The present invention relates to a radial shaft seal, and more particularly to a composite radial shaft seal having a sealing member adapted to frictionally maintain non-rotational motion of the seal.
Hydraulic systems often include a shaft and bore assembly adapted for relative rotational or axial displacement. Seals are implemented to contain fluid from one media type to another Typically, these hydraulic seals are annular shaped and are provided between the bore and shaft. An annular groove formed in the bore holds the seal. Typical seals are constructed of rubber or other flexible, oil resistant material. To seal higher pressures, back-up rings are used to prevent extrusion. One means of preventing extrusion has been to use composite seals. Composite seals include a soft rubber sealing portion and a harder structural base portion. The base portion functions to support the seal under high pressures and its inherent rigidity resists the aforementioned extrusion.
The present invention provides a hydraulic seal assembly that is adapted to frictionally engage an annular groove formed in a bore, thereby maintaining its rotational disposition. The seal assembly comprises an annular sealing member mechanically engaged with an annular support member. The sealing member includes a heel portion having a generally L-shaped cross-section and a sealing portion having a generally V-shaped cross-section. The heel portion and the outer lip are adapted to frictionally engage the annular groove to limit rotation of the seal assembly therein. The annular support member has a generally upside-down L-shaped cross-section and is mechanically interconnected with the heel portion of the sealing member. The support member is adapted to support the sealing member under axial and rotational loading conditions. The support member typically is constructed of a material that has a higher modulus than the sealing member to resist deformation.
Further areas of applicability of the present invention will become apparent from the detailed description provided hereinafter. It should be understood that the detailed description and specific examples, while indicating the preferred embodiment of the invention, are intended for purposes of illustration only and are not intended to limit the scope of the invention.
The present invention will become more fully understood from the detailed description and the accompanying drawings, wherein:
The following description of the preferred embodiment is merely exemplary in nature and is in no way intended to limit the scope of the invention, its application, or its uses.
With reference to
The sealing member 12 is a one-piece member that includes a heel portion 16 and a static sealing portion 18. According to a first embodiment, the heel portion 16 has a generally L-shaped cross-section that defines a first axially extending leg surface 20, a second leg surface 22, a table surface 24, and a radially extending sole surface 56. The first and second leg surfaces 20, 22 are substantially parallel and the table surface 24 extends generally perpendicular (
The sealing portion 18 of the sealing member 12 is axially disposed relative to the heel portion 16 and has a generally V-shaped cross-section. The sealing portion 18 defines an inner lip 26, an outer lip 28, and an annular groove 30 disposed on an axial face of the sealing portion 18. The annular groove 30 is adapted to enhance radial deformation of the sealing member 12 by allowing the sealing portion 18 to flex. The sealing portion 18 further defines a radially converging surface 32 extending from the inner lip 26 toward the heel portion 16. In an exemplary embodiment, the sealing member 12 is constructed of a deformable, material such as an elastomer. Preferably, an oil resistant material such as nitrile rubber or hydrogenated nitrile rubber can be used. By way of example, it is envisioned that the sealing member 12 has a Shore A durometer hardness of approximately 60-90. It should be appreciated, however, that any flexible, oil resistant material capable of providing a hydraulic seal is intended to be within the scope of the present invention.
The support member 14 has a generally inverted L-shaped cross-section that defines a first outer engaging surface 34, a second radially inward outer engaging surface 36, a lower engaging surface 38 extending radially inward from the first outer engaging surface 34 toward the second outer engaging surface 36, first and second radially extending support surfaces 40, 42, and an inner diameter surface 60. The first and second outer engaging surfaces 34, 36 are virtually parallel to one another and the lower engaging surface 38 extends generally perpendicular (
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With further reference to
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The first and second leg surfaces 20, 22 remain parallel, as well as the first and second outer engaging surfaces 34, 36. The table surface 24 and the lower engaging surface 38, however, extend at angles relative to the leg surfaces 20, 22 and outer engaging surfaces 34, 36, respectively. The table surface 24, however, extends angularly radially upward and inward from the first leg surface 20 to the second leg surface 22. The lower engaging surface 38 extends angularly radially upward and inward from the first outer engaging surface 34 to the second outer engaging surface 36. Cooperative engagement of the table surface 24 and the lower engaging surface 38 limits radial separation of the sealing member 12 and the support member 14. In an exemplary embodiment, the table surface 24 and the lower engaging surface 38 engage in a plane extending at approximately 45° from the first leg surface 20. It should be appreciated, however, that any angle capable of limiting radial separation of the sealing and support members 12, 14 is intended to be within the scope of the present invention.
The description of the invention is merely exemplary in nature and, thus, variations that do not depart from the gist of the invention are intended to be within the scope of the invention. Such variations are not to be regarded as a departure from the spirit and scope of the invention.