IP Library Granted Patent US 8,876,656
Granted Patent B2
US 8,876,656 · App. 13/381,984 · Granted Nov 4, 2014

System for driving an assembly arrangement for a motor vehicle

Inventors: Konstantin Erjawetz (Graz, AT); Helfried Müller (Weinzettl, AT)
Assignee: MAGNA STEYR Engineering AG & Co. KG
F02B73/00B60K1/00B60K25/02B60K1/04F02B67/06B60K17/356B60K2001/0416F02B67/04B60K25/00
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Quick Facts
Patent No.
US 8,876,656
App. No.
13/381,984
Granted
Nov 4, 2014
Kind
B2
Abstract

A system for driving an assembly arrangement for a motor vehicle, which assembly arrangement having at least one auxiliary assembly and an electric machine which is configured independently of a drive unit of the motor vehicle. It is possible for the electric machine to be operated both as a motor for driving the auxiliary assembly and as a generator for generating electric power. If required, it is possible for a separate engine which is configured as an internal combustion engine to be connected or fastened releasably via an interface to the assembly arrangement and to be coupled to the assembly arrangement for drive action, in order to supply the at least one auxiliary assembly and/or the electric machine with rotational drive moment.

Claims (23)

1. A drive system for a motor vehicle, the drive system comprising:

an assembly arrangement having at least one auxiliary assembly and an electric machine which is configured independently of a drive unit of the motor vehicle, the electric machine being configured for operation as a motor for driving the at least one auxiliary assembly and as a generator for generating electric power, and an auxiliary engine configured as an internal combustion engine which is releasably fastened via an interface to the assembly arrangement to provide a rotational drive moment to at least one of the at least one auxiliary assembly and the electric machine, wherein the auxiliary engine comprises an output shaft having the rotational drive moment transmitted via one of a belt drive, a gear mechanism or a positively locking and/or frictional connection to the auxiliary assembly and/or the electric machine.

2. The drive system of claim 1 , wherein the auxiliary engine comprises at least one of a fuel system, a control system, an air supply system, an exhaust gas system and an connecting interface configured to permit coupling of the auxiliary engine to corresponding components of the motor vehicle.

3. The drive system of claim 1 , wherein the auxiliary engine comprises a dedicated fuel tank, the auxiliary engine being configured for operation independently of the assembly arrangement.

4. The drive system of claim 1 , further comprising a switchable coupling device configured to selective decouple at least one of the auxiliary assembly and the electric machine from a connection for drive action to the auxiliary engine.

5. The drive system of claim 4 , wherein the switchable coupling device comprises a magnetic coupling.

6. The drive system of claim 1 , wherein the interface comprises a plurality of centering apparatuses configured to mount the auxiliary engine.

7. The drive system of claim 1 , wherein the interface is configured to permit fastening of the auxiliary engine to one of the electric machine and the auxiliary assembly.

8. The drive system of claim 1 , wherein the interface comprises a fastening apparatus having a quick action closure system with a toggle lever mechanism.

9. The drive system of claim 1 , wherein the assembly arrangement comprises a single piece structure element configured to support the auxiliary assembly and the electric machine.

10. The drive system of claim 1 , wherein the auxiliary engine comprises a starter device for starting the auxiliary engine, the starter device being configured for operation independently of the electric machine.

11. The drive system of claim 1 , wherein the auxiliary engine comprises at least one of a heat and sound insulating housing.

12. A motor vehicle comprising:

an assembly arrangement having at least one auxiliary assembly and an electric machine which is configured independently of a drive unit of the motor vehicle, the electric machine being configured for operation as a motor for driving the at least one auxiliary assembly and as a generator for generating electric power, an auxiliary engine configured as an internal combustion engine which is releasably fastened via an interface to the assembly arrangement to provide a rotational drive moment to at least one of the at least one auxiliary assembly and the electric machine, wherein the auxiliary engine comprises an output shaft having the rotational drive moment transmitted via one of a belt drive, a gear mechanism or a positively locking and/or frictional connection to the auxiliary assembly and/or the electric machine.

13. The motor vehicle of claim 12 , wherein the motor vehicle comprises a hybrid motor vehicle.

14. The motor vehicle of claim 12 , wherein the motor vehicle comprises an electric motor vehicle.

15. A method for operating an assembly arrangement of a motor vehicle, the method comprising:

providing an assembly arrangement having at least one auxiliary assembly and an electric machine which is configured independently of a drive unit of the motor vehicle, wherein the electric machine is configured for operation as a motor for driving the at least one auxiliary assembly and as a generator for generating electric power; and then

providing an auxiliary engine configured as an internal combustion engine which is releasably fastened via an interface to the assembly arrangement to provide a rotational drive moment to at least one of the at least one auxiliary assembly and the electric machine, wherein the auxiliary engine comprises an output shaft having the rotational drive moment transmitted via one of a belt drive, a gear mechanism or a positively locking and/or frictional connection to the auxiliary assembly and/or the electric machine.

16. The method of claim 15 , further comprising operationally fastening the auxiliary engine to the assembly arrangement if at least one of the drive unit does not supply any drive moment to operate the assembly arrangement and a charge state of an energy storage which is assigned to the electric machine is less than a predetermined value.

17. The motor vehicle of claim 15 , further comprising operationally detaching the auxiliary engine from the assembly arrangement and storing the auxiliary engine separately therefrom if at least one of the drive unit supplies drive moment sufficient to operate the assembly arrangement and the charge state of the energy storage which is assigned to the electric machine is greater than a predetermined value.

18. The method as claimed in claim 15 , further comprising selectively decoupling at least one of the auxiliary assembly and the electric machine from the auxiliary engine via a coupling device in order to distribute the drive moment which is applied by the auxiliary engine in accordance with requirements.

19. The method of claim 15 , wherein the motor vehicle comprises one of a hybrid motor vehicle and an electric motor vehicle.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 12, 2020
From: MAGNA STEYR FAHRZEUGTECHNIK AG & CO KG
To: MAGNA PT B.V. & CO KG
Reel/Frame 054350/0506 →
CHANGE OF NAME Recorded Jun 18, 2014
From: MAGNA E-CAR SYSTEMS GMBH & CO OG
To: MAGNA STEYR BATTERY SYSTEMS GMBH & CO OG
Reel/Frame 033125/0449 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 18, 2014
From: MAGNA STEYR BATTERY SYSTEMS GMBH & CO OG
To: MAGNA STEYR ENGINEERING AG & CO KG
Reel/Frame 033125/0496 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 26, 2012
From: ERJAWETZ, KONSTANTIN; MULLER, HELFRIED
To: MAGNA E-CAR SYSTEMS GMBH & CO OG
Reel/Frame 027597/0642 →
Continuity (2)
Provisional Application 61222958 · Jul 3, 2009
Related Publication 20120129651A1 · May 24, 2012