IP Library Granted Patent US 11,773,568
Granted Patent B2
US 11,773,568 · App. 16/963,698 · Granted Oct 3, 2023

Braking control device and braking control method of construction machine

Inventors: Yeonhaeng Heo (Incheon, KR); Kwangseok Park (Incheon, KR); Gyuhong Park (Incheon, KR)
Assignee: DOOSAN INFRACORE CO., LTD.
E02F9/2083B60T7/042B60T8/17B60T8/171B60T8/172B60T8/176B60T8/18B60T8/245B60T8/321B60T8/326B60T8/92B60T13/18B60T2210/20B60T2220/04B60T2250/00B60T2250/04B60T2270/10B60T2270/402B60T2270/404B60T2270/82
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Quick Facts
Patent No.
US 11,773,568
App. No.
16/963,698
Granted
Oct 3, 2023
Kind
B2
Abstract

A brake control apparatus for construction machinery, includes first and second brake lines through which a brake oil is supplied to a front brake device and a rear brake device of the construction machinery, first and second proportional flow control valves installed respectively in the first and second brake lines to control a flow rate of the brake oil in proportion to inputted first and second brake control signals, a sensing portion configured to detect work and travel information of the construction machinery, and a controller configured to output the first and second brake control signals in response to a brake manipulation signal of a driver, and configured to control independently the first and second proportional flow control valves based on the work and travel information of the construction machinery detected by the sensing portion.

Claims (45)

1. A brake control apparatus for construction machinery, comprising:

first and second brake lines through which a brake oil is supplied to a front brake device and a rear brake device of the construction machinery;

first and second proportional flow control valves installed respectively in the first and second brake lines to control a flow rate of the brake oil in proportion to inputted first and second brake control signals;

a sensing portion configured to detect work and travel information of the construction machinery; and

a controller configured to output the first and second brake control signals in response to a brake manipulation signal of a driver, and configured to control independently the first and second proportional flow control valves based on the work and travel information of the construction machinery detected by the sensing portion,

wherein the controller converts the brake manipulation signal at a first conversion ratio to generate and output the first brake control signal and converts the brake manipulation signal at a second conversion ratio to generate and output the second brake control signal,

wherein the first and second conversion ratios are adjusted to change according to a vehicle speed of the construction machinery, and

wherein the first conversion ratio increases as the vehicle speed increases and the second conversion ratio decreases as the vehicle speed increases.

2. The brake control apparatus for construction machinery of claim 1 , wherein the first conversion ratio and the second conversion ratio are changed depending on a magnitude of the brake manipulation signal.

3. The brake control apparatus for construction machinery of claim 2 , wherein the first and second conversion ratios have a first magnitude when the brake manipulation signal is less than a predetermined value, and the first and second conversion ratios have a second magnitude when the brake manipulation signal is the predetermined value or more.

4. The brake control apparatus for construction machinery of claim 1 , wherein the first conversion ratio and the second conversion ratio are identical to each other when the vehicle speed is less than a predetermined value.

5. The brake control apparatus for construction machinery of claim 1 , wherein the first and second conversion ratios are adjusted to change according to live load of a bucket of the construction machinery.

6. The brake control apparatus for construction machinery of claim 1 , wherein the first and second conversion ratios are adjusted to change according to a height of a bucket of the construction machinery.

7. The brake control apparatus for construction machinery of claim 1 , wherein in case that the construction machinery is on a slope, when the controller receives the brake manipulation signal for a certain period of time, the controller executes a slope slip prevention mode and output the first and second brake control signals to operate the front brake device and the rear brake device.

8. The brake control apparatus for construction machinery of claim 1 , wherein the controller comprises:

a first control signal generator configured to convert the brake manipulation signal at the first conversion ratio based on the work and travel information of the construction machinery detected by the sensing portion to generate the first brake control signal; and

a second control signal generator configured to convert the brake manipulation signal at the second conversion ratio based on the work and travel information of the construction machinery detected by the sensing portion to generate the second brake control signal.

9. The brake control apparatus for construction machinery of claim 1 , wherein the sensing portion comprises at least one of a boom angle sensor, a boom cylinder pressure sensor, a vehicle speed sensor and an acceleration sensor.

10. The brake control apparatus for construction machinery of claim 1 , further comprising:

a parking brake line through which the brake oil is supplied to a parking brake device of the construction machinery; and

a proportional direction control valve installed in the parking brake line to supply or block the brake oil according to an inputted parking control signal, and

wherein the controller outputs the parking control signal in case of an emergency occurrence.

11. The brake control apparatus for construction machinery of claim 1 , further comprising:

an electronic pedal device configured to output the brake manipulation signal as an electronic signal in proportion to an angle change of a brake pedal by the driver.

12. A brake control apparatus for construction machinery, comprising:

a hydraulic pump configured to supply a brake oil;

first and second brake lines connected to the hydraulic pump to supply the brake oil to a front brake device and a rear brake device of the construction machinery therethrough;

first and second proportional flow control valves installed respectively in the first and second brake lines to control a flow rate of the brake oil in proportion to inputted first and second brake control signals;

a sensing portion including a boom angle sensor, a bucket angle sensor and a vehicle speed sensor and configured to detect work and travel information of the construction machinery;

an electronic pedal device configured to output a brake manipulation signal as an electronic signal in proportion to an angle change of a brake pedal by a driver; and

a controller configured to output the first and second brake control signals in response to the brake manipulation signal of the electronic pedal device, and configured to control independently the first and second proportional flow control valves based on the work and travel information of the construction machinery detected by the boom angle sensor, the bucket angle sensor, the vehicle speed sensor and the electronic pedal device,

wherein the controller converts the brake manipulation signal at a first conversion ratio to generate and output the first brake control signal and converts the brake manipulation signal at a second conversion ratio to generate and output the second brake control signal,

wherein the first and second conversion ratios are adjusted to change according to a vehicle speed of the construction machinery, and

wherein the first conversion ratio increases as the vehicle speed increases and the second conversion ratio decreases as the vehicle speed increases.

13. A brake control method for construction machinery, comprising;

providing a hydraulic system including first and second brake lines through which a brake oil is supplied to a front brake device and a rear brake device of the construction machinery and first and second proportional flow control valves installed respectively in the first and second brake lines to control a flow rate of the brake oil in proportion to inputted first and second brake control signals;

detecting work and travel information of the construction machinery;

outputting the first and second brake control signals based on the work and travel information of construction machinery in response to a brake manipulation signal in order to independently the first and second proportional flow control valves,

wherein outputting the first and second brake control signals comprises converting the brake manipulation signal at a first conversion ratio to generate and output the first brake control signal and converting the brake manipulation signal at a second conversion ratio to generate and output the second brake control signal

wherein the first and second conversion ratios are adjusted to change according to a vehicle speed of the construction machinery, and

wherein the first conversion ratio increases as the vehicle speed increases and the second conversion ratio decreases as the vehicle speed increases.

14. The brake control method for construction machinery of claim 13 , wherein the first conversion ratio and the second conversion ratio are changed depending on at least one of a magnitude of the brake manipulation signal, live load of a bucket of the construction machinery and a height of a bucket of the construction machinery.

15. The brake control method for construction machinery of claim 13 , wherein outputting the first and second brake control signals comprises, in case that the construction machinery is on a slope, when the brake manipulation signal is received for a certain period of time, executing a slope slip prevention mode and outputting the first and second brake control signals to operate the front brake device and the rear brake device.

16. The brake control method for construction machinery of claim 13 , further comprising:

receiving the brake manipulation signal as an electronic signal in proportion to an angle change of a brake pedal by the driver.

Assignments (4)
MERGER Recorded Jul 27, 2026
From: HD HYUNDAI INFRACORE CO., LTD.
To: HD CONSTRUCTION EQUIPMENT CO., LTD.
Reel/Frame 075412/0880 →
CHANGE OF NAME Recorded Dec 4, 2023
From: DOOSAN INFRACORE CO., LTD.
To: HYUNDAI DOOSAN INFRACORE CO., LTD.
Reel/Frame 065761/0942 →
CHANGE OF NAME Recorded Dec 4, 2023
From: HYUNDAI DOOSAN INFRACORE CO., LTD.
To: HD HYUNDAI INFRACORE CO., LTD.
Reel/Frame 065761/0957 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 25, 2020
From: HEO, YEONHAENG; PARK, KWANGSEOK; PARK, GYUHONG
To: DOOSAN INFRACORE CO., LTD.
Reel/Frame 053598/0809 →