Transmission for electric vehicle
10598257 ยท 2020-03-24
Assignee
Inventors
- Soon Ki Eo (Ansan-si, KR)
- Min Ho Chae (Incheon, KR)
- Sun Sung Kwon (Anyang-si, KR)
- Ma Ru Kang (Yongin-si, KR)
Cpc classification
F16H2200/2041
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H2200/2038
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H2200/2097
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B60K17/02
PERFORMING OPERATIONS; TRANSPORTING
F16H2200/0039
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H1/46
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H3/46
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H2200/0021
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H1/28
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B60K2001/001
PERFORMING OPERATIONS; TRANSPORTING
F16H2200/2007
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16H3/46
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H1/28
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H1/46
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A transmission for electric vehicle may include first input shaft connected to motor, first planetary gear set including first rotation element selectively connectable to the first input shaft and third rotation element which is fixed, second planetary gear set including first rotation element directly connected to the first input shaft and third rotation element directly connected to second rotation element of the first planetary gear set, first clutch selectively connecting the first input shaft and second rotation element of the second planetary gear set, output shaft, driving gear rotating with the second rotation element of the second planetary gear set, driven gear engaged with the driving gear, second clutch selectively connecting the first rotation element of the first planetary gear set to the first input shaft, and third clutch disposed to fix or engage the third rotation element of the second planetary gear set with the driving gear.
Claims
1. A transmission for a vehicle, the transmission comprising: a first input shaft fixedly connected to a motor, a second input shaft; a first planetary gear set including three rotation elements having: a first rotation element rotatably mounted on the first input shaft and selectively connectable to the first input shaft; a second rotation element; and a third rotation element fixedly connected to a transmission housing, a second planetary gear set including three rotation element having: a first rotation element fixedly connected to the first input shaft; a second rotation element; and a third rotation element fixedly connected to the second rotation element of the first planetary gear set; a first clutch mounted between the first input shaft and the second rotation element of the second planetary gear set and configured to selectively connect the first input shaft and the second rotation element of the second planetary gear set; an output shaft; a driving gear fixed to the second input shaft which is fixedly connected to the second rotation element of the second planetary gear set and rotating integrally with the second rotation element of the second planetary gear set; a driven gear disposed on the output shaft and engaged with the driving gear, a second clutch mounted on the first input shaft and selectively connecting the first rotation element of the first planetary gear set to the first input shaft; and a third clutch mounted to selectively connect the third rotation element of the second planetary gear set with the driving gear.
2. The transmission of claim 1, wherein the first planetary gear set is a simple single pinion planetary gear set, wherein the first rotation element of the first planetary gear set is a first sun gear, the second rotation element of the first planetary gear set is a first planet carrier, and the third rotation element of the first planetary gear set is a first ring gear, and wherein the second planetary gear set is a simple single pinion planetary gear set, wherein the first rotation element of the second planetary gear set is a second sun gear, the second rotation element of the second planetary gear set is a second planet carrier, and the third rotation element of the second planetary gear set is a second ring gear.
3. The transmission of claim 2, wherein the first clutch is a friction clutch that is configured to transmit power using friction, and wherein the second clutch and the third clutch are engaging parts that are configured to transmit power by engaging with a gear.
4. A transmission for a vehicle, the transmission including a first input shaft fixedly connected to a motor; a second input shaft; a first planetary gear set and a second planetary gear set disposed on the first input shaft, each including three rotation elements, in which one rotation element of the three rotation elements in the first planetary gear set and one rotation element of the three rotation elements in the second planetary gear set are continuously connected to each other; a first clutch mounted to selectively connect remaining two rotation elements of the second planetary gear set; a second clutch mounted to selectively connect one of remaining two rotation elements of the first planetary gear set and one of the remaining rotation elements of the second planetary gear set except for the continuously connected rotation elements; a third clutch mounted to restrict a rotation of the continuously connected rotation elements of the first planetary gear set and the second planetary gear set; and an output shaft engaged to the second planetary gear set and receiving torque from the second planetary gear set.
5. The transmission of claim 4, wherein the first planetary gear set is a simple single pinion planetary gear set, in which the three rotation elements of the first planetary gear set are a first sun gear rotatably mounted on the first input shaft, a first planet carrier, and a first ring gear, respectively, wherein the second planetary gear set is a simple single pinion planetary gear set, in which the three rotation elements of the second planetary gear set are a second sun gear, a second planet carrier, and a second ring gear fixed to the first planet carrier of the first planetary gear set, respectively, wherein the continuously connected rotation elements are the first planet carrier and the second ring gear, wherein the first ring gear is fixedly connected to a transmission housing, and wherein the second sun gear is continuously connected to the first input shaft, and wherein the second planet carrier is fixedly connected to the second input shaft.
6. The transmission of claim 5, wherein the first clutch is mounted between the second sun gear and the second planet carrier of the second planetary gear set to selectively connect the second sun gear and the second planet carrier of the second planetary gear set, and wherein the second clutch is mounted on the first input shaft and selectively connects the first sun gear of the first planetary gear set and the second sun gear of the second planetary gear set.
7. The transmission of claim 6, wherein the output shaft receives power through a driving gear fixedly connected to the second input shaft and the second planet carrier of the second planetary gear set and through a driven gear disposed on the output shaft, the driven gear engaged with the driving gear.
8. The transmission of claim 7, wherein the third clutch selectively connects the driving gear and the second ring gear of the second planetary gear set.
9. The transmission of claim 8, wherein the third clutch switches a state of disconnecting a rotation of the first planet carrier which is fixed to the second ring gear from the driving gear, and a state of connecting the first planet carrier and the second ring gear to the driving gear.
10. The transmission of claim 8, wherein the third clutch switches a state of restricting a rotation of the first planet carrier and the second ring gear from the driving gear, and a state of connecting the second ring gear to the second planet carrier and the driving gear.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1)
(2)
(3) 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 wherein 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.
(4) In the figures, reference numbers refer to the same or equivalent parts of the present invention throughout the several figures of the drawing.
DETAILED DESCRIPTION
(5) 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 invention(s) will be described in conjunction with exemplary embodiments, it will be understood that the present description is not intended to limit the invention(s) to those exemplary embodiments. On the other hand, the invention(s) is/are intended to cover not only the exemplary embodiments, but also various alternatives, modifications, equivalents and other embodiments, which may be included within the spirit and scope of the invention as defined by the appended claims.
(6) Referring to
(7) That is, the transmission of the present invention is configured to output power from a motor which is input to the first input shaft IN1 to the output shaft OUT through the driving gear G1 and the driven gear G2 by appropriately changing the power using the first clutch CL1, the second clutch CL2, and the third clutch CL3 that control the first planetary gear set PG1 and the second planetary gear set PG2 and the rotation elements of the planetary gear sets.
(8) In the exemplary embodiment of the present invention, an output gear OG is integrally disposed on the output shaft OUT to be configured to output power to driving wheels through a differential DF.
(9) The first planetary gear set PG1 is a simple single pinion planetary gear set, in which the first rotation element is a first sun gear S1, the second rotation element is a first planet carrier C1, and the third rotation element is a first ring gear R1 wherein the second planetary gear set PG2 is a simple single pinion planetary gear set, in which the first rotation element is a second sun gear S2, the second rotation element is a second planet carrier C2, and the third rotation element is a second ring gear R2.
(10) The first clutch CL1 is a friction clutch that can transmit power using friction, and the second clutch CL2 and the third clutch CL3 are engaging parts that can transmit power by engaging with a gear.
(11) The friction clutch can transmit power using friction which is generated on a friction surface by pressure from the outside. Furthermore, the friction clutch may be, for example, a friction disc type clutch that can adjust the magnitude of friction in accordance with the pressure.
(12) The engaging parts are mechanisms that can engage and disengage a gear such as dog clutch or a synchronizer and keep gears engaged even though power is not separately provided from the outside thereof once the gears are engaged. Accordingly, as described below, power is not separately consumed while a vehicle keeps driving in a gear engaged with the engaging parts, so they can contribute to increasing the mileage of a vehicle and improving fuel efficiency.
(13) The transmission for an electric vehicle having the present configuration in accordance with various aspects of the present invention may be referred to as follows.
(14) That is, the transmission for an electric vehicle of the present invention may include a first input shaft IN1 directly connected to a motor, a first planetary gear set PG1 and a second planetary gear set PG2 disposed on the first input shaft IN1, each including three rotation elements, in which one rotation element of three rotation elements and one rotation element of the other three rotation elements are continuously connected to each other, a first clutch CL 1 disposed to connect or disconnect two rotation elements of the second planetary gear set PG2, a second clutch CL2 disposed to connect or disconnect the other rotation elements of the first planetary gear set PG1 and the other rotation elements of the second planetary gear set PG2 except for the continuously connected rotation elements, a third clutch CL3 disposed to restrict rotation of the continuously connected rotation elements of the first planetary gear set PG1 and the second planetary gear set PG2, and an output shaft OUT disposed to receive torque from the second planetary gear set PG2.
(15) The first planetary gear set PG1 is a simple single pinion planetary gear set, in which the three rotation elements are a first sun gear S1, a first planet carrier C1, and a first ring gear R1, the second planetary gear set PG2 is a simple single pinion planetary gear set, in which the three rotation elements are a second sun gear S2, a second planet carrier C2, and a second ring gear R2, the continuously connected rotation elements are the first planet carrier C1 and the second ring gear R2, the first ring gear R1 is fixedly connected to a stationary member such as a transmission housing CS, and the second sun gear S2 is continuously connected to the first input shaft IN1.
(16) The first clutch CL1 is disposed to connect or disconnect the second sun gear S2 and the second planet carrier C2 of the second planetary gear set PG2 and the second clutch CL2 is disposed to connect or disconnect the first sun gear S1 of the first planetary gear set PG1 and the second sun gear S2 of the second planetary gear set PG2.
(17) The output shaft OUT receives power through a driving gear G1 directly connected to the second planet carrier C2 of the second planetary gear set PG2 and a driven gear G2 disposed on the output shaft OUT to engage with the driving gear G1.
(18) The third clutch CL3 can switch a state of restricting rotation of the continuously connected first planet carrier C1 and second ring gear R2 and a state of connecting the first planet carrier C1 and the second ring gear R2 to the driving gear G1.
(19) That is, the third clutch CL3 can switch a state of restricting rotation of the first planet carrier C1 and the second ring gear R2 and a state of connecting the second ring gear R2 to the second planet carrier C2.
(20) A shifting process by the transmission for an electric vehicle having the present configuration of the present invention is described with reference to
(21)
(22) When the motor is driven in the state shown in
(23)
(24)
(25) When the second clutch CL2 is engaged and the first clutch CL1 is disengaged by controlling the first clutch CL1 in the state shown in
(26) In the state shown in
(27) Obviously, the power from the second planet carrier C2 is output to the differential DF through the driving gear G1, the driven gear G2, and the output shaft OUT.
(28)
(29) The third-gear state shown in
(30) Therefore, it is possible to increase the mileage of a vehicle and improve fuel efficiency by minimizing energy which is consumed while the vehicle is driven. Furthermore, it is possible to provide desired power to driving wheel even using a relatively small-capacity motor through multiple reduction of reduction by the first planetary gear set PG1 and the second planetary gear set PG2, reduction between the driving gear G1 and the driven gear G2, and reduction between the output gear OG and the differential DF. Accordingly, it is possible to decrease capacity of a motor and improve fuel efficiency of a vehicle accordingly.
(31) For convenience in explanation and accurate definition in the appended claims, the terms upper, lower, inner, outer, up, down, upper, lower, upwards, downwards, front, rear, back, inside, outside, inwardly, outwardly, 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.
(32) 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 invention to the precise forms disclosed, and obviously many modifications and variations are possible in light of the above teachings wherein the exemplary embodiments were chosen and described to explain certain principles of the 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 invention be defined by the Claims appended hereto and their equivalents.