IP Library › Granted Patent US 6,881,328
Granted Patent B2
US 6,881,328 · App. 10/250,398 · Granted Apr 19, 2005

Method for evacuating water that has been separated in a fuel filter and a device for carrying out said method

Assignee: Mahle Filtersysteme GmbH
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Quick Facts
Patent No.
US 6,881,328
App. No.
10/250,398
Granted
Apr 19, 2005
Kind
B2
Abstract

A method for directly evacuating water that has been separated from the filtered fuel in a fuel filter and has settled in a water collection chamber ( 4 ) of the fuel filter to an evacuation area that lies above the water level, by opening a shut-off valve ( 7 ), which leads to the exterior of the fuel filter and is connected in a water-conductive manner to the water collection chamber ( 4 ). Said evacuation takes place under a pressure that is higher in the water collection chamber ( 4 ) in relation to the evacuation area, whereby said pressure differential is created either by the operating pressure within the fuel filter during operation, or by a negative pressure that is applied externally. The method permits the simple evacuation of water form the interior of a fuel filter by a method that is not based on gravity. The inventive method can be implemented in a particularly advantageous manner, using specially configured fuel filters.

Claims (30)

1. A fuel filter for a combustion engine having

a filter insert allowing radial flow that is installed in alignment with the vertical axis of the vehicle,

a water collection chamber equipped with a water evacuation device for water extracted from the fuel,

a port for supply and discharge of fuel respectively on the untreated and clean sides in an identical axial first frontal area of the filter, located uppermost along the vertical axis of the vehicle,

a connection hose enclosed by the water evacuation device and leading from the water collection chamber to a shut-off valve provided in the first frontal area of the fuel filter, wherein

the connection hose ( 10 ) runs through the interior cavity at the center of the annular filter insert ( 3 ), wherein it passes through the first frontal surface of the fuel filter and is sealingly insulated therefrom,

an upper, round ring end plate ( 11 ) of the annular filter insert ( 3 ) is assigned to and located at distance from the first frontal surface of the fuel filter,

a connection wall ( 18 ) is provided in the space formed by the distance between the upper ring plate ( 11 ) and the first frontal surface of the fuel filter and has sealed connections, at one end with the upper end plate ( 11 ) and at the other end with the frontal surface of the fuel filter.

2. The fuel filter according to claim 1 , wherein

the connection hose ( 10 ) is arranged eccentrically within the center space inside the annular filter insert ( 3 ).

3. The fuel filter according to claim 2 , wherein

a hollow-cylindrical water separation device ( 16 ) is provided within the center space of the annular filter insert ( 3 ) and has liquid-permeable outer-walls,

wherein the discharge port element ( 6 ) passes in sealed manner into the interior of the water separation device and from there extracts the cleaned fuel from inside the fuel filter.

4. The fuel filter according to claim 1 , wherein

the connection wall ( 18 ) is conformed in the respective connection areas,

centrally round to the axis of the fuel filter at the upper end plate ( 11 ), and

with varying radially outward distances relative to the axis of the fuel filter over its entire circumference at the frontal surface of the fuel filter.

5. The fuel filter according to claim 4 , wherein

a tubular sieve is included as a water separation device ( 16 ) downstream from the annular filter material and inside the treated fuel chamber ( 15 ).

6. The fuel filter according claim 1 , wherein

the annular filter insert ( 3 ) is radially outwardly sealed with its lower end plate ( 12 ) at the housing pan ( 12 ) and allows fluids to flow radially inwards from the periphery,

the water collection chamber ( 4 ) is located below the lower end plate ( 12 ),

the treated fuel chamber ( 15 ) in the radial center of the annular filter insert ( 3 ) is connected with the water collection chamber ( 4 ) to allow the transport of water,

the connection hose ( 10 ) protrudes through the lower end plate ( 12 ) and is sealingly insulated therefrom.

7. The fuel filter according to claim 1 , wherein

the connection wall ( 18 ) is constructed in its connection area for the upper end plate ( 11 ) as a round collar, with which the upper end plate ( 11 ) engages radially from the inside, and is sealingly insulated therefrom by a radial seal ( 25 ).

8. The fuel filter according to claim 1 , wherein

the upper end plate ( 11 ) is made from plastic and the connection wall ( 18 ) is made from metal.

9. The fuel filter according to claim 1 , wherein

a water sensor device ( 9 ) is incorporated in the connection hose ( 10 ).

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 17, 2003
From: DITTMANN, JORG; GANSWEIN, MATTHIAS; METZ, FRANK; DE ABREU, RICARDO SIMOES; MANZATO, EDSON
To: MAHLE FILTERSYSTEME GMBH
Reel/Frame 014695/0538 →
Priority Claims (3)
DE 101 24 883 · May 22, 2001 · national
DE 101 24 887 · May 22, 2001 · national
DE 101 63 770 · Dec 27, 2001 · national
Continuity (1)
Related Publication 20040050804A1 · Mar 18, 2004