IP Library Granted Patent US 9,611,620
Granted Patent B2
US 9,611,620 · App. 14/270,841 · Granted Apr 4, 2017

Apparatus and method for enhanced grading control

Inventor: Philip Paull (Noblesville, IN)
E02F3/437E02F3/301E02F3/32E02F3/401E02F3/433E02F3/434E02F3/436E02F9/0875E02F9/2267E02F9/265
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 9,611,620
App. No.
14/270,841
Granted
Apr 4, 2017
Kind
B2
Abstract

A method of operating a digging machine, including damping the response of a boom hydraulic cylinder operationally connected to a boom arm and actuating a bucket hydraulic cylinder operationally connected to a bucket.

Claims (71)

1. A digging machine, comprising:

a tractor portion;

at least one boom arm portion operationally connected to the tractor portion;

a bucket arm portion operationally connected to the at least one boom arm portion;

a bucket portion operationally connected to the bucket arm portion;

a boom hydraulic piston portion operationally connected to the at least one boom arm portion;

a bucket hydraulic piston portion operationally connected to the bucket portion;

a hydraulic fluid source operationally connected to each respective hydraulic piston portion;

a hydraulic valve operationally connected to the boom hydraulic piston portion and to the hydraulic fluid source;

a microprocessor; and

a first sensor operationally connected to the bucket portion and to the microprocessor;

wherein the microprocessor is operationally connected to the hydraulic fluid source, to the hydraulic valve, and to each respective hydraulic pistons; and

wherein the microprocessor may be engaged to assist movement of the bucket portion through a predetermined digging profile when the tractor portion is in motion;

wherein each respective hydraulic piston portion has a respective first and a respective second hydraulic fluid port formed therethrough;

wherein the hydraulic valve may be engaged to connect the respective first and second hydraulic fluid ports formed through the boom hydraulic piston portion in direct hydraulic communication with one another.

2. The digging machine of claim 1 , wherein the at least one boom arm portion is the bucket arm portion.

3. The digging machine of claim 1 , wherein the hydraulic valve may be actuated to vary a flow of fluid to the hydraulic valve.

4. The digging machine of claim 1 , wherein actuation of the boom hydraulic piston portion to retract the bucket when the valve is open moves the bucket in a horizontal line towards the tractor portion.

5. A method of controlled digging, comprising:

connecting a fluidic input port and a fluidic outlet port of a boom hydraulic cylinder in fluidic communication with one another, wherein the boom hydraulic cylinder is operationally connected to a boom arm connected to a tractor;

energizing a bucket hydraulic cylinder operationally connected to a bucket to orient the bucket to a predetermined orientation relative to earth; and

urging the bucket through a predetermined path through the earth;

wherein the bucket maintains the predetermined orientation as it moves through earth; and

wherein the tractor is free to move during while the bucket moves through the earth.

6. The digging machine of claim 1 , wherein the digging machine is a hoe.

7. The method of claim 5 , further comprising:

sending a first signal from a sensor operationally connected to the bucket to an electronic controller;

calculating a position and an orientation of the bucket; and

sending a second signal from the electronic controller to the bucket hydraulic cylinder to move the bucket.

8. The digging machine of claim 1 , wherein the microprocessor is programmed to:

initialize the digging machine;

calibrate the digging machine;

initialize excavation;

monitor excavation;

adjust trajectory of the bucket to move the bucket through a predetermined path through the earth; and

halt excavation.

9. The digging machine of claim 8 , wherein the microprocessor is further programmed to:

calculate an elevation and an angle of the bucket portion to determine a bucket position and a bucket orientation;

control the bucket portion to a predetermined elevation and a predetermined angle;

initialize the hydraulic valve; and

actuate the bucket hydraulic piston.

10. The digging machine of claim 8 , further comprising:

a second sensor operationally connected to the bucket arm portion and to the microprocessor; and

a third sensor operationally connected to the at least one boom arm portion and to the microprocessor.

11. A method of operating a digging machine, comprising:

automatically actuating a bucket hydraulic cylinder operationally connected to a bucket to move the bucket though a predetermined path through the earth, wherein a sensor is operationally connected to the bucket and is in electric communication with an electronic controller;

damping a response of a boom hydraulic cylinder operationally connected to a boom arm by directly connecting a variable flow hydraulic valve across the hydraulic cylinder during movement of the bucket;

maintaining the bucket in a predetermined orientation as it moves through its predetermined path through the earth;

wherein movement of the bucket through a predetermined path through the earth while maintaining the bucket at a predetermined orientation is independent of the movement of the digging machine.

12. The method of claim 7 , further comprising:

initializing a digging machine;

calibrating the digging machine;

initializing excavation;

monitoring excavation;

adjusting trajectory of the bucket; and

halting excavation.

13. The method of claim 12 , further comprising:

calculating an elevation and an angle of the bucket to determine a bucket position and a bucket orientation;

controlling the bucket to a predetermined elevation and a predetermined angle;

initializing a flex hydraulic valve; and

actuating the bucket hydraulic cylinder.

14. The method of claim 11 , wherein the sensor is gyroscopic.

15. The method of claim 11 , further comprising:

initializing the digging machine;

calibrating the digging machine;

initializing excavation;

monitoring excavation;

repositioning the digging machine during excavation;

adjusting trajectory of the bucket; and

halting excavation.

16. The method of claim 11 , wherein the boom hydraulic cylinder has a fluidic input port and a fluidic outlet port, and wherein the boom hydraulic cylinder is damped by operationally connecting the fluidic input port and the fluidic outlet port in fluidic communication with one another.

Continuity (9)
Continuation In Part 14084046 · Nov 19, 2013
Continuation In Part 13774062 · Feb 22, 2013
Continuation In Part 12876080 · Sep 3, 2010
Provisional Application 61240158 · Sep 4, 2009
Provisional Application 61819793 · May 6, 2013
Provisional Application 61819794 · Jun 6, 2013
Provisional Application 61833609 · Jun 11, 2013
Provisional Application 61844104 · Jul 9, 2013
Related Publication 20150081176A1 · Mar 19, 2015