This application claims the priority of German patent document 103 36 187.1, filed Aug. 7, 2003 (PCT International Application No. PCT/EP2004/008777, filed Aug. 5, 2004), the disclosure of which is expressly incorporated by reference herein.
The present invention relates to a hybrid component comprising a metal body and a plastic body that is injection molded onto the metal body, and to an associated production method.
A hybrid component of this type is known, for example, from DE 100 29 411 A1 and consists of a metal body and of a plastic body injected-molded on the latter. In the known hybrid component, the plastic body serves to connect two metal bodies, the plastic body being injection-molded such that it forms an electrically insulating layer between, in this case, an extruded profile and a sandwich element.
In order to protect the metallic surfaces of a hybrid component from environmental influences, in particular from corrosion, it is possible, in principle, to provide the respective metal body with a suitable surface coating. This, however, may be relatively complicated.
For metal bodies which are produced from a coil-coated metal sheet, there is, according to DE 37 04 364 C1, the possibility of coating and sealing cut edges formed during edging and stamping operations using UV radiation cured lacquers.
Also, it is known from DE 40 11 320 C2 to seal cut edges of stamped, pressed, or cut plate-shaped metal parts by coating with a coating powder by means of an electrostatic powder spraying method.
However, the known methods for sealing cut edges of this type are comparatively complicated.
One object of the present invention is to provide a cost-effective method of producing a hybrid component with surface protection.
This and other objects and advantages are achieved by the present invention, which is based on the general idea of using a surface-coated sheet metal body for producing the hybrid component, and modifying the injection molding of the plastic body in a controlled way, such that the plastic body is molded around cut edges formed during the production of the sheet metal body from a plate-shaped metal sheet. As a result, the sealing of the cut edges is integrated into the injection molding of the plastic body.
Furthermore, in order to increase the stability of the sheet metal body, the plastic body is at the same time designed to stiffen the metal body, so that the plastic body has a double function. Overall, the hybrid component can thus have the desired rigidity due to the stiffening of the sheet metal body by the plastic body. Moreover, by refining the injection molding operation, the hybrid component can be produced cost-effectively, with its metal surfaces protected from harmful environmental conditions.
In an advantageous embodiment of the invention development, in the region of the uncoated edges of the sheet metal body, the plastic body may consist of a plastic other than that in the remaining body. By virtue of this type of construction, the plastics can be optimized in terms of their functions. For example, the plastic injection-molded onto the edges can be selected in light of the surface protection desired for the sheet metal body, while the plastic in the remaining plastic body can be selected in light of the desired stiffening effect.
Other objects, advantages and novel features of the present invention will become apparent from the following detailed description of the invention when considered in conjunction with the accompanying drawings.
FIGS. 1 to 4 are simplified basic illustrations which show a longitudinal section through a hybrid component according to the invention, in various phases of its production; and
Preferred exemplary embodiments of the invention are illustrated in the drawings and are explained in more detail in the following description, wherein the same reference symbols relate to identical or functionally identical or similar components.
As shown in
According to the invention, the plastic body 3 is injected-molded onto the sheet metal body 2 such that the uncoated edges 5 are thereby sealed. That is, the free edges 5 are framed by the plastic 7 of the plastic body 3.
Whereas, in the embodiment according to
The hybrid component 1 may be used, for example, in motor vehicle construction, such as for trim element which is foam-backed and stiffened with the aid of the plastic body 3.
In the embodiment shown in
The embodiment according to
A method according to the invention for the production of the hybrid component 1 (according to the variant shown in
First, according to
According to
According to
According to
In so far as the plastic body 3 is designed as a two-component part, the plastic 7′ sealing the edges 5 can be injection-molded first in a first injection-molding die. Subsequently, in a second injection-molding die, the other plastic 7 can be injection-molded in order to form the remaining plastic body 3. A variant is preferred, however, in which the two-component technology can be carried out in one and the same injection-molding die 8.
All of the above-mentioned references are herein incorporated by reference in their entirety to the same extent as if each individual reference was specifically and individually indicated to be incorporated herein by reference in its entirety.
The foregoing disclosure has been set forth merely to illustrate the invention and is not intended to be limiting. Since modifications of the disclosed embodiments incorporating the spirit and substance of the invention may occur to persons skilled in the art, the invention should be construed to include everything within the scope of the appended claims and equivalents thereof.
Number | Date | Country | Kind |
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10336187.1 | Aug 2003 | DE | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/EP04/08777 | 8/5/2004 | WO | 7/6/2006 |