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PIN 9N7020 - Caterpillar


9N7020 PIN Caterpillar parts
Rating:
11
Alternative (cross code) number:
CA9N7020
9N-7020
9N7020
Caterpillar 9N7020 PIN
Weight: 0.41 pounds 0 kg.

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Illustration 1 g03664190
Output Transfer Gears
(1) Case
(2) Drive gear
(3) Gear
(4) Driven gear
(5) Shaft
(6) Yoke assembly (for front axle
(7) Yoke assembly (for rear axle)
(8) Magnetic Screen Assembly The output transfer gears are at the output side of the transmission. The transmission output shaft is connected to drive gear (2) by splines.Drive gear (2) is engaged with driven gear (3). Driven gear (3) is engaged with driven gear (4). Driven gear (4) is connected to shaft (5) by splines. Yoke assemblies (6) and (7) are connected to shaft (5) by splines. Yoke assembly (7) is connected to the short drive shaft that is connected to the rear differential. Yoke assembly (6) is connected to the drive shaft. The drive shaft is connected to the pillow block bearing and to the front differential.The flow of power in the output transfer gears goes from the transmission output shaft to drive gear (2). The power then flows from drive gear (2) to driven gear (4). The power then flows from the driven gear to shaft (5).At shaft (5), the flow of power divides. Some of the power goes from yoke assembly (7) through a drive shaft to the rear differential. Some of the power goes from yoke assembly (6) through a drive shaft and through the bearing cage to the front differential.Magnetic Screen
Illustration 2 g02425336
Magnetic Screen Assembly
(1) Magnetic tube
(2) Screen
(3) Seal The magnetic screen assembly is located on the bottom right side of the rear of the transfer gear case. Oil from the bottom of the transfer gear case flows through an inlet passage. As the oil flows through the screen, foreign particles that are in the oil are stopped by the screen. The screen keeps the foreign particles from going into the transmission hydraulic system.As the oil flows through the screen, the oil flows over the magnets. The magnets are installed on the tube assembly so that the magnetic are close to each other. Small metal particles that may go through the screen are pulled to the magnets. The magnets retain metal particles in order to prevent metal in the transmission hydraulic system. Oil then flows to the transmission pump.


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