Claims
- 1. A method of converting an existing vehicle powertrain including a manual transmission to a hybrid powertrain system with an automated manual transmission including the steps of:attaching a gear train housing to a housing of said manual transmission, said gear train housing receiving an end of a drive shaft of said transmission and rotatably supporting a gear train assembly; mounting an electric motor/generator to said gear train housing and attaching a motor/generator drive shaft of said electric motor/generator to said gear train assembly; and connecting an electro-mechanical clutch actuator to a friction clutch mechanism of said manual transmission, wherein said electro-mechanical clutch actuator includes a motor driven ball screw assembly.
- 2. The method according to claim 1, further comprising the step of attaching an electro-mechanical shift actuator to a gear shifting mechanism of said manual transmission.
- 3. A method of converting an existing vehicle powertrain including a manual transmission to a hybrid powertrain system with an automated manual transmission including the steps of:attaching a gear train housing to a housing of said manual transmission, said gear train housing receiving an end of a drive shaft of said transmission and rotatably supporting a gear train assembly; mounting an electric motor/generator to said gear train housing and attaching a motor generator drive shaft of said electric motor/generator to said gear train assembly; connecting an electro-mechanical clutch actuator to a friction clutch mechanism of said manual transmission; and attaching an electro mechanical shift actuator to a gear shifting mechanism of said manual transmission, wherein said electro-mechanical shift actuator includes an electric motor attached to a first gear element which drivingly engages a second gear element which is attached to said gear shifting mechanism of said manual transmission.
- 4. The method according to claim 1, wherein said electro-mechanical clutch actuator includes an assist spring assembly.
- 5. The method according to claim 1, wherein said electro-mechanical clutch actuator includes a mechanical wear compensator for compensating for clutch disk wear.
- 6. The method according to claim 1, further comprising the steps of mounting a parking gear to said transmission driven shaft and mounting a parking sprag to said gear train housing for selectively engaging said parking gear.
- 7. A method of converting an existing vehicle powertrain including a manual transmission to a hybrid powertrain system with an automated manual transmission including the steps of:attaching a gear train housing to a housing of said manual transmission, said gear train housing receiving an end of drive shaft of said transmission and rotatably supporting a gear train assembly; mounting an electric motor/generator to said gear train housing and attaching a motor/generator drive shaft of said electric motor/generator to said gear train assembly; connecting an electro-mechanical clutch actuator to a friction clutch mechanism of said manual transmission; and attaching an electro-mechanical shift actuator to a gear shifting mechanism of said manual transmission.
CROSS REFERENCE TO RELATED APPLICATIONS
This application is a division of pending application Ser. No. 09/302,719 entitled “Powertrain System for a Hybrid Electric Vehicle” filed Apr. 30, 1999 by the same inventors as in the present application which is now abandoned.
STATEMENT OF GOVERNMENT INTEREST
The government of the United States of America has rights in this invention pursuant to Subcontract No. ZAN-6-16334-01 awarded by the U.S. Department of Energy.
US Referenced Citations (10)