The present invention relates to exhaust gas recirculation devices for reducing the nitrogen oxide from the motorcycle engine, and particularly to an exhaust gas recirculation device which can introduce the exhaust gas from the engine into the air inlet end of the engine. Since the exhausting gas contains a large amount of carbon dioxide so as to reduce the operation temperature of the engine. Thereby it is difficult to generate nitrogen oxide in the exhaust gas of the engine.
Conventionally, catalytic converter is installed in the exhausting pipe of the engine for reducing the nitrogen oxide in the exhaust gas. The catalytic converter with precious metal rhodium (Rh) can reduce the harmful nitrogen oxide in the exhaust gas to harmless nitrogen (N2) and oxygen (O2).
Moreover, platinum (Pt) and palladium (Pd) are also contained in the catalytic converter for oxidizing the carbon monoxide (CO) and hydro- carbon (HC) into harmless carbon dioxide and water. However in the oxidation of CO and HC, the increment of temperature of the exhaust gas will decrease the nitrogen oxide reduction efficiency of rhodium. Especially, the secondary air is generally introduced into exhausting pipe installed at least one catalytic converter having platinum, palladium and rhodium. The prior art only increases the purifying of the CO and HC, but not beneficial to the purifying of NOx. As a result, more nitrogen oxide is exhausted so as to induce acid rain or to destroy the ozone layer in the atmosphere.
Furthermore, the NOx containing NO, NO2 and N2O are generated when the spark plug is exploded, especially in an environment with nitrogen (N2) and oxygen (O2). If the ignition of the spark plug is fired to explode the fuse, the temperature of the engine can be reduced properly under consideration of the efficiency of the operation of the engine. Then the combination efficiency of the nitrogen and oxygen as the spark plug ignites the fuse will be reduced. However no prior art has this effect. Thus, the harmful nitrogen oxide as the engine operates is still a problem to be overcome.
The present invention is to provide an exhaust gas recirculation device for reducing nitrogen oxide in exhausting gas of a motorcycle engine, wherein part of exhaust gas from the exhausting end of the engine is guided into the air inlet end so that the negative pressure of the engine to is provided to the mixer of air and fuel so as to have a predetermined air to fuel ratio. Then the mixer is supplied to the cylinder of the engine. Since the exhaust gas has a large amount of carbon dioxide, the carbon dioxide in the mixer having the predetermined air to fuel ratio is increased. Thereby the operation of the engine is reduced so as to prevent the ignition of the spark plug from generating harmful nitrogen oxide (NOx).
Another, the present invention is to provide an exhaust gas recirculation device, wherein the use of expensive rhodium is reduced in the catalytic converter since the carbon dioxide is added to the mixer of air and fuel so as to reduce the operation temperature.
Further, the present invention is to provide an exhaust gas recirculation device which can be used to the air inlet system of a conventional motorcycle engine with a carburetor or with an electronic fuel injection system and the nitrogen oxide in the exhaust gas of the engine is sufficiently reduced.
Accordingly, the present invention provides an exhaust gas recirculation device for reducing nitrogen oxide in exhausting gas of a motorcycle engine. The device comprises an exhaust gas recirculation pipe between an exhausting end and a negative pressure air inlet end of the engine. The exhausting end is a branch tube at a front section of an exhausting tube of the engine. The front section is positioned at an exhausting tube between the exhausting opening and a position assembled the catalytic converter.
The various objects and advantages of the present invention will be more readily understood from the following detailed description when read in conjunction with the appended drawing.
In order that those skilled in the art can further understand the present invention, a description will be described in the following in details. However, these descriptions and the appended drawings are only used to cause those skilled in the art to understand the objects, features, and characteristics of the present invention, but not to be used to confine the scope and spirit of the present invention defined in the appended claims.
With reference to
In an exhausting end of an motorcycle engine 1, referring to
A motorcycle air inlet end 3 is included, see
The exhaust gas recirculation pipe 4 has a soft tube, thereby, the exhaust gas recirculation pipe 4 being connected between the exhausting end 2 and the air inlet end 3 of the engine 1, see
The negative pressure control valve 6 has two end tubes 61, 62 which are connected to the exhaust gas recirculation pipe 4, see
The check valve 5 and the negative pressure control valve 6 may be integrally formed and are assembled to the exhaust gas recirculation pipe 4.
By above mentioned structure, when an engine 1 with the conventional carburetor 14 is actuated, the valve opening of the throttle valve 141 of the carburetor 14 is controlled by the fuel flow, see
In the embodiment of the present invention, the returned exhausting gas from the exhausting end 2 of the engine 1 is based on the moving frequency of the negative pressure suction force in the air inlet channel 30. The relation of returned exhausting gas, fuel supplies in high and low rotation speeds and exhausting gas amount of the engine is a geometric series. The higher the rotation speed of the engine, the more the returned exhausting gas flowing into the cylinder of the engine. The high temperature in high operation speed can be reduced by the carbon dioxide in the exhausting gas so that in ignition, it is difficult to generate NOx so as to reduce the contents of NOx in the exhausting gas to enhance the equality of exhausting gas. Moreover, the rhodium (Rh) in the reduced type catalyst in the exhausting tube can be reduced.
Furthermore, it is allowable in the present invention that no negative pressure control valve 6 is installed in the exhaust gas recirculation pipe 4. Only the negative pressure in the air inlet channel 30 serves to suck the recirculated exhausting gas in the exhausting end 2. Therefore, although no negative pressure control valve 6 is used to control the opening timing of the exhaust gas recirculation pipe 4, the check valve 5 can be used to prevent the fuel to drain to the exhausting end 2. However all these are within the scope of the present invention.
Besides, the exhaust gas recirculation device of the present invention can be used to a motorcycle engine with electronic fuel injection system. The difference of this embodiment from above mentioned embodiment having engine with a carburetor is that the carburetor 14 is replaced by an electronic fuel injection system. Other components are identical to the previous system. The negative pressure in the air inlet channel 30 serves to suck part of exhausting gas which then flows into the cylinder of the engine. The carbon dioxide in the exhausting gas serves to reduce the operation temperature of the engine. Thereby the exhausting NOx in the engine with electronic fuel injection system is reduced.
The present invention is thus described, it will be obvious that the same may be varied in many ways. Such variations are not to be regarded as a departure from the spirit and scope of the present invention, and all such modifications as would be obvious to one skilled in the art are intended to be included within the scope of the following claims.