Fuel injector having a reduced number of components
09759172 ยท 2017-09-12
Assignee
Inventors
- Guenter Wolff (Schwieberdingen, DE)
- Martin Scheffel (Vaihingen, DE)
- Sebastian Wieschollek (Schwieberdingen, DE)
- Axel Bormann (Bamberg, DE)
- Johann Bayer (Strullendorf, DE)
Cpc classification
F02M2200/8015
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02M51/005
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02M2200/8023
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02M2200/8046
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02M2200/9015
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F02M51/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A fuel injector which includes an actuator having an electrical contact element, a plug, a fuel supply pipe, and an injection-molded housing part. The plug has a base body, an electrical connection element for an electrical connection with the electrical contact element of the actuator, and a rib which projects from the base body, the injection-molded housing part surrounding the electrical connection element of the plug and being injection-molded on the rib of the plug and the fuel supply pipe.
Claims
1. A fuel injector, comprising: an actuator having an electrical contact element; a plug having a base body, an electrical connection element for an electrical connection with the electrical contact element of the actuator, and a rib which projects from the base body; a fuel supply pipe; and an injection-molded housing part which surrounds the electrical connection element of the plug and is injection-molded onto the rib of the plug and the fuel supply pipe, wherein the rib of the plug has at least one first formed element which is enclosed by the injection-molded housing part to obtain a secure connection between the rib and the injection-molded housing part, and wherein the first formed element includes a recess, and wherein the recess is at least one of a blind hole and a through hole.
2. The fuel injector as recited in claim 1, wherein the electrical connection element of the plug directly contacts the contact elements of the actuator.
3. The fuel injector as recited in claim 1, wherein a region of the electrical connection element is routed out of the base body of the plug and is at least four times as long as a region of the electrical connection element situated inside the base body.
4. The fuel injector as recited in claim 1, wherein the electrical connection element includes a support element which supports the electrical connection element on the fuel supply pipe.
5. The fuel injector as recited in claim 4, wherein the support element includes at least one clip.
6. The fuel injector as recited in claim 1, wherein a labyrinth is between the plug and the injection-molded housing part.
7. The fuel injector as recited in claim 1, wherein the rib of the plug includes a second formed element which is exposed on the rib to allow the plug to be positioned in an injection-mold tool for producing the injection-molded housing part.
8. The fuel injector as recited in claim 1, wherein the injection-molded housing part fully surrounds the rib.
9. The fuel injector as recited in claim 1, wherein the first formed element includes the a projecting element.
10. The fuel injector as recited in claim 1, wherein the first formed element includes at least one of the recess a projecting element and an element having an undercut.
11. The fuel injector as recited in claim 1, wherein the first formed element includes the an element having the an undercut.
12. A fuel injector, comprising: an actuator having an electrical contact element; a plug having a base body, an electrical connection element for an electrical connection with the electrical contact element of the actuator, and a rib which projects from the base body; a fuel supply pipe; and an injection-molded housing part which surrounds the electrical connection element of the plug and is injection-molded onto the rib of the plug and the fuel supply pipe, wherein the rib of the plug extends in a radial direction of the fuel supply pipe and has at least one first formed element which is enclosed by the injection-molded housing part to obtain a secure connection between the rib and the injection-molded housing part, wherein the first formed element includes at least one straight projecting element, wherein the at least one straight projecting element projects laterally from the rib, wherein the fuel supply pipe extends in a longitudinal direction, the longitudinal direction being orthogonal to the radial direction, and wherein the at least one straight projecting element projects in a lateral direction, the lateral direction being orthogonal to the radial direction and the longitudinal direction.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) Exemplary embodiments of the present invention are described in detail below, with reference to the figures.
(2)
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(6)
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(8)
DETAILED DESCRIPTION OF EXAMPLE EMBODIMENTS
(9) Below, a fuel injector 1 according to a first preferred exemplary embodiment of the present invention is described in detail with reference to
(10) As can be inferred from
(11) Fuel injector 1 also includes a plug 6, via which electrical contacting takes place on the vehicle side. Plug 6 is shown in detail in
(12) As can be gathered from
(13) As can be gathered from
(14) As described above, plug 6 is first provided as prepared subassembly for the production of fuel injector 1. For this purpose base body 60 and rib 61 of plug 6 are already able to be injection-molded on electrical connection element 7 in a first injection-molding step. In so doing, the parameters for the injection-molding process required for the plug-in connection are precisely adjustable, so that a plug having high dimensional accuracy is obtained. At the same time or in a subsequent step, support element 8 may be injection-molded as well. In a further step, the fuel injector is then preassembled, and the plug-subassembly is clipped onto fuel supply pipe 2 with the aid of clips 80, 81. Then, first and second injection-molding die 24, 25 are placed around the preassembled fuel injector, which can be seen in
(15) Over all, fuel injector 1 according to the present invention thus has a slim and elongated design, without such a design requiring an excessive number of components.
(16)
(17) Holding elements 67, 68 are flexible, so that the rib is able to be slipped onto fuel supply pipe 2. Once again, rib 61 is resting on fuel supply pipe 2.
(18) With regard to all of the described exemplary embodiments, it should be noted that the first formed elements are able to be placed on one side of rib 61 only and also on both sides of rib 61. If the first formed elements are recesses, they may be developed as a type of blind hole or as continuous recesses. As far as second formed elements 20, 24 are concerned, they are preferably provided on both sides of rib 61. However, it is also possible to place a formed element on only one side of the rib. It is furthermore noted that it may also be the case that multiple formed elements are situated on one side or on both sides of rib 61.
(19) In addition, it is pointed out that a symmetrical or asymmetrical placement of the formed elements on both sides of rib 61 may be implemented.
(20) As a result, the present invention makes it possible to produce a fuel injector 1 of a higher quality, which fuel injector 1 has a narrow and slim design, in particular. In addition, less damage of components occurs during the injection-molding of housing part 9, resulting in fewer rejected parts.