Hydraulic accumulator in form of a bellows accumulator
09644644 ยท 2017-05-09
Assignee
Inventors
Cpc classification
F15B1/103
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F15B2201/3156
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F15B2201/40
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
A hydraulic accumulator includes an accumulator housing (1), in which a bellows (21) having a selectable number of pleats (23) forms a mobile separation element between the gas side (25) and the fluid side (13). A distancing device (33) is arranged inside the accumulator housing (1), and is fluidically connected to the inside of the bellows (21) or abuts the bellows (21), forming an additional medium chamber.
Claims
1. A hydraulic accumulator, comprising: an accumulator housing having a gas chamber and a fluid chamber; a bellows with a preselected number of pleats located in said accumulator housing and forming a movable separation between said gas chamber and said fluid chamber, said bellows having an interior and an open end; and a spacer device being a separate element being disposed in said accumulator housing in an axially immovable position and being in fluid communication with said interior of said bellows, said spacer device being a pot with a pot opening on said open end of said bellows with a fluid-tight connection between said pot and said bellows, said pot having a pot interior, being defined by a side wall only extending perpendicularly from periphery of a flat base, forming a part of said gas chamber and forming a minimum volume of said gas chamber with said bellows being minimum volume of said gas chamber is selected by selecting a depth of said pot, said side wall being integral with said flat base, said flat base extending perpendicularly to a longitudinal axis of said accumulator housing minimum volume of said gas chamber is selected by selecting a depth of said pot.
2. A hydraulic accumulator according to claim 1 wherein said pot is secured to an immovable end of said bellows at said pot opening.
3. A hydraulic accumulator according to claim 1 wherein said base of said pot is situated at a first end of said accumulator housing and has a gas filling connection for a working gas.
4. A hydraulic accumulator according to claim 3 wherein a housing fluid end part is on a second end of said accumulator housing opposite said first end, comprises a fluid connection, and borders said fluid chamber outside of said bellows.
5. A hydraulic accumulator according to claim 4 wherein said housing fluid end part forms a stop limiting movements of said bellows to a stroke corresponding to a predefined maximum volume of said interior of said bellows plus said pot interior.
6. A hydraulic accumulator according to claim 5 wherein said accumulator housing comprises a bellow tube with open opposite ends, with said pot and said housing fluid end part being connected to said open opposite ends of said tube by snap rings.
7. A hydraulic accumulator, comprising: an accumulator housing having a gas chamber and a fluid chamber; a bellows with a preselected number of pleats located in said accumulator housing and forming a movable separation between said gas chamber and said fluid chamber, said bellows having an interior and an open end; and a spacer device being a separate element being disposed in said accumulator housing in an axially immovable position and being in fluid communication with said interior of said bellows, said spacer device being a pot with a base, a cylindrical side wall extending perpendicularly from said base and a port opening on an end of said side wall remote from said base and on said open end of said bellows with a fluid-tight connection between said pot and said bellows, said pot having a pot interior being defined solely by an inside surface of said side wall and an inside surface of said base forming a part of said gas chamber and forming a minimum volume of said gas chamber solely by an axial length of said side wall when said bellows is compressed to a maximum extent, said side wall being integral with said base, said base extending perpendicularly to a longitudinal axis of said accumulator housing; whereby, for a given number of said pleats of said bellows, the minimum volume of said gas chamber is selected by solely selecting said axial length of said side wall of said pot.
8. A hydraulic accumulator according to claim 7 wherein said pot is secured to an immovable end of said bellows at said pot opening.
9. A hydraulic accumulator according to claim 7 wherein said base of said pot is situated at a first end of said accumulator housing and has a gas filling connection for a working gas.
10. A hydraulic accumulator according to claim 9 wherein a housing fluid end part is on a second end of said accumulator housing opposite said first end, comprises a fluid connection, and borders said fluid chamber outside of said bellows.
11. A hydraulic accumulator according to claim 10 wherein said housing fluid end part forms a stop limiting movements of said bellows to a stroke corresponding to a predefined maximum volume of said interior of said bellows plus said pot interior.
12. A hydraulic accumulator according to claim 11 wherein said accumulator housing comprises a bellow tube with open opposite ends, with said pot and said housing fluid end part being connected to said open opposite ends of said tube by snap rings.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) Referring to the drawings that form a part of this disclosure:
(2)
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DETAILED DESCRIPTION OF THE INVENTION
(6) The exemplary embodiments illustrated in
(7) In the interior of the accumulator housing 1, a metal bellows 21 having a predefined number of bellows pleats 23, only some of which are labeled in the figures, forms the separation element between the fluid side 13 and a gas side or chamber 25. The bellows 21 is open at the end 27 at the top in the drawing and is closed at its other lower end 29, such that in the exemplary embodiment in
(8) The example of
(9) The exemplary embodiment of
(10) The example of
(11) Manufacturing the accumulator housing 1 from a tube body permits a particularly simple, economical and inexpensive production of the bellows accumulator.
(12) Hydraulic accumulators of various specifications according to the invention can be designed with bellows 21 having the same number of bellows pleats 23, by preselecting a minimum volume through the choice of the depth of the respective pot 33. This volume then corresponds essentially to the volume of the pot 33 with the bellows 21 compressed. On the other hand, the maximum volume of the other media space, which is on the outside of the compressed bellows 21, is predetermined through the choice of the axial length of the accumulator housing 1.
(13) While various embodiments have been chosen to illustrate the invention, it will be understood by those skilled in the art that various changes and modifications can be made therein without departing from the scope of the invention as defined in the claims.