LONGITUDINAL BEAM AND METHOD FOR THE PRODUCTION THEREOF
20170210423 ยท 2017-07-27
Inventors
- Edvin List Clausen (Lojt Kirkeby Abenra, DK)
- Andreas Hitz (Erwitte, DE)
- Tobias Svantesson Kavik (Oslo, NO)
- Amin Farjad Bastani (Gjovik, NO)
Cpc classification
B21D53/88
PERFORMING OPERATIONS; TRANSPORTING
B62D21/02
PERFORMING OPERATIONS; TRANSPORTING
B21D35/006
PERFORMING OPERATIONS; TRANSPORTING
B21D22/02
PERFORMING OPERATIONS; TRANSPORTING
International classification
B62D21/02
PERFORMING OPERATIONS; TRANSPORTING
B62D29/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A longitudinal beam for a motor vehicle and also to a method for the production of the longitudinal beam is disclosed. The longitudinal beam is produced from a lightweight metal profile. The extrusion direction of the lightweight metal profile runs transverse to the longitudinal direction of the longitudinal beam.
Claims
1. A longitudinal beam for a motor vehicle, formed as an elongate shaped component which is profiled in cross section and is produced from an extruded lightweight metal profile and at least two length portions with differing wall thicknesses, characterized in that the lightweight metal profile is extruded oriented transversely to the longitudinal direction of the longitudinal beam and was shaped after the extrusion.
2. The longitudinal beam according to claim 1, wherein the longitudinal beam is formed in one piece and from the same material or in that the longitudinal beam is formed in two parts as a coupled assembly.
3. The longitudinal beam according to claim 2, wherein at least one part of the assembly in each case comprises at least two length portions with a differing wall thickness and/or in that at least one part is produced from a respective lightweight metal profile, wherein the extrusion direction of the respective lightweight metal profile is oriented transversely to the longitudinal direction of the part.
4. The longitudinal beam according to claim 2, wherein the two parts are coupled to one another by thermal joining.
5. The longitudinal beam according to claim 1, wherein a transition portion is formed between a length portion of lesser wall thickness and a length portion, adjacent thereto, of greater wall thickness, or in that the wall thickness transition is formed in a step-like manner, in particular as a wall thickness jump.
6. The longitudinal beam according to claim 5, wherein the transition portion has a width in the longitudinal direction which is formed so as to be smaller than 3 times the greater wall thickness and/or in that the wall thickness in the longitudinal section is formed so as to merge degressively, linearly or progressively from lesser to greater wall thickness.
7. The longitudinal beam according to claim 5, wherein the wall thickness transition is formed on the longitudinal beam only on one side or in that the wall thickness transition is formed on a top side and a bottom side of the longitudinal beam.
8. The longitudinal beam according to claim 1, wherein the longitudinal beam has a greater height in certain length portions compared to an adjacent length portion and/or in that the longitudinal beam is formed at least in certain length portions as a closed hollow profile.
9. The longitudinal beam according to claim 1, wherein at least one length portion of thinner wall thickness is formed, preferably at least two length portions of thinner wall thickness are formed, as a trigger in an end portion in the longitudinal direction.
10. The longitudinal beam according to claim 9, wherein a length portion has an open form, in particular a U-shaped, C-shaped or hat-shaped form, and a further length portion is formed as a closed hollow profile.
11. A method of producing a longitudinal beam according to claim 1, comprising: extruding a lightweight metal profile with an uneven extrusion cross section and an extrusion width, widening the extrusion width by flattening and/or pulling to give a processing width, wherein individual semifinished products are obtained by cutting to length during or after the widening, press-forming the semifinished product to give the longitudinal beam, wherein a trimming operation is carried out before, during or after the press-forming operation.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0031] Further advantages, features and aspects of the invention are the subject of the following description. Preferred embodiment variants are shown in the schematic figures. These serve for a clear understanding of the invention.
[0032]
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[0037]
DETAILED DESCRIPTION OF THE EMBODIMENTS
[0038] In the figures, the same reference signs are used for the same or similar components, even if a repeated description is avoided for reasons of simplification.
[0039]
[0040] In its longitudinal direction 2, the longitudinal beam 1 has differing wall thicknesses W1, W2, W3, W4, W5, W6. This is indicated schematically in the longitudinal sectional view of a corresponding semifinished product 3. The latter has a semifinished product length 4 which is greater than or equal to the length 5 of the longitudinal beam 1 itself. Shaping of the semifinished product 3 reduces the length 5 of the longitudinal beam 1 with respect to the semifinished products 4. The wall thickness transitions 6 of the individual wall thicknesses W1, W2, W3, W4, W5, W6 in relation to one another are formed only on a top side 7 (shown here). However, they could also be formed alternatively on a bottom side 8 or on the top side 7 and bottom side 8 (not shown in more detail).
[0041]
[0042] Two length portions 12, 13 of thinner wall thickness W4, W6 are formed in a front end portion 11. Upon the introduction of an axial force, these length portions 12, 13 can bring about a targeted deformation of the longitudinal beam 1. They are also referred to as supports. The greater wall thicknesses W1, W3, W5 can be the same, but can also differ from one another. The comparatively thinner wall thicknesses W2, W4, W6 can likewise each be the same, but can also differ from one another. However, the longitudinal direction 2 is arranged running in a manner oriented transversely to a marked extrusion direction 14 of the lightweight metal profile (not shown in more detail).
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REFERENCE SIGNS
[0050] 1Longitudinal beam [0051] 2Longitudinal direction of 1 [0052] 3Semifinished product [0053] 4Semifinished product length [0054] 5Length of 1 [0055] 6Wall thickness transition [0056] 7Top side [0057] 8Bottom side [0058] 9Transition portion [0059] 10Width of 9 [0060] 11End portion [0061] 12Length portion [0062] 13Length portion [0063] 14Extrusion direction [0064] 15Upper shell [0065] 16Profile [0066] 17Hollow chamber [0067] 18First part [0068] 19Second part [0069] 20Lightweight metal profile [0070] 21Extrusion width [0071] 22Processing width [0072] 23Wall thickness jump [0073] HHeight [0074] W1Wall thickness [0075] W2Wall thickness [0076] W3Wall thickness [0077] W4Wall thickness [0078] W5Wall thickness [0079] W6Wall thickness