1. Field of the Invention
This invention relates to a power transmission apparatus for transmitting rotational force, or in particular, to a power transmission apparatus suitably used for a compressor of an air conditioning system of automobiles.
2. Description of the Related Art
A power transmission apparatus for transmitting power to the compressor, including a rotary unit having a belt pulley and a hub fastened to the rotary shaft of the compressor with a nut member, is described in, for example, Japanese Patent Application Publication No. 2007-127036. This conventional power transmission apparatus will be explained with reference to
Although the central hole 103c is sealed in this way, the seal member 105 only covers an externally exposed part of the end surface of the nut member 103, and therefore at least the portion of the nut member 103 not covered by the seal member 105 requires a surface treatment such as plating to prevent corrosion. However, in order to reduce the fabrication cost of the nut member, elimination of the surface treatment is desired.
The present invention has been achieved in view of the problems of the prior art described above, and the object thereof is to provide a power transmission apparatus coupled by a nut member screwed to the rotary shaft of a rotary device and having a sealing structure for the screw portion, wherein the fabrication cost of the nut member is reduced.
This invention provides a power transmission apparatus described in each of the appended claims as a technical means for solving the problems described above.
According to a first aspect of the invention, there is provided a power transmission apparatus comprising a rotary unit (110) rotated by the turning effort received from a rotation drive source and a nut member (3) for coupling the rotary unit (10) to a rotary shaft (4) of the driven-side rotary device for transmitting the turning effort from the rotation drive source to the rotary device, wherein the nut member (3) includes a central hole (3e) formed through a second end surface (3d) from a first end surface (3c) of the nut member (3) and an internally threaded portion (3g) formed in the central hole (3e), and wherein the rotary unit (10) is coupled to the rotary shaft (4) by forcing the internally threaded portion (3g) onto an externally threaded portion (4b) on the rotary shaft (4) from the second end surface (3d) side, the power transmission apparatus further comprising a cap (5) capped on the nut member (3) in such a manner as to cover and seal the first end surface (3c) of the nut member (3) and an outer peripheral surface (3i) of the nut member (3) connected to the peripheral edge of the first end surface (3c).
With this configuration, not only the threaded portions (3g), (4b) for screwing the nut member (3) and the rotary shaft (4) to each other are sealed, but also the first end surface (3c) of the nut member (3) and the outer peripheral surface (3i) are effectively prevented from corrosion, thereby making it possible to use the nut member (3) without surface treatment, such as plating to prevent corrosion.
In the power transmission apparatus according to this invention, the cap (5) is suitably formed of an anti-corrosive material, a synthetic resin material or a rubber material.
According to another aspect of the invention, there is provided a power transmission apparatus, wherein the cap (5) includes an outer peripheral wall portion (5a) extending in axial direction and a bottom surface portion (5b) extending in radial direction in such a manner as to close the first end side of a space defined by the outer peripheral wall portion (5a), and wherein the bottom surface portion (5) may have a small hole (5c) as a vent. This configuration can prevent the cap (5) from coming off due to the increase in the internal pressure of the space of the central hole (3e) of the nut member (3), which is caused by on increase in temperature when the automobile is driven.
The reference numerals inserted into the parentheses following the names of the respective means described above indicate an example of correspondence with the specific means described in the embodiments below.
The present invention may be more fully understood from the description of preferred embodiments of the invention, as set forth below, together with the accompanying drawings.
The embodiments of the invention are described below with reference to
The power transmission apparatus according to this invention includes a rotary unit 10 rotated by the drive force from a rotation drive source such as an engine or an electric motor and a nut member 3 for coupling the rotary unit 10 to the rotary shaft 4 of the compressor to transmit the turning effort from the rotation drive source to the compressor. According to this embodiment, the rotary unit 10 consists of a belt pulley 1 providing a driving-side rotary unit and a hub 2 providing a driven-side rotary unit coupled to the belt pulley 1 in concavo-convex fashion and fixed on the rotary shaft 4 of the compressor. The nut member 3 is configured as a power shut-off member adapted to be broken by an excessively large torque to protect the belt, etc. The power transmission apparatus according to this invention further includes a cap member 5 mounted on the front side of the nut member 3. The belt pulley 1, the hub 2 and the nut member 3 are arranged on the same axis. The power transmission apparatus according to an embodiment of the invention will be explained in more detail below.
As shown in
The rotary shaft 4 of the compressor is projected to the front side in
Next, the hub 2 will be explained. The hub 2, as shown in
The nut member 3, as shown in
The internally threaded portion 3g of the nut member 3 is forced onto the externally threaded portion 4b of the rotary shaft 4 from the second end side. Then, the inner hub 21 is fastened between the large-diameter shaft portion 3a of the nut member 3 and the front end surface of the washer 11 and thus indirectly fixed on the rotary shaft 4, with the result that the hub 2 and the belt pulley 1 engaged therewith are coupled to and integrally rotated with the rotary shaft 4. The power transmission apparatus according to this embodiment is configured as described above, and therefore the turning effort received by the belt pulley 1 from the belt can be transmitted to the rotary shaft 4 through the hub 2 and the nut member 3.
Before forcing the nut member 3 onto the rotary shaft 4, the grease or oil is normally coated on the internally threaded portion 3g and the externally threaded portion 4b. By coating the grease or oil in this manner, the friction coefficient of the threaded portions 3g, 4b is reduced and stabilized, thereby making it possible to suppress the variations of the torque for breaking the annular notch 3h.
According to this embodiment, the cap member 5 is formed of an anti-corrosive synthetic resin material having an outer peripheral wall portion 5a extending in axial direction and a bottom surface portion 5b for closing the first end of the space defined by the outer peripheral wall portion 5a. The cap 5 has a cross section in the shape corresponding to the cross section of the large-diameter shaft portion 3a of the nut member 3 capped with the cap member 5, that is, a regular hexagon according to this embodiment. The hexagon formed by the outer peripheral wall portion 5a is slightly smaller than the regular hexagon of the nut member 3, and the inside dimension of the axial height of the outer peripheral wall portion 5a is substantially equal to the axial size of the large-diameter shaft portion 3a of the nut member 3. The cap 5, though slightly smaller in diametrical size than the nut member 3, can be capped onto the nut member 3 in such a manner as to cover the first end surface 3c on the front side of the nut member 3 and the outer peripheral surface 3i of the large-diameter portion 3a by elastic deformation.
The outer wall portion 5a of the cap 5 and the outer peripheral surface 3i of the large-diameter shaft portion 3a of the nut member 3 receive the pressure exerted on each other due to the elastic deformation of the cap 5. Thus, the seal portion is formed to seal the inner peripheral portion thereof, thereby sealing also the screwed portion between the internally threaded portion 3g and the externally threaded portion 3a. The cap member 5 covers the first end surface 3c of the nut member 3 and the outer peripheral surface 3i of the large-diameter shaft portion 3a, i.e., the externally exposed portion of the nut member 3, and therefore the appearance is not deteriorated by the corrosion even without the surface treatment such as plating of the cap member 5 formed of, for example, a steel material.
The cap 5 may be formed of a rubber material or a metal material such as stainless steel or aluminum comparatively high in corrosion resistance. The cap 5, if formed of a metal material, is capped by press fitting on the nut member 3.
Next, a modification of the embodiment described above will be explained with reference to
While the invention has been described by reference to specific embodiments chosen for purposes of illustration, it should be apparent that numerous modifications could be made thereto by those skilled in the art without departing from the basic concept and scope of the invention.
Number | Date | Country | Kind |
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2007-146918 | Jun 2007 | JP | national |