Temperature management system for transmission using split engine cooling
US-9222571-B2 · Dec 29, 2015 · US
US10018266B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10018266-B2 |
| Application number | US-201515538797-A |
| Country | US |
| Kind code | B2 |
| Filing date | Nov 24, 2015 |
| Priority date | Jan 14, 2015 |
| Publication date | Jul 10, 2018 |
| Grant date | Jul 10, 2018 |
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Since an oil level of oil in a first space housing a transmission mechanism is lower than an oil level of the oil in a second space housing a differential gear, not only is it possible to lubricate a drive pinion and a ring gear housed in the second space with a sufficient amount of oil while cutting the total amount of oil compared with a case in which the oil levels of the first space and the second space are both high, but it is also possible to reduce the resistance of oil to stirring in the second space by discharging excess oil building up in the second space to the first space via a second oil passage formed along an axial center of a pinion shaft, and to prevent the oil level of the first space from decreasing excessively, thus avoiding aeration of an oil pump.
Opening claim text (preview).
The invention claimed is: 1. A transmission comprising a first space housing a transmission mechanism, a second space housing a differential gear, and a pinion shaft having provided at one end thereof a final driven gear to which a driving force from the transmission mechanism is transmitted and at the other end a drive pinion transmitting the driving force to a ring gear of the differential gear, wherein the transmission comprises an oil pump disposed in the first space, an oil cooler for cooling oil supplied from the oil pump, a first oil passage for supplying oil that has been cooled by the oil cooler to the second space, and a second oil passage formed along an axial center of the pinion shaft and supplying oil of the second space to the first space, and an oil level of oil of the second space is higher than an oil level of oil of the first space. 2. The transmission according to claim 1 , wherein the first oil passage supplies oil to an upper side of the drive pinion. 3. The transmission according to claim 2 , wherein a transmission case is provided with a third oil passage for guiding oil issued from the second oil passage to a suction port communicating with the oil pump. 4. The transmission according to claim 2 , wherein a blade member is provided in an opening on the second space side of the second oil passage, and rotation of the pinion shaft when a vehicle travels forward makes the blade member suck in oil of the second space into the second oil passage. 5. The transmission according to claim 1 , wherein a transmission case is provided with a third oil passage for guiding oil issued from the second oil passage to a suction port communicating with the oil pump. 6. The transmission according to claim 5 , wherein a blade member is provided in an opening on the second space side of the second oil passage, and rotation of the pinion shaft when a vehicle travels forward makes the blade member suck in oil of the second space into the second oil passage. 7. The transmission according to claim 1 , wherein a blade member is provided in an opening on the second space side of the second oil passage, and rotation of the pinion shaft when a vehicle travels forward makes the blade member suck in oil of the second space into the second oil passage.
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