
To: MILWAUKEE ELECTRIC TOOL CORPORATION
Reel/Frame 066154/0097 →
Continuity (4)
Continuation 17721060 · Apr 14, 2022
Provisional Application 63208806 · Jun 9, 2021
Provisional Application 63175416 · Apr 15, 2021
Related Publication 20240149409A1 · May 9, 2024
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