The present invention relates to a connector system for a fuel injection valve to be inserted into a receiving orifice into a cylinder head.
The German patent document DE 101 12 665 A1 discusses a mounting apparatus for mounting a fuel injection valve for direct injection of fuel into the combustion chamber of an internal combustion chamber, which apparatus encompasses a holddown that is slipped onto the fuel injection valve, the holddown being embodied as a flat component and being braced against a sleeve, fitting around the fuel injection valve, that serves for tolerance compensation upon installation of the fuel injection valve. The holddown is tightened with the aid of a corresponding tool sufficiently firmly that the fuel injection valve is not pushed out of the cylinder head by the pressure existing in the combustion chamber of the internal combustion engine.
A particular disadvantage of this mounting apparatus is the clamping effect of the clamping claw on the fuel injection valve. The energy flow produced in the fuel injection valve results in deformations and thus in changes in the stroke of the valve needle to the point of jamming, and in a compressive or flexural load on the housing parts, which are generally thin-walled and welded to one another at multiple locations. Any mounting action, for example by way of a support collar, furthermore results in an enlargement of the radial extent of the fuel injection valve and thus in an increased space requirement upon installation.
Tolerance compensation between the injection valve and the fuel distributor line is implemented by the fact that the tubing line is pulled forcibly into the desired position, which causes a deformation of the tubing line. The transverse forces acting on the injection valve in that context are received by the injection valve. The large forces acting on the fuel injection valve can moreover cause the fuel injection valve to be pushed so strongly into the receiving orifice of the cylinder head that beads form, and the fuel injection valve becomes caught in these beads, complicating further tolerance compensation due to lack of movability in the cylinder head.
The connector system according to the exemplary embodiment of the present invention for a fuel injection valve to be inserted into a receiving orifice into a cylinder head, for connection to a fuel distributor line that encompasses a connector to a tubing line leading to a fuel reservoir, having a connecting part for connection to the tubing line and having the characterizing features of the main claim, has, in contrast, the advantage that no excessive transverse forces that damage the valve are effective upon installation onto the fuel injection valve.
The tolerance compensation necessary therefore is carried out on the one hand at the connecting part to the tubing line, by the fact that the ball-shaped end part according to the exemplary embodiment of the present invention can be moved, prior to tightening of the coupling nut, perpendicular to the plane in which the tubing line is located, and thus makes possible installation without transverse forces. A motion of the tubing line along its extent, caused by axial forces, causes an elastic or plastic deformation as soon as the tubing line can no longer receive those axial forces along its extent.
Compensation for these forces is accomplished at the elongated opening according to the exemplary embodiment of the present invention of the holddown claw, which opening serves as a guide. The fuel injection valve, secured in the axial direction of the receiving orifice of the cylinder head, can move back and forth with a small deflection in this opening that serves as a guide; this represents a rotary motion about a cylinder head seal as fixed point. This ensures that a tolerance compensation in all planes is possible, specifically in such a way that no transverse or longitudinal forces that might occur during installation as a result of production tolerances act on the fuel injection valve. For this, movability of the tubing line in the connector regions must also exist; this is ensured by the system according to the exemplary embodiment of the present invention for connecting a fuel injection valve to a fuel distributor line.
Connector system 1, 1a according to the exemplary embodiment of the present invention, for a fuel injection valve 2 to be inserted into a receiving orifice in a cylinder head for connection to a fuel distributor line 4 that encompasses a connector 5 to a tubing line 6 leading to a fuel reservoir, having a connecting part 7 for connection to tubing line 6, is characterized in that a holddown claw 8 has at its first end 9 an elongated opening 10 for reception of a connector piece 11, connected to the inflow-side end of the fuel injection valve, to fuel distributor line 4; and that connecting part 7 to tubing line 6 has a tube screw fitting 12 having an end piece 13.
End piece 13, which can be embodied as a spherical pivoting part, is movable, before the tightening of a coupling nut 23, perpendicular to direction 37 in which tubular line 6 extends, production tolerances being compensated for. Tubing line 6 is mounted, force-neutrally in terms of directions 35, 36 that extend perpendicular to direction 37 in which tubing line 6 extends, on a flange 26 at inflow-side end 24 of fuel distributor line 4. In a further exemplifying embodiment, end piece 13 can be embodied as a rotary part that deviates from complete spherical symmetry and has at its inflow-side end 29 an inflow-side spherical surface 31 and at its outflow-side end 30 an outflow-side spherical surface 32, radii 33, 34 of inflow-side spherical surface 31 and of outflow-side spherical surface 32 being different. The combination of the two connector systems 1, 1a according to the exemplary embodiment of the present invention causes connector system 1, 1a to be free of transverse forces, which means that the installed fuel injection valve 2 receives no forces as a result of the existing production tolerances of the individual components.
The connection of fuel injection valve 2 to fuel distributor line 4 is created by the fact that once tolerance compensation 48 has been carried out in a direction 37 parallel to tube connector 44 by displacement of fuel injection valve 2, tube connector 44 equipped with an internal thread 43 is placed and screwed down onto inflow-side connector piece 11. The diameter of elongated opening 10 formed by a partial circle 14 and two secants 15, extending perpendicular to a longitudinal axis 18 of holddown claw 8, corresponds to wrench width 49 of the wrench to be applied for screwing down. This diameter corresponds to the spacing of the two parallel-extending secants 15 that extend parallel to longitudinal axis 18 of holddown claw 8.
A further exemplary embodiment of elongated opening 10 extends over a partial ellipse and two secants extending parallel to its semi-major axis. The partial ellipse and the two secants define periphery 17 of elongated opening 10, the semi-major axis and longitudinal axis 18 of holddown claw 8 being coincident.
A second end 20 of holddown claw 8 is located on an end face (not depicted further) of the cylinder head, there being provided at second end 20 of holddown claw 8 at least one opening 22 that receives screw 41 which secures second end 20 of holddown 8 on the end face (not depicted further) of the cylinder head.
The present invention is not limited to the exemplary embodiments depicted. In particular, any combinations of the various features are possible.
Number | Date | Country | Kind |
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10 2005 024 053 | May 2005 | DE | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/EP2006/061050 | 3/27/2006 | WO | 00 | 11/22/2006 |
Publishing Document | Publishing Date | Country | Kind |
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WO2006/125686 | 11/30/2006 | WO | A |
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