CONNECTION ARRANGEMENT FOR A TRANSVERSE LEAF SPRING, AND TRANSVERSE LEAF SPRING AND BEARING DEVICE
20190126705 ยท 2019-05-02
Assignee
Inventors
Cpc classification
B60G2204/418
PERFORMING OPERATIONS; TRANSPORTING
F16F1/3683
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B60G11/08
PERFORMING OPERATIONS; TRANSPORTING
B60G2206/7101
PERFORMING OPERATIONS; TRANSPORTING
B60G11/10
PERFORMING OPERATIONS; TRANSPORTING
B60G2206/014
PERFORMING OPERATIONS; TRANSPORTING
International classification
B60G11/10
PERFORMING OPERATIONS; TRANSPORTING
F16F1/368
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
The disclosure relates to a connecting assembly for a transverse leaf spring that has a transverse leaf spring made of fiber-reinforced plastic and a bearing device, which encompasses the transverse leaf spring at the bearing point in a form fitting manner, wherein the transverse leaf spring has a ribbed structure at the bearing point, and the bearing device has notches, in which the ribbed structure engages in a form fitting manner.
The disclosure also relates to a transverse leaf spring and a bearing device, suitable for forming such a connecting assembly.
Claims
1. A connecting assembly for a transverse leaf spring comprising: a transverse leaf spring made of fiber-reinforced plastic, and a bearing device that encompasses the transverse leaf spring at a bearing point in a form fitting manner, wherein the transverse leaf spring has a ribbed structure at the bearing point and the bearing device has notches, in which the ribbed structure engages in a form fitting manner.
2. The connecting assembly according to claim 1, wherein the ribbed structure and the notches are transverse to a longitudinal direction of the transverse leaf spring.
3. The connecting assembly according to claim 1, wherein there is a comb-like engagement between the ribbed structure on the transverse leaf spring and the notches on the bearing device.
4. The connecting assembly according to claim 1, wherein the transverse leaf spring is formed such that the ribbed structure is an integral part thereof, wherein the ribbed structure is made only of the plastic matrix material of the fiber-reinforce plastic.
5. The connecting assembly according to claim 1, wherein the ribbed structure is only formed on a portion of the bearing point.
6. The connecting assembly according to claim 1, wherein the ribbed structure is formed on the entire circumference of the bearing point.
7. The connecting assembly according to claim 1, wherein the bearing device has a separate bearing sleeve, in which the notches are formed.
8. A transverse leaf spring for a motor vehicle, which is formed as a flat bar-like spring element and produced from a fiber-reinforced plastic, further comprising center bearings that have ribbed structures for a form fitting engagement in corresponding bearing devices.
9. A center bearing device for attaching a transverse leaf spring to a motor vehicle, wherein the center bearing device has two half-shells that can be connected to one another, which encompass the transverse leaf spring at a bearing point in a form fitting manner, wherein at least one of the half-shells has notches on its inner wall.
10. The center bearing device according to claim 9, wherein both half-shells have notches on their inner walls.
11. The transverse leaf spring according to claim 8, wherein the bearing devices have notches to engage the ribbed structures.
12. The connecting assembly according to claim 1, wherein the ribbed structure is made only of the plastic matrix material of the fiber-reinforce plastic and the ribbed structure is configured to fracture when a predetermined lateral force has been exceeded.
13. The connecting assembly according to claim 1, wherein the ribbed structure comprises numerous parallel ribs protruding from the transverse leaf spring.
14. The connecting assembly according to claim 1, wherein the notches comprise recesses formed on the inner walls of the bearing device.
15. The connecting assembly according to claim 1, wherein the ribbed structure is made only of thermosetting resin.
16. The connecting assembly according to claim 15, wherein the ribbed structure has no reinforcement fibers.
17. The connecting assembly according to claim 4, wherein the ribbed structure has no reinforcement fibers.
18. The connecting assembly according to claim 1, wherein the ribbed structure is only on the surface of the transverse leaf spring.
19. The connecting assembly according to claim 1, wherein the ribbed structure is formed on an entire circumference of the transverse leaf spring at the bearing point.
20. The transverse leaf spring according to claim 8, wherein the ribbed structures are made only of a plastic matrix material of the fiber-reinforce plastic and the ribbed structures are configured to fracture when a predetermined lateral force has been exceeded.
Description
[0016] The disclosure shall be explained in greater detail below with reference to the drawings. The features shown in the drawings, or explained below, can be general features of the disclosure, or further developments of the disclosure, independently of any feature combinations.
[0017]
[0018]
[0019]
[0020]
[0021] The transverse leaf spring 100 shown in
[0022]
[0023] The bearing device 120, or the half-shells 121 and 122 thereof have corresponding notches 125, in which the ribbed structure 105 engages in a comb-like manner, such that an incut form fit is obtained between the transverse leaf spring 100 and the bearing device 120. As a result, lateral forces acting in the longitudinal direction of the spring can also be absorbed at the center bearing 120 (the same applies to the other center bearing 120). The transverse leaf spring 100 can thus also assume wheel guiding functions.
[0024] The ribbed structure 105 is formed on the transverse leaf spring 100 (e.g. by the width of the ribs as well as the number, distribution and configuration of the ribs) such that the ribs thereof break, or break off when a defined lateral force F has been exceeded (e.g. by colliding strongly against a curb), and the transverse leaf spring 100 slips through the bearing device 120, as indicated in
[0025]
REFERENCE SYMBOLS
[0026] 100 transverse leaf spring [0027] 105 ribbed structure [0028] 110 guide bearing [0029] 120 center bearing [0030] 121 half-shell [0031] 122 half-shell [0032] 124 bearing sleeve, adapter [0033] 125 notches [0034] F lateral force