Patent classifications
F02M35/046
STRADDLED VEHICLE
A straddled vehicle includes a duct part formed integrally with a lower case of an air cleaner and extending forward from the lower case in a vehicle front-rear direction, and a side cover including a duct formation portion placed outward of the duct part in a vehicle width direction. At least a portion of the side cover is assembled onto the duct part. A duct is defined by the duct part and the duct formation portion of the side cover.
Mass airflow sensor and hydrocarbon trap combination
A combined mass airflow sensor and hydrocarbon trap is provided for absorbing evaporative hydrocarbon emissions from an air intake duct of an internal combustion engine. The combined mass airflow sensor and hydrocarbon trap comprises a duct that supports a hydrocarbon absorbing sheet in an unfolded configuration within a housing. The duct communicates an airstream from an air filter to the air intake duct during operation of the internal combustion engine. An opening in the housing receives a mass airflow sensor into the duct, such that the mass airflow sensor is disposed within the airstream. Guide vanes extending across the duct reduce air turbulence within the airstream passing by the mass airflow sensor. Ports disposed along the duct allow the evaporative hydrocarbon emissions to be drawn into the interior and arrested by the hydrocarbon absorbing sheet when the internal combustion engine is not operating.
Adsorber element, ring filter element
An annular adsorber element may be used in conjunction with a fresh air system of an internal combustion engine for adsorbing particles such as hydrocarbons. The annular adsorber element may include a support structure and an adsorber material. The support structure may be injection molded onto the adsorber material.
Air intake structure for internal combustion engine
Problem In an air intake structure for an internal combustion engine 1 where a compressor impeller 22 of a turbocharger 20 is disposed in an air intake passage (4) of the internal combustion engine 1, not to prevent an ice clump 15 from appearing on an inner wall surface of the air intake passage (4), but prevents this ice clump 15 from colliding with the compressor impeller 22, especially, a vane 22a of the compressor impeller 22 when the ice clump 15 formed on the inner wall surface of the air intake passage (4) peels off. Solution A capture member 30 is provided upstream side with respect to the compressor impeller 22 in the air intake passage (4). The capture member 30 is configured to capture an ice clump 15 formed at an inner wall surface of the air intake passage (4) when the ice clump 15 peels off.
Mass Airflow Sensor And Hydrocarbon Trap Combination
A combined mass airflow sensor and hydrocarbon trap is provided for absorbing evaporative hydrocarbon emissions from an air intake duct of an internal combustion engine. The combined mass airflow sensor and hydrocarbon trap comprises a duct that supports a hydrocarbon absorbing sheet in an unfolded configuration within a housing. The duct communicates an airstream from an air filter to the air intake duct during operation of the internal combustion engine. An opening in the housing receives a mass airflow sensor into the duct, such that the mass airflow sensor is disposed within the airstream. Guide vanes extending across the duct reduce air turbulence within the airstream passing by the mass airflow sensor. Ports disposed along the duct allow the evaporative hydrocarbon emissions to be drawn into the interior and arrested by the hydrocarbon absorbing sheet when the internal combustion engine is not operating.
Electrically-assisted turbocharger
An electrically-assisted turbocharger includes an electrically-assisted turbocharger body. A side of the electrically-assisted turbocharger body is connected to a docking pipe, a side of the docking pipe is connected to a sealing cover, a bottom of the sealing cover is fixed with a purification pipe, two ends of the purification pipe are closed, a side of the purification pipe is connected to an air intake pipe, and an inside of the purification pipe is provided with an intermittent driving element. Multiple through-holes penetrating into an inside of the sealing cover are equidistantly defined on a top surface of the inside of the purification pipe, and a filtering assembly is slidably connected to an inside of each of the multiple through-holes. The electrically-assisted turbocharger solves a problem of dust accumulation on a filter element affecting its permeability in a turbocharger in the related art.