AXIAL BALL JOINT
20180187715 · 2018-07-05
Inventors
- Tobias LAHRMANN (Osnabrück, DE)
- Arnold BLANKE (Damme, DE)
- Thomas HERRMANN (Belm, DE)
- Michael ROSSOL (Stemwede-Dielingen, DE)
Cpc classification
F16C11/0642
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C2326/24
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Y10T403/32737
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
B62D7/163
PERFORMING OPERATIONS; TRANSPORTING
F16C11/0652
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Y10T403/32762
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
Abstract
Axial ball joint (1), particularly for use in a steering gear (7), which includes a joint housing (2) open on a first side for receiving a joint ball (4) attached to a joint stud (5). A housing stud (3) is arranged on the joint housing (2). A damping device (10) is provided on the side of the joint housing (2) on which the housing stud (3) is formed. The damping device (10) includes an elastic damping element (11) made of plastic with a metallic insert (12). The metallic insert (12) is embedded in the material of the elastic damping element (11) by injection molding.
Claims
1-14. (canceled)
15. An axial ball joint (1) comprising: a joint housing (2) being open on one side for receiving a joint ball (4) attached to a joint stud (5); a housing stud (3) being arranged on the joint housing (2); a damping device (10) being provided on a side of the joint housing (2) on which the housing stud (3) is formed; and the damping device (10) comprising an elastic damping element (11) made of plastic with a metallic insert (12) such that the metallic insert (12) being embedded in a material of the elastic damping element (11) by injection molding.
16. The axial ball joint according to claim 15, wherein the damping element (11) and the metallic insert (12) are annular and are arranged concentrically with one another.
17. The axial ball joint according to claim 15, wherein the damping element (11) is made from thermoplastic polyurethane.
18. The axial ball joint according to claim 15, wherein the damping element (11) and the metallic insert (12) are connected to one another in a form-enclosing manner.
19. The axial ball joint according to claim 15, wherein the damping device (10), relative to a radial plane, essentially has a symmetrical design.
20. The axial ball joint according to claim 15, wherein the damping element (11) has an axial contact surface (19) on axially opposite sides thereof.
21. The axial ball joint according to claim 15, wherein at least one opening (16, 17) is formed in the damping element (11) in order to leave a functional element (13, 14, 15) of the metallic insert (12) exposed.
22. The axial ball joint according to claim 21, wherein the at least one opening (16) exposes an axial stop (13, 14) of the metallic insert (12) which limits the axial deformation of the damping device (10).
23. The axial ball joint according to claim 15, wherein a plurality of axial stops (13, 14) are formed on the metallic insert (12) and are distributed equally spaced apart from one another around a circumference of the metallic insert (12).
24. The axial ball joint according to claim 23, wherein the axial stops (13, 14) are formed on axially opposite sides of the metallic insert (12).
25. The axial ball joint according to claim 23, wherein in an undeformed condition of the damping element (11), the axial stops (13, 14), relative to axial contact surfaces (19) on axially opposite sides of the damping element (11), are set back.
26. The axial ball joint according to claim 21, wherein the openings (16) widen out in order to ensure that the axial stops (13, 14) come into direct contact with contact surfaces on the joint housing (2) and on a steering gear (7) even if material is displaced in a compressed condition of the damping device (10).
27. The axial ball joint according to claim 21, wherein the at least one opening (17) exposes a tab (15) formed on the metallic insert (12), and the tab extends radially inward.
28. The axial ball joint according to claim 15, wherein a plurality of radially inward-extending tabs (15) are formed on the metallic insert (12), each of the tabs being farther away from the central axis (9) of the axial ball joint (1) than is a step (18) formed on the joint housing (2), but less than an outer circumference of a toothed rack (20).
29. The axial ball joint according to claim 23, wherein the axial stops (13, 14) are formed on a side of the metallic insert (12) facing toward the joint housing (2) and on a side of the metallic insert (12) facing toward the steering gear (7).
30. An axial ball joint in a steering gear, and the axial ball joint comprising: a joint housing having a first side with an opening which receives a joint ball attached to a joint stud; a second opposite side of the joint housing having a housing stud; a damping device being arranged on the second side of the joint housing, and the damping device comprising an annular elastic damping element made of plastic in which an annular metallic insert being embedded by injection molding; the elastic damping element having an axially facing contact surface with axially directed openings; the metallic insert having axially extending stops that open into the axially directed openings of the elastic damping element and being set back from the axially facing contact surface of the axially facing contact surface.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0022] Below, the invention is explained in more detail with reference to a drawing, from which there also emerge further advantageous design features of the invention. The drawing shows:
[0023]
[0024]
[0025]
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0026]
[0027] Depending on the steering angle (left and right) the toothed rack 20, including the axial ball joint 1 connected thereto, moves back and forth in the direction of the double arrow. An essential function of the damping device 10 is to protect the steering gear 7 from mechanical damage, which can take place if, when the vehicle is jacked up, the wheels swing against the steering end-stop. The forces then produced, which act upon the housing 8 of the steering gear 7, are reduced by the damping device 10 to a non-damaging level. The structure and arrangement of the damping device 10 on the axial ball joint 1 will be explained in more detail below with reference to
[0028]
[0029] On the side facing toward the housing stud 3, the joint housing 2 has a step 18. A damping device 10, to be explained in more detail below, is set into the step 18. In this case the damping device 10 is fixed onto the step 18 by a press fit. The press fit is produced by pressure between the material of a plastic ring 11 and the outer circumference of the step 18.
[0030] In the condition shown in
[0031]
[0032] By virtue of the embedding, the elastic damping element 11 and the metallic insert 12 are connected to one another in a form-enclosed manner. Relative to a radial plane the damping device 10 is essentially symmetrical. Relative to a central radial plane of the damping device 10 the material of the damping element 11 and the metallic insert 12 extend uniformly in both axial directions.
[0033] The metallic insert 12 is almost completely enclosed by the material of the elastic damping element 11. The embedding is only interrupted by openings 16, 17, which are provided in order to leave free functional elements 13, 14, 15 of the metallic insert 12.
[0034] On the metallic insert, referring to the representation shown in
[0035] Referring to the assembled condition shown in
[0036] The openings 16 widen out in an approximately funnel-shape, in order to ensure that even if the material is displaced in the compressed condition of the damping device 10, the stops 13, 14 come into direct contact with contact surfaces on the joint housing 2 and the steering gear 7 respectively.
[0037] Besides the axial openings 16, in the elastic damping element 11 three more openings 17 are provided, each of which exposes a radially inward-extending tab 15 formed on the metallic insert 12. Correspondingly, on the metallic insert 12 there are formed three inward-extending tabs 15 offset from one another by 120 and thus uniformly spaced apart from one another.
[0038] The tabs 15 are each farther away from the central axis 9 of the axial ball joint 1 than a step 18 formed on the joint housing 2, but less far from it than an outer circumference of the toothed rack 20. By virtue of these dimensions, in accordance with which the three inward-directed tabs 15 have a larger inside diameter than the associated outer diameter of the joint housing 2 in the area of the step 18, it is in the first place ensured that there is a free space between the metallic insert 12 and the step 18 of the joint housing 2, which space allows some axial play between them. Furthermore, the dimensions effectively prevent the damping device 10 from sliding in the axial direction against a toothed rack 20 of the steering gear 7 to be fixed to the joint housing 2. Thus, the tabs 15 serve as locking means which secure the damping device 10 axially relative to the toothed rack 20.
INDEXES
[0039] 1 Axial ball joint [0040] 2 Joint housing [0041] 3 Housing stud [0042] 4 Joint ball [0043] 5 Joint stud [0044] 6 Tie rod [0045] 7 Steering gear [0046] 8 Housing of the steering gear [0047] 9 Central axis [0048] 10 Damper [0049] 11 Plastic ring [0050] 12 Sheet-metal ring [0051] 13 Stud [0052] 14 Stud [0053] 15 Tab [0054] 16 Opening [0055] 17 Opening [0056] 18 Step [0057] 19 Contact surface [0058] 20 Toothed rack