IP Library › Granted Patent US 10,584,499
Granted Patent B2
US 10,584,499 · App. 16/006,787 · Granted Mar 10, 2020

Hybrid drive train for self propelled power trowel

Inventors: Erick M. Del Real (Meridian, ID); Larry Jake Chapple (Boise, ID); Nathaniel Cody Bateman (Boise, ID); Jeffrey Kevin Davis (Boise, ID)
Assignee: Multiquip Inc.
E04F21/247B60L9/26B60L50/13B60L50/61E01C19/40E01C19/42E04F21/161B60L3/003B60L2200/40B60L2210/42B60L2220/16B60L2220/42B60W10/08B60W20/13B60W2050/0008
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Quick Facts
Patent No.
US 10,584,499
App. No.
16/006,787
Granted
Mar 10, 2020
Kind
B2
Abstract

A hybrid drive train for a self propelled power trowel includes a frame having a centerline from front to rear, an engine-generator set, a pair of rotors with trowel blades tiltably connected to the frame and positioned to support the frame above a concrete surface being finished, electric motors for driving the rotors, means for tilting each rotor toward and away from the centerline, and means for tilting a rotor fore and aft, parallel to the centerline. A rectifier and inverter in series at the engine-generator output allows engine speed to be regulated by a capacitor bank, and usage of highly efficient brushless AC synchronous motors to drive the rotors. A rechargeable battery may be connected in parallel with the capacitor bank.

Claims (42)

1. A self propelled power trowel, for finishing a concrete surface, which comprises:

a rigid frame adapted to be disposed over said concrete surface;

means attached to the rigid frame for providing DC power to said power trowel;

means for inverting the DC power into an AC output;

a pair of rotatable rotor assemblies for frictionally contacting said concrete surface and supporting said rigid frame thereabove, tiltably connected to the rigid frame; and

electrical motor means operatively connected to the AC output and operatively connected to the rotatable rotor assemblies for rotating said rotor assemblies.

2. The self propelled power trowel, for finishing a concrete surface, of claim 1 , wherein the means for providing DC power to said power trowel comprises a battery.

3. The self propelled power trowel, for finishing a concrete surface, of claim 2 , further comprising a capacitor bank connected in parallel with the battery.

4. The self propelled power trowel, for finishing a concrete surface, of claim 1 , wherein the means for providing DC power to said power trowel comprises:

an internal combustion engine attached to the frame;

an AC generator operatively connected to the internal combustion engine; and

a rectifier electrically coupled to the AC generator.

5. The self propelled power trowel, for finishing a concrete surface, of claim 4 , wherein the AC generator produces three phase alternating current.

6. The self propelled power trowel, for finishing a concrete surface, of claim 5 , wherein the rectifier is configured to:

receive the three phase alternating current and rectify said current to a selectable DC voltage output.

7. The self propelled power trowel, for finishing a concrete surface, of claim 4 , further comprising means for regulating speed of the engine.

8. The self propelled power trowel, for finishing a concrete surface, of claim 7 , wherein the regulating means comprises capacitance.

9. The self propelled power trowel, for finishing a concrete surface, of claim 1 wherein the AC output has preselectable frequency, duty cycle, and voltage.

10. A hybrid drive train for a self propelled power trowel, comprising:

a rigid frame having a front and a rear and defining a centerline from front to rear;

means for providing DC power to said power trowel attached to the rigid frame;

means for inverting the DC power into an AC output;

a pair of rotatable rotor assemblies tiltably connected to the rigid frame and configured to contact a concrete surface below the rigid frame and to support the rigid frame thereabove;

one or more electrical motors electrically connected to the AC output and operatively connected to the rotatable rotor assemblies to cause rotation of said rotor assemblies;

means for tilting each rotor assembly toward and away from the centerline of the frame; and

means for tilting at least one of the rotor assemblies fore and aft, parallel to the centerline of the frame.

11. The hybrid drive train of claim 10 wherein the one or more electrical motors comprise brushless AC synchronous motors.

12. The hybrid drive train of claim 10 wherein the means for providing DC power comprises an engine and generator.

13. The hybrid drive train of claim 12 further comprising a means for regulating speed of the engine.

14. The hybrid drive train of claim 13 wherein the regulating means comprises capacitance.

15. The hybrid drive train of claim 10 wherein the means for providing DC power comprises a battery.

16. The hybrid drive train of claim 15 further comprising a capacitor bank in parallel with the battery.

17. A hybrid drive train for a self propelled power trowel, comprising:

a frame;

an engine-generator set attached to the frame and configured to provide electrical power to the power trowel;

a pair of rotatable rotor assemblies tiltably connected to the frame and configured to contact a concrete surface below the frame and to support the frame thereabove;

one or more rectifiers attached to the frame and configured to convert the electrical power from the engine-generator set to DC power;

one or more inverters attached to the frame and configured to convert the DC power to AC output; and

one or more brushless AC synchronous motors electrically connected to the one or more inverters and operatively connected to the rotatable rotor assemblies to cause rotation of said rotor assemblies.

18. The hybrid drive train of claim 17 further comprising capacitance coupled to the DC power from the one or more rectifiers and configured for regulating speed of the engine-generator set.

19. The hybrid drive train of claim 17 wherein the AC output has preselectable frequency, duty cycle, and voltage.

20. The hybrid drive train of claim 10 wherein the AC output has preselectable frequency, duty cycle, and voltage.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 22, 2018
From: DEL REAL, ERICK M; CHAPPLE, LARRY JAKE; BATEMAN, NATHANIEL CODY; DAVIS, JEFFREY KEVIN
To: MULTIQUIP INC
Reel/Frame 046658/0885 →
Continuity (3)
Provisional Application 62518559 · Jun 12, 2017
Provisional Application 62621029 · Jan 23, 2018
Related Publication 20180355624A1 · Dec 13, 2018
Cited By (1)
US 12,435,527