Abstract:
An internal combustion engine having a cross-flow cylinder head with improved cooling. The cylinder head includes a pivotally mounted intake rocker arm which engages an intake push rod located proximal a first side of the cylinder head, and includes a pivotally mounted exhaust rocker arm which engages an exhaust push rod located proximal a second side of the cylinder head which is opposite to the first side of the cylinder head.
Abstract:
An internal combustion engine, and method of distributing lubricant within an internal combustion engine, are disclosed. The internal combustion engine includes a crankcase having a floor, a pump supported by the floor, and a camshaft. The pump includes an inlet and an outlet. The camshaft has a cam, first and second camshaft ends, and an internal channel extending within the camshaft between the ends. The first end is supported by the pump or the floor. Rotation of the camshaft causes the pump to draw in lubricant via the inlet and to pump out at least some of the lubricant via the outlet. The outlet is positioned in proximity to the internal channel at the first camshaft end, so that at least some of the lubricant is pumped into the channel.
Abstract:
A V-type engine having a crankcase with a face, and cylinders arranged so as to form a V space therebetween. Pistons slidably mounted in the cylinders rotatably drive a crankshaft. The crankshaft is rotatably mounted in the crankcase at the junction of the V and has one end extending through the crankcase face. A timing gear engaged by the crankshaft rotatably drives a camshaft rotatably mounted in the crankcase. The camshaft extends through the crankcase face and has a sprocket mounted thereon which engages a drive belt. The drive belt rotatably drives a coolant pump interposed between the crankcase face and flywheel. The coolant pump has a pump cavity which is formed as an integral part of the crankcase face, and an impeller shaft with a rotational axis arranged substantially parallel to the crankshaft outside of the V space. A flywheel is mounted on the crankshaft end extending through the crankcase face and substantially covers the face and coolant pump.
Abstract:
A cleaner oil change procedure can be achieved by using an adaptor assembly that comprises: a housing unit that defines a cavity volume; a filter mount connected to the housing unit, and adapted to mount a spin-on oil filter; an inner piston slidably engaged with the filter mount and adapted to fit within the cavity volume, wherein the inner piston is moveable between a first position within the cavity volume and a second position substantially outside of the cavity volume; an actuator spring located between the inner piston and the housing unit, wherein the actuator spring exerts a force on the inner piston capable of moving the inner piston from the first position to the second position; a drain valve slidably connected to the inner piston; a drain channel in the housing unit; and a valve spring adapted to force the drain valve to seal against the drain channel and prevent flow of oil through the drain channel when the inner piston is in the first position, wherein the drain valve does not seal against the drain channel when the piston is in the second position.
Abstract:
A balance system and method for balancing piston forces within a single cylinder internal combustion engine are disclosed. The balance system includes a crankshaft, a counterbalance assembly and a groove. The crankshaft includes a crankshaft portion, a crank arm, a crank pin, and a eccentric flange adjacent to the crank arm. The counterbalance assembly has a counterbalancing mass portion and a coupling arm that are fixed with respect to one another, and a pin that protrudes from a side of the counterbalancing mass portion. The coupling arm is supported by the eccentric flange. The groove is capable of receiving the pin, where the pin is capable of sliding along the groove and also rotating within the groove, so that the counterbalance assembly is capable of rotating while moving toward and away from the crankshaft.
Abstract:
A crankcase, and method of assembling a crankcase, of an internal combustion engine are disclosed. The crankcase includes a top including at least a first portion of a top surface of the crankcase, and a bottom including a bottom surface of the crankcase and a plurality of side surfaces of the crankcase. The side surfaces are substantially vertical and extend between the top and bottom surfaces. The crankcase further includes bearings within at least one of the top and bottom to support a crankshaft. The crankcase additionally includes a first interface at which at least one of the top, bottom and side surfaces is coupled to a cylinder. The bottom and top interface one another along a split line, the top is removable from the bottom, and the top is configured to be attached to at least one of an oil filter component, a starter, and an ignition module.
Abstract:
An engine driven generator set includes a vertical shaft engine which rotates a generator rotor and a centrifugal fan mounted above the engine. A plenum collects cooling air blown over generator stator windings by the fan and directs the cooling air through an air duct over the engine cylinder head. Electronic circuitry is cooled by this same cooling air.
Abstract:
An oil filtering and cooling device for use with an internal combustion engine is disclosed. It is composed of few components and easily fitted on or retrofitted to an internal combustion engine. In one embodiment, a pressure valve is employed to direct oil away from a cooling function yet allow for filtering thereof. The valve is a reed valve.
Abstract:
A fuel pump body has a chamber with one wall formed by an external diaphragm having a stem connected thereto. The fuel pump body is attached to the outside of a valve cover for a gasoline engine and the valve cover has a depression that forms an enclosure for the diaphragm. The stem passes through an aperture in the valve cover and connects to a lever pivotally attached to the underside of the valve cover. The lever engages the valve rocker arm of the engine and produces reciprocal movement of the stem and diaphragm as the rocker arm moves. The reciprocal movement of the diaphragm alternately draws fuel into the chamber through the inlet and that expels fuel through the outlet.
Abstract:
An air cleaner device for filtering intake air including a housing defining a chamber, a filter element disposed within the chamber, and a duct element having a passageway in fluid communication with the chamber. Further, the duct element extends along and downwardly from about a portion of the housing and further includes an inlet for drawing intake air into the chamber. The air cleaner having a base member in fluid communication with the chamber and an outlet, where the air drawn into the chamber is filtered by first and second filtering operations to obtain filtered air, with the first and the second filtering operations accomplished at least in part due to a cyclonic motion of the air and passage of the air through the filter element, respectively; and where the filtered air from the chamber of the housing is released through the outlet in the base member.