Hybrid component and method for producing a hybrid component
10072690 · 2018-09-11
Assignee
Inventors
- Simon Fleischheuer (Muehlheim an der Ruhr, DE)
- Robin Ndagijimana (Neuss, DE)
- Harald Mund (Solingen, DE)
- Nils Frisse (Köln, DE)
- Anup Saravade (Leverkusen, DE)
Cpc classification
F16B11/006
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B62D29/005
PERFORMING OPERATIONS; TRANSPORTING
B62D29/00
PERFORMING OPERATIONS; TRANSPORTING
Y10T403/472
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
Y10T29/49826
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
International classification
F16B11/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A hybrid component is formed by a profiled component of a first material, which is materially bonded in certain sections to a component made of a second material, and is connected by a form-fit and/or force-fit connection outside the sections with a material bond. This creates sections that relieve the strains resulting from differing thermal expansion.
Claims
1. A hybrid component for a structural element of vehicle seats, comprising: a profiled component made of a first material; and a component made of a second material, wherein the first material and the second material are different, wherein the profiled component is partially connected by a material connection to the component and is connected by a form-fitting connection and/or frictional connection outside the portions with the material connection, wherein the profiled component, which has a U-shaped cross section and a substantially planar flange region on both sides, is placed with its flange regions on a planar portion of the component, such that an internal space is formed between the profiled component and the component, wherein between the component and the flange regions an adhesive material is partially arranged as the material connection, wherein riveted connections are formed as the form-fitting connection and/or frictional connection outside the portions provided with the adhesive material in the flange regions, wherein, outside of the portions with the material connection and outside of the portions with the riveted connections, openings are formed on the profiled component and/or the component to allow for thermal compensation and/or to reduce the weight of the hybrid component, wherein riveted connections do not extend through the openings; and wherein the openings are elongated holes, wherein the portions of the flange regions provided with adhesive material are interrupted by regions in which the elongated holes are arranged, wherein the elongated holes are formed in the component and/or in the flange region of the profiled component, and wherein the elongated holes are aligned in their longitudinal extent according to the longitudinal extent of the flange region, such that the openings, the adhesive material, and the riveted connections are arranged alternately at the flange regions along the longitudinal extent of the hybrid component.
2. The hybrid component as claimed in claim 1, wherein the openings are formed on the component.
3. The hybrid component as claimed in claim 1, wherein the openings are through-holes.
Description
(1) In the drawings:
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(18) Parts which correspond to one another are provided in all the figures with the same reference numerals.
(19) A partially transparent plan view of a hybrid component produced by means of the method according to the invention in a first embodiment is shown schematically in
(20) The hybrid component 1 is preferably formed from a U-shaped profiled component 2 and a component 3.
(21) The profiled component 2 and the component 3 are formed from different materials, for example aluminum, steel or plastics.
(22) In each case a substantially planar flange region 4 is formed on both sides of the U-shaped profiled component 2.
(23) The component 3 is formed as a conventional flat or planar metal sheet, onto which the U-shaped profiled component 2 is placed with its flange regions 4 such that an internal space 5 is formed between the profiled component 2 and the component 3. For greater clarity, the flat component 3 is denoted hereinafter as the sheet metal portion 3.
(24) The profiled component 2 and the sheet metal portion 3 are partially connected by a material connection and connected together positively and/or non-positively outside the portions with a material connection.
(25) In one possible embodiment, an adhesive material 6, in particular an adhesive or a solder material, is partially arranged between the sheet metal portion 3 and the flange regions 4. The adhesive material 6 is called adhesive 6 hereinafter.
(26) Additionally, the profiled component 2 and the sheet metal portion 3 are connected together outside the portions with the adhesive 6 by means of a positive and/or non-positive connection 7, in particular by means of a plurality of unreleasable riveted connections. The positive and/or non-positive connection 7 is called hereinafter the riveted connection 7.
(27) Riveted connections 7 and portions provided, in particular coated, with adhesive 6 are arranged alternately over the extent of the flange region 4 in the manner shown in
(28) In this manner, an extensive material connection between the profiled component 2 and the sheet metal portion 3 which is common in the prior art is avoided. Particularly advantageously, the surface irregularities resulting from such an extensive material connection and the different thermal expansion of the materials of the profiled component 2 and the sheet metal portion 3, such as for example bulges or corrugations, are reliably avoided in the hybrid component 1.
(29) The riveted connection 7 is configured as a conventional riveted connection, for example as a punch rivet connection.
(30) A partially transparent plan view of the hybrid component 1 produced by means of the method according to the invention in a second embodiment is shown schematically in
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(32) The round holes 8 are preferably formed along a longitudinal extent of the hybrid component 1 in the region of the sheet metal portion 3 in the same region which adjoins the internal space 5. The round holes 8 are spaced uniformly apart from one another and are, for example, drilled or punched.
(33) By means of the round holes 8 incorporated in a defined manner in the sheet metal portion 3, the different thermal stresses between the profiled component 2 and the sheet metal portion 3 are relieved and thus surface irregularities in the hybrid component 1 are prevented. Moreover, by means of the round holes 8 the weight of the sheet metal portion 3 and, as a result, the entire hybrid component 1 is reduced.
(34) A partially transparent plan view of the hybrid component 1 produced by means of the method according to the invention in a third embodiment is shown schematically in
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(36) The elongated holes 9 are preferably formed along a longitudinal extent of the hybrid component 1 in the region of the sheet metal portion 3, in the same region which adjoins the internal space 5 and are uniformly spaced apart from one another. The elongated holes 9 are aligned in their longitudinal extent according to the longitudinal extent of the hybrid component 1.
(37) A partially transparent plan view of the hybrid component 1 produced by means of the method according to the invention in a fourth embodiment is shown schematically in
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(39) A partially transparent plan view of the hybrid component 1 produced by means of the method according to the invention in a fifth embodiment is shown schematically in
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(41) Thus riveted connections 7, portions coated with adhesive 6 and elongated holes 9 are arranged alternately in the flange regions 4. The elongated holes 9 are aligned in their longitudinal extent according to the longitudinal extent of the flange region 4. In the region of the elongated holes 9 no adhesive 6 is arranged between the sheet metal portion 3 and the profiled component 2. The elongated holes 9 may be formed both in the sheet metal portion 3 and in the profiled component 2.
(42) In a particularly advantageous embodiment, the elongated holes 9 are configured in the sheet metal portion 3 according to the corresponding elongated holes 9 in the profiled component 2 and arranged in the hybrid component 1 in a congruent manner.
(43) A partially transparent plan view of the hybrid component 1 produced by means of the method according to the invention in a sixth embodiment is shown schematically in
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(45) The embossed portion 10 is preferably formed along a longitudinal extent of the hybrid component 1 in the region of the sheet metal portion 3, in the same region which adjoins the internal space 5.
(46) The embossed portion 10 extends in the direction of the longitudinal extent of the hybrid component 1 and increases the rigidity thereof. By means of the embossed portion 10, in particular, the flexural rigidity of the hybrid component 1 is significantly increased.
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(48) The embossed portions 10 are, for example, formed as a conventional bead 10.1, double bead 10.3 or recess 10.2 and are incorporated in the sheet metal portion 3 by means of a stamping method.
(49) A partially transparent plan view of the hybrid component 1 produced by means of the method according to the invention in a seventh embodiment is shown schematically in
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(51) The embossed portions 10 are arranged transversely over the entire sheet metal portion 3 so that the portions of the flange regions 4 coated with adhesive 6 are interrupted by regions in which embossed portions 10 extend. In the region of the embossed portions 10 no adhesive 6 is arranged in the flange regions 4. Thus riveted connections 7, portions coated with adhesive 6 and embossed portions 10 are arranged alternately in the flange regions 4.
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(54) A partially transparent plan view of the hybrid component 1 produced by means of the method according to the invention in an eighth embodiment is shown schematically in
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(56) The embossed portions 10 are arranged so as to extend in an x-shape over the entire sheet metal portion 3, such that the portions of the flange regions 4 coated with adhesive 6 are interrupted by regions in which the embossed portions 10 extend.
(57) In the region of the embossed portions 10 no adhesive 6 is arranged in the flange regions 4. As a result, riveted connections 7, portions coated with adhesive 6 and embossed portions 10 are arranged alternately in the flange regions 4.
(58) In
(59) A partially transparent plan view of the hybrid component 1 produced by means of the method according to the invention in a ninth embodiment is shown schematically in
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(61) Thus riveted connections 7, portions coated with adhesive 6 and circular embossed portions 10 are arranged alternately in the flange regions 4. In the region of the embossed portions 10, no adhesive 6 is arranged between the sheet metal portion 3 and the profiled component 2. The embossed portions 10 are configured in the sheet metal portion 3 according to the corresponding embossed portions 10 in the profiled component 2 and arranged in a congruent manner in the hybrid component 1.
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(63) A partially transparent plan view of the hybrid component 1 produced by means of the method according to the invention in a tenth embodiment is shown schematically in
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(65) The circular embossed portions 10 are formed in the region of the sheet metal portion 3, in the same region which adjoins the internal space 5 of the hybrid component 1 formed between the sheet metal portion 3 and the profiled component 2. The circular embossed portions 10 are arranged adjacent to one another, uniformly spaced apart in the direction of the longitudinal extent of the hybrid component 1.
(66) In
LIST OF REFERENCE NUMERALS
(67) 1 Hybrid component 2 Profiled component 3 Component 4 Flange region 5 Internal space 6 Adhesive material 7 Positive and/or non-positive connection 8 Round hole 9 Elongated hole 10 Embossed portion 10.1 Bead 10.2 Recess 10.3 Double bead