TRANSMISSION FOR A HYBRID DRIVE ARRANGEMENT, HYBRID DRIVE ARRANGEMENT, VEHICLE, METHOD FOR OPERATING THE HYBRID DRIVE ARRANGEMENT, COMPUTER PROGRAM AND STORAGE MEDIUM
20200171932 · 2020-06-04
Inventors
- Rolf Lucius Dempel (Besigheim, DE)
- Dominik Eszterle (Heilbronn, DE)
- Thomas Huber (Daisbach, DE)
- Christian Wirth (Eichenried, DE)
- Simon BRUMMER (Gröbenzell, DE)
- Tom Smejkal (Dresden, DE)
Cpc classification
B60K6/387
PERFORMING OPERATIONS; TRANSPORTING
B60K2006/4825
PERFORMING OPERATIONS; TRANSPORTING
F16H2200/2005
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B60K6/547
PERFORMING OPERATIONS; TRANSPORTING
B60K6/38
PERFORMING OPERATIONS; TRANSPORTING
F16H2200/2051
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H2200/2048
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H37/042
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B60K6/36
PERFORMING OPERATIONS; TRANSPORTING
F16H2200/2094
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H2200/2046
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B60K2006/381
PERFORMING OPERATIONS; TRANSPORTING
F16H2200/0052
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H37/046
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B60K6/365
PERFORMING OPERATIONS; TRANSPORTING
F16H2200/2053
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
B60K6/365
PERFORMING OPERATIONS; TRANSPORTING
B60K6/38
PERFORMING OPERATIONS; TRANSPORTING
B60K6/547
PERFORMING OPERATIONS; TRANSPORTING
Abstract
The invention relates to a transmission (100) for a hybrid drive arrangement which can be coupled to two drive assemblies (7, 8), comprising an input shaft (10), and an output shaft (11), at least one first, second, third, fourth, fifth and sixth shifting element (SE1, SE2, SE3, SE4, SE5, SE6), and at least one planetary gear (5). The input shaft (10) can be coupled to a first transmission shaft (16) by means of the first shifting element (SE1), the first transmission shaft (16) can be coupled to the ring gear of the first planetary gear (5) by means of the second shifting element (SE2), the first transmission shaft (16) can be coupled to a second transmission shaft (17) by means of the third shifting element (SE3), the first transmission shaft (16) can be coupled to the fourth transmission shaft (SE4) by means of a third transmission shaft (18), the output shaft (11) can be coupled to the third transmission shaft (18) by means of the fifth shifting element (SE5) and the output shaft (11) can be coupled to the planet carrier of the planetary gear (5). The second transmission shaft (17) can be coupled to the sun gear of the planetary gear (5) by means of the sixth shifting element (SE6).
Claims
1. A transmission (100) for a hybrid drive arrangement, the transmission (100) configured to be coupled to two drive units (7, 8), the transmission comprising: an input shaft (10) and an output shaft (11), at least a first, second, third, fourth, fifth and a sixth shifting element (SE1, SE2, SE3, SE4, SE5, SE6), and at least one planetary transmission (5), the transmission further configured to couple the input shaft (10) via the first shifting element (SE1) to a first transmission shaft (16), and couple the first transmission shaft (16) via the second shifting element (SE2) to the internal gear of the planetary transmission (5), and couple the first transmission shaft (16) via the third shifting element (SE3) to a second transmission shaft (17), and couple the first transmission shaft (16) via the fourth shifting element (SE4) to a third transmission shaft (18), and couple the output shaft (11) via the fifth shifting element (SE5) to the third transmission shaft 18, and couple the output shaft (11) to the planetary carrier of the planetary transmission (5), and couple the second transmission shaft 17 via the sixth shifting element (SE6) to the sun gear of the planetary transmission (5).
2. The transmission as claimed in claim 1, further comprising a seventh shifting element (SE7) configured to couple the second transmission shaft (17) to a fixed point.
3. The transmission as claimed in claim 1, further comprising an eighth shifting element (SE8) configured to couple the internal gear of the planetary transmission (5) to a fixed point.
4. The transmission as claimed in claim 1, further comprising a ninth shifting element (SE9) configured to couple the third transmission shaft 18 to the sun gear of the planetary transmission (5).
5. The transmission as claimed in claim 1, wherein the second, third, fifth, seventh, eighth, ninth or a combination of the second, third, fifth, seventh, eighth, and ninth shifting elements (SE2, SE3, SES, SE7, SE8, SE9) comprise a claw coupling.
6. The transmission as claimed in claim 1, wherein the first, fourth, sixth, or a combination of the first, fourth, and sixth shifting elements (SE1, SE4, SE6) comprise a clutch, in particular a slipping clutch.
7. The transmission as claimed in claim 1, further configured to couple an internal combustion engine to the input shaft (10), and an electric machine to the first transmission shaft 16.
8. The transmission as claimed in claim 1, further configured to changes transmission ratios of the transmission (100) without the traction force being interrupted.
9. The transmission as claimed in claim 1, further comprising an actuator (50) for actuating at least one of the shifting elements (SE1 . . . SE9) in a manner which is dependent on a predefined operating specification signal (BV).
10. A hybrid drive arrangement (200) having a transmission (100) as claimed in claim 1, the hybrid drive arrangement comprising a second drive unit (8) and/or a pulse inverter (60), electric energy source (70) or a first drive unit (7).
11. A vehicle (300) having a hybrid drive arrangement (200) as claimed in claim 10.
12. A method (400) for operating a hybrid drive arrangement (200) having a transmission (100) having an input shaft (10) and an output shaft (11), at least a first, second, third, fourth, fifth and a sixth shifting element (SE1, SE2, SE3, SE4, SE5, SE6), and at least one planetary transmission (5), the transmission further configured to couple the input shaft (10) via the first shifting element (SE1) to a first transmission shaft (16), and couple the first transmission shaft (16) via the second shifting element (SE2) to the internal gear of the planetary transmission (5), and couple the first transmission shaft (16) via the third shifting element (SE3) to a second transmission shaft (17), and couple the first transmission shaft (16) via the fourth shifting element (SE4) to a third transmission shaft (18), and couple the output shaft (11) via the fifth shifting element (SE5) to the third transmission shaft 18, and couple the output shaft (11) to the planetary carrier of the planetary transmission (5), and couple the second transmission shaft 17 via the sixth shifting element (SE6) to the sun gear of the planetary transmission (5), the method comprising: determining (410) an operating specification signal (BV); and actuating (420) at least one of the shifting elements (SE1 . . . SE7) in order to set the functionality of the transmission (100) in a manner which is dependent on the operating specification signal (BV).
13. (canceled)
14. A non-transitory, computer-readable storage media containing program instructions that when executed by a computer cause the computer to control a transmission having an input shaft (10) and an output shaft (11), at least a first, second, third, fourth, fifth and a sixth shifting element (SE1, SE2, SE3, SE4, SE5, SE6), and at least one planetary transmission (5), the transmission further configured to couple the input shaft (10) via the first shifting element (SE1) to a first transmission shaft (16), and couple the first transmission shaft (16) via the second shifting element (SE2) to the internal gear of the planetary transmission (5), and couple the first transmission shaft (16) via the third shifting element (SE3) to a second transmission shaft (17), and couple the first transmission shaft (16) via the fourth shifting element (SE4) to a third transmission shaft (18), and couple the output shaft (11) via the fifth shifting element (SE5) to the third transmission shaft 18, and couple the output shaft (11) to the planetary carrier of the planetary transmission (5), and couple the second transmission shaft 17 via the sixth shifting element (SE6) to the sun gear of the planetary transmission (5), to determine (410) an operating specification signal (BV); and actuate (420) at least one of the shifting elements (SE1 . . . SE7) in order to set the functionality of the transmission (100) in a manner which is dependent on the operating specification signal (BV).
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0033] In the following text, the invention is to be described in greater detail on the basis of some figures, in which:
[0034]
[0035]
[0036]
[0037]
DETAILED DESCRIPTION
[0038]
[0039]
[0040] A further mode CH1 (also called standstill charging) results if only the first shifting element SE1 is closed and the remaining shifting elements SE2 . . . SE9 are open. Here, the drive units 7 and 8 are coupled to one another, there not being a connection to the output shaft 11. In said operating mode, the second drive unit 8 can be driven by means of the first drive unit 7 during the standstill of the output shaft, in particular of a vehicle, in particular can be used in the manner of a generator for charging an electric energy source 70, in particular a battery. As an alternative, the first drive unit 7 can also be driven by means of the second drive unit 8, and, for example, an internal combustion engine start or a diagnosis of the internal combustion engine can be carried out if the first drive unit 7 is an internal combustion engine and the second drive unit 8 is an electric machine.
[0041]
[0042]