CONNECTION BETWEEN TWO COMPONENTS MADE OF REINFORCED PLASTIC AND METHOD FOR THE PRODUCTION THEREOF
20180023607 · 2018-01-25
Inventors
- Jochen Rintelmann (Dessau-Rosslau, DE)
- Michael Stumpf (Bielefeld, DE)
- Carsten Bär (Ingolstadt, DE)
- Torsten Draht (Schloss Holte, DE)
- Marc Steinig (Altenbeken, DE)
Cpc classification
B29C66/1122
PERFORMING OPERATIONS; TRANSPORTING
B29C65/7437
PERFORMING OPERATIONS; TRANSPORTING
B29C66/43
PERFORMING OPERATIONS; TRANSPORTING
B29C66/7212
PERFORMING OPERATIONS; TRANSPORTING
F16B19/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B29C66/7212
PERFORMING OPERATIONS; TRANSPORTING
B29C65/64
PERFORMING OPERATIONS; TRANSPORTING
B29C66/83221
PERFORMING OPERATIONS; TRANSPORTING
Y10T29/4995
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
B29C66/21
PERFORMING OPERATIONS; TRANSPORTING
B29C65/562
PERFORMING OPERATIONS; TRANSPORTING
International classification
F16B19/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B29C65/56
PERFORMING OPERATIONS; TRANSPORTING
B29C65/74
PERFORMING OPERATIONS; TRANSPORTING
Abstract
The invention relates to a connection comprising at least two components having the following features: a first component and a second component, of which at least the second component comprises reinforced plastic, a self-piercing connection element having a head and a shaft, the head thereof being supported on the first component and the shaft thereof running completely through the first and the second component, and a disc-shaped counter bearing to which the shaft is fastened such that the at least two components are fastened between the head and the counter bearing. The invention further relates to a method for the production of said connection.
Claims
1. A method for connecting at least one first component and a second component that is not pre-drilled and is comprised of reinforced plastic, using a self-piercing connection element with a head and a shaft, said method comprising the steps of: a) placing the first and the second component over one another, b) pretensioning the first and second component against a disc-shaped counter bearing, c) setting the connection element so that the shaft completely penetrates the first and second component as well as the disc-shaped counter bearing, wherein the disc-shaped counter bearing acts as a die; and d) fastening the shaft to the counter bearing such that the first and second component are held between the head of the connection element and counter bearing.
2. The method according to claim 1, in which the first and second components are comprised of a carbon fiber reinforced plastic, not pre-drilled, and the connection element has a shaft which is at least partly hollow, with a circumferentially disposed cutting edge at the face side facing away from the head, and in which said setting step includes the additional step of cutting or punching the connection element through the first and second components, and in which the side of the shaft facing away from the head is widened radially outward at the counter bearing during said fastening step.
3. The method according to claim 1, in which the connection element is a solid punch rivet, wherein during said setting step the component and the counter bearing are punched through, and in said fastening step the counter bearing is embossed such that material of the counter bearing is displaced into a circumferentially disposed groove in shaft of the solid punch rivet such that a form-locking or force-locking connection results.
4. The method according to claim 1, in which the connection element is a bolt with a tapering shaft and the counter bearing is a closed disc, wherein during said setting step, the bolt is set with a speed of at least 5 m/s, and penetrates the components and the counter bearing, such that during the placement step, the shaft of the bolt is fixed in the counter bearing.
5. The method according to claim 1, including the additional step of: applying an adhesive layer between the first and the second component.
Description
5. DESCRIPTION OF THE ACCOMPANYING DRAWINGS
[0020] Preferred embodiments of the present invention are explained in more detail in reference to the accompanying drawings. They show:
[0021]
[0022]
[0023]
[0024]
[0025]
[0026]
6. DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS OF THE PRESENT INVENTION
[0027] The present invention comprises a connection of least two components 10; 110, 20, as shown according to different embodiments in the
[0028] It is also preferred that the first component 10, 110 is produced from high-strength steel or a different material, for instance stainless steel, than the second component 20 which is comprised of reinforced plastic. According to the preferred embodiment shown in
[0029] If the components 10, 20 are comprised of reinforced plastic, they are not pre-punched according to a further embodiment of the present invention in order to accept a shaft 34; 134; 234 of a self-piercing connection element 30; 130; 230 that preferably has no threads on the exterior thereof. The self-piercing connection element 30; 31; 230 comprises in addition a head 32; 132; 232, in order to support a first component 10; 110; 210 in the connection or to rest thereupon. The designs used in the connections shown in the
[0030] According to
[0031] A solid punch rivet 130 according to
[0032] According to a third preferred embodiment, which is shown in
[0033] The self-piercing connection element 30; 130; 230 in the connection is connected to the disc-shaped counter bearing 40; 140; 240, already discussed above. The counter bearing 40; 140; 240 is comprised of a solid material such that a sufficient fastening of the shaft 34; 134; 234 to the counter bearing is guaranteed in the connection. In the embodiment in the
[0034] In the embodiment of
[0035] As seen in the connections in the
[0036] According to a further embodiment of the connection according to the invention, a disc spring is used as the counter bearing 40; 140; 240. During production of the connection, the disc spring (not shown) used as a counter bearing 40; 140; 240 is pretensioned against the second component 20 by the relative movement of the punch 70 and die 60; 160; 260 toward each other. In this position, and with this mechanical pretensioned deflection, the counter bearing 40; 140; 240 is then fastened to the shaft 34; 134; 234. Thus, the disc spring as a counter bearing 40; 140; 240 introduces a mechanical clamping component supporting the connection, which compresses the components 10; 110, 20 between the head 32; 132; 232 and counter bearing 40; 140; 240.
[0037] For producing the connection according to the embodiment in
[0038] After being placed (step A), the two components 10, 20 are pretensioned against the disc-shaped counter bearing 40 (step B). For this purpose, the counter bearing 40 is supported on a die 60 with an open inner channel 64 (compare to
[0039] After being placed (step A) and pretensioned (step B), the top punch 70 is moved in the direction of the components 10, 20 (see arrow in
[0040] The counter bearing 40 preferably has a central opening, that before setting (step C) is disposed centrally beneath the shaft 34. The diameter of the opening is smaller than the diameter of the cutting edge on the shaft 34. Due to this geometry, during the setting (step C), a ring is cut out from the counter bearing 40 in order to adapt the center opening of the counter bearing 40 to the circumference of the shaft. It is also preferred that the counter bearing 40 is formed with, or without, a hole matched to the shaft 34.
[0041] When the setting process is completed, the head 32 abuts the component 10 and is held by the top punch 70. Now, a counter punch (not shown) moves through the channel 64 widening the shaft 34 that is at least partly hollow, radially outward, preferably flattening it out. In this manner, the shaft 34 is fastened at the counter bearing 40 (step D), and the connection of
[0042] According to the embodiment shown in
[0043] After placing (step A) and pretensioning (step B) with the hold-down clamp 75 or a pretensioning device, not shown, a solid punch rivet 130 is placed through the components 10, 20 (step C). The components 10, 20 and counter bearing 140 are preferably not pre-drilled so that the components 10, 20 and the counter bearing 140 are punched through during setting (step C). This results in three waste pieces, that are removed via the inner channel 164 and a die 160.
[0044] Furthermore, due to the movement of the top punch 70 during the setting (step C), the counter bearing 140 presses against the annular projection 162 and is embossed. During embossing, the annular projection 162 penetrates into the counter bearing 140 and displaces material from the counter bearing 140 into the groove 136. Due to the displacement of this material, a form-locking and/or force-locking connection develops between the counter bearing 40 and the shaft 134. The counter bearing 40 is fastened (step D) to the connection element 130 in this manner.
[0045] In the third embodiment according to
[0046] After placing (step A) and pretensioning (step B) of the components 10, 20 (see above), the bolt 230 is set with a speed of at least 5 m/s, preferably at least 10 m/s.
[0047] The bolt 230 is driven using the top punch 70. Preferably, neither the components 10, 20 nor the counter bearing 240 are pre-drilled. During the setting (step C), the bolt 230 penetrates through the components 10, 20 and the counter bearing 240. During this setting procedure, the die 260 correspondingly supports the components 10, 20 with counter bearing 240. In the same manner, according to a further alternative method, a counter bearing with a hole is used.
[0048] After setting (step C), the shaft 234 is held in the counter bearing 240 by radially inward directed compression stresses, so that already during the setting (step C), the shaft 234, is fastened (step D) in the counter bearing 240.
[0049] For supporting the connection of the components 10, 20 and 110, 20, an adhesive layer 50 is also preferred between the components 10, 20 and 110, 20. This adhesive layer 50 is applied on one of the components 10, 110, 20 before placing the components 10, 20 and 110, 20. In this manner, the adhesive layer 50 implements a pre-fastening of the components 10, 110, 20 until the complete curing of the adhesive. In addition, the adhesive layer 50 in the respective connection contributes to the structural reinforcement of the connection. In a connection produced in the motor vehicle, this leads to higher stability of the connection, for example, in the case of a motor vehicle collision. Thus, there is an adhesive layer 50 present between the components 10, 20 and 110, 20 in the connections according to the different embodiments of the present invention discussed above.