This application claims priority on the basis of Japanese Patent Application 2009-289304 filed Dec. 21, 2009. The disclosure of Japanese Patent Application 2009-289304 is herein incorporated by reference.
The invention relates to a tensioner unit for maintaining adequate tension in the chain of a chain transmission, such as the timing chain in an internal combustion engine.
As shown in
Because the tensioner body 510, the gasket 520, and the mounting bolts 530, are supplied as separate components, the task of attaching the tensioner body and gasket to the mounting surface is cumbersome. For the same reason, it is difficult to ensure that the gasket 520 is accurately positioned in relation to the port and the bolt holes in the mounting surface and in relation to the corresponding port and bolt holes in the tensioner body.
If the gasket 520 is misaligned, the fastening pressure of each mounting bolt 530 is not applied evenly around the bolt holes 521 in the gasket, inadequate sealing can occur, and deformation of the gasket resulting from biased forces can make it impossible to reuse the gasket. Japanese laid-open patent application Hei. 9-32893 discloses an approach taken to alleviate the problem of gasket positioning inaccuracy. According to that approach, an engaging element is provided in the inner peripheral portion of a bolt hole in a gasket in order to facilitate alignment of the gasket with the bolt hole. However, because the tensioner body, gasket, and mounting bolt are supplied separately, the positional relationship between the tensioner body and the gasket must be adjusted when the gasket and tensioner body are assembled. Assembly and mounting of the tensioner is cumbersome, and assembly must be carried out carefully to ensure reliable gasket positioning accuracy.
The invention addresses the aforementioned problems of the prior art by providing a tensioner unit that facilitates assembly, has a simple structure, improves the sealing function of the gasket by reliably ensuring gasket positioning accuracy, and permits reuse of the gasket.
The tensioner unit according to the invention comprises a tensioner body, a gasket in overlapping relationship to the tensioner body whereby the gasket can be sandwiched between the tensioner body and a mounting surface to which the tensioner body is to be secured, and a threaded mounting bolt inserted through a mounting hole in the tensioner body for securing the tensioner body to the mounting surface. A bolt hole is provided in the gasket, and the mounting bolt also extends through the bolt hole.
The gasket includes a bolt gripping means for temporarily holding the mounting bolt, the gasket, and the tensioner body, in fixed relationship to one another, and maintaining the gasket in a predetermined aligned relationship with the tensioner body and the mounting bolt when the gasket is in overlapping relationship with the tensioner body during mounting of the tensioner body on the mounting surface.
When the tensioner body, gasket, and mounting bolt are supplied as a unit and the mounting bolt, gasket and tensioner body are in a predetermined relationship to one another, assembly of the tensioner is facilitated.
Preferably, the gasket has a convex part with cylindrical inner and outer surfaces. The convex part is received in the mounting hole of the tensioner body, and the bolt hole of the gasket is disposed in the convex part of the gasket within the mounting hole of the tensioner body. The bolt-gripping means comprises the convex portion of the gasket and an O-ring within the convex portion of the gasket. The O-ring, when relaxed, has an outer diameter larger than the inner diameter of the convex part when the convex part is received in the mounting hole, and, when relaxed, has an inner diameter smaller than the outer diameter of the threads of the mounting bolt.
The use of the O-ring in cooperation with the convex part of the gasket ensures an accurate positional relationship between the tensioner body and the gasket, and the resilience of the O-ring holds the mounting bolt firmly in the gasket. Because the mounting bolt can be tightened to fix the tensioner unit to its mounting surface while the positional relationship between the gasket and the mounting bolt is maintained, assembly of the tensioner unit is facilitated, and gasket positioning accuracy is improved.
Where the gasket has a convex part received in the mounting hole of the tensioner body, the bolt hole of the gasket is disposed in the convex part of the gasket within the mounting hole of the tensioner body. The bolt-gripping means can comprise an inner peripheral portion of the bolt hole in engagement with threads of the mounting bolt. This embodiment ensures accurate positional relationship between the tensioner body and the gasket by inserting the convex part into the mounting hole. Moreover, because the mounting bolt can be tightened to fix the tensioner unit to its mounting surface while the positional relationship between the gasket and the mounting bolt is maintained, assembly of the tensioner unit is facilitated, and gasket positioning accuracy is improved.
When the mounting hole of the tensioner body has a cylindrical inner surface, the bolt hole of the gasket is disposed in an end surface of the convex part, and the convex part has a plurality of slots which permit resilient expansion of the convex part toward the cylindrical inner surface of the mounting hole of said tensioner body, the gasket is held in the tensioner body even when the mounting bolt is not inserted. Accordingly, it is possible to assemble the tensioner body and gasket easily before mounting of the tensioner unit and to ensure an accurate positional relationship between the tensioner body and the gasket.
In another embodiment of the tensioner unit, the bolt hole of the gasket has an inner peripheral surface, and the gasket comprises a sheet-like core having a compressible surface coating layer for enhancing sealing between the gasket and an adjacent surface. In this embodiment, the bolt-gripping means is composed of a bulging part of the coating layer on the inner peripheral surface of the bolt hole of the gasket, and the relaxed inner diameter of the bulging part is smaller than the outer diameter of screw threads of the mounting bolt. The mounting bolt is firmly held in the gasket by the resilience of the bulging part. Here, as in other embodiments, the mounting bolt can be tightened to fix the tensioner unit to its mounting surface while the positional relationship between the gasket and the mounting bolt is maintained, assembly of the tensioner unit is facilitated, and gasket positioning accuracy is improved.
The coated gasket can be formed with a convex part to be received in a mounting hole in the tensioner body, and with the bulging part of the coating forming the inner periphery of a bolt hole in the end of the convex part. Here again the bolt can be tightened while being held in the gasket while the bolt, gasket and tensioner body are in proper positional relationship to one another for easy mounting.
a and 3b are enlarged plan and sectional views, respectively, of the convex portion of the gasket shown in
a and 4b are enlarged plan and sectional views, respectively, of the convex portion of a modified gasket;
a and 9b are respectively plan and sectional views of a gasket according to the invention;
As shown in
The bolt hole 121 of the gasket 120 is provided in an end portion of a convex part 122 that has a generally cylindrical outer surface and is inserted into an enlarged diameter part 113 of the mounting hole 111 extending into the tensioner body from the face thereof on which the flat part of the gasket is situated.
As shown in
As shown in
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As shown in
The bolt hole of the gasket 220 is provided in the end portion 224 of a convex portion 222 having a cylindrical outer surface. The convex portion is inserted into the mounting hole of the tensioner body 210 and the inner peripheral surface of the end portion 224 serves as an engaging piece, mating with the screw thread 231 of the mounting bolt 230. Thus, it becomes possible to supply the tensioner body 210, the gasket 220, and the mounting bolt 230, in a pre-assembled condition in which the tensioner body, gasket, and bolt are held in a predetermined relationship to one another.
As in the first embodiment, it becomes possible to ensure reliable positioning accuracy of the gasket 220 without requiring cumbersome repositioning of the gasket during the process of mounting the tensioner on an engine block. Uniform pressure applied to the gasket when the mounting bolt is tightened, improves the seal, and, because the gasket 220 is not biased or deformed, it can be re-used.
The convex portion 222 is constructed to fit closely in the inner periphery of the mounting hole of the tensioner body 210. Consequently, the gasket is held by tensioner body even when the mounting bolt 230 is not inserted. Consequently, assembly of the tensioner unit is made easier, and more accurate positioning of the gasket relative to the tensioner body is achieved.
The outer surface of convex portion 222 can be formed into a simple cylindrical shape as shown in
The shapes and combinations of the convex portion 222 and the bolt thread-engaging part 224 are not limited to those illustrated in
As shown in
As shown in
The gasket 320 comprises a thin, sheet-like core 327 having a compressible coating layer 325 on both sides. The compressible coating provides the gasket with superior sealing properties. A bolt-engaging part 326 is formed by a bulging part of the coating at the inner periphery of a bolt hole formed in the gasket. The bolt-engaging part 326 has an inner diameter smaller than the outer diameter of the screw threads 331 of the mounting bolt 330. The tensioner body 310, the gasket 320 and the mounting bolt 330 can be supplied in a pre-assembled condition with the bolt and gasket in a predetermined fixed relationship to each other when the bolt engaging part 326 mates with the thread 331 of the inserted bolt 330.
It is possible to ensure reliable positioning accuracy of the gasket 320 without requiring cumbersome measures to adjust the position of the gasket during mounting of the tensioner unit on a mounting surface. The fastening pressure is applied by the mounting bolt 330 uniformly around the bolt hole of the gasket 320, thereby improving the sealing properties of the gasket. Furthermore the gasket is not biased or deformed and can therefore be re-used.
As shown in
In the embodiment shown in
The edge of the bolt-engaging part 224 in the second embodiment that engages screw threads 231, and the retaining portion 326 in the third embodiment that engages screw threads 331 may be formed into any of various cross-sectional shapes such as a circular shape as in
As described above, the tensioner unit of the invention facilitates assembly and mounting of a tensioner, by using a simple structure, improves the sealing properties of the gasket by ensuring accurate gasket positioning, and allows the gasket to be re-used.
Although several embodiments of the tensioner unit of the invention have been described the specific embodiments can vary in other respects, as long as the tensioner unit has a tensioner body, a gasket adapted to be sandwiched between the tensioner body and a mounting surface, and a mounting bolt inserted through a mounting hole provided in the tensioner body and a bolt hole in the gasket, and gasket has a bolt-gripping means for holding the mounting bolt when the gasket is engaged with a face of the tensioner body and aligned therewith.
Number | Date | Country | Kind |
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2009-289304 | Dec 2009 | JP | national |