This application is based upon and claims the benefit of priority of the prior Japanese Patent Application No. 2014-180298, filed on Sep. 4, 2014, the entire contents of which are incorporated herein by reference.
Field of the Invention
The present invention relates to an exhaust pipe valve system which performs exhaust control in an exhaust pipe in an engine being an internal combustion engine of a vehicle such as, for example, a motorcycle.
Description of the Related Art
In a vehicle of this type, an exhaust control device is disposed which improves exhaust efficiency by opening/closing an exhaust passage by an exhaust pipe valve provided in the middle of an exhaust pipe. Patent Document 1, for example, discloses one which tries to improve exhaust performance by providing an exhaust control valve in an exhaust pipe.
In a motorcycle or the like, it is also possible to provide, in an exhaust pipe, two exhaust pipe valves that operate in different engine speed ranges. Conventionally, when the two exhaust pipe valves are thus provided, these exhaust pipe valves are generally driven by electronically controlled actuators respectively. Thus providing the two exhaust pipe valves enables more proper exhaust control according to the engine speed.
Patent Document 1 Japanese Patent No. 4015353
When two exhaust pipe valves are provided as in, for example, the above-described example, it has been a conventional practice to provide independent actuators to control the driving of the respective exhaust pipe valves. Thus providing the plural actuators not only complicates the device structure but also inevitably leads to a great cost increase.
In consideration of the above circumstances, it is an object of the present invention to provide an exhaust pipe valve system of an internal combustion engine that achieves structure simplification yet realizes excellent control performance over an exhaust system.
An exhaust pipe valve system of an internal combustion engine of the present invention is an exhaust pipe valve system of an internal combustion engine which adjusts an exhaust flow rate in an exhaust pipe by opening/closing an exhaust pipe valve provided in a middle part of the exhaust pipe, the exhaust pipe valve system including: a plurality of the exhaust pipe valves; and an operation unit which performs an opening/closing operation of the exhaust pipe valves, wherein: the operation unit includes at least two operation parts which are connected to the plural exhaust pipe valves via cables respectively to open/close the exhaust pipe valves; and at least one of the operation parts has a non-operating area in which the operation part does not cause the corresponding cable to work in a predetermined operating range of the operation unit.
Further, in the exhaust pipe valve system of the internal combustion engine of the present invention, the connection between the operation part and the corresponding cable is cut off in the non-operating area of the operation part.
Further, in the exhaust pipe valve system of the internal combustion engine of the present invention, the operation part other than the operation part having the non-operating area constantly causes the corresponding cable to work in an entire operating range of the operation unit.
Hereinafter, a suitable embodiment in an exhaust pipe valve system of an internal combustion engine according to the present invention will be described based on the drawings.
In
The main frame 101 is connected to a rear portion of the steering head pipe 102 and bifurcates rearward into a pair of left and right parts, and these parts extend while inclining more downward as they go more rearward. A seat rail 101A extends from the vicinity of a rear portion of the main frame 101 while moderately inclining more upward as it goes rearward, to support a later-described seat. The main frame 101 and the seat rail 101A form a body frame. Further, a swing arm 109 is coupled to the rear portion of the main frame 101 so as to be swingable, and a rear shock absorber 110 is mounted between the main frame 101 and the swing arm 109. A rear wheel 111 is rotatably supported on a rear end of the swing arm 109. The rear wheel 111 is driven to rotate via a driven sprocket 113 around which a chain 112 for transmitting motive power of a later-described engine is wound. An inner fender 114 covering the vicinity of a front upper portion of the rear wheel 111 is provided in the immediate vicinity of the rear wheel 111, and a rear fender 115 is disposed above the inner fender 114.
An engine unit 116 (the dotted-line part in
Further, a fuel tank 119 is mounted above the engine unit 116, and the seat 120 is provided continuously from and behind the fuel tank 119. The seat 120 includes a rider seat 120A and a tandem seat 120B. A footrest 121 and a footrest or a pillion step 122 are disposed so as to correspond to the rider seat 120A and the tandem seat 120B. Incidentally, in this example, the vehicle has, on its left side, a not-illustrated prop stand provided on a lower portion at a substantially center in terms of a front and rear direction.
Further, in
In the vehicle exterior, mainly a front portion and side portions of the vehicle are covered by a fairing 127 and a side cowl 128, and a side cover or a seat cowl 129 is attached on the rear portion of the vehicle. These exterior members form a vehicle outer form having what is called a streamlined shape.
Incidentally, as illustrated in
Next,
Here, the exhaust pipe 117 of the #1 cylinder and the exhaust pipe 117 of the #2 cylinder join at a junction part 137, and the exhaust pipe 117 of the #3 cylinder and the exhaust pipe 117 of the #4 cylinder joint at a junction part 138. Further, the junction part 137 and the junction part 138 join each other, so that the four exhaust pipes 117 of the #1 to #4 cylinders are collected to a single collecting pipe 139 substantially on a lower left of the oil pan 136. The collecting pipe 139 is connected to the muffler 118 via a connecting pipe 140. As will be described later, an exhaust pipe valve according to the exhaust pipe valve system of the present invention is fit in the collecting pipe 139.
Further, the left and right-end exhaust pipes 117 (117A, 117D) of the #1 and #4 cylinders communicate with each other via a communication pipe 141. The communication pipe 141 is horizontally disposed between rear sides of the left and right-end exhaust pipes 117. The exhaust pipes 117 (117B, 117C) of the #2 and #3 cylinders communicate with each other via a communication pipe 142. The communication pipe 142 is disposed so as to be sandwiched between the exhaust pipes 117 of the #2 and #3 cylinders and is disposed so as to be located on a diagonally front upper side of the communication pipe 141. As will be described later, exhaust pipe valves according to the exhaust pipe valve system of the present invention are fit in the communication pipe 141 and the communication pipe 142.
An exhaust system which is from the exhaust pipes 117 (117A to 117D) through the junction part 137 and the junction part 138 and then from the collecting pipe 139 up to the muffler 118 via the connecting pipe 140 is formed, as described above. Further, the exhaust pipe valve system including an exhaust control device 10 to perform exhaust control of this exhaust system is provided. The exhaust control device 10 has at least two kinds of exhaust pipe valves which perform the exhaust control at different parts in such an exhaust system, and drives the opening/closing of these exhaust pipe valves by a single actuator.
In this embodiment, parts to which the present invention is applied are the exhaust pipes 117 and the collecting pipe 139, and as concrete control targets, an exhaust pipe valve 11 (first exhaust pipe valve) is fit in the collecting pipe 139 as illustrated in
Further, the actuator unit 13 will be concretely described.
The wire cable 14 wound around the first pulley 18 is composed of a pair of two wires. In this case, as illustrated in
The exhaust pipe valve 11 fit in the collecting pipe 139 is rotatably supported by a rotation shaft 22 as illustrated in
A terminal 26 of the wire cable 15 wound around the second pulley 19 is held in a hooking hole 27 of the second pulley 19 as illustrated in
The exhaust pipe valves 12 are fit in the communication pipe 141 and the communication pipe 142 as previously described, and further a coupling pipe 28 is provided between the communication pipe 141 and the communication pipe 142 as illustrated in
Next, a concrete example of the exhaust control by the exhaust control device 10 in the exhaust pipe valve system of the present invention will be described. Here, in basic operations of the exhaust pipe valve 11 and the exhaust pipe valves 12, the smallest opening degree of the exhaust pipe valve 11 of the collecting pipe 139 at the engine start time is set to a predetermined opening degree. This smallest opening degree differs depending on the specifications of the engine or the like and has a certain degree of freedom. On the other hand, the exhaust pipe valves 12 are fully closed at the engine start time, and when the engine speed reaches a predetermined value after the engine starts, the exhaust pipe valves 12 are gradually opened.
After the engine starts, the rotation shaft 17 of the actuator unit 13 is driven, so that the first pulley 18 and the second pulley 19 both rotate in the arrow α direction (also means a rotation angle) as illustrated in
During this period, the terminal 26 of the wire cable 15 is substantially static in the hooking hole 27 of the second pulley 19, and after the first pulley 18 and the second pulley 19 rotate by the angle α, the terminal 26 abuts on one end side of the hooking hole 27 (rear side in terms of the rotation direction of the second pulley 19) as illustrated in
In the present invention, the first pulley 18 being one of the operation parts constantly causes the wire cable 14 to work in the whole operating range of the actuator unit 13. As for the second pulley 19 being the other operation part, its connection to the wire cable 15 is cut off in a predetermined operating range (angle α) of the actuator unit 13, that is, has a non-operating area in which the second pulley 19 does not cause the wire cable 15 to work.
As described above, according to the present invention, it is possible to easily and accurately control the exhaust pipe valves, in this example, the two kinds of exhaust pipe valves 11, 12 stepwise, without providing any special operation control over the operation unit or any stopper mechanism for limiting the operation of a specific operation part, or the like. This makes it possible to adjust an exhaust flow rate to an appropriate amount at an appropriate time even with the simple structure, to effectively improve a combustion state in the engine, which enables improvements of the power, fuel performance, and the like. Further, since it is possible to operate the plural exhaust pipe valves 11, 12 by the single actuator unit 13, the number of components of the device is reduced, which has effects such as improving maintenability, productivity, and so on.
As described above, the opening degrees of the exhaust pipe valves 11, 12 are controlled according to the engine speed. An opening/closing speed when the exhaust pipe valves 11, 12 are opened/closed can be appropriately adjusted to low or high by the driving control of the stepping motor of the actuator unit 13. Further, especially a size (length), a position, and so on of the hooking hole 27 of the second pulley 19 can be appropriately changed, and in this example, the opening/closing timing and so on of the exhaust pipe valves 12 can be set as required.
Hitherto, the present invention has been described together with the various embodiments, but the present invention is not limited only to these embodiments, and changes and so on can be made therein within the scope of the present invention.
In the above-described embodiment, the case where the two kinds of exhaust pipe valves 11, 12 are controlled as the control targets, but by further providing a third and a fourth pulley which have the same structure as above, it is also possible to set a third and a fourth control target.
Further, the exhaust control device of the present invention is also applicable to a multi-cylinder engine having two cylinders or four cylinders or more.
According to the present invention, the exhaust pipe valves being the control target parts whose opening/closing is to be controlled are not controlled independently, but they are controlled by the single actuator. This reduces the number of components of the device, which can simplify the device structure and realize a cost reduction.
Number | Date | Country | Kind |
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2014-180298 | Sep 2014 | JP | national |
Number | Name | Date | Kind |
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20010027648 | Nakayasu et al. | Oct 2001 | A1 |
20010035009 | Nakayasu et al. | Nov 2001 | A1 |
20110061616 | Watanabe | Mar 2011 | A1 |
20130205760 | Sasaki | Aug 2013 | A1 |
Number | Date | Country |
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4015353 (B2) | Nov 2007 | JP |
Number | Date | Country | |
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20160069278 A1 | Mar 2016 | US |