IP Library › Granted Patent US 11,592,040
Granted Patent B2
US 11,592,040 · App. 17/284,314 · Granted Feb 28, 2023

Compressed-air treatment system and method for operating a compressed-air treatment system

Inventor: Ferenc Zeman (Budapest, HU)
Assignee: KNORR-BREMSE Systeme fuer Nutzfahrzeuge GmbH
F15B21/005B60T17/004F15B13/024F15B13/027F15B21/048F15B2211/30505F15B2211/88
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Quick Facts
Patent No.
US 11,592,040
App. No.
17/284,314
Granted
Feb 28, 2023
Kind
B2
Abstract

A compressed-air treatment system and operating method are disclosed. The compressed-air treatment system has a first valve unit configured to charge a control line for a compressor with pressure and a pressure regulator valve unit configured to release pressure from a feed line, A control port of the pressure regulator valve unit is connectable to a second valve unit. A regeneration line which has a check valve for regeneration and which is utilized for a regeneration of a dryer cartridge is connected directly to the control line. During a filling operation the compressed-air treatment system is configured to release leakage air of the regeneration check valve via the first valve unit to surroundings. The filling operation is an operating state in which the compressor is activated to perform a supply of compressed air to a vehicle compressed-air system.

Claims (57)

1. A compressed-air treatment system, comprising

a first valve unit configured to selectively apply pressure to a compressor control line;

a second valve unit;

a pressure regulator valve unit, the pressure regulator valve unit including a control port connectable to the second valve unit;

a supply line connectable to a compressor;

an air dryer having a first air dryer port connected to the supply line and a second air dryer port;

a connection line connectable to the second air dryer port,

a first check valve having a first check valve port connected to the connection line and a second check valve port; and

an outlet line connected to the second check valve port,

a regeneration line including a regeneration check valve directly connectable to the control line,

wherein

the pressure regulator valve unit is configured to relieve pressure in the supply line,

the compressed-air treatment system is configured to release leakage air to a surrounding area via the first valve unit from the regeneration check valve during a compressed-air treatment system filling operation,

the first check valve is open when there is an air flow from the connection line via the first check valve to the outlet line,

the first valve unit is configured to selectively connect a first port or a second port of the first valve unit to a third port of the first valve unit, the first port of the first valve unit being connected to the outlet line, the second port of the first valve unit being connected to the surrounding area, and the third port of the first valve unit being connected to the control line,

the second valve unit is configured to selectively open or close a connection between a first port of the second valve unit and a second port of the second valve unit,

the pressure regulator valve unit is configured to open or close a connection between a first port of the pressure regulator valve unit and a second port of the pressure regulator valve unit,

the first port of the second valve unit is connected to the control line and the third port of the first valve unit, the second port of the second valve unit is connected to the control port of the pressure regulator valve unit, and the third port of the first valve unit is connectable to the control port of the pressure regulator valve unit,

the first port of the pressure regulator valve unit is connected to the supply line and the second port of the pressure regulator valve unit is connected to the surrounding area,

the regeneration check valve has a first port connected to the connection line and a second port connected to the third port of the first valve unit, and

the regeneration check valve is configured to open when there is an air flow from the third port of the first valve unit via the regeneration check valve to the connection line.

2. The compressed-air treatment system as claimed in claim 1 , wherein the compressed-air treatment system is configured to perform at least one of

the filling operation, in which air flows from the supply line through the air dryer, the connection line, and the first check valve to the outlet line,

a power-saving operation, in which air flows from the outlet line via the first valve unit to the control line, and

a regeneration operation, in which air flows from the outlet line via the first valve unit and the second valve unit to the control port of the pressure regulator valve unit to cause the first port and the second port of the pressure regulator valve unit to be connected to one another and thereby cause air flow from the outlet line into the surrounding area via the first valve unit, the regeneration check valve, the connection line, the air dryer and the pressure regulator valve unit.

3. The compressed-air treatment system as claimed in claim 2 , wherein

the first valve unit has a 3/2-way valve.

4. The compressed-air treatment system as claimed in claim 3 , wherein

the second valve unit has a 2/2-way valve.

5. The compressed-air treatment system as claimed in claim 4 , wherein

the pressure regulator valve unit has a 2/2-way valve.

6. A method for operating a compressed-air treatment system, the compressed-air treatment system including

a first valve unit configured to selectively apply pressure to a compressor control line;

a second valve unit;

a pressure regulator valve unit, the pressure regulator valve unit including a control port connectable to the second valve unit;

a regeneration line including a regeneration check valve directly connectable to the control line,

a supply line connectable to the compressor;

an air dryer having a first air dryer port connected to the supply line and a second air dryer port;

a connection line connectable to the second air dryer port,

a first check valve having a first check valve port connected to the connection line and a second check valve port; and

an outlet line connected to the second check valve port,

wherein

the pressure regulator valve unit is configured to relieve pressure in the supply line,

the compressed-air treatment system is configured to release leakage air to a surrounding area via the first valve unit from the regeneration check valve during a compressed-air treatment system filling operation,

the first check valve is open when there is an air flow from the connection line via the first check valve to the outlet line,

the first valve unit is configured to selectively connect a first port or a second port of the first valve unit to a third port of the first valve unit, the first port of the first valve unit being connected to the outlet line, the second port of the first valve unit being connected to a surrounding area, and the third port of the first valve unit being connected to the control line,

the second valve unit is configured to selectively open or close a connection between a first port of the second valve unit and a second port of the second valve unit,

the pressure regulator valve unit is configured to open or close a connection between a first port of the pressure regulator valve unit and a second port of the pressure regulator valve unit,

the first port of the second valve unit is connected to the control line and the third port of the first valve unit, the second port of the second valve unit is connected to the control port of the pressure regulator valve unit, and the third port of the first valve unit is connectable to the control port of the pressure regulator valve unit,

the first port of the pressure regulator valve unit is connected to the supply line and the second port of the pressure regulator valve unit is connected to the surrounding area,

the regeneration check valve has a first port connected to the connection line and a second port connected to the third port of the first valve unit, and

the regeneration check valve is configured to open when there is an air flow from the third port of the first valve unit via the regeneration check valve to the connection line,

the method comprising the act of:

performing with the compressed-air treatment system by at least one of:

the filling operation in which the compressor is actuated to supply compressed air to a vehicle compressed air system via the supply line, the air dryer, the connection line, the first check valve and the outlet line;

a power-saving operation in which the compressor is actuated to stop the compressed air supply while a pressure is maintained in the supply line; and

a regeneration operation in which the compressor is actuated to stop the compressed air supply and the first valve unit and the second valve unit are actuated such that air flows from the outlet line the control port of the pressure regulator valve unit via the first valve unit and the second valve unit to cause the first port and the second port of the pressure regulator valve unit are connected to one another so that air flows from the outlet line into the surrounding area via the first valve unit, the regeneration check valve, the connection line, the air dryer and the pressure regulator valve unit.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 4, 2021
From: ZEMAN, FERENC
To: KNORR-BREMSE SYSTEME FUER NUTZFAHRZEUGE GMBH
Reel/Frame 056123/0263 →
Priority Claims (1)
DE 10 2018 217 405.9 · Oct 11, 2018 · national
Continuity (1)
Related Publication 20210404490A1 · Dec 30, 2021