1. Field of the Invention
The present invention relates to an outboard motor.
2. Description of the Related Art
A type of engine, including a plurality of cylinders and a plurality of pairs of injectors and spark plugs, is well-known (see Japan Laid-open Patent Application Publication No. H10-331640). The cylinders are aligned in a predetermined direction, and each injector and spark plug is mounted to each cylinder. Each of the plurality of cylinders includes a combustion chamber, intake ports, and exhaust ports. The injectors and the spark plugs are alternately disposed in the predetermined direction, and are inserted through a delivery pipe extending in the predetermined direction.
It is assumed that a V-shaped engine includes a first bank and a second bank of cylinders, each of which is of the same type as the plurality of cylinders described in Japan Laid-open Patent Application Publication No. H10-331640, about a crankshaft. To produce either an intake manifold or an exhaust manifold as a single component in this construction, it is required to reverse the positions of the intake ports and those of the exhaust ports between the first bank and the second bank.
Therefore, when the same arrangement order of the injectors and the spark plugs is used in the first bank and the second bank, this inevitably results in a difference in positions of the injectors with respect to both the intake ports and the exhaust ports between the first bank and the second bank. Thus, it is not easy to use a common construction for a fuel supply system including the injectors in the first bank and that in the second bank.
In view of the above-described problem, preferred embodiments of the present invention provide an outboard motor in which a common construction is used for the fuel supply systems respectively including the injectors.
An outboard motor according to a preferred embodiment of the present invention includes a crankshaft, a first bank of cylinders (hereinafter “first bank”), a second bank of cylinders (hereinafter “second bank”), a plurality of first injectors, a plurality of first spark plugs, a plurality of second injectors, and a plurality of second spark plugs. The crankshaft extends in a vertical direction. The first bank includes a plurality of first cylinders. Each of the plurality of first cylinders includes a first combustion chamber, a first intake port, and a first exhaust port. The plurality of first cylinders are aligned in the vertical direction. The second bank includes a plurality of second cylinders. Each of the plurality of second cylinders includes a second combustion chamber, a second intake port, and a second exhaust port. The plurality of second cylinders are aligned in the vertical direction. The plurality of first injectors are attached to the first bank. The plurality of first spark plugs are attached to the first bank. The plurality of second injectors are attached to the second bank. The plurality of second spark plugs are attached to the second bank. The plurality of first injectors and the plurality of first spark plugs are alternately disposed in the vertical direction. The plurality of second injectors and the plurality of second spark plugs are alternately disposed in the vertical direction in a reverse order to that of the plurality of first injectors and the plurality of first spark plugs. Each of the plurality of first injectors includes a first opening to inject a fuel with directivity into a corresponding one of the first combustion chambers. Each of the plurality of second injectors includes a second opening to inject the fuel with directivity into a corresponding one of the second combustion chambers. When the crankshaft is seen from a horizontal direction, the plurality of first cylinders and the plurality of second cylinders are disposed symmetrically about a point of symmetry arranged on an axis of the crankshaft.
According to preferred embodiments of the present invention, it is possible to provide an outboard motor in which a common construction is used for fuel supply systems respectively including injectors.
The above and other elements, features, steps, characteristics and advantages of the present invention will become more apparent from the following detailed description of the s with reference to the attached drawings.
An outboard motor 1 according to a preferred embodiment of the present invention is an outboard motor attachable to a vessel body through a suspension device.
As shown in
The engine cover 2, the upper casing 3a, and the engine unit 5 are fixed to the exhaust guide 4. The engine cover 2 is disposed over the exhaust guide 4. The upper casing 3a is disposed under the exhaust guide 4. The lower casing 3b is disposed under the upper casing 3a. In the present preferred embodiment, the engine cover 2, the upper casing 3a, the lower casing 3b, and the exhaust guide 4 define a housing of the outboard motor 1.
The engine unit 5 is disposed inside the engine cover 2. The engine unit 6 includes an engine 6, a low pressure pump 7, an internal fuel tank 8, first to third fuel hoses 9a to 9c, and a fuel supply device 10.
The engine 6 is preferably an eight-cylinder V engine (V8 engine) of a vertical mount type, for example. The engine 6 includes a cylinder head unit 61, a cylinder block 62, and a crank case 63. The cylinder head unit 61 is connected to the rear side of the cylinder block 62. The cylinder head unit 61 and the cylinder block 62 define a V bank. The crank case 63 is connected to the front side of the cylinder block 62. A crankshaft 64 is disposed inside the crank case 63. The crankshaft 64 extends in the vertical direction. The construction of the engine 6 will be described below.
The low pressure pump 7 is connected to an external fuel tank (not shown in the drawings) disposed in the vehicle body through the first fuel hose 9a. The low pressure pump 7 is connected to the internal fuel tank 8 through the second fuel hose 9b. The low pressure pump 7 supplies fuel from the external fuel tank to the internal fuel tank 8.
The internal fuel tank 8 stores the fuel supplied by the low pressure pump 7. The internal fuel tank 8 is connected to the fuel supply device 10 through the third fuel hose 9c. The construction of the fuel supply device 10 will be described below.
As shown in
The drive shaft 11 extends in the vertical direction in the interiors of the upper casing 3a and the lower casing 3b. The upper end of the drive shaft 11 is coupled to the lower end of the crankshaft 64 of the engine 6. The lower end of the drive shaft 11 is coupled to the front end of the propeller shaft 13 through the bevel gear 12. The propeller shaft 13 extends in the back-and-forth direction in the interior of the lower casing 3b. The rear end of the propeller shaft 13 protrudes from the lower casing 3b and is coupled to the propeller 14. The propeller 14 is rotated together with the propeller shaft 13. The exhaust pathway 15 extends from the engine 6 to the interior of the propeller 14 through the interiors of the exhaust guide 4, the upper casing 3a, and the lower casing 3b.
Next, the constructions of the engine 6 and the fuel supply device 10 will be explained.
The engine 6 includes a first bank of cylinders 16a (hereinafter “first bank 16a”), a second bank of cylinders 16b (hereinafter “second bank 16b”), a first intake manifold 17a, a second intake manifold 17b, and an exhaust manifold 18. The first bank 16a and the second bank 16b are defined by the cylinder head unit 61 and the cylinder block 62. The first bank 16a and the second bank 16b are preferably similar to each other. The cylinder head unit 61 includes a first cylinder head 20, a first cylinder head cover 21, a second cylinder head 22, and a second cylinder head cover 23.
The first bank 16a is defined by the left half portion of the cylinder block 62, the first cylinder head 20, and the first cylinder head cover 21. The second bank 16b is defined by the right half portion of the cylinder block 62, the second cylinder head 22, and the second cylinder head cover 23. The first bank 16a and the second bank 16b are disposed in a V-shape arrangement when the crankshaft 64 is seen from the vertical direction (e.g., from above). The first bank 16a is offset from the second bank 16b in the vertical direction. In the present preferred embodiment, the first bank 16a is preferably located higher than the second bank 16b in the vertical direction, for example.
The first intake manifold 17a is disposed on the outside of the first cylinder head 20. The first intake manifold 17a is connected to the first cylinder head 20. The second intake manifold 17b is disposed on the outside of the second cylinder head 22. The second intake manifold 17b is connected to the second cylinder head 22.
The exhaust manifold 18 is connected to the first cylinder head 20 and the second cylinder head 22. The exhaust manifold 18 is disposed in the V bank between the first bank 16a and the second bank 16b.
As shown in
As shown in
As shown in
The first fuel pump 30 is attached to the first cylinder head cover 21. The first fuel pump 30 is connected to the internal fuel tank 8 (see
The first fuel delivery assembly 31 is attached to the first cylinder head 20. The first fuel delivery assembly 31 is a fuel supply system for the first bank 16a. As shown in
The first delivery pipe 36 includes a main pipe 36a, four first branch pipes 36b, and a first attachment portion 36c. The first main pipe 36a is disposed laterally to the four first ignition coils 28a. The first main pipe 36a extends in the vertical direction. The four first branch pipes 36b are aligned in the vertical direction. The four first branch pipes 36b are respectively located lower than the first spark plugs 27a in the vertical direction. The four first branch pipes 36b are connected to the first main pipe 36a. The first branch pipes 36b respectively extend from the first main pipe 36a toward the first cylinders 24a. The first injectors 37 are respectively attached to the tips of the first branch pipes 36b. The first attachment portion 36c is disposed in the middle of the first main pipe 36a. The first fuel pipe 32 is detachably attached to the first attachment portion 36c.
In the present preferred embodiment, the four first injectors 37 are preferably the same type of components. The four first injectors 37 are respectively connected to the four first branch pipes 36b. The first injectors 37 are attached to the first cylinder head 20. The first injectors 37 are respectively disposed lower than and adjacent to the first spark plugs 27a in the vertical direction. The first injectors 37 are disposed along the horizontal direction. The four first injectors 37 are parallel or substantially parallel to each other. The tip of each first injector 37 is exposed to the interior of the combustion chamber of each first cylinder 24a.
As shown in
The second fuel pump 33 is attached to the second cylinder head cover 23. The second fuel pump 33 is connected to the internal fuel tank 8 (see
The second fuel delivery assembly 34 is attached to the second cylinder head 22. The second fuel delivery assembly 34 is a fuel supply system for the second bank 16b. As shown in
In the present preferred embodiment, the second delivery pipe 38 is preferably the same type of component as the first delivery pipe 36. The second delivery pipe 38 includes a second main pipe 38a, four second branch pipes 38b, and a second attachment portion 38c. The second main pipe 38a is disposed laterally to the four second ignition coils 28b. The second main pipe 38a extends in the vertical direction. The four second branch pipes 38b are aligned in the vertical direction. The four second branch pipes 38b are respectively located higher than the second spark plugs 27b in the vertical direction. The four second branch pipes 38b are connected to the second main pipe 38a. The second branch pipes 38b respectively extend from the second main pipe 38a toward the second cylinders 24b. The second injectors 39 are respectively attached to the tips of the second branch pipes 38b. The second attachment portion 38c is disposed in the middle of the second main pipe 38a. The second attachment portion 38c is disposed between the middle two of the four second branch pipes 38b. The second fuel pipe 35 is detachably attached to the second attachment portion 38c.
In the present preferred embodiment, the four second injectors 39 are preferably the same type of components as the first injectors 37. The four second injectors 39 are respectively connected to the four second branch pipes 38b. The second injectors 39 are attached to the second cylinder head 22. The second injectors 39 are respectively disposed higher than and adjacent to the second spark plugs 27b in the vertical direction. The second injectors 39 are disposed along the horizontal direction. The four second injectors 39 are parallel or substantially parallel to each other. The tip of each second injector 39 is exposed to the interior of the combustion chamber of each second cylinder 24b.
Next, a positional relationship between the engine 6 and the fuel supply device 10 will be explained.
As shown in
As shown in
The four first injectors 37 and the four first spark plugs 27a are alternately disposed in the vertical direction. The four first injectors 37 are respectively disposed under the four first spark plugs 27a. In the present preferred embodiment, the four first injectors 37 and the four first spark plugs 27a are in straight alignment.
The first delivery pipe 36 is disposed laterally to the four first cylinders 24a. The first delivery pipe 36 is disposed on the opposite side of the four second cylinders 24b with reference to the four first cylinders 24a. When the crankshaft 64 is seen from the horizontal direction, the first delivery pipe 36 is disposed on the outside of the four first cylinders 24a with reference to the crankshaft 64.
The four second cylinders 24b are aligned in the vertical direction. Each second cylinder 24b is provided with two second intake ports 25b, two second exhaust ports 26b, one second spark plug 27b, and one second injector 39. The second spark plug 27b and the second injector 39 are disposed between the two second intake ports 25b and the two second exhaust ports 26b in the horizontal direction.
The four second injectors 39 and the four second spark plugs 27b are alternately disposed in the vertical direction. The four second injectors 39 are respectively disposed over the four second spark plugs 27b. The second injectors 39 and the second spark plugs 27b are disposed in a reverse order to that of the first injectors 37 and the first spark plugs 27a. In the present preferred embodiment, the four second injectors 39 and the four second spark plugs 27b are in straight alignment.
The second delivery pipe 38 is disposed laterally to the four second cylinders 24b. The second delivery pipe 38 is disposed on the opposite side of the four first cylinders 24a with reference to the four second cylinders 24b. When the crankshaft 64 is seen from the horizontal direction, the second delivery pipe 38 is disposed on the outside of the four second cylinders 24b with reference to the crankshaft 64.
When the crankshaft 64 is seen from the horizontal direction, the four first cylinders 24a and the four second cylinders 24b are disposed symmetrically about the point of symmetry Ps arranged on the axis Ca3 of the crankshaft 64. Therefore, the eight first intake ports 25a and the eight second intake ports 25b are disposed symmetrically about the point of symmetry Ps. The eight first exhaust ports 26a and the eight second exhaust ports 26b are disposed symmetrically about the point of symmetry Ps. The four first spark plugs 27a and the four second spark plugs 27b are disposed symmetrically about the point of symmetry Ps. The four first injectors 37 and the four second injectors 39 are disposed symmetrically about the point of symmetry Ps.
When the crankshaft 64 is seen from the horizontal direction, the first delivery pipe 36 and the second delivery pipe 38 are disposed symmetrically about the point of symmetry Ps arranged on the axis Ca3 of the crankshaft 64. Therefore, the first main pipe 36a of the first delivery pipe 36 and the second main pipe 38a of the second delivery pipe 38 are disposed symmetrically about the point of symmetry Ps. The four first branch pipes 36b of the first delivery pipe 36 and the four second branch pipes 38b of the second delivery pipe 38 are disposed symmetrically about the point of symmetry Ps. The first attachment portion 36c of the first delivery pipe 36 and the second attachment portion 38c of the second delivery pipe 38 are disposed symmetrically about the point of symmetry Ps.
Thus, in the present preferred embodiment, the four first injectors 37 and the four first spark plugs 27a are alternately disposed in the vertical direction, whereas the four second injectors 39 and the four second spark plugs 27b are alternately disposed in the vertical direction in a reverse order to the four first injectors 37 and the four first spark plugs 27a. When the crankshaft 64 is seen from the horizontal direction, the four first cylinders 24a and the four second cylinders 24b are disposed symmetrically about the point of symmetry Ps arranged on the axis Ca3 of the crankshaft 64.
Therefore, the positional relationship of the first injector 37 with respect to the other constituent elements in each first cylinder 24a and that of the second injector 39 with respect to the other constituent elements in each second cylinder 24b are matched. Due to this, even when the first injectors 37 and the second injectors 39 respectively have directivity, injectors of the same type are usable as the first injectors 37 and the second injectors 39. Additionally, the positional relationship of the first injector 37 with respect to the other constituent elements in each first cylinder 24a and that of the second injector 39 with respect to the other constituent elements in each second cylinder 24b are matched. Hence, delivery pipes of the same type are usable as the first delivery pipe 36 and the second delivery pipe 38. Thus, in the outboard motor 1 according to the present preferred embodiment, a common construction is used for the fuel supply system of the first bank 16a and that of the second bank 16b.
Preferred embodiments of the present invention have been explained above. However, the present invention is not limited to the preferred embodiments described above, and a variety of changes can be made without departing from the scope of the present invention.
The engine 6 described above is preferably a V8 engine of a vertical mount type. However, the engine 6 is not limited to this. The engine 6 may be horizontally mounted. The engine 6 may be an inline engine, a horizontally opposed engine, or so forth. The engine 6 preferably includes at least one or more first cylinders 24a and one or more second cylinders 24b.
Each first cylinder 24a is preferably provided with two first intake ports 25a, two first exhaust ports 26a, one first spark plug 27a, and one first injector 37. However, the construction of each first cylinder 24a is not limited to this. Each first cylinder 24a may be provided with one first intake port 25a, or alternatively, may be provided with three or more first intake ports 25a. Each first cylinder 24a may be provided with one first exhaust port 26a, or alternatively, may be provided with three or more first exhaust ports 26a. Each first cylinder 24a may be provided with two or more first spark plugs 27a. Each first cylinder 24a may be provided with two or more first injectors 37.
Each second cylinder 24b is preferably provided with two second intake ports 25b, two second exhaust ports 26b, one second spark plug 27b, and one second injector 39. However, the construction of each second cylinder 24b is not limited to this. Each second cylinder 24b may be provided with one second intake port 25b, or alternatively, may be provided with three or more second intake ports 25b. Each second cylinder 24b may be provided with one second exhaust port 26b, or alternatively, may be provided with three or more second exhaust ports 26b. Each second cylinder 24b may be provided with two or more second spark plugs 27b. Each second cylinder 24b may be provided with two or more second injectors 39.
Each first injector 37 preferably includes one first opening 37a. However, each first injector 37 may include two or more first openings 37a.
Each second injector 39 preferably includes one second opening 39a. However, each second injector 39 may include two or more second openings 39a.
The four first injectors 37 and the four first spark plugs 27a are preferably disposed in straight alignment. However, the four first injectors 37 and the four first spark plugs 27a may not be disposed in straight alignment.
The four second injectors 39 and the four second spark plugs 27b are preferably disposed in straight alignment. However, the four second injectors 39 and the four second spark plugs 27b may not be disposed in straight alignment.
While preferred embodiments of the present invention have been described above, it is to be understood that variations and modifications will be apparent to those skilled in the art without departing from the scope and spirit of the present invention. The scope of the present invention, therefore, is to be determined solely by the following claims.
Number | Date | Country | Kind |
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2015-113172 | Jun 2015 | JP | national |
Number | Name | Date | Kind |
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6220217 | Kato | Apr 2001 | B1 |
6321711 | Kato | Nov 2001 | B1 |
6354278 | Kawasaki | Mar 2002 | B1 |
6450847 | Kashima | Sep 2002 | B1 |
Number | Date | Country |
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10-331640 | Dec 1998 | JP |
Number | Date | Country | |
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20160356252 A1 | Dec 2016 | US |