DUST COVER FOR BALL JOINT
20170051784 ยท 2017-02-23
Inventors
Cpc classification
F16C11/0628
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C11/0671
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C41/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16J3/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16J3/042
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C11/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16C11/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A dust cover for a ball joint has a spherical head portion, a shaft, a cylindrical one-end large-diameter opening portion, a large-diameter opening portion side reinforcing ring fixed to a socket, the other end small-diameter opening portion retained onto the shaft, a flange portion extending from an end portion in the other-end small-diameter opening portion of the one-end large-diameter opening portion toward a ball stud side, and a rubber-like elastic film portion coupling an inward end portion of the flange portion and the other-end small-diameter opening portion. The dust cover has an outside projection provided on an outer peripheral surface of the film portion, and an inside projection provided on an inner peripheral surface of a joint portion between the flange portion and the film portion, and the outside projection and the inside projection come into contact with each other when the dust covers for the ball joint are laminated.
Claims
1. A dust cover for a ball joint comprising: a spherical head portion formed in one end of a ball stud, the spherical head portion being retained within a socket; a shaft in the other end of said ball stud, the shaft being fastened and fixed to a knuckle; a cylindrical one-end large-diameter opening portion being fixed and retained to an inner peripheral surface of said socket; a large-diameter opening portion side reinforcing ring being buried in the one-end large-diameter opening portion; the other end small-diameter opening portion being retained onto an outer peripheral surface of said shaft; a flange portion extending from an end portion in said other-end small-diameter opening portion of said one-end large-diameter opening portion toward said ball stud side; and a film portion coupling an inward end portion of said flange portion and said other-end small-diameter opening portion and made of a rubber-like elastic material, wherein the dust cover further comprises an outside projection which is provided on an outer peripheral surface of said film portion, and an inside projection which is provided on an inner peripheral surface of a joint portion between said flange portion and said film portion, and said outside projection and said inside projection come into contact with each other when said dust covers for the ball joint are laminated.
2. The dust cover for the ball joint according to claim 1, wherein said outside projection is constructed by a plurality of projections which are arranged at even intervals circumferentially, and said inside projection is constructed by an annular projection.
3. The dust cover for the ball joint according to claim 1, wherein said inside projection is constructed by a plurality of projections which are arranged at even intervals circumferentially, and said outside projection is constructed by an annular projection.
Description
BRIEF EXPLANATION OF THE DRAWINGS
[0026]
[0027]
[0028]
[0029]
[0030]
[0031]
[0032]
[0033]
[0034]
[0035]
[0036]
[0037]
[0038]
DETAILED DESCRIPTION OF PREFERRED EMBODIMENTS
[0039] A description will be given of modes for carrying out the present invention.
[0040] As shown in
[0041] Further, the dust cover 8 is structured such that a cylindrical one-end large-diameter opening portion 5 is fixed and retained to an inner peripheral surface of an annular groove 31 which is formed in the socket 3, and the other end-small-diameter opening portion 6 is retained to a groove 11 which is formed in an outer peripheral surface of a knuckle 10 retained onto an outer peripheral surface of the shaft 4. A large-diameter opening side metal reinforcing ring 81 having an approximately L-shaped form in its cross section is embedded in the cylindrical one-end large-diameter opening portion 5.
[0042] Further, the dust cover 8 is provided with a basic structure constructed by a flange portion 51 and a film portion 7. The flange portion 51 extends from an end portion in the other-end small-diameter opening portion 6 side of the one-end large-diameter opening portion 5 toward the ball stud 1 side. The film portion 7 is constructed by a cylindrical portion which connects an inward end portion of the flange portion 51 and the other-end small-diameter opening portion 6 and extends from an inner end in a diametrical direction of the flange portion 51 toward the other-end small-diameter opening portion 6, and a tapered portion which extends from the cylindrical portion toward the other-end small-diameter opening portion 6, (is formed into a drum shape) and is made of a rubber-like elastic material.
[0043] Further, outside projections 91 which are formed at even intervals circumferentially are formed on an outer peripheral surface of the film portion 7.
[0044] Further, an annular inside projection 92 is provided on an inner peripheral surface of a joint portion 71 between the flange portion 51 and the film portion 7.
[0045] Further, in the case that this kind of dust covers 8 for the ball joint are laminated as shown in
[0046] As a result, it is possible to effectively avoid the contact between the film portions 7 even in the case that the dust covers 8 are laminated.
[0047] Particularly even in the case that vibrations are generated during the transfer or some failings are generated at the laminating time, it is securely possible to effectively avoid the contact between the film portions 7.
[0048] As shown in
[0049] As a result, deformation of the film portion 7 is not adversely affected.
[0050] A plurality of outside projections 91 may exist, however, three or more, that is, four to eight outside projections are preferably arranged at even intervals.
[0051] Next, a description will be given of a dust cover 8 for a ball joint according to the other embodiment of the present invention with reference to
[0052] A different point from the previously described embodiment exists in a point that the inside projection 92 is constructed by a plurality of projections which are arranged at even intervals circumferentially, and the outside projections 91 are constructed by an annular projection.
[0053] Further, a small-diameter opening portion side reinforcing ring 82 having an L-shaped cross sectional form is embedded in the other-end small-diameter opening portion 6.
[0054] As a result, an inner mold at the molding time can be easily taken out and it is easy to mold.
[0055] In the embodiments described above, any one of the outside projection 91 and the inside projection 92 is constructed by the annular projection, and the other is constructed by a plurality of projections which are arranged at even intervals circumferentially, however, both of them may be constructed by the annular projection.
[0056] However, in the case that both of them are constructed by a plurality of projections which are arranged at even intervals circumferentially, the possibility that the projections do not come into contact with each other occurs. Therefore, this case is not preferable.
[0057] Further, a metal material and a resin material are appropriately selected and employed as a material of the large-diameter opening portion side reinforcing ring 81 and the small-diameter opening portion side reinforcing ring 82.
[0058] Further, a material of the dust cover 8 is selected and used in conformity to an intended use, from a rubber-like elastic material such as chloroprene, a polyester elastomer, and a thermoplastic elastomer such as a thermoplastic polyurethane.
[0059] Further, grease is sealed into the dust cover 8.
[0060] Further, it goes without saying that the present invention is not limited to the best mode for carrying out the invention mentioned above, but can employ various structures without deflecting from the scope of the present invention.
INDUSTRIAL APPLICABILITY
[0061] The present invention can be used in a ball joint which is used in a suspension device and a steering device of an automobile.