Hydraulic fluid accumulator

Information

  • Patent Grant
  • 6644354
  • Patent Number
    6,644,354
  • Date Filed
    Friday, October 4, 2002
    21 years ago
  • Date Issued
    Tuesday, November 11, 2003
    20 years ago
Abstract
The present invention discloses a hydraulic fluid accumulator comprising a housing having an interior subdivided into three chambers, with the first chamber being filled with a gas and separated from the second chamber by a first media separation element, the second chamber being filled with a fluid and separated by a second media separation element from the third chamber that is also filled with a fluid and connected to a hydraulic port. To safeguard an effective separation of media within the hydraulic fluid accumulator and, thus, a significant increase in its functional safety, the present invention arranges for the second media separation element to be embodied by a metal piston delimiting a chamber that can be vented in the housing.
Description




TECHNICAL FIELD




The present invention generally relates to fluid accumulators and more particularly relates to a hydraulic fluid accumulator for brake systems.




BACKGROUND OF THE INVENTION




A hydraulic fluid accumulator of this type is generally disclosed in DE-OS 29 10 554. The first media separation element in the prior art hydraulic fluid accumulator is configured as a metal pleated bellows, while the second media separation element is provided by an elastic partition.




It is disadvantageous in the prior art hydraulic fluid accumulator that an effective separation of media cannot be achieved. Tests have shown that leakage at the pleated bellows that is usually absolutely gas-tight allows the gas to propagate from the first chamber into the second chamber, from there diffusing through the material of the elastic partition into the third chamber. This causes a massive entry of gas into the hydraulic system




BRIEF SUMMARY OF THE INVENTION




Therefore, an object of the present invention is to improve upon a hydraulic fluid accumulator of the type mentioned hereinabove so that the entry of gas into the following hydraulic system is prevented, thereby ensuring a significant increase in the reliability in operation.




According to the present invention, this object is achieved in that the second media separation element is formed of a metal piston delimiting a chamber that is adapted to be vented.




Extremely compact constructions of the subject matter of the present invention are achieved in that the piston is sealed and guided in the housing and embraces the first media separation element in a radial direction and, respectively, that the first chamber is designed between the wall of the housing and the first media separation element and that both the second and the third chamber is provided within the first media separation element.











BRIEF DESCRIPTION OF THE DRAWINGS





FIG. 1

is an axial sectional view of a first embodiment of the hydraulic fluid accumulator of the present invention.





FIG. 2

shows an illustration corresponding to

FIG. 1

of a second embodiment of the hydraulic fluid accumulator of the present invention.











DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENT




The first embodiment of the hydraulic fluid accumulator of the present invention as shown in

FIG. 1

comprises a housing


1


having an interior that is subdivided into three pressure compartments or chambers


2


,


3


,


4


. The first chamber


2


is formed by the inner space of a first media separation element


6


that is preferably composed of a thin-walled metal pleated bellows being connected pressure-tightly to the housing


1


, on the one hand, and closed by a plate


13


, on the other hand.




The first chamber


2


can be filled with a gas that is normally under high pressure through a fill port (not shown) arranged in housing


1


. A piston


8


preferably made of metal, that is guided in housing


1


so as to be displaceable and encompasses the above-mentioned pleated bellows


6


in a radial direction, confines with the pleated bellows


6


the second chamber


3


and forms a second media separation element designated by reference numeral


7


. Incorporated in the bottom part of the housing


1


is the third chamber


4


, a hydraulic port


5


opening into said chamber. A radial recess arranged at the periphery of the piston


8


along with the wall of housing


1


defines a compartment


9


which is in communication with the atmosphere by way of bores


14


. The compartment


9


is sealed in relation to the second chamber


3


or, respectively, the third chamber


4


by means of each one elastic ring seal


11


or


12


, respectively. When brake fluid is used to fill the second chamber


3


, it is possible to connect the above-mentioned compartment


9


to a brake fluid reservoir. To reduce the natural leakage at the first-mentioned ring seal


11


, it is also possible to use a particularly viscous fluid for filling the second chamber


3


, with the said fluid, however, being then discharged into e.g. the atmosphere rather than into the brake fluid reservoir.




In the second embodiment of the subject matter of the present invention illustrated in

FIG. 2

, the first chamber


20


is not formed by the inner space of the first media separation element


60


, as described above, but is delimited between the wall of the housing


10


and the first media separation element or pleated bellows


60


. The inner space of the pleated bellows


60


forms the second chamber


30


projecting into which is a cylindrical guide element


15


that is associated with the housing


10


, in which the second media separation element


70


or, respectively, the piston


80


is guided and the third chamber


40


is arranged. The compartment


90


mentioned with respect to FIG.


2


and defined between the piston


80


and the cylindrical guide element


15


—similar to the embodiment shown in FIG.


1


—is sealed in relation to the second chamber


30


and the third chamber


40


, respectively, by each one ring seal


110


,


120


and connects to the atmosphere by way of a schematically shown channel


18


. Further, piston


80


includes a hydraulic connection


19


between the second and the third chamber


30


,


40


wherein a non-return valve


17


closing towards the third chamber


40


is inserted. The non-return valve


17


is used to fill and, respectively, replenish separating fluid into the second chamber


30


.



Claims
  • 1. Hydraulic fluid accumulator, comprising;a housing having an interior subdivided into three chambers, wherein the first chamber is filled with a gas and separated from the second chamber by a first media separation element, wherein the second chamber is filled with a fluid and separated by a second media separation element from the third chamber, wherein the third chamber is also filled with a fluid and connected to a hydraulic port, wherein the second media separation element includes a metal piston delimiting a compartment that is adapted to be vented in the housing wherein the first chamber is arranged between a wall of the housing and the first media separation element, and wherein the second chamber and the third chamber are provided within the first media separation element.
  • 2. Hydraulic fluid accumulator as claimed in claim 1, wherein the first media separation element and the second media separation element are arranged coaxially.
  • 3. Hydraulic fluid accumulator as claimed in claim 1, wherein the metal piston is guided in the housing so as to be displaceable.
  • 4. Hydraulic fluid accumulator as claimed in claim 1, wherein the second chamber is delimited by the first media separation element and by a cylindrical guide member.
  • 5. Hydraulic fluid accumulator as claimed in claim 4, wherein the metal piston includes a hydraulic connection between the second chamber and the third chamber, wherein a non-return valve closing towards the hydraulic port is inserted into said hydraulic connection.
  • 6. Hydraulic fluid accumulator as claimed in claim 1, wherein the vented compartment is sealed in relation to the second and the third chambers by means of two elastic, ring seals.
  • 7. Hydraulic fluid accumulator, comprising:a housing having an interior subdivided into three chambers, wherein the first chamber is filled with a gas and separated from the second chamber by a first media separation element, wherein the second chamber is filled with a fluid and separated by a second media separation element from the third chamber, wherein the third chamber is also filled with a fluid and connected to a hydraulic port, wherein the second media separation element includes a metal piston delimiting a compartment that is adapted to be vented in the housing wherein the vented compartment is scaled in relation to the second and the third chambers by means of two elastic, ring seals.
PCT Information
Filing Document Filing Date Country Kind
PCT/EP01/03783 WO 00
Publishing Document Publishing Date Country Kind
WO01/75312 10/11/2001 WO A
US Referenced Citations (8)
Number Name Date Kind
3015345 Michael Jan 1962 A
3074437 Mercier Jan 1963 A
4207563 Soupal Jun 1980 A
4538972 Gooden Sep 1985 A
4691739 Gooden Sep 1987 A
4769990 Bach et al. Sep 1988 A
6286552 Shimbori et al. Sep 2001 B1
6478051 Drumm et al. Nov 2002 B1
Foreign Referenced Citations (9)
Number Date Country
1235692 Mar 1967 DE
2910554 Sep 1980 DE
3041185 May 1982 DE
3900899 Jul 1989 DE
3917797 Dec 1990 DE
3930557 Mar 1991 DE
4115342 Nov 1992 DE
19648168 May 1998 DE
19814835 Oct 1999 DE