Chain guide mechanism

10738862 ยท 2020-08-11

Assignee

Inventors

Cpc classification

International classification

Abstract

To provide a chain guide mechanism that enables a plurality of chain guides, a chain, and a sprocket to be held together with a simple structure, such that work efficiency during assembly and maintenance is improved. The chain guide mechanism joins a plurality of chain guides that slidably guide a chain; and a connection unit is made up of arm members that extend from both sides of the chain on a chain running surface of a fixed chain guide toward a pivoting chain guide, and a coupling member including a fitting hole for a mounting boss of the pivoting chain guide to fit in.

Claims

1. A chain guide mechanism comprising: a fixed chain guide that slidably guides a chain; a pivoting chain guide that slidably guides the chain; and a connection unit that connects the fixed chain guide and the pivoting chain guide, the pivoting chain guide including a mounting boss in a cylindrical shape, the connection unit being made up of arm members that extend from both sides of the chain on a chain running surface of the fixed chain guide toward the pivoting chain guide, and a coupling member including a fitting hole for the mounting boss of the pivoting chain guide to fit in, the coupling member including connecting arms extending from both sides of the chain on a chain running surface of the pivoting chain guide toward the arm members, the connecting arms each including an engaging portion that can be engaged with and fixed to a locking portion of each of the arm members.

2. The chain guide mechanism according to claim 1, wherein the arm members each include a sprocket holding part that makes sliding contact with a sprocket.

3. The chain guide mechanism according to claim 1, wherein the connecting arms are joined together by a fixing wall provided on an opposite side to the engaging portion across the fitting hole.

4. The chain guide mechanism according to claim 1, wherein the locking portions of the arm members and the engaging portions of the connecting arms of the coupling member are formed such that the connecting arms engage with the arm members from inside of the arm members.

5. The chain guide mechanism according to claim 1, wherein the arm members are formed integrally with a guide shoe that constitutes the chain running surface of the fixed chain guide.

6. The chain guide mechanism according to claim 1, wherein the locking portion of each of the arm members includes a rocking movement slot for allowing the coupling member to rock around the fitting hole.

Description

BRIEF DESCRIPTION OF THE DRAWINGS

(1) FIG. 1 is an overall illustrative diagram of one form of use of a chain guide mechanism according to a first embodiment of the present invention;

(2) FIG. 2 is a perspective view of the chain guide mechanism that is the first embodiment of the present invention;

(3) FIG. 3 is a perspective view of arm members integral with a guide shoe;

(4) FIG. 4 is a perspective view of a coupling member;

(5) FIG. 5 is an illustrative diagram showing a chain guide mechanism that is a second embodiment of the present invention;

(6) FIG. 6 is a perspective view of a coupling member in another embodiment of the present invention;

(7) FIG. 7 is a perspective view of a coupling member in yet another embodiment of the present invention;

(8) FIG. 8 is an illustrative diagram of a known chain guide mechanism;

(9) FIG. 9 is an illustrative diagram of another known chain guide mechanism; and

(10) FIG. 10 is a cross-sectional illustrative diagram of FIG. 9.

DESCRIPTION OF THE PREFERRED EMBODIMENTS

(11) The chain guide mechanism of the present invention may be embodied in any form as long as it includes a fixed chain guide that slidably guides a chain, a pivoting chain guide that slidably guides the chain, and a connection unit that connects the fixed chain guide and the pivoting chain guide, the pivoting chain guide including a mounting boss in a cylindrical shape, the connection unit being made up of arm members that extend from both sides of the chain on a chain running surface of the fixed chain guide toward the pivoting chain guide, and a coupling member including a fitting hole for the mounting boss of the pivoting chain guide to fit in, the coupling member including connecting arms extending from both sides of the chain on a chain running surface of the pivoting chain guide toward the arm members, the connecting arms each including an engaging portion that can be engaged with and fixed to a locking portion of each of the arm members.

(12) In the chain guide mechanism according to the present invention, the chain running surfaces of the fixed chain guide and pivoting chain guide may be integrally formed with the chain guides by molding from a material that has good sliding properties, or, a guide shoe having good sliding properties with the chain may be removably attached to the chain guides.

(13) Any materials having low friction resistance with the chain can be used for the fixed chain guide, pivoting chain guide, and/or guide shoe for the chain guide mechanism according to the present invention. In particular, materials that exhibit durability in high temperature environments while enabling smooth running of the chain in sliding contact are suitable. Synthetic resin materials, for example, such as polyamide 6 resin, polyamide 46 resin, polyamide 66 resin, polyacetal resin, can be used preferably.

(14) When the fixed chain guide and pivoting chain guide include a guide shoe, the part supporting the guide shoe may be made of metal such as iron or aluminum.

(15) The arm members and coupling member that form the connection unit of the chain guide mechanism of the present invention may contact the chain and are used with the chain guides. Therefore, as with the chain guides, they should preferably be made of a material that has low friction resistance with the chain, exhibits durability in high temperature environments, and enables smooth running of the chain in sliding contact.

Embodiment 1

(16) A chain guide mechanism 100 that is a first embodiment of the present invention includes, as shown in FIG. 1 to FIG. 4, a fixed chain guide 130 that slidably guides a chain C, a pivoting chain guide 120 that slidably guides the chain C, and a connection unit 110 that connects the fixed chain guide 130 and the pivoting chain guide 120.

(17) The pivoting chain guide 120 includes cylindrical mounting bosses 121.

(18) The connection unit 110 is made up of a pair of arm members 111 that extend from both sides of the chain C on the chain running surface of the fixed chain guide 130 toward the pivoting chain guide 120, and a coupling member 141 including fitting holes 143 for the mounting bosses 121 of the pivoting chain guide 120 to fit in.

(19) The arm members 111 are integrally formed with a guide shoe 132 that forms the chain running surface of the fixed chain guide 130, and each include a sprocket holding part 113 that makes sliding contact with a sprocket (not shown).

(20) The coupling member 141 includes a pair of connecting arms 142 extending from both sides of the chain C on the chain running surface of the pivoting chain guide 120 toward the arm members 111. The pair of connecting arms 142 are joined by a fixing wall 145 that is provided on the opposite side to an engaging portion across the fitting holes 143.

(21) Namely, the coupling member 141 is in U-shape in top view.

(22) As part of a locking portion to engage with the coupling member 141, the arm members 111 are each provided with two locking holes 114 on the side closer to the pivoting chain guide 120, and as part of an engaging portion, the connecting arms 142 of the coupling member 141 are each provided with engaging protrusions 144 at the distal end to be inserted into and engaged with the locking holes 114.

(23) The engaging protrusions 144 on the pair of connecting arms 142 of the coupling member 141 protrude outward and away from each other so that they engage with the locking holes 114 from inside of the pair of arm members 111.

(24) The process of attaching the chain guide mechanism 100 that is the first embodiment configured as described above to an engine room (not shown) will be explained.

(25) Since the arm members 111 are integral with the guide shoe 132, when the guide shoe 132 is secured to a fixed guide support member 133, the fixed chain guide 130 and the arm members 111, which are one of the components of the connection unit 110, are joined.

(26) The coupling member 141, which is the other component of the connection unit 110, is united with the pivoting chain guide 120 by fitting the mounting bosses 121 into the fitting holes 143.

(27) The chain C and a lower sprocket (not shown) are then set, and the engaging protrusions 144 of the coupling member 141 are inserted into and engaged with the locking holes 114 of the arm members 111, so that the fixed chain guide 130, pivoting chain guide 120, chain C, and lower sprocket (not shown) can all be held together.

(28) The fixed chain guide 130, pivoting chain guide 120, chain C, and lower sprocket (not shown) all held together are then inserted into the engine block. The mounting shaft B is fitted into the cylindrical mounting bosses 121 of the pivoting chain guide 120, while the mounting shafts B1 and B2 are passed through the fixed guide support member 133 of the fixed chain guide 130, whereby the chain guide mechanism 100 is secured inside the engine room.

Embodiment 2

(29) The chain guide mechanism that is a second embodiment of the present invention is configured basically the same as that of the first embodiment described above apart from the designs of the mounting bosses 121 of the pivoting chain guide 120, fitting holes 143 of the coupling member 141, and locking portions of the arm members 111.

(30) The mounting boss 121 of the pivoting chain guide 120 in the second embodiment includes an anti-rotation tab 123 extending radially outward as shown in FIG. 5 for fitting into an anti-rotation slot 146 provided on the radially outer side of the mounting boss 121 of the pivoting chain guide 120.

(31) The locking holes 114 that form the locking portions of the arm members 111 are provided with rocking movement slots 114a for allowing the coupling member 141 to rock around the mounting shaft B that is the pivot center of the pivoting chain guide 120.

(32) In the first embodiment, the mounting bosses 121 have to be loosely fitted into the fitting holes 143 so that the pivoting chain guide 120 can pivot not only around the mounting shaft B, but also around the fitting holes 143 of the coupling member 141. In this embodiment, the pivoting chain guide 120 and coupling member 141 can be pivoted together. Since the mounting bosses 121 of the pivoting chain guide 120 can be secured to the fitting holes 143 instead of being loosely fitted therewith, the two components can be firmly joined together, so that the work efficiency during assembly and maintenance can be improved.

(33) The engaging protrusions 144 on the pair of connecting arms 142 of the coupling member 141 are provided such as to protrude outward and away from each other. Instead, as shown in FIG. 6, engaging protrusions 144b may be provided such as to protrude toward each other from inside of the pair of connecting arms 142 of the coupling member 141b for engaging with the locking holes 114 of the pair of arm members 111 from outside. Alternatively, as shown in FIG. 7, one of the connecting arms 142 may include engaging protrusions 144c protruding inward while the other connecting arm 142 may include engaging protrusions 144d protruding outward, for engaging with the locking holes 114 of the pair of arm members 111 from one side.

(34) The arm members 111 are formed integrally with the guide shoe 132 that constitutes the chain running surface of the fixed chain guide 130 in the embodiments described above. Instead, the arm members 111 may be formed integrally with the fixed guide support member 133, or, the arm members 111 may be formed separately from the fixed chain guide 130 and designed securable to the fixed chain guide 130 by some other means.

(35) While the guide shoe 122, which constitutes the chain running surface, is provided separately to the pivoting chain guide 120 in the embodiment shown in FIG. 1 and FIG. 2, the pivoting chain guide 120 may include the guide shoe 122 as one integrally formed part thereof.