POWERTRAIN FOR HYBRID VEHICLE
20210387520 · 2021-12-16
Assignee
Inventors
- Hyu Tae Shim (Hwaseong-si, KR)
- Bong Hyun Cho (Gunpo-si, KR)
- Jae Young Jeon (Osan-si, KR)
- Byung Dae Choi (Seoul, KR)
- Hyung Min Kim (Suwon-si, KR)
- Jin Yong Kim (Incheon, KR)
- Gwang Soo Hwang (Hwaseong-si, KR)
- Jun Seong Kang (Gwacheon-si, KR)
Cpc classification
F16H2200/2041
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B60K6/387
PERFORMING OPERATIONS; TRANSPORTING
B60K2006/4825
PERFORMING OPERATIONS; TRANSPORTING
B60Y2400/732
PERFORMING OPERATIONS; TRANSPORTING
F16H2200/2038
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B60K6/547
PERFORMING OPERATIONS; TRANSPORTING
F16H2200/0039
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H2200/2033
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B60K6/383
PERFORMING OPERATIONS; TRANSPORTING
B60K2006/381
PERFORMING OPERATIONS; TRANSPORTING
F16H3/666
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H2200/2007
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H2200/0043
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B60K6/365
PERFORMING OPERATIONS; TRANSPORTING
F16H3/663
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H3/66
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B60K2006/4816
PERFORMING OPERATIONS; TRANSPORTING
Y02T10/62
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
International classification
B60K6/365
PERFORMING OPERATIONS; TRANSPORTING
B60K6/26
PERFORMING OPERATIONS; TRANSPORTING
B60K6/383
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A powertrain for a hybrid vehicle may include a complex planetary gear set including four rotation elements having first, second, third, and fourth rotation elements; a motor-generator fixedly connected to the first rotation element of the complex planetary gear set; a first brake configured to selectively connect the second rotation element of the complex planetary gear set to a transmission housing; an input shaft connected to an engine and configured to be selectively connectable to each of the first rotation element and the third rotation element of the complex planetary gear set; and an output shaft connected to the fourth rotation element of the complex planetary gear set.
Claims
1. A powertrain apparatus for a vehicle, the powertrain apparatus including: a complex planetary gear set including a first rotation element, a second rotation element, a third rotation element, and a fourth rotation element; a motor-generator fixedly connected to the first rotation element of the complex planetary gear set; a first brake configured to selectively connect the second rotation element of the complex planetary gear set to a transmission housing; an input shaft connected to an engine and selectively connectable to the first rotation element and the third rotation element of the complex planetary gear set; and an output shaft fixedly connected to the fourth rotation element of the complex planetary gear set.
2. The powertrain apparatus of claim 1, wherein the input shaft is connected to the engine through a one-way clutch.
3. The powertrain apparatus of claim 1, further including a second brake configured to selectively connect the first rotation element of the complex planetary gear set to the transmission housing.
4. The powertrain apparatus of claim 1, further including a first clutch mounted between the input shaft and the first rotation element.
5. The powertrain apparatus of claim 1, further including a second clutch mounted between the input shaft and the third rotation element.
6. The powertrain apparatus of claim 1, wherein the complex planetary gear set includes a first planetary gear set and a second planetary gear set; wherein the first rotation element is a first sun gear of the first planetary gear set; wherein the second rotation element is a second sun gear of the second planetary gear set; wherein the third rotation element is implemented by connecting a first planet carrier of the first planetary gear set and a second ring gear of the second planetary gear set; and wherein the fourth rotation element is implemented by connecting a first ring gear of the first planetary gear set and a second planet carrier of the second planetary gear set.
7. The powertrain apparatus of claim 1, wherein the complex planetary gear set includes a first planetary gear set and a second planetary gear set; wherein the first rotation element is a second sun gear of the second planetary gear set; wherein the second rotation element is a first sun gear of the first planetary gear set; wherein the third rotation element is implemented by connecting a first ring gear of the first planetary gear set and a second planet carrier of the second planetary gear set; and wherein the fourth rotation element is implemented by connecting a first planet carrier of the first planetary gear set and a second ring gear of the second planetary gear set.
8. The powertrain apparatus of claim 1, wherein the complex planetary gear set includes a first planetary gear set and a second planetary gear set; wherein the first rotation element is implemented by connecting a first sun gear of the first planetary gear set and a second sun gear of the second planetary gear set; wherein the second rotation element is a second ring gear of the second planetary gear set; wherein the third rotation element is a first planet carrier of the first planetary gear set; and wherein the fourth rotation element is implemented by connecting a first ring gear of the first planetary gear set and a second planet carrier of the second planetary gear set.
9. The powertrain apparatus of claim 1, wherein the complex planetary gear set includes a first planetary gear set and a second planetary gear set; wherein the first rotation element is a second ring gear of the second planetary gear set; wherein the second rotation element is implemented by connecting a first sun gear of the first planetary gear set and a second sun gear of the second planetary gear set; wherein the third rotation element is implemented by connecting a first ring gear of the first planetary gear set and a second planet carrier of the second planetary gear set; and wherein the fourth rotation element is a first planet carrier of the first planetary gear set.
10. The powertrain apparatus of claim 1, wherein the complex planetary gear set is a Ravigneaux type planetary gear set; wherein the first rotation element is a first sun gear; wherein the second rotation element is a second sun gear; wherein the third rotation element is a ring gear, and wherein the fourth rotation element is a planet carrier.
11. The powertrain apparatus of claim 1, wherein the complex planetary gear set is a Ravigneaux type planetary gear set; wherein the first rotation element is a second sun gear; wherein the second rotation element is a first sun gear; wherein the third rotation element is a planet carrier, and wherein the fourth rotation element is a ring gear.
12. The powertrain apparatus of claim 1, wherein the complex planetary gear set includes a first planetary gear set and a second planetary gear set; wherein the first rotation element is a first sun gear of the first planetary gear set; wherein the second rotation element is implemented by connecting a first ring gear of the first planetary gear set and a second sun gear of the second planetary gear set; wherein the third rotation element is a second ring gear of the second planetary gear set; and wherein the fourth rotation element is implemented by connecting a first planet carrier of the first planetary gear set and a second planet carrier of the second planetary gear set.
13. The powertrain apparatus of claim 1, wherein the complex planetary gear set includes a first planetary gear set and a second planetary gear set; wherein the first rotation element is implemented by connecting a first ring gear of the first planetary gear set and a second sun gear of the second planetary gear set; wherein the second rotation element is a first sun gear of the first planetary gear set; wherein the third rotation element is implemented by connecting a first planet carrier of the first planetary gear set and a second planet carrier of the second planetary gear set; and wherein the fourth rotation element is a second ring gear of the second planetary gear set.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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[0051] It may be understood that the appended drawings are not necessarily to scale, presenting a somewhat simplified representation of various features illustrative of the basic principles of the present invention. The specific design features of the present invention as included herein, including, for example, specific dimensions, orientations, locations, and shapes will be determined in part by the particularly intended application and use environment.
[0052] In the figures, reference numbers refer to the same or equivalent portions of the present invention throughout the several figures of the drawing.
DETAILED DESCRIPTION
[0053] Reference will now be made in detail to various embodiments of the present invention(s), examples of which are illustrated in the accompanying drawings and described below. While the present invention(s) will be described in conjunction with exemplary embodiments of the present invention, it will be understood that the present description is not intended to limit the present invention(s) to those exemplary embodiments. On the other hand, the present invention(s) is/are intended to cover not only the exemplary embodiments of the present invention, but also various alternatives, modifications, equivalents and other embodiments, which may be included within the spirit and scope of the present invention as defined by the appended claims.
[0054] Referring to
[0055] In the various exemplary embodiments of
[0056] That is, the motor-generator MG is connected to the first sun gear S1, the first brake B1 is configured to fix or release the second sun gear S2 to or from a transmission housing CS, the input shaft IN is connected to the second sun gear S2 through a first clutch CL2 and connected to the first planet carrier C1 and the second ring gear R2 through a second clutch CL2, and the output shaft OUT is connected to the first ring gear R1 and the second planet carrier C2.
[0057] The various exemplary embodiments having the configuration described above in
[0058] The various exemplary embodiments of
[0059] When the one-way clutch OWC is additionally mounted between the input shaft IN and the engine, as described above, it is possible to implement a third stage with a gear ratio of 1:1 in the EV mode and it is possible to remove engine drag when a vehicle is driven in the third stage in the EV mode or performs regenerative braking, whereby efficiency of the vehicle is improved.
[0060] The various exemplary embodiments of
[0061] Since the second brake B2 is further included, a fourth stage is further implemented in the engine mode, as shown in
[0062] The various exemplary embodiments of
[0063] Accordingly, the various exemplary embodiments of
[0064]
[0065] That is, the various exemplary embodiments of
[0066] The various exemplary embodiments of
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[0068] Accordingly, the various exemplary embodiments of
[0069] In the various exemplary embodiments of
[0070] The various exemplary embodiments of
[0071] The various exemplary embodiments of
[0072] The various exemplary embodiments of
[0073] In the eleventh embodiment of
[0074] The twelfth embodiment of
[0075] In the thirteenth embodiment of
[0076] The fourteenth embodiment of
[0077] The fifteenth embodiment of
[0078] The sixteenth embodiment of
[0079] In the seventeenth embodiment of
[0080] The eighteenth embodiment of
[0081] In the nineteenth embodiment of
[0082] The twentieth embodiment of
[0083] The twenty-various exemplary embodiments of
[0084] The twenty-various exemplary embodiments of
[0085] In the twenty-various exemplary embodiments of
[0086] The twenty-various exemplary embodiments of
[0087] As described above, the seventh to twenty-various exemplary embodiments of
[0088] As described above, according to various exemplary embodiments of the present invention, it is possible to achieve an engine mode with three stages, an E-CVT mode, an EV mode, and an in-stop charge mode using a fundamental configuration including a complex planetary gear set CPG including four rotation element, two clutches, and one brake, it is possible to further achieve a third stage in the EV mode by adding a one-way clutch OWC to the fundamental configuration, and it is possible to further achieve a fourth stage in the engine mode by adding a second brake. Accordingly, it is possible to provide various stages in various modes using a simple configuration, whereby it is possible to satisfy power performance required for a vehicle and achieve high fuel efficiency.
[0089] For convenience in explanation and accurate definition in the appended claims, the terms “upper”, “lower”, “inner”, “outer”, “up”, “down”, “upwards”, “downwards”, “front”, “rear”, “back”, “inside”, “outside”, “inwardly”, “outwardly”, “interior”, “exterior”, “internal”, “external”, “inner”, “outer”, “forwards”, and “backwards” are used to describe features of the exemplary embodiments with reference to the positions of such features as displayed in the figures. It will be further understood that the term “connect” or its derivatives refer both to direct and indirect connection.
[0090] Furthermore, the term of “fixedly connected” signifies that fixedly connected members always rotate at a same speed. Furthermore, the term of “selectively connectable” signifies “selectively connectable members rotate separately when the selectively connectable members are not engaged to each other, rotate at a same speed when the selectively connectable members are engaged to each other, and are stationary when at least one of the selectively connectable members is a stationary member and remaining selectively connectable members are engaged to the stationary member”.
[0091] The foregoing descriptions of specific exemplary embodiments of the present invention have been presented for purposes of illustration and description. They are not intended to be exhaustive or to limit the present invention to the precise forms disclosed, and obviously many modifications and variations are possible in light of the above teachings. The exemplary embodiments were chosen and described to explain certain principles of the present invention and their practical application, to enable others skilled in the art to make and utilize various exemplary embodiments of the present invention, as well as various alternatives and modifications thereof. It is intended that the scope of the present invention be defined by the Claims appended hereto and their equivalents.