IP Library Granted Patent US 10,309,357
Granted Patent B2
US 10,309,357 · App. 15/021,785 · Granted Jun 4, 2019

Fluid injector

Inventors: Stefano Filippi (Castel Anselmo Collessalvetti, IT); Mauro Grandi (Leghorn, IT); Francesco Lenzi (Leghorn, IT)
Assignee: Continental Automotive GmbH
F02M51/0682F02M51/0614F02M51/0685F02M61/166F02M2200/02F02M2200/08F02M2200/90
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Quick Facts
Patent No.
US 10,309,357
App. No.
15/021,785
Granted
Jun 4, 2019
Kind
B2
Abstract

A fluid injector for a combustion engine has a tubular body which hydraulically connects a fluid inlet end of the injector to a fluid outlet end of the injector. A magnetic core is affixed inside the body, a solenoid is disposed on the outside of the body, and an axially moveable armature is disposed inside the body. A valve assembly controls an axial flow of fluid through the body. The valve assembly has a valve needle to be operated by the armature and a sleeve of diamagnetic material which is located radially between the armature and the body.

Claims (23)

1. A fluid injector for injecting fuel into a combustion engine, the fluid injector comprising:

a tubular body hydraulically connecting a fluid inlet end of the injector to a fluid outlet end of the injector;

a magnetic core affixed inside said body;

a solenoid disposed on an outside of said body;

an armature inside said body and mounted for axial movement;

a valve assembly for controlling an axial flow of fluid through said body, said valve assembly including a valve needle configured to be operated by said armature;

said valve needle including an armature retainer formed for extending into a corresponding cavity formed in said magnetic core and for axially guiding said valve needle;

said valve needle extending axially through said armature and said armature retainer being shaped for permitting a predetermined tilting of said valve needle with respect to said magnetic core; and

a sleeve of diamagnetic material disposed radially between said armature and said body, said sleeve being affixed to an inner radial surface of said tubular body and said tubular body, said sleeve and said armature being dimensioned for forming an annular gap between said sleeve and said armature, said sleeve having a mass and a magnetic susceptibility selected for substantially cancelling out radial forces on said armature with radial forces from said sleeve when said solenoid is energized;

said armature and said sleeve overlapping axially and said sleeve being operable for generating an increasing force biasing said armature away from said tubular body the closer said armature comes to said tubular body.

2. The injector according to claim 1 , wherein said annular gap is a fluid-filled gap.

3. The injector according to claim 1 , wherein said sleeve comprises a polymer having a diamagnetic material suspended therein.

4. The injector according to claim 1 , wherein said valve needle is a tube extending axially through said armature for conducting the fluid.

5. A fluid injector for injecting fuel into a combustion engine, the fluid injector comprising:

a tubular body hydraulically connecting a fluid inlet end of the injector to a fluid outlet end of the injector;

a magnetic core affixed inside said body;

a solenoid disposed on an outside of said body;

an armature inside said body and mounted for axial movement;

a valve assembly for controlling an axial flow of fluid through said body, said valve assembly including a valve needle configured to be operated by said armature;

said valve needle including an armature retainer formed for extending into a corresponding cavity formed in said magnetic core and for axially guiding said valve needle;

said valve needle extending axially through said armature and said armature retainer being shaped for permitting a predetermined tilting of said armature with respect to said magnetic core; and

a sleeve of diamagnetic material disposed radially between said armature and said body, said sleeve being affixed to an inner radial surface of said tubular body and said tubular body, said sleeve and said armature being dimensioned for forming an annular gap between said sleeve and said armature, said sleeve having a mass and a magnetic susceptibility selected for substantially cancelling out radial forces on said armature with radial forces from said sleeve when said solenoid is energized;

said armature and said sleeve overlapping axially and said sleeve being operable for generating an increasing force biasing said armature away from said tubular body the closer said armature comes to said tubular body.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 27, 2020
From: CONTINENTAL AUTOMOTIVE GMBH
To: VITESCO TECHNOLOGIES GMBH
Reel/Frame 053323/0914 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 25, 2016
From: FILIPPI, STEFANO; GRANDI, MAURO; LENZI, FRANCESCO
To: CONTINENTAL AUTOMOTIVE GMBH
Reel/Frame 038365/0290 →
Priority Claims (1)
EP 13184401 · Sep 13, 2013 · regional
Continuity (1)
Related Publication 20160230724A1 · Aug 11, 2016