Marine propulsion – Means for accomodating or moving engine fluids – Cooling for engine
Reexamination Certificate
2001-03-26
2002-07-02
Sotelo, Jesus D. (Department: 3617)
Marine propulsion
Means for accomodating or moving engine fluids
Cooling for engine
C123S19800E
Reexamination Certificate
active
06413131
ABSTRACT:
BACKGROUND OF THE INVENTION
1. Field of the Invention
The present invention is generally related to an air ventilation system for an outboard motor and, more particularly, to a ventilation system that utilizes an air duct to conduct air in thermal communication with selected fuel supply system components, particularly when the engine is turned off following operation for a period of time sufficient to raise the temperature of portions of the engine.
2. Description of the Prior Art
Air ventilation systems for outboard motors of various types are well known to those skilled in the art.
U.S. Pat. No. 4,326,600, which issued to Okazaki et al on Apr. 27, 1982, describes an intake silencer for an outboard motor. The outboard motor includes a cowling with a cavity that receives a carburetor that supplies the engine with an air/fuel mixture. The carburetor has an air intake port. An air intake passage connects to this port and bends partway around the carburetor. A resonance chamber communicates with the air intake passage and faces the carburetor to attenuate the noise from the carburetor intake port.
U.S. Pat. No. 4,952,180, which issued to Watanabe et al on Aug. 28, 1990, describes a cowling for an outboard motor. Two embodiments of the protective cowlings for the power head of an outboard motor that form both forwardly and inwardly facing air inlet passages are described. The forwardly and rearwardly facing air inlet passages are configures to ensure adequate air induction to the engine. The forwardly facing air inlet opening is located so as to avoid water being able to enter into the interior of the protective cowling and into the engine induction system.
U.S. Pat. No. 5,176,551, which issued to Blanchard et al on Jan. 5, 1993, describes an arrangement for supplying combustion air to an outboard motor. The marine apparatus comprises a boat including a wall extending generally in the fore and aft direction and having therein an air outlet opening. It further comprises a propulsion unit mounted on the boat and including a propeller shaft and an engine drivingly connected to the propeller shaft. A cover surrounds the engine and has therein an air inlet opening with a duct communicating between the air outlet opening and the air inlet opening.
U.S. Pat. No. 5,181,871, which issued to Hiraoka et al at Jan. 26, 1993, describes a suctioned air introducing system for an outboard motor. The device provides an improved cowling and air inlet arrangement for the powerhead of an outboard motor, having an internal combustion engine including an induction system, which prevents water from splashing upon the outer surface of the engine contained therein. Damage to the engine due to corrosion, or other phenomena is avoided, since the arrangement of the invention does not permit water to impinge upon the engine.
U.S. Pat. No. 5,445,547, which issued to Furukawa on Aug. 29, 1995, describes an outboard motor which has an engine compartment covered by an engine cover at its top portion and has an engine disposed within the engine compartment with its crankshaft directed in the vertical direction. The charging efficiency of the engine is improved with a simple structure and an shielding property of the entire surrounding of the engine is also enhanced. A suction chamber communicating with an intake section of the engine is disposed on a surface other than the top surface of the engine and on one side of the inside of the engine compartment, an air intake portion is provided in the engine cover at a position close to the other side of the inside of the engine compartment, an air exhaust port is provided in the engine cover, and a duct is provided within the engine compartment for leading air from the air intake port towards the suction chamber while making a detour to avoid a route above the engine.
U.S. Pat. No. 5,899,778, which issued to Hiraoka et al on May 4, 1999, describes an outboard motor induction system. An induction system is of the type having a water propulsion device powered by an internal combustion engine positioned within an engine compartment defined by a cowling. The induction system includes a cover extending over a top end of the engine. The cover defines an air duct leading from an intake chamber defined by the cowling to an intake pipe of the air intake system of the engine. The cover also defines an air duct in communication with the engine compartment and leading to an exhaust chamber defined by the cowling. A pair of intake ports lead through a cover of the cowling form the intake chamber, and an exhaust port leads through the cover from the exhaust chamber. The intake ports are positioned forward of the exhaust port when considering the forward movement of a watercraft which is powered by the motor.
U.S. Pat. No. 5,937,818, which issued to Kawai et al on Aug. 17, 1999, describes a ventilation system for an outboard motor. The ventilating system has a water propulsion device and an internal combustion engine positioned in a cowling, the engine having an output shaft arranged to drive the water propulsion device. The ventilating system includes an air inlet in the cowling which permits air to flow into the engine compartment in which the engine is positioned, and an exhaust port positioned in the cowling. The system also includes a mechanism for drawing air through the inlet into the compartment and expelling air out of the compartment through the exhaust port after the engine has stopped.
U.S. Pat. No. 5,938,491, which issued to Kawai et al on Aug. 17, 1999, describes a cowling air inlet for an outboard motor. The protective cowling arrangement defines an air inlet opening for an outboard motor that facilitates the ingestion of large amounts of air at low velocity. This aids in the assurance that water is not ingested into the engine. The configuration of the inlet opening is such that the water that is separated by the inlet system can easily flow away from the inlet opening and also the water that collects on the housing surfaces can be easily separated and will drain away from the actual inlet openings into the interior of the cowling.
U.S. Pat. No. 5,996,546, which issued to Kollmann et al on Dec. 7, 1999, discloses an integrated flywheel cover and air conduit passages. A cover for an outboard motor is provided to protect an operator from a flywheel. The cover is disposed under the cowl of the outboard motor. The cover is made of a generally rigid material, such as plastic, with first and second sheets being associated together to form conduits with openings extending therefrom. In one particular embodiment, one of the openings is shaped to receive an inlet of a compressor and this provides a positioning aid in attaching the cover to the engine. This device eliminates the need for flexible hoses and accomplishes two tasks with one component. It provides air conduits for the air passing through the cover and it provides a generally rigid means for locating the proper location of the cover.
U.S. Pat. No. 6,024,616, which issued to Takayanagi on Feb. 15, 2000, describes an engine cover for an outboard motor. The outboard motor includes an engine which is covered by an engine cover which is formed with a cylindrical air suction port having an opening open to an upper surface of the engine cover in a state of the outboard motor mounted to a hull, and a portion of an opening area of the opening is covered by a lid member which is formed to a rear edge portion of the opening.
Many different types of cowls, for covering the engine of an outboard motor, are well known to those skilled in the art. Typically, the cowls are provided with one or more openings that allow air to flow into the engine compartment of the outboard motor from the ambient air surrounding the outboard motor. This air is used during the combustion processes of the engine and also provides a cooling effect. Some cowls that are known to those skilled in the art also provide for ventilation openings that facilitate the removal of heat from the internal portions under the cowl, particularly after the engine is tur
Griffiths John M.
Jaszewski Wayne M.
Phillips George E.
Brunswick Corporation
Lanyi William D.
Sotelo Jesus D.
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