[미국특허]
Piston pump with at least one piston element
원문보기
IPC분류정보
국가/구분 |
United States(US) Patent
등록
|
국제특허분류(IPC7판) |
|
출원번호 |
US-0721983
(2005-12-14)
|
등록번호 |
US-8118573
(2012-02-21)
|
우선권정보 |
DE-10 2004 061 813 (2004-12-22) |
국제출원번호 |
PCT/EP2005/056773
(2005-12-14)
|
§371/§102 date |
20070618
(20070618)
|
국제공개번호 |
WO2006/067076
(2006-06-29)
|
발명자
/ 주소 |
|
출원인 / 주소 |
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대리인 / 주소 |
|
인용정보 |
피인용 횟수 :
0 인용 특허 :
9 |
초록
▼
A piston pump having a piston longitudinally movable in a housing. A first pressure chamber is delimited by the piston element and a component affixed to the housing. The first pressure chamber is connected to a suction region via an inlet valve and is operationally connected to a delivery side via
A piston pump having a piston longitudinally movable in a housing. A first pressure chamber is delimited by the piston element and a component affixed to the housing. The first pressure chamber is connected to a suction region via an inlet valve and is operationally connected to a delivery side via an outlet valve. A compensation piston unit has a working piston chamber connected to the delivery side. A stroke volume of the first pressure chamber is twice the size of a stroke volume of the working piston chamber. The piston element and a component affixed to the housing delimit a second pressure chamber connected to the suction region which is operationally connected to the first pressure chamber during a suction stroke of the piston element whose volume varies by half the stroke volume of the first pressure chamber and expands with a delivery stroke of the piston element.
대표청구항
▼
1. A piston pump comprising: at least one piston element situated in longitudinally moving fashion in a housing and driven by a drive unit, a first pressure chamber, delimited by the at least one piston element and at least one component affixed to the housing, connected to a suction region of the p
1. A piston pump comprising: at least one piston element situated in longitudinally moving fashion in a housing and driven by a drive unit, a first pressure chamber, delimited by the at least one piston element and at least one component affixed to the housing, connected to a suction region of the pump via an inlet valve device and operationally connected to a delivery side of the pump via an outlet valve device, and a compensation piston unit, driven by the drive unit, having a working piston chamber connected to the delivery side of the pump, wherein the first pressure chamber of the piston pump has a stroke volume that is twice a size of a stroke volume of the working piston chamber,wherein the at least one piston element and the at least one component affixed to the housing delimit a second pressure chamber which is connected to the suction region of the pump and is operationally connected to the first pressure chamber during a suction stroke of the at least one piston element,wherein the second pressure chamber has a volume that varies by half the stroke volume of the first pressure chamber as a function of a movement of the piston element, and expands during a delivery stroke of the at least one piston element that decreases the volume of the first pressure chamber, andwherein the at least one piston element is embodied as a hollow deep-drawn component, the second pressure chamber is situated between an outer circumferential surface of the at least one piston element and the at least one component affixed to the housing and communicates with an inner chamber of the at least one piston element via at least one opening in the circumferential surface of the at least one piston element, which inner chamber is connected to the first pressure chamber via the inlet valve device. 2. The piston pump according to claim 1, wherein the drive unit is equipped with a drive shaft and at least one cam supported thereon. 3. The piston pump according to claim 1, wherein the working piston chamber of the compensation piston unit is connected to a master cylinder of a vehicle brake system. 4. The piston pump according to claim 2, wherein the working piston chamber of the compensation piston unit is connected to a master cylinder of a vehicle brake system. 5. The piston pump according to claim 3, further comprising a check valve between the working piston chamber of the compensation piston unit and the master cylinder, which check valve operates in a direction from the master cylinder toward the working piston chamber and closes the connection between the master cylinder and the working piston chamber in the presence of a positive pressure difference. 6. The piston pump according to claim 4, further comprising a check valve between the working piston chamber of the compensation piston unit and the master cylinder, which check valve operates in a direction from the master cylinder toward the working piston chamber and closes the connection between the master cylinder and the working piston chamber in the presence of a positive pressure difference. 7. The piston pump according to claim 1, wherein the inlet valve device is embodied with a disk-like sealing element. 8. The piston pump according to claim 2, wherein the inlet valve device is embodied with a disk-like sealing element. 9. A piston pump comprising: at least one piston element situated in longitudinally moving fashion in a housing and driven by a drive unit, a first pressure chamber, delimited by the at least one piston element and at least one component affixed to the housing, connected to a suction region of the pump via an inlet valve device and operationally connected to a delivery side of the pump via an outlet valve device, and a compensation piston unit, driven by the drive unit, having a working piston chamber connected to the delivery side of the pump, wherein the first pressure chamber of the piston pump has a stroke volume that is twice a size of a stroke volume of the working piston chamber,wherein the at least one piston element and the at least one component affixed to the housing delimit a second pressure chamber which is connected to the suction region of the pump and is operationally connected to the first pressure chamber during a suction stroke of the at least one piston element,wherein the second pressure chamber has a volume that varies by half the stroke volume of the first pressure chamber as a function of a movement of the piston element, and expands during a delivery stroke of the at least one piston element that decreases the volume of the first pressure chamber,wherein the working piston chamber of the compensation piston unit is connected to a master cylinder of a vehicle brake system, andwherein the piston pump further comprising a check valve between the working piston chamber of the compensation piston unit and the master cylinder, which check valve operates in a direction from the master cylinder toward the working piston chamber and closes a connection between the master cylinder and the working piston chamber upon a presence of a positive pressure difference.
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Couillard Francois (Pau FRX), Constant flow rate liquid pumping system.
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Backe Wolfgang,DEX ; Langen Alfred,DEX ; Jarchow Marcus,DEX, Device to reduce pulsations on a hydrostatic positive displacement unit.
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Welschof Bernward,DEX ; Angert Roland,DEX ; Hofmann Richard,DEX ; Dorr Hans-Dieter,DEX ; Bergmann Christian,DEX, Device to reduce pulsations on a hydrostatic positive displacement unit.
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Siegel Heinz (Stuttgart DEX), Feed pump for brake systems.
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Beck Erhard,DEX ; Reinartz Hans-Dieter,DEX ; Otto Albrecht,DEX, Hydraulic brake system.
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Tcholakov Stoil M. (1913 W. Lamar Houston TX 77019), Hydraulic pump output pressure compensation system.
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Anders Christian (Weidstasse 48 D-6710 Frankenthal DEX) Beiersdrfer Roland (Whlingstrasse 4 D-6520 Worms 24 DEX), Liquid pulsation dampener device.
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White Lawrence W. (Bryan OH) Pietrykowski Gabriel J. (Bryan OH), Pulsation damper for a pumped liquid system.
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Yoji Minato JP, Pulsation damping device.
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