This application claims the benefit of German Patent application DE 10 2008 035 691.3, filed Jul. 30, 2008, which is incorporated herein by reference as if fully set forth.
The present invention relates to a radial bearing made from at least three assemblies. The first assembly is composed of a first radial bearing. The second assembly is composed of a radial sealing element. The third assembly comprises a second needle bearing.
U.S. Pat. No. 5,619,130 shows an arrangement with which an annular element is mounted on a shaft. The annular element has a locking part on the inner surface, wherein this locking part engages with an annular locking groove. The annular groove is here formed on the outer periphery of the shaft. The document does indeed show a uniform component, but it is not comprised of several separate elements composed of merely bearing elements and merely sealing elements.
European Patent No. 0 597 438 B1 shows a radial needle bearing unit with integrated radial-axial sealing and axial support, with an outer sleeve with at least one rim pointing inward and a cage guiding the needles, wherein this cage is in connection with a stop disk and an elastic ring lying within the outer sleeve. The sealing and bearing elements are here indeed arranged in one component, but do not themselves form separate components. Furthermore, the bearing and sealing elements are arranged on different planes within the housing to be sealed.
U.S. Pat. No. 6,224,063 B1 discloses a sealing arrangement. The sealing arrangement here comprises two sealing rings that are spaced apart from each other in the axial direction and that are held in an annular holder. For this purpose, corresponding recesses are formed in the annular holder. The document discloses nothing, however, proposing an arrangement with which a simultaneous bearing and sealing could be achieved.
A radial-axial seal and an arrangement for bearing and radial-axial sealing are known. The radial-axial seal is arranged between a housing and a rotating shaft. The radial-axial seal comprises a cage with two rims and a sleeve that has two similarly formed rims. A sealing element is set between each rim of the cage and each rim of the sleeve. The sleeve is mounted by a press fit on the housing or on the shaft. In order to also provide the radial-axial seal with a bearing, two needle bearings of the radial-axial seal are installed in series at the sides of the radial-axial seal.
The objective of the present invention is to create a radial bearing that is easy to assemble and that reduces the costs in the assembly of the radial bearing.
This objective is met by a radial bearing that comprises the features of the invention.
The radial bearing according to the invention is here comprised of at least three assemblies. The first assembly is a first needle bearing, the second assembly is a radial sealing element, and the third assembly is a second needle bearing. The radial sealing element is mounted on an inner sleeve. The first needle bearing and the second needle bearing attach to the ends of the inner sleeve. At each of its ends, the inner sleeve has a rim. The rim comprises several radially distributed holding elements that interact with corresponding counter-holding elements of the needle bearing. The holding elements and the corresponding counter-holding elements are here constructed such that the inner sleeve and the corresponding needle bearing can be connected to each other by a clip mechanism.
The radial sealing element comprises several sealing rings that are each spaced apart from each other by a spacer part. These sealing rings and the spacer parts surround the inner sleeve.
The ends of the inner sleeve can be formed in various ways. One possibility is that the inner sleeve has a fixed rim formed on both its first end and on its second end. Another possibility is that the inner sleeve has a fixed rim formed on its first end and a flanged rim formed on its second end. Another possibility is that the inner sleeve has a flanged rim formed on both its first end and on its second end.
The fixed rim has the radially distributed holding elements formed on its inner diameter. The holding elements are formed as holding tabs. An axial disk is crimped rigidly on the flanged rim. The axial disk has the same outer diameter as the contours of the fixed rim. The axial disk similarly has radially distributed holding elements, wherein these holding elements are also formed as holding tabs and correspond to the holding tabs on the fixed rim.
The holding tabs of the inner sleeve interact with the corresponding counter-holding elements of the needle bearing. The counter-holding element has a step in which engages the corresponding holding tab on the fixed rim or on the axial disk.
The inner sleeve and the two or more needle bearings are produced without cutting. There is also the possibility that the two or more needle bearings have the same diameter. It is also conceivable that the two or more needle bearings have different diameters.
The inner sleeve has radial boreholes that permit a flow of lubricant. The inner sleeve produced without cutting is provided with the radial boreholes and the sealing rings with the spacer parts are mounted on the outer diameter between the rims. The radial boreholes allow for a selective control of lubricant flow (oil-flow control), wherein a needle bearing produced without cutting is formed on both sides on the inner sleeve of the sealing element. The entire assembly made from the sealing element and the two or more needle bearings is clipped together. This unit could be assembled relatively easily by the customer in one assembly process.
Below, embodiments shall explain the invention and its advantages in greater detail with reference to the enclosed figures.
Before the following description it should be noted that the same reference symbols are used in different figures for the same features. For elements of the invention that are identical or that have identical actions, identical reference symbols are used. Furthermore, for the sake of clarity, only reference symbols that are necessary for the description of the figure in question are shown in the individual figures. The shown embodiments represent merely examples of how the radial bearing according to the invention could be constructed and thus do not represent a conclusive limitation of the invention.
With this clip mechanism, several needle bearings produced without cutting can be clipped together to form one assembled unit. Two or more needle bearings could be clipped to each other with an inner ring that has either fixed rims and/or flanged rims. It is also possible that the needle bearings have different diameters. Due to the principle of the present invention, many possible configurations of the radial bearing are possible.
The present invention has been described with reference to preferred embodiments. For someone skilled in the art it is obvious that changes and modifications can be made, without leaving the scope of protection of the following claims.
Number | Date | Country | Kind |
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102008035691.3 | Jul 2008 | DE | national |