Method of producing electromagnetic valve

5829122
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Inventors

Keuerleber, Horst
Brehm, Werner
Fleischer, Walter
Gensheimer, Kurt

Application #

552579

Filed

Nov-3-1995

Published

Nov-3-1998

Current US Class

029/511
029/602.1
239/585.5
251/129.21

International Classes

H01F 041/00

Field of Search

29/602.1 29/511 239/585.5 251/129.21

Assignee

Robert Bosch GmbH (Stuttgart, DE)

Examiners

Hall; Carl E.

Attorney, Agent or Firm

Striker; Michael J.

US Patent References

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5289627   Fuel injector assem...

Referenced by:

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Citation

Cite This Patent

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Abstract
A method of producing an electromagnetic valve includes deep drawing of a magnet housing, arranging a magnet coil, a magnet core and a plunger connected with an armature in the magnet housing, connecting a valve closing element which has a valve element for controlling a pressure medium flow, with the magnet housing by flanging a flared flange with a shoulder of the magnet housing relative to the valve closing element, and producing both the flared flange and the shoulder during the deep drawing of the magnet housing in a non-material-removing deformation step.
 
Claims
What is claimed as new and desired to be protected by Letters Patent is set forth in the appended claims:

1. A method of producing an electromagnetic valve, comprising the steps of deep drawing of a magnetic material member to form a magnet housing; arranging a magnet coil, a magnet core and a plunger connected with an armature in the magnet housing; connecting a valve closing element which has a valve element for controlling a pressure medium flow, with the magnet housing by flanging a flared flange with a shoulder of the magnet housing relative to the valve closing element; and producing both the flared flange and the shoulder during the deep drawing of the magnet housing in a non-material-removing deformation step.



Description
BACKGROUND OF THE INVENTION

The present invention relates to a method of producing an electromagnetic valve.

Electromagnetic valves which usually are composed of a magnet part and a vale closing element are produced so that a magnet housing of the magnet part is made by deep drawing or in other words without a material removal. When the magnet housing is so made, a flared flange with a circular shoulder is formed in its casing by turning. In order to obtain a perpendicular transition despite the wear of the rotary tool in the region between the shoulder and the flared flange, a recess is formed in an additional manufacturing step, such as for example by turning. The thusly produced magnet housing is then provided with the components of the magnet part. Jetting of the magnet housing with synthetic plastic material is performed in some cases. In order to connect the valve closing element with the magnet part or the magnet housing, the valve closing element is inserted in the region of the flared flange into the magnet housing. For low friction support of the armature between the magnet housing and the valve closing element, a diaphragm spring is inserted and abuts against the shoulder of the magnet housing. Then the flared flange of the magnet housing is flanged over relative to the valve closing element, and the desired connection between the magnet housing and the valve closing element is obtained. The disadvantage of the known manufacturing process is that the magnet housing is relatively expensive to manufacture in view of the flared flange with the shoulder produced in a material removing manner and in view of the recess which also is produced in a material-removing manufacturing step.
 
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