IP Library › Granted Patent US 12,415,254
Granted Patent B2
US 12,415,254 · App. 18/239,403 · Granted Sep 16, 2025

Impact tool with front lubrication assembly

Inventors: Edward C. Eardley (Easton, PA); Joshua O. Johnson (Allentown, PA)
Assignee: Ingersoll-Rand Industrial U.S., Inc.
B25B21/02B25D17/26
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Quick Facts
Patent No.
US 12,415,254
App. No.
18/239,403
Granted
Sep 16, 2025
Kind
B2
Abstract

An impact tool having a front lubrication assembly. The front lubrication assembly includes a lubrication port, a lubrication passage and at least one lubrication channel that directs a lubricant injected from a front end of the impact tool directly into an impact assembly of the impact tool. The lubrication passage extends through an anvil assembly of the impact tool, along an axis of rotation of the impact drive mechanism. The at least one lubrication channel extends away from the lubrication passage and delivers the lubricant to at the impact mechanism. The front lubrication assembly is accessed on a front end of the impact tool. The anvil assembly may be a split anvil assembly having an external anvil portion and an external anvil portion.

Claims (39)

1. An impact tool comprising:

a housing having a front end and a rear end, the housing configured to house a drive mechanism;

an impact assembly configured to be driven by the drive mechanism about an axis extending from the front end to the rear end, the impact assembly including:

a hammer having at least one hammer jaw; and

a split anvil assembly including:

an internal anvil portion fully disposed inside the housing, the internal anvil portion defining at least one anvil jaw and an internal anvil portion cavity, the at least one anvil jaw configured to periodically engage with the at least one hammer jaw to rotate the internal anvil portion about the axis; and

an external anvil portion configured to be removably received within the internal anvil portion cavity and to engage with the internal anvil portion so that the external anvil portion rotates with the internal anvil portion,

wherein the anvil assembly further includes a front lubrication assembly having a lubrication passage that extends longitudinally along the axis, the lubrication passage configured to direct a lubricant from a lubrication port to the impact assembly.

2. The impact tool of claim 1 , wherein the anvil assembly further includes at least one lubrication channel extending away from the lubrication passage, the at least one lubrication channel having a channel outlet located adjacent to at least one of the at least one anvil jaw or the at least one hammer jaw of the impact tool.

3. The impact tool of claim 2 , wherein the at least one lubrication channel extends radially away from the lubrication passage.

4. The impact tool of claim 1 , wherein the lubrication port is disposed within the internal anvil portion cavity.

5. The impact tool of claim 1 , wherein the impact assembly further includes a cam shaft and an impact bearing, wherein the cam shaft is coupled to the hammer through the impact bearing, wherein the cam shaft includes at least one cam shaft channel extending away from a cam shaft passage, the at least one cam shaft channel having a cam shaft channel outlet adjacent to the impact bearing, and wherein the cam shaft channel outlet is configured to deliver lubricant to the impact bearing.

6. The impact tool of claim 5 , wherein motion of the hammer with respect to the cam shaft directs lubricant to at least one of the at least one anvil jaw or the at least one hammer jaw of the impact tool.

7. An impact tool comprising:

a housing having a front end and a rear end, the housing configured to house a drive mechanism;

an impact assembly configured to be driven by the drive mechanism about an axis extending from the front end to the rear end, the impact assembly including:

a hammer having at least one hammer jaw; and

an anvil assembly having at least one anvil jaw and an output shaft, the at least one anvil jaw configured to periodically engage with the at least one hammer jaw to rotate the anvil assembly about the axis;

wherein the anvil assembly further includes a front lubrication assembly having a lubrication passage that extends longitudinally along the axis, the lubrication passage configured to direct a lubricant from a lubrication port to the impact assembly; and

wherein the anvil assembly comprises:

an internal anvil portion fully disposed inside the housing, the internal anvil portion defining an internal anvil portion cavity; and

an external anvil portion configured to be removably received within the internal anvil portion cavity, the external anvil portion configured to be partially received within the housing and to engage with the internal anvil portion so that the external anvil portion rotates with the internal anvil portion.

8. The impact tool of claim 7 , wherein the anvil assembly further includes at least one lubrication channel extending away from the lubrication passage, the at least one lubrication channel having a channel outlet located adjacent to at least one of the at least one anvil jaw or the at least one hammer jaw of the impact tool.

9. The impact tool of claim 8 wherein the at least one lubrication channel extends perpendicularly away from the lubrication passage.

10. The impact tool of claim 8 , wherein the lubrication port is disposed within the internal anvil portion cavity.

11. The impact tool of claim 7 , wherein the impact assembly further includes a cam shaft and an impact bearing, wherein the cam shaft is coupled to the hammer through the impact bearing, wherein the cam shaft includes at least one cam shaft channel extending away from a cam shaft passage, the at least one cam shaft channel having a cam shaft channel outlet adjacent to the impact bearing, and wherein the cam shaft channel outlet is configured to deliver lubricant to the impact bearing.

12. The impact tool of claim 11 , wherein motion of the hammer with respect to the cam shaft directs lubricant to at least one of the at least one anvil jaw or the at least one hammer jaw of the impact tool.

13. An impact tool comprising:

a housing having a front end and a rear end, the housing configured to house a drive mechanism;

an impact assembly configured to be driven by the drive mechanism about an axis extending from the front end to the rear end, the impact assembly including:

a hammer having at least one hammer jaw; and

a split anvil assembly including:

an internal anvil portion disposed inside the housing, the internal anvil portion defining at least one anvil jaw and an internal anvil portion cavity, the at least one anvil jaw configured to periodically engage with the at least one hammer jaw to rotate the internal anvil portion about the axis; and

an external anvil portion configured to be removably received within the internal anvil portion cavity and to engage with the internal anvil portion so that the external anvil portion rotates with the internal anvil portion,

wherein the anvil assembly further includes a front lubrication assembly having a lubrication passage disposed within the internal anvil portion cavity, the front lubrication assembly extending longitudinally along the axis, the lubrication passage configured to direct a lubricant from a lubrication port to the impact assembly, the lubrication port being disposed within the internal anvil portion cavity.

14. The impact tool of claim 13 , wherein the anvil assembly further includes at least one lubrication channel extending away from the lubrication passage, the at least one lubrication channel having a channel outlet located adjacent to at least one of the at least one anvil jaw or the at least one hammer jaw of the impact tool.

15. The impact tool of claim 14 , wherein the at least one lubrication channel extends perpendicularly away from the lubrication passage.

16. The impact tool of claim 13 , wherein the impact assembly further includes a cam shaft and an impact bearing, wherein the cam shaft is coupled to the hammer through the impact bearing, wherein the cam shaft includes at least one cam shaft channel extending away from a cam shaft passage, the at least one cam shaft channel having a cam shaft channel outlet adjacent to the impact bearing, and wherein the cam shaft channel outlet is configured to deliver lubricant to the impact bearing.

17. The impact tool of claim 16 , wherein motion of the hammer with respect to the cam shaft directs lubricant to at least one of the at least one anvil jaw or the at least one hammer jaw of the impact tool.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 29, 2023
From: EARDLEY, EDWARD C.; JOHNSON, JOSHUA O.
To: INGERSOLL-RAND INDUSTRIAL U.S., INC.
Reel/Frame 064739/0677 →
Continuity (2)
Provisional Application 63404063 · Sep 6, 2022
Related Publication 20240075595A1 · Mar 7, 2024
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