Fuel supply apparatus for engine
09752534 ยท 2017-09-05
Assignee
Inventors
Cpc classification
F02M37/0023
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02M19/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02M17/38
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
An engine fuel supply apparatus includes: a fuel chamber provided in a carburetor; a first communication passage for opening the interior of the fuel chamber to the atmosphere; a second communication passage for communicating the interior of the fuel chamber with the interior of a Venturi section; and a passage switching section capable of switching between the first and second communication passages and mechanically connected to the main switch so that it can operate in response to the main switch shifting between an ignition position and a stop position. The passage switching section switches the second communication passage to the first communication passage in response to the main switch shifting from the stop position to the ignition position and switches the first communication passage to the second communication passage in response to the main switch shifting from the ignition position to the stop position.
Claims
1. A fuel supply apparatus for an engine for spraying fuel, stored in a fuel chamber provided in a carburetor, to an interior of a Venturi section in a throttle body of the carburetor in accordance with negative pressure in the interior of the Venturi section, the engine fuel supply apparatus comprising: a first communication passage for opening an interior of the fuel chamber to an atmosphere; a second communication passage for communicating the interior of the fuel chamber with the interior of the Venturi section; and a passage switching section configured to switch between the first communication passage and the second communication passage, the passage switching section being mechanically connected to a main switch so that the passage switching section can operate in response to an switching operation of the main switch between the ignition position and the stop position for igniting or deactivating an ignition device of the engine, the passage switching section being constructed to: switch the second communication passage to the first communication passage in response to the main switch shifting from the stop position to the ignition position; and switch the first communication passage to the second communication passage in response to the main switch shifting from the ignition position to the stop position, wherein the passage switching section includes a valve rod connected to the main switch and a valve body connected to the valve rod, the passage switching section switching between the ignition position and the stop position by rotating the main switch and thereby rotating the valve rod and the valve body between the ignition position and the stop position.
2. The fuel supply apparatus according to claim 1, wherein the passage switching section comprises a three-way valve.
3. The fuel supply apparatus according to claim 2, wherein the valve body is disposed coaxially with the main switch.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) Certain preferred embodiments of the present invention will hereinafter be described in detail, by way of example only, with reference to the accompanying drawings, in which:
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DETAILED DESCRIPTION OF THE INVENTION
(7) Now, an embodiment of a fuel supply apparatus for an engine (engine fuel supply apparatus) according to the present invention will be described with reference to the accompanying drawings.
(8) As shown in
(9) The recoil starter 11 is an activation device operable by a human operator to manually activate the engine 10, and the recoil starter 11 is provided on a crankshaft of the engine 10 or on a flywheel connected directly to the crankshaft.
(10) The main switch 20 is a manual main power switch for activating and deactivating the engine 10. Namely, the main switch 20 is operable to ignite and stop the engine ignition device 30. More specifically, the main switch 20 is a rotary switch having an operating knob 21 rotatable to actuate a switch contact 22.
(11) The engine ignition device 30 includes an electric power generator 31, an ignition circuit 32, an ignition coil 33, and an ignition plug 34. For example, an ordinary magnetic-power-generating ignition device (flywheel magneto ignition device) is employed as the engine ignition device 30. The magnetic-power-generating ignition device 30 includes the power generator 31 connected directly to the crankshaft of the engine 10, and it directly uses, as primary power, electric power generated by the generator 31 without storing the generated electric power in a battery.
(12) A high-voltage intermittent current generated in a secondary coil of the ignition coil 33 is supplied to the ignition plug 34. Ignition timing (ignition time) of the ignition plug 34 varies depending on the number of rotations of the crankshaft. Namely, the electric power generated by the generator 31 is supplied to the ignition circuit 32 and the ignition coil 33. The ignition coil 33 is controlled by the ignition circuit 32 to apply high-voltage electric power to the ignition plug 34.
(13) While the operating knob 21 of the main switch 20 is at an ignition position ON, the switch contact 22 is kept in an opened state. The crankshaft of the engine 10 rotates in response to the human operator operating the operating knob 21 to shift to the ignition position ON and then activating the recoil starter 11. As a consequence, the power generator 31 is driven by the crankshaft of the engine 10 to start generating electric power, and the ignition circuit 32 is automatically activated by the electric power supplied from the electric power generator. Thus, high-voltage electric power is applied from the ignition coil 33 to the ignition plug 34.
(14) Once the human operator operates the operating knob 21 of the main switch 20 to shift to a stop position OFF, the switch contact 22 is placed in a closed state. A power line for supplying electric power from the power generator 31 to the ignition circuit 32 and the ignition coil 33 is connected to the earth via the switch contact 22. Thus, in response to the switch contact 22 being placed in the closed state, the application of the high-voltage electric power from the ignition coil 33 to the ignition plug 34 is terminated.
(15) Further, the engine intake device 40 includes an air cleaner 41, a carburetor 42, a throttle valve 43, and a choke valve 44. External air introduced via the air cleaner 41 is delivered to an air intake port of the engine 10 by way of the carburetor 42 and an air intake pipe 45.
(16) Further, the carburetor 42 includes an air intake passage 47 within a throttle body 46 (carburetor body 46), and a diameter-reduced Venturi section 48 in a middle interior portion of the air intake passage 47. The throttle valve 43 is disposed in the air intake passage 47 downstream of the Venturi section 48, and the choke valve 44 is disposed in the air intake passage 47 upstream of the Venturi section 48. Further, a spray nozzle 49 for spraying fuel is provided in the Venturi section 48.
(17) Further, the fuel supply apparatus 50 includes a fuel tank 51, an auto fuel cock 52, a fuel supply passage 53, and a fuel chamber 54. The fuel tank 51 is disposed above the carburetor 42. The auto fuel cock 52 is a valve that automatically opens by negative pressure within a crankcase of the engine 10. The fuel supply passage 53 connects a lower-end exit of the auto fuel cock 52 to the fuel chamber 54. The fuel chamber 54 (float chamber 54) is provided in the carburetor 42 for temporarily storing fuel Fu. The spray nozzle 49 is connected to the fuel chamber 54.
(18) Fuel stored in the fuel tank 51 is supplied to the fuel chamber 54 via the auto fuel cock 52 and the fuel supply passage 53. Namely, the fuel is supplied from the fuel tank 51 to the fuel chamber 54 by the gravitational force, although the fuel supply from the fuel tank 51 to the fuel chamber 54 may be effected by a pump rather than by the gravitational force.
(19) With the fuel supply apparatus 50, the fuel Fu stored in the fuel chamber 54 can be sprayed via the spray nozzle 49 to the interior of the Venturi section 48 in accordance with negative pressure within the Venturi section 48. The thus-sprayed fuel is mixed with air, so that the air-fuel mixture is supplied from the Venturi section 48 to the engine 10.
(20) Further, as shown in
(21) More specifically, the passage switching section 63 comprises a three-way valve as shown in
(22) Further, as shown in
(23) A combination of the first communication pipe 81 and the vent 82 constitutes the first communication passage 61, and a combination of the first and second communication pipes 81 and 83 constitutes the second communication passage 62.
(24) The three-way valve 63 (i.e., passage switching section 63) is mechanically connected to the main switch 20 in such a manner that it can operate in response to (in interlocked relation to) the switching operation of the main switch 20 between the ignition position ON and the stop position OFF. The three-way valve 63 is constructed to switch from the second communication pipe 62 to the first communication passage 61 in response to the main switch 20 switching from the stop position OFF to the ignition position ON and switch from the first communication pipe 61 to the second communication passage 62 in response to the main switch 62 switching from the ignition position ON to the stop position OFF.
(25) Further, as shown in
(26) For example, the valve rod 75 functions also as a rotation shaft of the main switch 20 (rotary switch). The operating knob 21 is mounted on one end portion of the valve rod 75. Thus, the main switch 20 and the three-way valve 63 are located on the centerline CL of the valve rod 75.
(27) The foregoing description may be summarized as follows. Once the main switch 20 is operated to shift to the ignition position ON as shown in
(28) Namely, in response to the main switch 20 shifting from the stop position OFF to the ignition position ON as shown in
(29) Once the main switch 20 is operated to shift to the stop position OFF, on the other hand, the ignition device 30 is turned off, so that the high-voltage electric power is no longer applied from the ignition coil 33 to the ignition plug 34. As a consequence, the engine 10 starts idling. Namely, as the operating knob 21 shown in
(30) Namely, the three-way valve 63 switches the first communication passage 81 to the second communication passage 62 in response to the main switch 20 shifting from the ignition position ON to the stop position OFF. Thus, as shown in
(31) Besides, the fuel supply apparatus 50 of the present invention is simple in construction with merely the passage switching section 63, capable of switching between the first communication passage 61 and the second communication passage 62, mechanically connected to the main switch 20, requiring no electrical component. Thus, occurrence of the afterburn can be prevented by the fuel supply apparatus 50 comprising only simple and inexpensive mechanical components. Therefore, overall cost of the entire general-purpose engine 10 can be reduced.
(32) Further, while the main switch 20 is at the stop position OFF, the first communication passage 61 is shut off from the outside. Thus, during stoppage of the general-purpose engine 10, the interior of the fuel chamber 54 is shut off from the atmosphere, so that a fuel evaporative emission can be prevented from dissipating from the fuel chamber to the atmosphere and thus it is possible to minimize the dissipation of the fuel evaporative emission from the general-purpose engine 10 to the atmosphere. Besides, even where a catalyst layer is added to the breather or vent 82 in the first communication passage 61, the fuel evaporative emission can be prevented from flowing from the fuel chamber 54 to the catalyst layer during stoppage of the general-purpose engine 10. Still further, even when the general-purpose engine 10 is put down sideways, there is no possibility of the fuel FU stored in the fuel chamber 54 flowing to the outside through the first communication passage 61.
(33) The fuel supply apparatus of the present invention is well suited for application to general-purpose engines mounted on various working machines.