The present invention relates to a method for connecting three components, and to a connectable system for carrying out a method.
Methods for connecting three components and connectable systems for carrying out such a method are already known from the prior art in numerous embodiments.
For example, a method is known from DE 10 2005 000 160 B4, which corresponds to U.S. Pat. No. 8,759,710, for positive locking connection of two components in which a first and a second component to be connected in a positive locking way are positioned relative to one another and the first component is bonded to a third component by laser transmission welding, wherein material from plastically deformable areas of the first component is displaced by a feed motion of the third component relative to the first component during the welding process in such a manner that the displaced material creates a positive locking connection between the first and the second component.
It is therefore an object of the present invention to enable a connection of three components with simpler means.
An important advantage of the invention resides, in particular, in that the connection of three components is simplified from a production standpoint. For example, in the invention a laser transmission welding of the second component for producing a positive locking connection with the third component is omitted. Consequently, an additional laser transmission welding step is not necessary. In addition, the three components that can be connected by means of the invention are freely selectable within broader limits by type, material, dimensioning, and arrangement relative to one another. The invention is especially advantageous, for example, in cases when it is not possible to pass the second component through the third component.
Fundamentally, integral connection is freely selectable by the person skilled in the art from a multiplicity of integral connection technologies suited to the relevant individual case. Integral connection is advantageously implemented as welding, in particular as laser welding. Welding makes possible connections that are sealed and are durable for a long service life. Moreover, welding methods can be automated well. Laser welding in particular is advantageous because it is contactless and is also suited for more complex geometries of the components that are to be connected. Furthermore, laser welding ensures that there is only minor thermal distortion as compared with other welding methods.
An especially advantageous improvement of the method according to the invention provides that the mutually corresponding positive locking elements are implemented as at least one crush rib element and a receptacle corresponding to the crush rib element, and the positive locking connection is accomplished by a shearing off of the crush rib element. Crush rib connections can be produced in a structurally simple manner and have an intimate connection between the components to be connected. Furthermore, a crush rib connection permits greater component tolerances.
The same applies to an especially advantageous improvement of the connectable system according to the invention, according to which the mutually corresponding positive locking elements are implemented as at least one crush rib element and a receptacle corresponding to the crush rib element.
Another advantageous improvement of the connectable system according to the invention provides that the first component and/or the second component have/has at least one first projection, wherein the free end of the first projection is implemented as one of the mating surfaces. By means of the first projection, the mating surface formed thereon can be easily matched to the requirements of the integral connection, namely independently of the remainder of the first and/or second component. This is especially advantageous when the mating surfaces require a higher quality surface treatment for the integral connection, for example.
Another advantageous improvement of the connectable system according to the invention provides that the first component or the second component has at least one second projection, wherein the free end of the second projection of the first component or of the second component is implemented as a positive locking element. In this way the positive locking connection can be implemented in a structurally simple manner.
An advantageous improvement that is an alternative to the aforementioned embodiment provides that the first component has at least one second projection, wherein the free end of the second projection of the first component is implemented as a positive locking element, and a third projection of the second component is located in the region of the third component that faces away from the second projection during positive locking connection of the first and third components and serves as a support for the third component, or that the second component has at least one second projection, wherein the free end of the second projection of the second component is implemented as a positive locking element, and a third projection of the first component is located in the region of the third component that faces away from the second projection during positive locking connection of the second and the third components and serves as a support for the third component. In this way, a defined contact of the components that are to be connected to one another in a positive locking manner, and thus good transmission of force during production of the positive locking connection, is achieved.
Another advantageous improvement of the connectable system according to the invention provides that the first component and/or the second component have/has at least one fourth projection, wherein the free end of the fourth projection is implemented as a stop and limits joining travel along the joining axis during connection of the connectable system. In this way, a limiting of the common joining travel for producing the integral connection and the positive locking connection is achieved with structurally simple means.
Further scope of applicability of the present invention will become apparent from the detailed description given hereinafter. However, it should be understood that the detailed description and specific examples, while indicating preferred embodiments of the invention, are given by way of illustration only, since various changes, combinations, and modifications within the spirit and scope of the invention will become apparent to those skilled in the art from this detailed description.
The present invention will become more fully understood from the detailed description given hereinbelow and the accompanying drawings which are given by way of illustration only, and thus, are not limitive of the present invention, and wherein:
In
The crush rib element 1.2 is shown in
So as to fix the third component 3 in place parallel and at right angles to a common joining axis for the integral connection and the positive locking connection by means of the first and second components 1, 2 after the connection of the connectable system, which is to say after the production of the integral connection of the first and second components 1,2 and after the production of the positive locking connection of the first and third components 1, 3, the second component 2 in the present exemplary embodiment has a third projection 2.3, which is located in the region of the third component 3 that faces away from the second projection 1.2 during positive locking connection of the first and third components 1, 3 and serves as a support for the third component 3. The joining axis is represented with a double-headed arrow 4 in
Furthermore, the first component 1 has a fourth projection 1.4, wherein the free end of the fourth projection 1.4 is implemented as a stop and limits the common joining travel along the joining axis 4 for producing the integral connection and the positive locking connection during connection of the connectable system.
The method according to the invention for connecting three components is explained below in detail by way of example on the basis of the connectable system according to the first exemplary embodiment and on the basis of
First, the three components 1, 2, and 3 are positioned relative to one another in such a manner that the mutually corresponding mating surfaces 1.1 and 2.1.1 of the first and second components 1, 2 as well as the positive locking elements of mutually corresponding design, namely the crush rib element 1.2 and the through hole 3.1 of the first component 1 and of the third component 3, are located opposite one another. In this regard, see
In a next step, the components 1, 2, and 3 are moved relative to one another along the common joining axis 4 in such a manner that the mating surfaces 1.1 and 2.1.1 and the positive locking elements, namely the crush rib element 1.2 and the through hole 3.1, are each moved toward one another by means of a joining force. For this purpose, the second component 2 is fixed in place by means of a holder, and the first component 1 is moved by means of a feed device toward the second component 2 and the third component 3 that is placed on the third projection 2.3 of the second component 2. In this regard, see
As is evident from
As soon as the crush rib element 1.2 and the through hole 3.1 for the positive locking connection of the components 1 and 3 come into contact with one another, the positive locking connection of the components 1 and 3 begins in parallel with the integral connection of the components 1 and 2. In this process, the crush rib element 1.2 engages the boundary walls of the through hole 3.1 in such a manner that the crush ribs 1.2.1 of the crush rib element 1.2 are sheared off on account of the higher strength of the printed circuit board 3. For this purpose, the third component 3 rests on the third projection 2.3 that is designed as a support.
See also
In
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Shown in
The invention is not limited to the present exemplary embodiments. For example, other integral and positive locking connections are also possible. The individual projections, mating surfaces, and positive locking elements are also freely selectable within broad suitable limits by type, material, dimensioning, and arrangement depending on the requirements of the individual case. For example, it is also possible that the second component has at least one second projection, wherein the free end of the second projection of the second component is designed as a positive locking element, and a third projection of the first component is located in the region of the third component that faces away from the second projection during positive locking connection of the second and third components and serves as a support for the third component.
The invention being thus described, it will be obvious that the same may be varied in many ways. Such variations are not to be regarded as a departure from the spirit and scope of the invention, and all such modifications as would be obvious to one skilled in the art are to be included within the scope of the following claims.
Number | Date | Country | Kind |
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10 2017 106 622.5 | Mar 2017 | DE | national |
This nonprovisional application is a continuation of International Application No. PCT/EP2018/057424, which was filed on Mar. 23, 2018, and which claims priority to German Patent Application No. 10 2017 106 622.5, which was filed in Germany on Mar. 28, 2017, and which are both herein incorporated by reference.
Number | Date | Country | |
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Parent | PCT/EP2018/057424 | Mar 2018 | US |
Child | 16587972 | US |