Patent classifications
F16H2061/0433
Method for operating a drivetrain for a work machine, drivetrain for a work machine, and work machine
The disclosure relates to a method for operating a drivetrain for a work machine, wherein a first electric motor drives a work drive of the work machine via a first transmission arrangement, wherein a second electric motor drives a traction drive of the work machine via a second transmission arrangement, and wherein, during a shift process of the second transmission arrangement from a relatively low gear ratio stage to a relatively high gear ratio stage, the rotational speed of the second electric motor is reduced. The method according to the disclosure is distinguished by the fact that, during the shift process, a driving connection is produced between the first electric motor and the second transmission arrangement by a first clutch, such that, during the shift process, the first electric motor drives the traction drive. The disclosure furthermore relates to a corresponding drivetrain and to a work machine.
METHOD AND DEVICE FOR OPERATING A DRIVE DEVICE, DRIVE DEVICE
The invention relates to a method for operating a drive device (1) of a motor vehicle, having an internal combustion engine (2), an electric machine (3), and a dual-clutch transmission (4). The dual-clutch transmission (4) has two clutches (K1, K2), by means of which the transmission can be connected to the internal combustion engine (2). At least the internal combustion engine (2) is actuated in a driving operation in order to generate a target drive torque, and the clutches (K1, K2) are actuated in opposite directions for a gear shift. During a gear shift, the electric machine (3) which is connected to the dual-clutch transmission (4) without a clutch is actuated such that the electric machine completely or partly generates the target torque at least temporarily.
Power transmission apparatus
A power transmission apparatus that is mountable on a vehicle includes a planetary gear mechanism, a first motor generator, a second motor generator, and a stepped automatic transmission with parallel gears. The first motor generator and an output side shaft of the stepped automatic transmission are configured to be coupled to a power input shaft from an engine provided in the vehicle via the planetary gear mechanism. An input side shaft of the stepped automatic transmission is configured to be coupled to the power input shaft. The second motor generator is coupled to the output side shaft of the stepped automatic transmission.
DRIVE MECHANISM FOR A MOTOR VEHICLE, AND METHOD FOR OPERATING A DRIVE MECHANISM FOR A MOTOR VEHICLE
Drive mechanism (1) for a motor vehicle (6), comprising a dual clutch transmission (10) that includes a first powertrain (13), which can be connected to a first drive unit (2) via a first clutch (21), and a second powertrain (14), which can be connected to the first drive unit (2) via a second clutch (22), the first powertrain (13) being securely coupled to a second drive unit (3); when shifting gears in the dual clutch transmission (10), the second drive unit (3) supplies a predefined drive torque.
Method of controlling transmission of electric vehicle
A method of controlling a transmission of an electric vehicle includes: applying a driving force to an actuator of a synchronizer by a controller such that the synchronizer is disengaged from a current gear stage, when a power-on shifting instruction to shift from the current gear stage to a desired gear stage is given; engaging a servo-clutch by the controller such that torque is transmitted from an input shaft to an output shaft through a servo-gear unit, after the applying of a driving force; and disengaging the synchronizer from the current gear stage using a driving force of the actuator, when torque of the current gear stage is switched to the servo-gear unit, after the engaging of the servo-clutch.
ELECTRONIC, HIGH-EFFICIENCY VEHICULAR TRANSMISSION, OVERRUNNING, NON-FRICTION COUPLING AND CONTROL ASSEMBLY AND SWITCHABLE LINEAR ACTUATOR DEVICE FOR USE THEREIN
An electronic, high-efficiency vehicular transmission, an overrunning, non-friction coupling and control assembly and switchable linear actuator device for use in the assembly and the transmission are provided. The device controls the operating mode of at least one non-friction coupling assembly. The device has a plurality of magnetic sources which produce corresponding magnetic fields to create a net translational force. The net translational force comprises a first translational force caused by energization of at least one electromagnetic source and a magnetic latching force based upon linear position of a permanent magnet source along an axis.
POWER TRANSMISSION APPARATUS
A power transmission apparatus that is mountable on a vehicle includes a planetary gear mechanism, a first motor generator, a second motor generator, and a stepped automatic transmission with parallel gears. The first motor generator and an output side shaft of the stepped automatic transmission are configured to be coupled to a power input shaft from an engine provided in the vehicle via the planetary gear mechanism. An input side shaft of the stepped automatic transmission is configured to be coupled to the power input shaft. The second motor generator is coupled to the output side shaft of the stepped automatic transmission.
POWER TRANSMISSION SYSTEM OF VEHICLE AND GEAR-SHIFT CONTROL METHOD FOR THE SAME
A power transmission system of a vehicle and a gear-shift control method are provided. The power transmission system includes a first drive assembly (101) and a second drive assembly (102). The first drive assembly includes a first automatic transmission (2) and a first motor (1) connected with the first automatic transmission (2) for outputting power to two wheels of the vehicle. The second drive assembly (102) includes a second automatic transmission (2000) and a second motor (1000) connected with the second automatic transmission (2000) for outputting power to the other two wheels of the vehicle. The first and second automatic transmission are configured to be shifted to a preset gear or a gear adjacent to the preset gear, such that when one of the first and second automatic transmission is shifted to the preset gear, the other one of the first and second automatic transmission is shifted to the preset gear or the gear adjacent to the preset gear.
METHOD OF CONTROLLING TRANSMISSION OF ELECTRIC VEHICLE
A method of controlling a transmission of an electric vehicle of the present disclosure includes: applying a driving force to an actuator of a synchronizer by means of a controller such that the synchronizer is disengaged from a current gear stage, when a power-on shifting instruction to shift from the current gear stage to a desired gear stage is given; engaging a servo-clutch by means of the controller such that torque is transmitted from an input shaft to an output shaft through a servo-gear unit, after the applying of a driving force; and disengaging the synchronizer from the current gear stage using a driving force of the actuator, when torque of the current gear stage is switched to the servo-gear unit, after the engaging of the servo-clutch.
HYBRID DRIVE HAVING AN AUTOMATED CONVENTIONAL GEARBOX
The invention relates to a hybrid drive having an automated conventional gearbox, for example for a motor vehicle, having an internal combustion engine (VM) which has a drive connection to at least a first transmission input shaft (W1), having an electric drive which has at least one electric machine (EM1) which has a drive connection to a second transmission input shaft (W3; W3), having at least one layshaft (W4), having freely moving wheels and fixed wheels (z11-z17, z21-z29, zR3) which are arranged in a plurality of wheel set planes (Z1-Z7), having a plurality of gear shift devices (S1-S4), and having a transmission output shaft (W2). In order to permit a high degree of variability in terms of a wheel set concept as well as the distribution and the number of electrical and internal-combustion-engine gearspeeds, to keep the expenditure on design and the costs low and to ensure efficient and comfortable operation, there is provision that the two transmission input shafts (W1, W3; W1, W3) are arranged coaxially with respect to one another, and in that in one of its shifted positions a gear shift device (S1) connects the two transmission input shafts (W1, W3; W1, W3) to one another effectively in terms of drive, and in another shifted position shifts a gearspeed.