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Detailed Information On Power Flow Path For Dual-Clutch Transmission - GF27.10-P-1101A

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Transmission 724.033/044/045 

Overview 

This document contains information on:

General 

The engine torque is transferred from the combustion engine crankshaft to the two-mass flywheel.

The two-mass flywheel transfers the engine torque to the engaged coupling K1 (internal shaft) or to coupling K2 (hollow shaft) of the dual clutch.

Function requirements 

Function 

The dual clutch acts as an interface between the combustion engine and the dual-clutch transmission and allows virtually uninterrupted torque transfer during shift operations.

The drive torques from the clutches are transferred to the internal shaft and hollow shaft positively via ring gear profiles. The drive forces are transferred to power output shafts 1 or 2 (depending on the required gear) via the gearwheel connections.

Force flux in 1st gear, shown on transmission 724.0 

G16064125Courtesy of MERCEDES-BENZ USA

Force flux in 1st gear 

The following mechanical components and regulation valves are actuated or engaged for the force flux in 1st gear:

The torque is transferred from the internal shaft fixed gear (12) of the internal shaft (1) to the idler gear (1st gear) (16) of power output shaft 1 (3).

The output torque is transferred from the power output shaft fixed gear 1 (19) to the spur gear (20) of the bevel gear differential. The bevel gear differential is connected through the front drive shafts to the front wheels.

Force flux in 2nd gear, shown on transmission 724.0 

G16064126Courtesy of MERCEDES-BENZ USA

Force flux in 2nd gear 

The following mechanical components and regulation valves are actuated or engaged for the force flux in 2nd gear:

The torque is transferred from the hollow shaft fixed gear (13) to the idler gear (2nd gear) (17) of power output shaft 1 (3).

The drive torque is transferred from the power output shaft fixed gear 1 (19) to the spur gear (20) of the bevel gear differential. The bevel gear differential is connected through the front drive shafts to the front wheels.

Force flux in 3rd gear, shown on transmission 724.0 

G16064127Courtesy of MERCEDES-BENZ USA

Force flux in 3rd gear 

The following mechanical components and regulation valves are actuated or engaged for the force flux in 3rd gear:

The torque is transferred from the internal shaft fixed gear (11) to the idler gear (3rd gear) (6) of power output shaft 2 (4).

The output torque is transferred from the power output shaft fixed gear 2 (9) to the spur gear (20) of the bevel gear differential. The bevel gear differential is connected through the front drive shafts to the front wheels.

Force flux in 4th gear, shown on transmission 724.0 

G16064128Courtesy of MERCEDES-BENZ USA

Force flux in 4th gear 

The following mechanical components and regulation valves are actuated or engaged for the force flux in 4th gear:

The torque is transferred from the hollow shaft fixed gear (14) to the idler gear (4th gear) (18) of power output shaft 1 (3).

The output torque is transferred from the power output shaft fixed gear 1 (19) to the spur gear (20) of the bevel gear differential. The bevel gear differential is connected through the front drive shafts to the front wheels.

Force flux in 5th gear, shown on transmission 724.0 

G16064129Courtesy of MERCEDES-BENZ USA

Force flux in 5th gear 

The following mechanical components and regulation valves are actuated or engaged for the force flux in 5th gear:

The torque is transferred from the internal shaft fixed gear (10) to the idler gear (5th gear) (15) of power output shaft 1 (3).

The output torque is transferred from the power output shaft fixed gear 1 (19) to the spur gear (20) of the bevel gear differential. The bevel gear differential is connected through the front drive shafts to the front wheels.

Force flux in 6th gear, shown on transmission 724.0 

G16064130Courtesy of MERCEDES-BENZ USA

Force flux in 6th gear

The following mechanical components and regulation valves are actuated or engaged for the force flux in 6th gear:

The torque is transferred from the hollow shaft fixed gear (14) to the idler gear (6th gear) (8) of power output shaft 2 (4).

The output torque is transferred from the power output shaft fixed gear 2 (9) to the spur gear (20) of the bevel gear differential. The bevel gear differential is connected through the front drive shafts to the front wheels.

Force flux in 7th gear, shown on transmission 724.0 

G16064131Courtesy of MERCEDES-BENZ USA

Force flux in 7th gear 

The following mechanical components and regulation valves are actuated or engaged for the force flux in 7th gear:

The torque is transferred from the internal shaft fixed gear (10) to the idler gear (7th gear) (5) of power output shaft 2 (4).

The output torque is transferred from the power output shaft fixed gear 2 (9) to the spur gear (20) of the bevel gear differential. The bevel gear differential is connected through the front drive shafts to the front wheels.

Force flux in reverse gear, shown on transmission 724.0 

G16064132Courtesy of MERCEDES-BENZ USA

Force flux in reverse gear 

The following mechanical components and regulation valves are engaged or are actuated for the force flux in reverse gear:

The torque is transferred from the hollow shaft fixed gear (13) to the idler gear (2nd gear) (17) of power output shaft 1 (3). The idler gear (2nd gear) (17) is not engaged; this means that it rotates freely on power output shaft 1 (3).

The idler gear (2nd gear) (17) is engaged at the same time with the reverse gear idler gear (7) of power output shaft 2 (4) and acts as a reversing gear. The direction of rotation reversal for the reverse gear is realized here.

The reverse gear idler gear (7) is locked with the idler gear (3rd gear) (6) and torque transfer via power output shaft 2 (4) does not occur.

The idler gear (3rd gear) (6) transfers the torque to the idler gear (1st gear) (16) of power output shaft 1 (3) via the internal shaft (1) with the internal shaft fixed gears (11, 12).

The output torque is transferred from the power output shaft fixed gear 1 (19) to the spur gear (20) of the bevel gear differential. The bevel gear differential is connected through the front drive shafts to the wheels.

IMPORTANT

The power output shaft fixed gears 1 and 2 (9, 19) are rigidly connected to the respective output shaft (3, 4). The gearwheels of gears 1 to 7 and the reverse gear are idler gears. They are braked by synchronization devices and positively connected to the respective power output shaft (3, 4).