IP Library › Granted Patent US 10,300,898
Granted Patent B2
US 10,300,898 · App. 15/412,775 · Granted May 28, 2019

Cart and implement combination having a brake system

Inventors: Mandar Kale (Pune, IN); Trond Svidal (Crestwood, KY); Douglas Graham (East Moline, IL); Derryn W. Pikesh (Geneseo, IL)
Assignee: DEERE & COMPANY
B60T8/1708B60T7/20B60T13/662F16D55/225F16D65/183F16D66/00A01C7/208
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Quick Facts
Patent No.
US 10,300,898
App. No.
15/412,775
Granted
May 28, 2019
Kind
B2
Abstract

A towed cart and implement having a brake assembly enabled for independent application of the cart brake assembly without application of the brakes of prime mover in a burst application of the brake assembly for a predetermined duration. A brake control system includes a display which indicates the capacity of the brake assembly for burst application based on a temperature of a brake assembly component. The temperature may be measured or estimated based on duration and timing of burst brake applications.

Claims (34)

1. A brake system for a cart towed by a prime mover comprising:

a friction brake assembly having a brake rotor and calipers; and

a brake control system having;

a programmable processor;

an input device; and

a display, wherein the control system actuates burst application of the brake assembly upon activation of the input device, wherein burst application of the brake assembly comprises repeated short-duration actuation of the brake assembly, and further indicates on the display a current capacity of the brake assembly for burst application of the brake assembly and whether or not there is capacity in the brake assembly for any burst application of the brake assembly.

2. The brake system of claim 1 wherein the control system determines current brake capacity for burst application of the brake assembly based on a temperature of a component of the brake assembly.

3. The brake system of claim 2 wherein the component of the brake assembly is the brake rotor.

4. The brake system of claim 2 wherein the temperature of the brake component is estimated based on a brake load and the duration and timing of burst brake application.

5. The brake system of claim 2 wherein the temperature of the brake component is measured by a temperature sensor.

6. The brake system of claim 1 wherein the current brake capacity for burst application of the brake assembly is displayed by a bar of varying length.

7. The brake system of claim 6 wherein the longer the bar, the greater is the current brake capacity for burst application.

8. The brake system of claim 6 wherein the bar is shown in different colors depending on the current brake capacity for burst application.

9. The brake system of claim 1 wherein the display indicates whether or not the brake assembly is currently being applied.

10. The brake system of claim 1 wherein the display indicates a brake fault.

11. The brake system of claim 1 wherein the burst application of the brake assembly is for a predetermined duration.

12. A method of controlling a brake assembly of a towed cart, the cart having a frame, an axle with wheels upon which the frame is supported for movement over a ground surface, a brake assembly on the axle and brake control system having an input device and a display, the method comprising the steps of:

activating the input device;

actuating burst application of the brake assembly upon activation of the input device, wherein burst application of the brake assembly comprises repeated short-duration actuation of the brake assembly; and

indicating on the display a current capacity of the brake assembly for burst application of the brake assembly and whether or not there is capacity in the brake assembly for any burst application of the brake assembly.

13. The method of claim 12 further comprising the steps of:

determining a temperature of a component of the brake assembly; and

calculating the current capacity of the brake assembly for burst application of the brake assembly based on the determined temperature of the component of the brake system.

14. The method of claim 13 wherein the temperature of the component of the brake system is determined by measuring the temperature with a sensor.

15. The method of claim 12 wherein the temperature of the component of the brake system is determined by calculation based on load and the duration and timing of burst application of the brake assembly.

16. A machine comprising:

a commodity cart having a frame and a cart axle with wheels upon which the frame is supported for movement over a ground surface;

an implement configured to be coupled to the cart for movement together with the cart, the implement having a plurality of ground engaging tools movable between a lowered position engaging the ground and raised position above the ground;

a friction brake assembly on the cart axle; and

a brake control system having a programmable processor, an input device and a display, the control system actuating burst application of the brake assembly upon activation of the input device, wherein burst application of the brake assembly comprises repeated short-duration actuation of the brake assembly, and indicating on the display a current capacity of the brake assembly for burst application of the brake assembly and whether or not there is capacity in the brake assembly for any burst application of the brake assembly.

17. The machine of claim 16 wherein the control system determines current brake capacity for burst application of the brake assembly based on a temperature of a brake rotor.

18. The machine of claim 17 wherein the temperature of the brake component is estimated based on a brake load and the duration and timing of burst brake application.

19. The machine of claim 18 wherein the temperature of the brake rotor is based on the brake load, and the duration and timing of burst application of the brake assembly.

20. The machine of claim 17 wherein the temperature of the brake rotor is measured by a temperature sensor.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 7, 2017
From: KALE, MANDAR; SVIDAL, TROND; GRAHAM, DOUGLAS; PIKESH, DERRYN W.
To: DEERE & COMPANY
Reel/Frame 041195/0150 →
Continuity (1)
Related Publication 20180206395A1 · Jul 26, 2018
Cited By (14)
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