Joint device for a motor vehicle
10280971 ยท 2019-05-07
Assignee
Inventors
Cpc classification
Y10T403/32631
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
F16C11/0666
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C11/0671
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Y10T403/32729
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
F16C11/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A joint device (6) having an axially extending joint pin (8) and a housing (11) that radially surrounds the pin, either wholly or partially. The joint pin (8) and the housing (11) can move relative to one another at least by pivoting or rotating, and a gap (13) between the two components is closed by a sealing device (14) which is effective in any position of the components (8; 11) relative to one another. The sealing device is designed in such manner that the sealing device (14), radially on the outside thereof, is in contact with and is supported by an inner wall area (15) of the housing (11).
Claims
1. A joint device comprising: an axially extending joint pin, a housing surrounding the joint pin radially either wholly or partially, the joint pin and the housing being movable relative to one another at least by either pivoting or rotating, a gap between the joint pin and the housing being closed by a sealing device which closes the gap in any position of the joint pin and the housing relative to one another, the sealing device having first and second axial sides and a radially outer edge area radially on an outside thereof, and when the sealing device is located in an installed position the outer edge area being in contact with and being supported by an inner wall area of the housing and, at a radially inner edge area of the sealing device, the inner edge area of the sealing device, when the sealing device is located in the installed position, being secured in one axial direction by either a radially projecting edge of the joint pin or by a separate holding ring located on the first axial side of the inner edge area of the sealing device, and in the installed position of the sealing device, an entirety of the sealing device is axially located within the housing, the sealing device extends radially between the inner and the outer edge areas, and the sealing device extends axially from a lowermost axial level thereof located axially between the first and the second axial sides of the inner and the outer edge areas to an uppermost axial level thereof located axially beyond the first axial side of the inner and the outer edge areas, and an exterior surface of the joint pin widens radially outward to form a plate-shaped flange located on the second axial side of the inner edge area of the sealing device so that the inner edge area of the sealing device cannot slip in the other axial direction.
2. The joint device according to claim 1, wherein a radially outermost portion of the sealing device has a ring element in the outer edge area, and the ring element of the radially outermost portion of the sealing device pre-stresses the outer edge area of the sealing device outward.
3. The joint device according to claim 2, wherein the ring element that pre-stresses the outer edge area of the sealing device is a clamping ring located either within or externally of seal material of the sealing device.
4. The joint device according to claim 1, wherein either a notch or a radially inward-extending groove provided in the housing forms a first contact surface for the sealing device, and the notch or the groove in the housing forms a second contact surface for the sealing device which extends radially, the second contact surface of the housing being radially aligned with the radially projecting edge of the joint pin or the holding ring such that the first axial sides of the inner and the outer edge areas of the sealing device are at a same axial level relative to the pin.
5. The joint device according to claim 1, wherein a radially outermost edge area of the sealing device abuts against the inner wall area of the housing, and the inner wall area of the housing has an axial length of at least 8 millimeters.
6. The joint device according to claim 1, wherein the sealing device in the installed position is screened by the housing radially from the outside thereof.
7. The joint device according to claim 6, wherein the sealing device is located completely radially between the housing and the pin and within an axial extent of the housing.
8. The joint device according to claim 1, wherein the plate-shaped flange is attached to a differential housing of a rear axle of a motor vehicle.
9. The joint device according to claim 1, wherein in the installed position of the sealing device, the first axial side of the radially inner edge area and the first axial side of the radially outer edge area of the sealing device are located axially at a same level relative to the joint pin, and the second axial side of the radially inner edge area and the second axial side of the radially outer edge area of the sealing device are located axially at a same level relative to the joint pin.
10. The joint device according to claim 1, wherein the sealing device is axially secured in position by the radially inner edge area and the radially outer edge area of the sealing device which directly contact the exterior surface of the joint pin and the inner wall area of the housing, respectively, at least with interlock.
11. The joint device according to claim 1, wherein the sealing device extends in a meandering shape, between the radially inner edge area and the radially outer edge area of the sealing device, with axially upward and axially downward sections, the axially upward and the axially downward sections all being axially located above the second axial sides of the inner and the outer edge areas of the sealing device.
12. The joint device according to claim 1, wherein the sealing device is made at least substantially from a rubber-elastic material.
13. A joint device in combination with a motor vehicle, the joint device comprising: an axially extending joint pin, a housing surrounding the joint pin radially either wholly or partially, the joint pin and the housing being movable relative to one another at least by either pivoting or rotating, a gap between the joint pin and the housing being closed by a sealing device which closes the gap in any position of the joint pin and the housing relative to one another, the sealing device having first and second axial sides and a radially outer edge area radially on an outside thereof, and when the sealing device is located in an installed position the outer edge area is in contact with and supported by an inner wall area of the housing and, at a radially inner edge area of the sealing device, the inner edge area of the sealing device, when the sealing device is located in the installed position, being prevented from axially moving relative to the joint pin in a first axial direction by either a radially projecting edge of the joint pin or by a separate holding ring, the first axial side of the inner edge area of the sealing device facing the projecting edge of the joint pin or the holding ring, and in the installed position of the sealing device, an entirety of the sealing device is axially located within the housing, the sealing device extends radially from the inner edge area to the outer edge area, and the sealing device extends axially such that sections of the sealing device are arranged in the first axial direction beyond axial levels of the first axial sides of the inner and the outer edge areas, and the second axial sides of the inner and the outer edge areas of the sealing device forming an axial extent of the sealing device in a second axial direction, and an exterior surface of the joint pin continuously widens radially outward from the projecting edge of the joint pin or the holding ring to form a plate-shaped flange so that the inner edge area of the sealing device is prevented from axial movement in a second axial direction toward the plate-shaped flange.
14. The joint device in combination with the motor vehicle according to claim 13, wherein the motor vehicle is a utility vehicle (UV) and the joint device guides an axle of the motor vehicle by at least one link running either directly or indirectly from the joint device to at least one chassis component.
15. A joint device comprising: a joint pin defining an axis, a housing radially surrounding the joint pin, the joint pin being received within the housing such that the joint pin and the housing being at least one of pivotable and rotatable relative to each other, a gap being formed between the joint pin and the housing and being enclosed by a sealing device, the sealing device forming a seal between the joint pin and the housing, an outer end of the sealing device having a radially outermost surface being in contact with and supported by an inner surface of the housing when the sealing device is located in an installed position, and an inner end of the sealing device having a radially innermost surface abutting an exterior surface of the joint pin when the sealing device is located in the installed position, the inner end of the sealing device being axially secured relative to the joint pin by a protruding edge of the joint pin located on a first axial side of the sealing device, the joint pin radially widening out to form a plate-shaped flange located on a second axial side of the sealing device such that the inner end of the sealing device is axially fixed relative to the joint pin by the protruding edge of the joint pin and the plate-shaped flange, and in the installed position of the sealing device, an entirety of the sealing device is axially located within the housing, the first axial side of the sealing device defining a first axial edge of the outermost surface of the sealing device and a first axial edge of the innermost surface of the sealing device, and radially between the innermost and the outermost surfaces of the sealing device, the sealing device has at least one section that extends in an axial direction away from the second axial side of the sealing device and beyond axial levels of the first axial edges of the outermost and the innermost surfaces of the sealing device, and the inner end of the sealing device having first and second radially extending faces that delimit the innermost surface of the sealing device, and the exterior surface of the joint pin having a radius that continuously increases along the axis from the first face of the inner end of the sealing device to the second face of the inner end of the sealing device, and the outer end of the sealing device having first and second radially extending faces that delimit the outermost surface of the sealing device, the first faces of the inner and the outer ends of the sealing device being radially aligned with each other, and the second faces of the inner and the outer ends of the sealing device being radially aligned with each other.
16. The joint device according to claim 15, wherein the exterior surface of the joint pin flares radially outward along the axis from the protruding edge of the joint pin to the plate-shaped flange, and the innermost surface of the sealing device flares radially outward along the axis and mates with the exterior surface of the joint pin to prevent axial movement of the inner end of the sealing device toward the plate-shaped flange.
17. The joint device according to claim 15, wherein the joint pin and the plate-shaped flange are a unitary component.
18. The joint device according to claim 15, wherein the protruding edge of the joint pin axially separates the inner end of the sealing device from a ball-shaped portion of the joint pin.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) Further advantages and features of the invention emerge from the example embodiments of the object of the invention illustrated in the drawing and described below.
(2) The drawings show:
(3)
(4)
(5)
(6)
(7)
(8)
(9)
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
(10) The motor vehicle represented only schematically in
(11) For example, a building-site vehicle or an off-road vehicle can also be made according to the invention.
(12) The motor vehicle 1 shown is provided with at least one joint device 6; it could also have several joint devices of the type described in more detail below. The joint device 6 shown here serves to guide an axle 5 of the motor vehicle 1. For this, one or more (in this case two) links 7 running directly or indirectly from one or more chassis components 3, 4 to the joint device 6 are provided. An X-shaped link arrangement with a four-point connection is often used here. Further components connected to the chassis can also be connected by means of joint devices according to the invention.
(13) The joint device 6 itself, in this case, comprises an axially extending joint pin 8, with a substantially ball-shaped wider portion 9. This can be formed integrally on the joint pin 8 or it can form a separate component and relative to a receiving joint socket 10 it can move by pivoting and tilting in the manner of a ball joint. The joint socket 10 is gripped firmly by an outer housing 11 of the joint device 6, so that the mobility of the joint socket 10 relative to the ball-shaped wider portion 9 at the same time allows relative mobilityhere in a pivoting direction orientated laterally to the travel direction F and in a tilt direction lying in the travel direction Fbetween the housing 11 and the joint pin 8. A twisting about the axis 12 can also be possible between the housing 11 and the joint pin 8. Such joint devices 6 can also for example be provided in wheel joint or in front axle guides.
(14) In this case, for example, the joint pin 8 widens downward to form a plate-shaped flange 8a, which for example is attached to a differential housing of a rear axle 5. The flange 8a can also be a separate assembly from the joint pin 8, or the pin 8 can comprise an entirely different connection to other components, and can also be fitted in a different position.
(15) In this case the housing 11 radially surrounds the joint pin 8 completely; it can also surround the pin only partially. A gap, made necessary because of the relative mobility between the housing 11 and the pin 8, is closed by a sealing device 14 which is effective in any position of the components 8, 11 relative to one another. This sealing device 14 is in contact at least radially on the outside (17) with an inner wall area 15 of the housing, and is supported there. In addition, this outer edge of the sealing device 14 can also be in contact with a wall area 16 opposite the seal and likewise be supported axially by it.
(16) The radially outer edge area 17 of the sealing device 14 can be acted upon by an element 18 that pre-stresses it outward, For this, a clamping ring 18 located within or outside the sealing material of the sealing device 14 can be considered.
(17) To form the contact surfaces 15, 16 for the sealing device 14, in this case for example a notch is provided on the axially lower end of the housing; a radially inward-extending groove in the housing 11 would also be possible as an alternative. In the example shown here, the contact surface 15 on the housing 11 has an axial length 19 of at least 8 millimeters. Depending on the size of the joint, this axial length 19 can also be several centimeters. In any case the seal 14 is almost completely enclosed against the contact surface, so that axially it does not projectas shown hereor only with a fraction of its length, and is therefore well protected and supported.
(18) In the example embodiment shown, not only the radially outer edge 17 of the seal 14 surrounded by the housing 11, but also, the sealing device 14 is held entirely in a protected position screened on the outside by the housing 11,
(19) In this case the sealing device 14, along its axial extension axially relative to the pin 8, is positioned completely within the contour of the housing 11 and it therefore does not project beyond the housing into a free area. This results in particularly effective protection for example against sand and stones, which could be thrown up onto the pin 8 with some force in a direction opposite to the travel direction F, or against a high-pressure cleaner directed horizontally and radially inward onto the pin 8.
(20) In this case, as shown, the sealing device 14 with its edge areas radially on the inside (20) and radially on the outside 17, can be positioned axially at the same level relative to the pin 8.
(21) At its radially inner edge area 20, for example, the sealing device 14 is held in position behind an edge 21 formed on the pin 8, as can be seen clearly in
(22) On the whole, for large loads it is advantageous if the sealing device, with its radially inner 20 and radially outer 17 edge areas, is secured in position on the pin 8 or on the housing 11 at least with interlock. A friction-force attachment, for example by bonding, can then be provided in addition. Below the outer end 17, for example, a retaining ring (not shown here) can also be provided for axial security.
(23) As can be seen in the figures, the sealing device 14 extends between its radially inner edge area 20 and its radially outer edge area 17 in a meandering shape with sections directed upward and downward, so that part of the elasticity of the seal is imparted by its geometry. In addition, the sealing device 14 is at least substantially made from a rubber-elastic material, whose hardness can vary. The seal can also be injection-molded as a 2K material, so that the edge areas 17, 20 have higher rigidity that the area radially between them, which can then undergo elastic deformation quite easily.
INDEXES
(24) 1 Motor vehicle
(25) 2 Vehicle chassis
(26) 3 Longitudinal member
(27) 4 Transverse member
(28) 5 Vehicle axle
(29) 6 Joint device
(30) 7 Link
(31) 8 Joint pin
(32) 8a Flange
(33) 9 Ball-shaped wider portion
(34) 10 Joint socket
(35) 11 Housing
(36) 12 Joint axis
(37) 13 Gap
(38) 14 Sealing device
(39) 15 Radial wall area
(40) 16 Axial wall area
(41) 176 Outer edge area
(42) 18 Clamping ring
(43) 19 Axial length
(44) 20 Radially inner area
(45) 21 Edge on the pin
(46) 22 Separate securing ring
(47) 23 Separate holding ring