IP Library Granted Patent US 9,731,905
Granted Patent B2
US 9,731,905 · App. 15/174,360 · Granted Aug 15, 2017

Apparatus and method for stockpile control system

Inventors: Keith Enge (Yankton, SD); Mark Westerman (Yankton, SD)
Assignee: Kolberg-Pioneer, Inc.
B65G43/00B65G21/14B65G41/002B65G41/008
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Quick Facts
Patent No.
US 9,731,905
App. No.
15/174,360
Granted
Aug 15, 2017
Kind
B2
Abstract

A stockpile control system adapted for use on a stockpile conveyor comprising a sensor that is disposed on the stockpile conveyor, a limit switch that is disposed on the stockpile conveyor, a pile probe that is disposed on the stockpile conveyor, and a microprocessor that is in operative communication with the limit switch and the sensor. The stockpile conveyor is adapted to move, the sensor is adapted to measure the location of the stockpile conveyor, the limit switch is adapted to limit the movement of the stockpile conveyor, the pile probe is adapted to measure a distance between the stockpile conveyor and a stockpile, and the microprocessor is adapted to control the movement of the stockpile conveyor. A method for controlling the production of a stockpile comprising providing a stockpile control system, calculating one or more stockpile boundaries, and controlling the movement of the stockpile conveyor.

Claims (31)

1. A stockpile control system adapted for use on a stockpile conveyor, said stockpile control system comprising:

(a) a sensor, said sensor being disposed on the stockpile conveyor;

(b) a limit switch, said limit switch being disposed on the stockpile conveyor;

(c) a pile probe; said pile probe being disposed on the stockpile conveyor;

(d) a microprocessor, said microprocessor being in operative communication with the limit switch and the sensor;

(e) a winch encoder adapted to determine a length of the stockpile conveyor along the longitudinal axis;

wherein the stockpile conveyor is adapted to move between a retracted position and an extended position along a stockpile conveyor longitudinal axis; wherein the sensor is adapted to measure the location of the stockpile conveyor; wherein the limit switch is adapted to limit the movement of the stockpile conveyor; wherein the pile probe is adapted to measure a distance between the stockpile conveyor and a stockpile; wherein the microprocessor is adapted to control the movement of the stockpile conveyor; and wherein the winch encoder is in operative communication with the microprocessor.

2. The stockpile control system of claim 1 wherein the stockpile conveyor is adapted to move pivotally about a vertical axis.

3. The stockpile control system of claim 2 wherein the sensor comprises a rotation sensor adapted to measure the pivotal movement of the stockpile conveyor about the vertical axis.

4. The stockpile control system of claim 1 wherein the stockpile conveyor is adapted to move pivotally about a horizontal axis.

5. The stockpile control system of claim 4 wherein the sensor comprises an angle sensor adapted to measure the pivotal movement of the stockpile conveyor about the horizontal axis.

6. The stockpile control system of claim 1 wherein the limit switch is adapted to limit the movement of the stockpile conveyor along the longitudinal axis.

7. The stockpile control system of claim 2 wherein the limit switch is adapted to limit the pivotal movement of the stockpile conveyor about the vertical axis.

8. The stockpile control system of claim 1 wherein the limit switch is adapted to reset to a predetermined absolute value in the event the limit switch is activated.

9. The stockpile control system of claim 1 wherein the limit switch comprises a hard-wired, redundant system.

10. The stockpile control system of claim 1 further comprising a graphical interface.

11. The stockpile control system of claim 1 wherein the system is adapted to substantially continuously calculate one or more stockpile boundaries and automatically adjust the movement of the stockpile conveyor in substantially real time.

12. The stockpile control system of claim 1 wherein the system is adapted to substantially continuously calculate a material flow depth and automatically adjust the movement of the stockpile conveyor in substantially real time.

13. The stockpile control system of claim 1 wherein the system is adapted to produce repeatable stockpiles.

14. A method for controlling the production of a stockpile, said method comprising:

(a) providing a stockpile control system, said stockpile control system comprising:

a sensor, said sensor being disposed on the stockpile conveyor;

(ii) a limit switch, said limit switch being disposed on the stockpile conveyor;

(iii) a pile probe; said pile probe being disposed on the stockpile conveyor;

(iv) a microprocessor, said microprocessor being in operative communication with the limit switch and the sensor;

(v) a winch encoder adapted to determine a length of the stockpile conveyor along the longitudinal axis;

 wherein the stockpile conveyor is adapted to move between a retracted position and an extended position along a stockpile conveyor longitudinal axis; wherein the sensor is adapted to measure the location of the stockpile conveyor; wherein the limit switch is adapted to limit the movement of the stockpile conveyor; wherein the pile probe is adapted to measure the vertical height of a stockpile; wherein the microprocessor is adapted to control the movement of the stockpile conveyor; and wherein the winch encoder is in operative communication with the microprocessor;

(b) calculating one or more stockpile boundaries;

(c) controlling the movement of the stockpile conveyor.

15. The method of claim 14 wherein the stockpile control system substantially continuously calculates one or more stockpile boundaries and automatically adjusts the movement of the conveyor in substantially real time.

16. The method of claim 14 wherein the stockpile control system substantially continuously calculate a material flow depth and automatically adjusts the movement of the conveyor in substantially real time.

Assignments (4)
SECURITY AGREEMENT Recorded Jul 2, 2025
From: ASTEC INDUSTRIES, INC.; ASTEC, INC.; ASTEC MOBILE SCREENS, INC.; BREAKER TECHNOLOGY, INC.; CARLSON PAVING PRODUCTS, INC.; JOHNSON CRUSHERS INTERNATIONAL, INC.; KOLBERG-PIONEER, INC.; POWER FLAME INCORPORATED; ROADTEC, INC.; TELSMITH, INC.; TERRASOURCE GLOBAL CORPORATION; CMI/CSI LLC; TABOR MACHINE COMPANY, LLC; ELGIN POWER AND SEPARATION SOLUTIONS, LLC; ELGIN SEPARATION SOLUTIONS INDUSTRIALS, LLC
To: WELLS FARGO BANK, NATIONAL ASSOCIATION, AS ADMINISTRATIVE AGENT
Reel/Frame 071787/0859 →
RELEASE OF SECURITY INTEREST AT REEL/FRAME 062153/0169 Recorded Jul 2, 2025
From: WELLS FARGO BANK, NATIONAL ASSOCIATION, AS ADMINISTRATIVE AGENT
To: ASTEC, INC.; ASTEC INDUSTRIES, INC.; ROADTEC, INC.; TELSMITH, INC.; CARLSON PAVING PRODUCTS, INC.; KOLBERG-PIONEER, INC.; BREAKER TECHNOLOGY, INC.; POWER FLAME INCORPORATED; ASTEC MOBILE SCREENS, INC.; JOHNSON CRUSHERS INTERNATIONAL, INC.; GEFCO, INC.
Reel/Frame 071787/0926 →
SECURITY INTEREST Recorded Dec 19, 2022
From: ASTEC, INC.; ASTEC INDUSTRIES, INC.; ROADTEC, INC.; TELSMITH, INC.; CARLSON PAVING PRODUCTS, INC.; KOLBERG-PIONEER, INC.; BREAKER TECHNOLOGY, INC.; POWER FLAME INCORPORATED; ASTEC MOBILE SCREENS, INC.; JOHNSON CRUSHERS INTERNATIONAL, INC.; GEFCO, INC.
To: WELLS FARGO BANK, NATIONAL ASSOCIATION
Reel/Frame 062153/0169 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 28, 2016
From: ENGE, KEITH; WESTERMAN, MARK
To: KOLBERG-PIONEER, INC.
Reel/Frame 039029/0155 →
Continuity (2)
Provisional Application 62171736 · Jun 5, 2015
Related Publication 20160355351A1 · Dec 8, 2016