The invention relates to outboard marine drives, and more particularly to drainage of residual oil upon changing the oil filter.
An outboard marine drive typically includes an upper powerhead having an engine, a downwardly depending driveshaft housing, and a lower gearcase having a propulsor for propelling a marine vessel. The engine has a removable oil filter for filtering lubricating oil for the engine. Upon removal of the oil filter during an oil change, there can be an oil mess, including residual oil. It is known to provide an oil filter drip tray at the interface of the oil filter and the engine for collecting residual oil upon removal of the oil filter. A fitting may be provided on the drain tray to allow a hose to be attached, which in turn allows the residual oil in the tray to be drained outside of the outboard marine drive cowling. This in turn requires the technician to remove the drip tray drain plug at the fitting, then install and connect the hose, and then, after oil filter replacement, remove the hose and re-install the drain plug after the oil filter change. Hose removal from the drain tray can still be messy. In addition, since the drain hose must be routed outside the cowling, the design of the lower cowling must be such that the lower cowling upper ridge is kept low enough to keep the hose below the drain tray fitting height, allowing the residual oil to completely drain. Alternatively, the lower cowl needs to have a hole for the hose to be routed through, for draining.
The present disclosure arose during continuing development efforts in the above technology.
Driveshaft housing 16 has an oil sump 24 below the engine and providing a reservoir for the lubricating oil. The oil sump has a drain fitting 26 for draining oil therefrom, as is known. A connection hose 28 extends from drip tray 22 downwardly to oil sump drain fitting 26 for delivering the noted residual oil from the drip tray to the oil sump drain fitting. An adapter plate 30 is between engine 14 and oil sump 24. The adapter plate has an opening 32 therethrough through which connection hose 28 extends downwardly.
Connection hose 28 remains attached to drip tray 22 and to oil sump drain fitting 26 during running of the engine. Accordingly, there is no need to connect and disconnect a drainage hose, thus eliminating the mess otherwise caused thereby during oil filter change by a technician. Oil sump drain fitting 26,
The disclosure provides a connection hose 28 extending from an upper end at drip tray 22 to a lower end at valve 42. The valve has an open condition passing residual oil therethrough to drain the residual oil from the drip tray. The valve has a closed condition blocking flow of residual oil therethrough. The connection hose extends downwardly from the engine to the driveshaft housing. The valve and the lower end of the connection hose are in the driveshaft housing. The connection hose remains attached to the drip tray during running of the engine.
The disclosure provides a method for reducing spillage and mess of residual oil when changing an oil filter for an outboard marine drive. The method includes providing a connection hose having an upper end and a lower end, connecting the upper end of the connection hose to the drip tray, connecting the lower end of the connection hose to a valve, collecting residual oil in the drip tray upon removal of the oil filter, and opening the valve to drain the residual oil. In one aspect, the method includes leaving the connection hose attached at the upper end to the drip tray during running of the engine. In one embodiment, the driveshaft housing has an oil sump below the engine providing a reservoir for the lubricating oil, and the oil sump has a drain fitting for draining the lubricating oil therefrom, and the method further includes providing the valve at the oil sump drain fitting with the lower end of the connection hose connected thereto. In one embodiment, the oil sump drain fitting is provided with a first inlet from the oil sump, a second inlet from the drip tray through the connection hose, and an outlet, and the method includes providing the valve with a closed condition blocking flow of the lubricating oil from the first inlet to the outlet, and blocking flow of the residual oil from the second inlet to the outlet. In one embodiment, the method includes providing the valve with an open condition passing the lubricating oil from the first inlet to the outlet, and passing the residual oil from the second inlet to the outlet. In one embodiment, the method includes providing the valve with a closed condition blocking flow of residual oil from the second inlet to the first inlet. In one embodiment, the method includes providing the oil sump drain fitting with a first inlet from the oil sump, a second inlet from the drip tray through the connection hose, and an outlet, and providing the valve with a blocking condition blocking flow of the residual oil from the second inlet to the first inlet.
In the foregoing description, certain terms have been used for brevity, clearness, and understanding. No unnecessary limitations are to be inferred therefrom beyond the requirement of the prior art because such terms are used for descriptive purposes and are intended to be broadly construed. The different configurations, systems, and method steps described herein may be used alone or in combination with other configurations, systems and method steps. It is to be expected that various equivalents, alternatives and modifications are possible within the scope of the appended claims. Each limitation in the appended claims is intended to invoke interpretation under 35 U.S.C. §112, sixth paragraph, only if the terms “means for” or “step for” are explicitly recited in the respective limitation.
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