FIBER COMPOSITE COMPONENT, APPARATUS AND METHOD FOR PRODUCING A FIBER COMPOSITE COMPONENT
20220281182 ยท 2022-09-08
Assignee
Inventors
Cpc classification
B29C53/56
PERFORMING OPERATIONS; TRANSPORTING
B29K2063/00
PERFORMING OPERATIONS; TRANSPORTING
B29C53/66
PERFORMING OPERATIONS; TRANSPORTING
B29C53/8016
PERFORMING OPERATIONS; TRANSPORTING
B60G7/001
PERFORMING OPERATIONS; TRANSPORTING
B29L2031/30
PERFORMING OPERATIONS; TRANSPORTING
B60G2206/7101
PERFORMING OPERATIONS; TRANSPORTING
B60G2206/10
PERFORMING OPERATIONS; TRANSPORTING
International classification
B29C70/32
PERFORMING OPERATIONS; TRANSPORTING
B29C53/56
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A fiber composite component has two inner elements arranged at a distance from one another, around which inner elements a fiber-reinforced plastics band is wrapped. In order to simplify the production of the fiber composite component, a first fiber-reinforced plastics band is wrapped around a first inner element, and a second fiber-reinforced plastics band is wrapped around a second inner element. The first and the second fiber-reinforced plastics band are wrapped alternately around the first and the second inner element in such a manner that the distance between the inner elements is bridged by the first and the second fiber-reinforced plastics band.
Claims
1. A fiber composite component comprising: two inner elements arranged at a distance from one another, a first fiber-reinforced plastics band wrapped around a first inner element of said two inner elements, and a second fiber-reinforced plastics band wrapped around a second inner element of said two inner elements, wherein the first and the second fiber-reinforced plastics band are wrapped alternately around the first and the second inner element in such a manner that a distance between the inner elements is bridged by the first and the second fiber-reinforced plastics band.
2. The fiber composite component as claimed in claim 1, further comprising an intermediate element arranged between the inner elements, wherein the first and the second fiber-reinforced plastics band are wrapped alternately around the intermediate element.
3. The fiber composite component as claimed in claim 1, wherein the inner elements each have a rotationally symmetrical form and an axis of rotation.
4. The fiber composite component as claimed in claim 3, wherein the inner elements each have at least one circumferential depression, which depressions axial secure the fiber-reinforced plastics bands.
5. The fiber composite component as claimed in claim 1, wherein each fiber-reinforced plastics band is wrapped around both of the inner elements.
6. An apparatus for producing the fiber composite component as claimed in claim 3, the apparatus comprising: a first rotary drive for the first inner element and a second rotary drive for the second inner element, wherein the first and second rotary drives are attached to a coupling support which is rotatable about a third axis of rotation in order to wrap the first and the second fiber-reinforced plastics band alternately around the first and the second inner elements with the distance between the first and second inner elements.
7. The apparatus as claimed in claim 6, wherein the apparatus further comprises at least one pressing roller which constitutes a tensioning device for the fiber-reinforced plastics bands between the first and second inner elements.
8. The apparatus as claimed in claim 6, wherein each fiber-reinforced plastics band is wrapped around both of the inner elements.
9. A method for producing a fiber composite component including (i) two inner elements arranged at a distance from one another, (ii) a first fiber-reinforced plastics band wrapped around a first inner element of said two inner elements, and (iii) a second fiber-reinforced plastics band wrapped around a second inner element of said two inner elements, wherein the inner elements each have a rotationally symmetrical form and an axis of rotation, said method comprising: (a) rotating the first inner element about its axis of rotation in order to wrap the first fiber-reinforced plastics band around the first inner element; (b) rotating the second inner element about its axis of rotation in order to wrap the second fiber-reinforced plastics band around the second inner element; and (c) following steps (a) and (b), jointly rotating the first and the second inner elements about a third axis of rotation in order to wrap the first and the second fiber-reinforced plastics band alternately around the first and the second inner elements in such a manner that the distance between the inner elements is bridged by the first and the second fiber-reinforced plastics band.
10. The method as claimed in claim 9, wherein the fiber-reinforced plastics bands are deposited parallel to one another between the inner elements.
11. The method as claimed in claim 9, wherein the fiber-reinforced plastics bands are deposited between the inner elements in a crossed form.
12. The method as claimed in claim 9, wherein a fiber composite component in an axial direction is divided, after wrapping, transversely to the axial direction into at least two fiber composite components.
13. The method as claimed in claim 9, wherein each fiber-reinforced plastics band is wrapped around both of the inner elements.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Further advantages, features and details of the invention will become apparent from the following description, in which various exemplary embodiments are described in detail with reference to the drawing. In the drawing:
[0016]
[0017]
[0018]
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[0020]
[0021]
[0022]
DETAILED DESCRIPTION OF THE INVENTION
[0023]
[0024] The sleeves 3, 4 are formed of metal and serve, as is shown in
[0025] The fiber composite component 10 is, for example, a coupling element or a connecting rod for mounting in a chassis of a motor vehicle. The fiber composite component 10 is fastened by the first inner element 1, for example with the aid of a fastening means, such as a screw, to a wheel carrier of the motor vehicle. The fiber composite component 10 is then fastened by the second inner element 2, advantageously likewise using a suitable fastening means, such as a screw, to a body of the motor vehicle.
[0026] The two inner elements 1, 2 are arranged at a defined distance from one another. In
[0027] Multiple plies of a first fiber-reinforced plastics band 11 are wrapped around the first inner element 1. Multiple plies of a second fiber-reinforced plastics band 12 are wrapped around the second inner element 2. Both the first fiber-reinforced plastics band 11 and the second fiber-reinforced plastics band 12 are additionally wrapped around the two inner elements 1, 2 and the intermediate space 5, or the intermediate element 8.
[0028] According to an essential aspect of the invention, first only the respective associated fiber-reinforced plastics band 11, 12 is wrapped around the two inner elements 1, 2. The two fiber-reinforced plastics bands 11, 12 are then jointly wrapped alternately around the inner elements 1, 2 so wrapped.
[0029] The fiber-reinforced plastics bands 11, 12 are preferably tapes of a prepreg material. In a preferred exemplary embodiment, the plastics bands 11, 12 are reinforced with carbon fibers. The corresponding prepreg material is referred to as CFRP prepreg material.
[0030] The fiber-reinforced plastics bands or tapes 11, 12 are, for example, strips of unidirectional fibers, in particular carbon fibers, which are pre-impregnated with a matrix, in particular an epoxy resin. The bands or strips so pre-impregnated are wrapped around the inner elements 1, 2.
[0031] After wrapping, the wrapped component is preferably subjected to heat treatment in order that the matrix material, in particular the epoxy resin, with the fibers embedded therein cures. After curing, the fiber-reinforced plastics bands 11, 12 are solid and establish a stable connection between the inner elements 1, 2.
[0032] The intermediate space 5 between the inner elements 1 and 2 can remain free, as can be seen in
[0033] In
[0034]
[0035] An arrow 15 in
[0036] As soon as sufficient plies of the fiber-reinforced plastics bands 11, 12 have been wrapped around the inner elements 1 and 2, the coupling support 17 with the inner elements 1, 2 with the bands already wrapped around them can, in a second stage of the wrapping operation, be rotated by means of the third rotary drive 18 about the third axis of rotation 19 in order to establish a connection between the already pre-wrapped inner elements 1, 2. The progress of the wrapping process is illustrated in
[0037]
[0038]
[0039]
[0040] An arrow 25 in each of
[0041] The intermediate element 23 advantageously serves to provide pressure support for the inner elements 1, 2 during wrapping. In addition, the intermediate element 23 performs the function of a gusset in the transition region.
[0042]
[0043]
[0044] Arrows 29, 30 in
[0045]
[0046] By means of the tensioning device 33 having the pressing rollers 31, 32, a desired compaction of the individual plies during wrapping with the fiber-reinforced plastics bands 11, 12 can be improved. In addition, by a combination of tension and adhesion, stable deposition on an inwardly directed or waisted contour is made possible.
[0047]
[0048] The rotary drive 43 allows the coupling support 17 in the form of a frame to be rotated, together with the inner elements 1, 2, about the third axis of rotation 19. The axes of rotation 13, 14 and 19 extend parallel to one another, as can be seen in
[0049] A double arrow 45 in
[0050] In
[0051] A double arrow 46 in
[0052] An arrow 47 in
[0053]
[0054] The double arrow 45 in
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[0056]