The present invention relates to a support element for setting a fuel distribution line apart from a fuel injector inserted in a cylinder head of an internal combustion engine.
A mounting device for mounting a fuel injector on an intake manifold is already known from German Published Patent Application No. 29 26 490, according to which a mounting element axially fixes the fuel injector to the fuel distribution line or to a plug nipple, the mounting element being designed as a U-shaped securing clasp having two legs which are elastic in the radial direction. In the assembled state, the securing clasp engages in matching recesses of the plug nipple and is snapped into place in a recess in a connection piece of the fuel injector, the recess being designed as an annular groove. The axial clearance between the recesses and the securing clasp as well as between the annular groove and the securing clasp should be kept small, in order to achieve accurate fixation of the fuel injector without stresses on the gasket.
Particularly disadvantageous in the mounting device known from German Published Patent Application No. 29 26 490 is the warping effect of the various mounting elements on the fuel injector. The flux of force generated in the fuel injector results in deformations and thus to lift changes of the valve needle and even to jamming as well as a compressive and bending load on the housing components, which usually have thin walls and are welded to one another at several points. Furthermore, any mounting measure, for example by a contact flange, leads to an increase in the radial expansion of the fuel injector and thus to higher space requirements in the installation.
By contrast, the support element according to the present invention for a fuel injector has the advantage that the support element on account of its form as well as on account of appropriately designed clips provides for a transfer of the holding-down force of the fuel distribution line on the fuel injector that compensates for tolerances and offsets. To this end, the clips and the clasp of the support element are designed to be axially and radially deformable such that a more uniform distribution of force and thereby a high stability and a robustness in continuous operation are ensured while keeping manufacture and installation simple.
It is particularly advantageous that the support element is easy to manufacture by stamping from sheet metal.
Screws or clamping claws for mounting the fuel injector on the front face of the cylinder head are advantageously dispensed with in the support element according to the present invention. Punched out recesses, which are easy to produce, advantageously provide secure fixing of the support element at the fuel injector and simple bracing of the fuel distribution line. The clips are connected by a crosspiece to the clasp of the support element. In another advantageous specific embodiment, the clips are connected to each other by an arch.
The clips or the arch are advantageously deformed by the application of force in such a way that they shift radially towards the outside and project past the outer contour of the clasp. This provides an additional guidance of the support element in the valve seat.
The clasp is also radially and axially flexible, which allows it to compensate for offsets in any direction.
In each case, the upper row of figures shows a top view, the middle row of figures shows a perspective view, and the lower row of figures shows a side view of support elements 1 developed according to the present invention. The left column of figures shows support element 1 in a ready-to-fit, but non-loaded state, while the middle column of figures shows support element 1 in each case in a preloaded state, and the right column of figures shows the support element in an fully installed and loaded state.
Support element 1 includes in each case a clasp 2, which embraces the fuel injector, and clips 3 developed at clasp 2, tabs 4 and legs 17 for flexibly fixing the individual components of the fuel system in position with respect to one another. Support element 1 may in each case be installed in the represented position having tabs 4 abutting against the fuel injector and clips 3 against the fuel distribution line, or it may also be installed turned by 120° having clips 3 contacting the fuel injector and tabs 4 contacting the fuel distribution line.
In the case of conventional support elements 1, clips 3 are the parts carrying the greatest load, which depending on their respective form tend to break off of clasp 2. If this occurs, then the offset-free transmission of force between the fuel distribution line and the fuel injector is no longer guaranteed such that lateral forces can occur and can result in damage to the various components.
To counter this, clips 3 according to the present invention are attached to clasp 2 in such a way that they are deformable in a plastic-elastic manner both in the axial as well as in the radial direction, which on the one hand allows for a reliable fixation while compensating for lateral forces and on the other hand allows for a distribution of the applied force and a relief of the transition regions between clips 3 and clasp 2.
When viewing the middle row of figures of
First support element 1 is manufactured by punching, punching out recesses 5 between clasp 2 and clips 3 as well as punching out slots 6 in clasp 2. Clasp 2 is then bent until the shape according to
In
If support element 1 is now installed between the fuel injector and the fuel distribution line, the fuel distribution line will apply a defined holding-down force on the fuel injector via support element 1. As can be seen from
According to the second exemplary embodiment in
For a better intelligibility of the mode of operation of support element 1,
As can be seen from
If an axial force now acts on support element 1, first clips 3 as the weakest element are deformed by the load. If the force continues to grow, this is also introduced into clasp 2 of support element 1 with the consequence that clasp 2 is compressed by amount X, by which legs 17 are set apart from the contact surface of the fuel distribution line or the fuel injector. Such a load state may be seen in
In this instance, fuel injector 12 may be designed in particular in the form of a direct-injection fuel injector 12, which may be inserted into a valve seat of a cylinder head of the internal combustion engine for the direct injection of fuel into a combustion chamber of a mixture-compressing internal combustion engine (not shown in detail) having externally supplied ignition. The valve seat may also be provided at a connecting piece of an intake manifold (not shown). Fuel injector 12 has an electrical connection 14 for the electrical contacting for actuating fuel injector 12.
As
If support element 1 has compressive force applied to it by fuel distribution line 13, then again clips 3 as well as arch 15 formed between clips 3 deform in a radial direction such that arch 15 curves outward beyond the outer contour of clasp 2. At the same time, arch 15 is thereby deformed axially in the opposite direction with respect to clips 3, as shown in
The deformation as well as the outward shifting of arch 15 are also readily seen in the top view onto support element 1 developed according to the present invention, as shown in
The present invention is not limited to the exemplary embodiments shown and is for example also applicable to fuel injectors 12 for injection into the combustion chamber of a self-igniting internal combustion engine. In particular, support elements 1 shown in the figures may also be installed in the reverse fitting position such that clips 3 rest on fuel distribution line 13 instead of on fuel injector 12. All features of the present invention may be combined with one another as desired.
Number | Date | Country | Kind |
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10 2004 015 042 | Mar 2004 | DE | national |
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Number | Date | Country |
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29 26 490 | Feb 1981 | DE |
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Number | Date | Country | |
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20050224053 A1 | Oct 2005 | US |