IP Library Granted Patent US 11,612,096
Granted Patent B2
US 11,612,096 · App. 16/543,202 · Granted Mar 28, 2023

Toolbar with hydraulic height control

Inventor: Jeffrey Alan Sivinski (Cherokee, IA)
Assignee: Harvest International, Inc.
A01B63/22A01B73/065
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Quick Facts
Patent No.
US 11,612,096
App. No.
16/543,202
Filed
Aug 16, 2019
Granted
Mar 28, 2023
Kind
B2
Art Unit
3671
USPC
280/5.514
Abstract

An agricultural toolbar has a center section and opposite wings which are horizontally foldable between transport and field positions. The toolbar has a hydraulic system which is very adaptable to many different hydraulically controlled features and options, without sacrificing the primary purpose of the system, which is accurately controlling the operating height of the toolbar, to achieve optimal planting depth of modern precision seed and fertilizer application systems.

Claims (27)

1. An agricultural toolbar comprising:

a frame including a center section and wings on opposite ends of the center section;

wheels on the frame for supporting the frame above the ground;

a position sensor associated with the wheels;

a hydraulic system for adjusting a position of the frame relative to the wheels based upon an output from the position sensor, wherein the hydraulic system comprises non-rephase cylinders and a rail that supplies oil to all of the non-rephase cylinders on the frame; and

a pressure sensor to determine oil flow direction in the hydraulic system.

2. The toolbar of claim 1 , further comprising a scale feature whereby a wheel position sensed by the position sensor and a hydraulic pressure are used to determine payload weight.

3. The toolbar of claim 1 , further comprising a control system and a human machine interface (HMI) in communication with the control system.

4. The toolbar of claim 3 , wherein the control system allows an operator to apply downforce to the frame either manually or automatically whereby wheels, actuators, and ground position and force feedback are used to control the re-distribution of bar weight from the HMI.

5. The toolbar of claim 3 , wherein the control system is adapted to automatically control a drawbar position so that the drawbar can synchronously travel with the toolbar during the raise/lower sequence in order to maintain a consistent position relative to the toolbar position.

6. The toolbar of claim 3 , wherein the control system is adapted to provide and control excess hydraulic flow to allow an operator to power an ancillary piece of equipment.

7. The toolbar of claim 6 , wherein the operator controls the hydraulic flow manually at a manifold.

8. The toolbar of claim 6 , wherein the hydraulic flow is controlled electronically through the HMI.

9. The toolbar of claim 3 , wherein the control system is adapted to permit automatic adjustment of the tool bar between a lowered work position and a raised travel position upon touch of single control.

10. The toolbar of claim 3 , wherein the control system is adapted to permit the operator to manually and automatically control the height of the sections in relation to the ground.

11. The toolbar of claim 3 , further comprising parallel arms, wherein the control system is adapted to read the position of parallel arms in relation to the sections and manually or automatically make adjustments to frame.

12. The toolbar of claim 3 , wherein the control system is adapted to monitor a case drain pressure and alert an operator if the drain pressure is out of a normal range.

13. The toolbar of claim 1 wherein the hydraulic system includes a main valve block having galleys, and the pressure sensor being operatively connected to at least one of the galleys to determine the oil flow direction.

14. The agricultural tool bar of claim 1 wherein the hydraulic system raises and lowers the wheels independently of one another.

15. A method of raising and lowering a wing on an agricultural tool bar having wheels, comprising:

providing oil flow through non-rephase cylinders in a hydraulic system connected to the wing to raise and lower the wing; and

determining oil flow direction through the hydraulic system to maintain accurate operating height of the wing by controlling the raising and lowering of the wing.

16. The method of claim 15 further comprising actuating the hydraulic system in response to a signal from a position sensor associated with the wing.

17. The method of claim 15 wherein the oil is provided to the cylinders via a common rail.

18. The method of claim 15 determining payload weight on the tool bar by sensing a position of a wheel supporting the wing and sensing a hydraulic pressure of the oil.

19. The method of claim 15 further comprising controlling a position of the wing with a human machine interface (HMI) in communication with a control system operatively connected to the cylinders.

20. The method of claim 15 wherein each wing is supported by a wheel with adjustable height, and the hydraulic system adjusts the height of each wheel independently from the other wheels.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 16, 2019
From: SIVINSKI, JEFFREY ALAN
To: HARVEST INTERNATIONAL, INC.
Reel/Frame 050079/0051 →
Continuity (2)
Provisional Application 62765072 · Aug 17, 2018
Related Publication 20200053944A1 · Feb 20, 2020
Cited By (16)
US 12,268,115 US 12,353,210 US 12,403,950 US 12,477,973 US 12,501,848 US 12,520,744 US 12,520,746 US 12,564,117 US 12,583,509 US 12,619,236 US 12,648,501 US 12,648,502 US 12,653,085 US 12,653,091 US 12,714,007 US 12,714,023