US2022009467A1PendingUtilityA1
Opposed high pressure hydraulic system
Est. expiryOct 29, 2029(~3.2 yrs left)· nominal 20-yr term from priority
Inventors:Robert W. Henricksen
B60T 17/221F16D 48/02F16D 2048/0212B60T 11/165F16D 48/04B60T 17/222B60T 13/142F16D 65/28
63
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Claims
Abstract
Braking systems and methods having above atmospheric pressure applied to the working hydraulic fluid of the braking system. In certain preferred arrangements, the braking system includes at least one source of pressure, which pressurizes a fluid. The pressurized fluid acts on respective pressure surfaces of the master plunger(s) and the slave piston(s) that are opposite the active or working surfaces of the master plunger(s) and the slave piston(s).
Claims
exact text as granted — not AI-modifiedWhat is claimed is:
1 . A pressurized brake system, comprising:
a master cylinder at least partially defining a master chamber; a master plunger that slides within the master cylinder, the master plunger having a master plunger active face facing the master chamber and a master plunger pressure face opposite the master plunger active face; a master reservoir housing at least partially defining a master reservoir chamber, wherein the master reservoir chamber is selectively put in fluid communication with the master chamber; a slave cylinder at least partially defining a slave chamber; a slave piston that slides within the slave cylinder, the slave piston having a slave piston active face facing the slave chamber and a slave piston pressure face opposite the slave piston active face, wherein the master chamber is in fluid communication with the slave chamber such that movement of the master plunger results in hydraulic movement of the slave piston; at least one remote reservoir defining a remote pressure chamber, wherein fluid pressure from the remote pressure chamber acts on the master plunger pressure face of the master plunger and the slave piston pressure face of the slave piston.
2 . The pressurized brake system of claim 1 , wherein the at least one remote pressure reservoir comprises a first remote pressure reservoir and a second remote pressure reservoir, wherein pressure from the first remote pressure reservoir acts on the pressure face of the master plunger and pressure from the second remote pressure reservoir acts on the pressure face of the slave piston.
3 . The pressurized brake system of claim 1 , further comprising a movable wall between the remote pressure chamber and the master reservoir chamber such that pressure from the remote pressure chamber acts on the master reservoir chamber.
4 . The pressurized brake system of claim 1 , further comprising a gas chamber containing a pressurized gas, wherein pressure from the gas chamber acts on the remote pressure chamber.
5 . The pressurized brake system of claim 4 , further comprising a valve communicating with the gas chamber that permits a pressure of the pressurized gas to be adjusted.
6 . A pressurized brake system, comprising:
a master cylinder at least partially defining a master chamber; a master plunger that slides within the master cylinder, the master plunger having a master plunger active face facing the master chamber and a master plunger pressure face opposite the master plunger active face; a slave cylinder at least partially defining a slave chamber; a slave piston that slides within the slave cylinder, the slave piston having a slave piston active face facing the slave chamber and a slave piston pressure face opposite the slave piston active face, wherein the master chamber is in fluid communication with the slave chamber such that movement of the master plunger results in hydraulic movement of the slave piston; at least one pressure chamber, wherein fluid pressure from the at least one pressure chamber acts on the master plunger pressure face of the master plunger and the slave piston pressure face of the slave piston. wherein the master plunger comprises a first portion and a second portion telescopically engaged with one another so as to be directly sealed to one another and movable relative to one another, wherein a compensation chamber defined between the first portion and the second portion is in fluid communication with the at least one pressure chamber.
7 . A vehicle, comprising:
a vehicle body; at least one ground-contacting element configured to propel the vehicle along the ground; a brake system comprising at least one braking mechanism configured to slow or stop the ground-contacting element, the brake system comprising:
a master cylinder at least partially defining a master chamber;
a master plunger that slides within the master cylinder, the master plunger having a working face facing the master chamber and a pressure face opposite the working face;
at least one slave cylinder at least partially defining a slave chamber;
at least one slave piston that slides within the at least one slave cylinder, the slave piston having a working face facing the slave chamber and a pressure face opposite the working face, wherein the master chamber is in fluid communication with the slave chamber such that movement of the master plunger results in hydraulic movement of the at least one slave piston;
at least one pressure chamber, wherein fluid pressure from the at least one pressure chamber acts on the pressure face of the master plunger and the pressure face of the at least one slave piston.
8 . The vehicle of claim 7 , wherein the at least one pressure chamber comprises a single pressure chamber.
9 . The vehicle of claim 7 , wherein the at least one pressure chamber comprises a first pressure chamber and a second pressure chamber, wherein pressure from the first pressure chamber acts on the pressure face of the master plunger and pressure from the second pressure chamber acts on the pressure face of the at least one slave piston.
10 . The vehicle of claim 7 , further comprising a master reservoir housing at least partially defining a master reservoir chamber, wherein the master reservoir chamber is selectively put in fluid communication with the master chamber.
11 . The vehicle of claim 10 , further comprising a movable wall between the at least one pressure chamber and the master reservoir chamber such that pressure from the at least one pressure chamber acts on the master reservoir chamber.
12 . The vehicle of claim 7 , wherein the master plunger comprises a first portion and a second portion movable relative to one another, wherein a compensation chamber defined between the first portion and the second portion is in fluid communication with the at least one pressure chamber.
13 . The vehicle of claim 7 , further comprising at least one gas chamber containing a pressurized gas, wherein pressure from the at least one gas chamber acts on the at least one pressure chamber.
14 . The vehicle of claim 13 , further comprising a valve communicating with the at least one gas chamber that permits a pressure of the pressurized gas to be adjusted.Join the waitlist — get patent alerts
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