Distributed braking system with parking function and method of pressure adjustment and control for same

A brake system and pressure regulation technology, applied in the direction of brake safety systems, brakes, brake transmission devices, etc., can solve the safety hazards of high-pressure accumulators that are difficult to seal, and the dynamic characteristics of pressure response are not as good as those of variable capacity adjustment and solenoid valves. It is not suitable for problems such as long-term continuous work, and achieves superior vehicle dynamics performance, improved initial response and dynamic response characteristics, and good braking pressure dynamic characteristics.

Pending Publication Date: 2020-01-07
南京经纬达汽车科技有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

For example, the hydraulic unit of the ESC has problems such as the electromagnetic valve is not suitable for long-term continuous work, the working life of the plunger pump is difficult to meet, and the noise of the plunger pump motor is relatively large; the high-pressure accumulator of the EHB is difficult to seal, and the There are potential safety hazards, and the entire system needs to work frequently to maintain sufficient standing pressure and consume more energy; some electric power boosters are not decoupled, and require the cooperation of the ESC hydraulic unit to achieve brake pedal stroke simulation and wire-controlled braking , increasing the complexity of the system
In essence, the brake pressure adjustment methods of these new electro-hydraulic brake devices are all flow adjustment, and their pressure response dynamic characteristics are not as good as variable capacity adjustment.

Method used

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  • Distributed braking system with parking function and method of pressure adjustment and control for same
  • Distributed braking system with parking function and method of pressure adjustment and control for same
  • Distributed braking system with parking function and method of pressure adjustment and control for same

Examples

Experimental program
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Effect test

Embodiment 1

[0064] Such as figure 1 As shown, the distributed braking system with parking function of the present invention and its pressure adjustment control method include a brake pedal 1, a support pin 2, an electric power booster 3, a master cylinder displacement sensor 4, a liquid storage tank 5, a braking Master cylinder 6, pedal displacement sensor 7, first electric cylinder 8a, second electric cylinder 8b, third electric cylinder 8c, fourth electric cylinder 8d, power supply 9, brake controller 10, right rear wheel brake 11, left rear Wheel brakes 12, right front wheel brakes 13, left front wheel brakes 14, signal wires, power wires and brake pipelines. It also includes wheel brakes connected with the electric cylinder and a solenoid valve arranged on the brake pipeline between the wheel brakes.

[0065] There are many ways to connect the electric power booster 3 to the electric cylinder. refer to figure 1 As one of the modes, one circuit of the electric power booster 3 is con...

Embodiment 2

[0114] The electric cylinder in the first embodiment can also be set as the double-chamber electric cylinder in this embodiment; the cylinder body 417 of the double-chamber electric cylinder is as follows Figure 7 As shown, other parts are consistent with Embodiment 1.

[0115] The piston assembly includes a first piston 412 and a second piston 419 arranged along its sliding direction and a connector 414 for connecting the first piston 412 and the second piston 419, the inner wall of the first piston 412, the electric cylinder body 417 and the connection The fourth cavity D1 is formed between the parts 414, and the second piston 419 and the inner wall of the cylinder body 417 of the electric cylinder form a fifth cavity D2.

[0116] The electric cylinder body 417 is provided with a first elastic member 416 and a second elastic member 420, the first elastic member 416 is arranged between the connecting member 414 and the first piston 412, and the second elastic member 420 is a...

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Abstract

The invention relates to the technical field of vehicle braking control systems and specifically provides a distributed braking system with a parking function and a method of pressure adjustment and control for the same. The system comprises a power source, a braking controller, a braking main cylinder, a main cylinder displacement sensor, a braking pedal, a pedal displacement sensor and an electric force assisting device, wherein the electric force assisting device, the main cylinder displacement sensor and the pedal displacement sensor are electrically connected to the braking controller respectively. The distributed composite braking system also comprises at least three electric cylinders, wherein the at least three electric cylinders are electrically connected to the braking controllerrespectively; the braking main cylinder is linked with the at least three electric cylinders by braking pipelines; and the electric cylinders are in one-to-one corresponding connection to wheel brakes with the same quantity on a vehicle, and a braking loop is formed by each of the electric cylinders and the corresponding wheel brake. The system and the method provided by the invention have the beneficial effects that control is flexible; braking responses are quick; and control precision of braking pressures is high, so the intelligent driving vehicle can run stably and reliability is high during braking.

Description

technical field [0001] The invention relates to the technical field of vehicle braking control systems, in particular to a distributed braking system with a parking function and a pressure regulation control method thereof. Background technique [0002] Automobile braking system is closely related to automobile driving safety. In the hydraulic braking system of traditional automobiles, the driver applies the braking pressure to the wheel brakes of each wheel brake by depressing the brake pedal, so as to achieve braking and decelerate the vehicle. Its hydraulic braking system is mainly composed of brake pedal, vacuum booster, brake manpower cylinder, hydraulic pipeline, rear wheel brake and front wheel brake. [0003] From the perspective of brake boosting methods, most of the current automotive hydraulic braking systems still use vacuum boosting, and only a few cars use other forms of boosting such as electric boosting. Since there is no vacuum source provided by the engin...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): B60T13/74B60T7/04B60T13/58B60T17/18B60T8/40F16D65/14
CPCB60T13/745B60T13/746B60T7/042B60T13/58B60T17/18B60T8/409F16D65/14F16D2123/00F16D2121/24F16D2121/04F16D2125/04F16D2125/40
Inventor 邓伟文丁能根张凯
Owner 南京经纬达汽车科技有限公司
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