IP Library › Granted Patent US 8,757,417
Granted Patent B2
US 8,757,417 · App. 12/307,954 · Granted Jun 24, 2014

Container comprising a sealing element

Inventors: Hans-Jürgen Neumann (Rüsselsheim, DE); Stephan Schlicht (Nauheim, DE); Christoph Schiel (Bad Nauheim, DE)
Assignee: Continental Teves AG & Co. oHG
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Quick Facts
Patent No.
US 8,757,417
App. No.
12/307,954
Granted
Jun 24, 2014
Kind
B2
Abstract

A pressure medium container for hydraulic motor vehicle braking systems, with at least one chamber which can be filled with a liquid medium via a filler neck, and with a cover which can be fastened to the filler neck and has means for equalizing the pressure between the chamber and the atmosphere, wherein a sealing element is provided to prevent the liquid medium from emerging from the chamber. The sealing element has a space exposed to the atmosphere and has one or more openings facing the chamber, the space being configured such that liquid medium penetrating the space undergoes an increase in surface area, while its volume remains constant, when displaced by means of a further gaseous medium, and, when a threshold surface tension is reached, the liquid medium is forced back into the chamber such that the gaseous medium can flow into the atmosphere via the sealing element.

Claims (19)

1. A container comprising:

at least one chamber which can be filled with a liquid medium through a filler neck;

a cover which is configured to be fastened to the filler neck;

means for equalizing the pressure between the chamber and the atmosphere;

a unitary sealing element that is configured to prevent the liquid medium from emerging from the chamber, wherein the unitary sealing element includes a funnel-shaped element defining a space which is exposed to the atmosphere and has one or more holes facing the chamber, and

first and second concentrically encircling projections on an underside surface of the cover, wherein each of the first and second encircling projections is interrupted by a gap, wherein after the installation of the cover, the first and second encircling projections bear against an upper side of the sealing element and the gaps that are formed in the first and second encircling projections together form an air duct for the passage of air out of the container,

a third encircling projection on an underside surface of the cover that is configured to be fastened to the sealing element and is spaced radially inwardly from the first and second concentrically encircling projections,

wherein the funnel-shaped element includes a narrowed end extending in a direction of the chamber at which the holes are provided,

wherein the unitary sealing element has a peripheral projection on an outer side of the funnel-shaped element that is positioned at a location adjacent the one or more holes which is directed axially towards the chamber and projects over the one or more holes such that the peripheral projection is positioned at a lower elevation within the chamber than the one or more holes, and

wherein the space is configured such that liquid medium penetrating the space undergoes an increase in its surface area while its volume remains substantially constant when displaced by means of a gaseous medium, and, the liquid medium is urged back into the chamber such that the gaseous medium can flow into the atmosphere through the unitary sealing element when a threshold surface tension of the liquid medium is reached.

2. The container as claimed in claim 1 , wherein the space extends in the axial direction with respect to a center axis (M) of the container.

3. The container as claimed in claim 1 , wherein the space extends in the radial direction with respect to a center axis (M) of the container.

4. The container as claimed in claim 2 , wherein the space has a curved shape.

5. The container as claimed in claim 1 , wherein the sealing element includes holes in the region of the funnel which are provided outside the peripheral projection and are distributed uniformly over the circumference of the funnel.

6. The container as claimed in claim 1 further comprising one or more concentrically encircling sealing lips for sealing the filler neck that are integrally formed on the sealing element.

7. The container as claimed in claim 1 , wherein the container is a pressure medium container for hydraulic motor vehicle braking systems.

8. A method for ventilating and aerating a container comprising a cover and a sealing element as claimed in claim 1 , wherein the container stores the liquid medium in at least one chamber, wherein the liquid medium which penetrates the sealing element is displaced by the gaseous medium, and wherein the surface area of the fluid medium is increased while the volume of the liquid medium remains substantially constant when the liquid medium is displaced, and wherein when a threshold surface tension of the fluid medium is reached, the fluid medium is forced back into the chamber thereby enabling the gaseous medium to flow into the atmosphere though the sealing element.

9. The container as claimed in claim 1 wherein multiple holes are distributed uniformly over a circumference of the funnel-shaped element.

10. The container as claimed in claim 1 wherein the peripheral projection is radially spaced from the one or more holes.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 12, 2009
From: NEUMANN, HANS-JURGEN; SCHIEL, CHRISTOPH; SCHLICHT, STEPHAN
To: CONTINENTAL TEVES AG & CO. OHG
Reel/Frame 022090/0435 →
Priority Claims (2)
DE 10 2006 031 931 · Jul 11, 2006 · national
DE 10 2006 046 479 · Sep 29, 2006 · national
Continuity (1)
Related Publication 20090291628A1 · Nov 26, 2009