IP Library › Granted Patent US 12,234,613
Granted Patent B2
US 12,234,613 · App. 18/365,333 · Granted Feb 25, 2025

Plate compactor

Inventors: Evan M. Glanzer (Milwaukee, WI); John E. Koller (Waukesha, WI)
Assignee: MILWAUKEE ELECTRIC TOOL CORPORATION
E01C19/38E01C19/285E02D3/074H02K7/061
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Quick Facts
Patent No.
US 12,234,613
App. No.
18/365,333
Granted
Feb 25, 2025
Kind
B2
Abstract

A compactor including a plate, an electric motor coupled to the plate and including a motor shaft configured to rotate about a rotational axis, and an exciter coupled to the plate and configured to vibrate the plate in response to receiving torque from the electric motor. The exciter includes an exciter shaft and an eccentric mass attached thereto. The compactor additionally includes a battery configured to provide power to the electric motor, and a gear train to transfer torque from the motor shaft to the exciter shaft. The gear train permits the exciter to be driven at a rotational speed that is faster or slower than a rotational speed of the electric motor.

Claims (32)

1. A compactor comprising:

a plate;

an electric motor coupled to the plate and including a motor shaft configured to rotate about a rotational axis;

an exciter coupled to the plate and configured to vibrate the plate in response to receiving torque from the electric motor, wherein the exciter includes an exciter shaft and an eccentric mass attached thereto, wherein the exciter shaft is configured to receive torque from the motor shaft to rotate the eccentric mass to impart vibration to the plate, and wherein the exciter shaft is parallel with the rotational axis;

a battery configured to provide power to the electric motor; and

a gear train to transfer torque from the motor shaft to the exciter shaft, wherein the gear train permits the exciter to be driven at a rotational speed that is faster than, slower than, or a same speed as a rotational speed of the electric motor.

2. The compactor of claim 1 , further comprising:

control electronics configured to control operation of the electric motor; and

a vibration isolator coupling the battery and the control electronics to the plate.

3. The compactor of claim 2 , further comprising a platform upon which the battery is supported, wherein the platform is coupled to the plate via the vibration isolator.

4. The compactor of claim 3 , wherein the platform is configured as a housing, and wherein the control electronics are located within the housing.

5. A compactor comprising:

a plate;

an electric motor coupled to the plate and including a motor shaft configured to rotate about a rotational axis;

an exciter coupled to the plate and configured to vibrate the plate in response to receiving torque from the electric motor, wherein the exciter includes an exciter shaft parallel with the rotational axis and an eccentric mass attached thereto;

a battery configured to provide power to the electric motor; and

a gear train rotationally coupling the motor shaft and the exciter shaft, wherein the gear train transfers torque from the electric motor to the exciter, causing the eccentric mass to rotate.

6. The compactor of claim 5 , further comprising control electronics coupled to the electric motor and configured to control operation of the electric motor.

7. The compactor of claim 6 , wherein the battery is supported on a platform upon which the battery is supported, and wherein the compactor further comprises a vibration isolator coupling the platform to the plate.

8. The compactor of claim 7 , wherein the platform is configured as a housing, and wherein the control electronics are located within the housing.

9. The compactor of claim 8 , further comprising a frame configured to couple the housing and the plate.

10. A compactor comprising:

a plate;

an electric motor coupled to the plate and including a motor shaft configured to rotate about a rotational axis;

an exciter coupled to the plate and configured to vibrate the plate in response to receiving torque from the electric motor, wherein the exciter includes an exciter shaft coaxial with the rotational axis and an eccentric mass attached thereto; and

a gear train positioned on the rotational axis and rotationally coupling the electric motor and the exciter, wherein the gear train and the exciter are located on one side of the electric motor, and wherein the gear train is configured to transfer torque from the electric motor to the exciter, causing the eccentric mass to rotate.

11. The compactor of claim 10 , wherein the gear train permits the exciter to be driven at a rotational speed that is faster or slower than a rotational speed of the electric motor.

12. The compactor of claim 10 , wherein the electric motor and the exciter are directly coupled to the plate.

13. The compactor of claim 10 , further comprising control electronics configured to control operation of the electric motor.

14. The compactor of claim 13 , further comprising a platform configured as a housing in which the control electronics are located, wherein the platform is coupled to the plate via a vibration isolator.

15. The compactor of claim 14 , further comprising a battery configured to provide power to the electric motor, wherein the battery is supported upon the platform.

16. The compactor of claim 15 , wherein the control electronics are coupled to one of the electric motor and the battery.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 14, 2024
From: GLANZER, EVAN M; KOLLER, JOHN E
To: MILWAUKEE ELECTRIC TOOL CORPORATION
Reel/Frame 066463/0919 →
Continuity (4)
Continuation 17369489 · Jul 7, 2021
Provisional Application 63059250 · Jul 31, 2020
Provisional Application 63048722 · Jul 7, 2020
Related Publication 20230374741A1 · Nov 23, 2023
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