Power train of automatic transmission
09714692 ยท 2017-07-25
Assignee
Inventors
Cpc classification
F16H2200/0065
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H2200/201
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H2003/442
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H3/666
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H2200/2007
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H2200/2048
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H3/663
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H3/66
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H2200/202
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
The present invention relates to a power train of an automatic transmission, which includes seven rotating elements configured through two planetary gear sets, and selectively fastens three rotating elements through four clutches and three brakes, thereby providing nine forward speeds and one reverse speed.
Claims
1. A power train of an automatic transmission, comprising: a first planetary gear set (100) comprising three rotating elements that are successively rotationally connected to each other, wherein a first rotating element (110) at an outer side is connected to an input shaft (IN) at all times, and second and third rotating elements (120) and (130) are controlled through a first brake (B1) and a second brake (B2) and a first clutch (C1) and a second clutch (C2), respectively; and a second planetary gear set (200) comprising fourth to seventh rotating elements (210) to (240) that are rotationally connected to each other, wherein the fourth rotating element (210) at an outer side is connected to the input shaft (IN) through the third clutch (C3), the fifth rotating element (220) is connected to an output shaft (OUT) at all times, the sixth rotating element (230) is controlled through a third brake (B3) and a fourth clutch (C4), and the seventh rotating element (240) is connected to the first and second clutches (C1) and (C2); wherein a one-way clutch (OWC) is connected to one or more of the second and third rotating elements (120) and (130), and wherein the first to fourth clutches (C1) to (C4), the first to third brakes (B1) to (B3), and the one-way clutch (OWC) in the power train of the automatic transmission are operated according to the following table: TABLE-US-00003 Speed Clutch Brake stage (C1) (C2) (C3) (C4) (B1) (B2) (B3) (OWC) 1 2 3 4 5 6 7 8 9 R wherein and represent that the same shapes are coupled to form a speed stage.
2. A power train of an automatic transmission, comprising: a first planetary gear set (100) comprising three rotating elements that are successively rotationally connected to each other, wherein a first rotating element (110) at an outer side is connected to an input shaft (IN) at all times, and second and third rotating elements (120) and (130) are controlled through a first brake (B1) and a second brake (B2) and a first clutch (Cl) and a second clutch (C2), respectively; and a second planetary gear set (200) comprising fourth to seventh rotating elements (210) to (240) that are rotationally connected to each other, wherein the fourth rotating element (210) at an outer side is connected to the input shaft (IN) through a third clutch (C3), a fifth rotating element (220) is connected to an output shaft (OUT) at all times, a sixth rotating element (230) is controlled through a third brake (B3) and a fourth clutch (C4), and the seventh rotating element (240) is connected to the first and second clutches (C1) and (C2); wherein the first planetary gear set (100) comprises a single or double pinion planetary gear, and the second planetary gear set (200) comprises a Ravigneaux planetary gear, a two-simple planetary gear, a Simpson planetary gear, or a stacked planetary gear in which two planetary gears are combined; wherein a one-way clutch (OWC) is connected to one or more of the second and third rotating elements (120) and (130), and wherein the first to fourth clutches (C1) to (C4), the first to third brakes (B1) to (B3), and the one-way clutch (OWC) in the power train of the automatic transmission are operated according to the following table: TABLE-US-00004 Speed Clutch Brake stage (C1) (C2) (C3) (C4) (B1) (B2) (B3) (OWC) 1 2 3 4 5 6 7 8 9 R wherein and represent that the same shapes are coupled to form a speed stage.
Description
DESCRIPTION OF DRAWINGS
(1) The above and other aspects, features and advantages of the invention will become apparent from the following detailed description in conjunction with the accompanying drawings, in which:
(2)
(3)
(4)
(5)
(6)
(7)
(8)
(9)
BEST MODE
(10) Embodiments of the invention will hereinafter be described in detail with reference to the accompanying drawings. The terms used in this specification and claims must not be limited to typical or lexical meanings, and analyzed into meanings and concepts which coincide with the technical idea of the present invention under the principle that the inventor can properly define the concepts of the terms in order to describe the invention through the best method.
(11) Therefore, the embodiments described in this specification and the structures illustrated in the drawings are only examples, and may include all of variations, equivalents, and substitutes within the scope of the present invention.
(12) (Construction)
(13) The present invention relates to a power train of an automatic transmission, which includes seven rotating elements through two planetary gears. Among the rotating elements, three rotating elements may be selectively fastened through three brakes and four brakes so as to provide forward nine speeds and one reverse speed.
(14) In particular, any one of the planetary gear sets may use a single pinion planet gear or double pinion planetary gear, and the other one may use a Ravigneaux planetary gear, a Simpson planetary gear, a two simple planetary gear, or a stacked planetary gear in which two planetary gears are combined.
(15) Hereafter, the power train of the automatic transmission will be described in more detail with reference to embodiments.
(16) [First Embodiment]
(17) As illustrated in
(18) The first planetary gear set 100 may include three rotating elements, that is, first to third rotating elements 110 and 130 which are engaged with each other. In particularly, the first rotating element 110 at an outer side may be connected to an input shaft IN at all times. At this time, outer may indicate a sun gear of the planetary gear as the fastest component.
(19) The power transmission and interruption of the second and third rotating elements 120 and 130 may be controlled through the brakes B1 and B2 and the clutches C1 and C2, respectively. The second and third rotating elements 120 and 130 may correspond to a carrier and a ring gear of a planetary gear.
(20) Furthermore, the power transmitted through the clutches C1 and C2 may be transmitted to the second planetary gear set 200 which will be described below.
(21) The second planetary gear set 200 may include first to fourth rotating elements 210 to 240. The first rotating element 210 at an outer side may be directly connected to the input shaft IN through the clutch C3. Furthermore, the fourth rotating element 240 at the other outer side may be connected to the first planetary gear set 100 through the clutches C1 and C2.
(22) Between the outer sides, the second and third rotating elements 220 and 230 may be installed. The second rotating element 220 may be directly connected to an output shaft OUT. Furthermore, the power of the third rotating element 230 may be selectively controlled through the brake B3 and the clutch C4.
(23) As depicted in Table 1 below, the power train in accordance with the embodiment of the present invention may exhibit gear speed stages of nine forward speeds and one reverse speed through the operations of the clutches C1 to C4 and the brakes B1 to B3 according to a speed map illustrated in
(24) TABLE-US-00001 TABLE 1 Speed Clutch Brake stage C1 C2 C3 C4 B1 B2 B3 1 2 3 4 .circle-solid. .diamond-solid. .circle-solid. .diamond-solid. 5 6 7 8 .circle-solid. .diamond-solid. .circle-solid. .diamond-solid. 9 R .diamond-solid. and .circle-solid. represent that the same shapes are coupled to form a speed stage.
(25)
(26) In the embodiment of the present invention, it has been described that the second planetary gear set is a stacked planetary gear. However, although a Ravigneaux planetary gear, a Simpson planetary gear, or a two simple planetary gear is applied, the same effect can be obtained.
(27) [Second Embodiment]
(28) In a second embodiment of the present invention, the same components as those of the first embodiment are represented by like reference numerals, and the detailed descriptions thereof are omitted herein.
(29) As illustrated in
(30) In particular, the one-way clutch OWC may control the second rotating element 120 at the first speed stage as depicted in Table 2 below, thereby preventing a slip at starting.
(31) TABLE-US-00002 TABLE 2 Speed Clutch Brake stage C1 C2 C3 C4 B1 B2 B3 OWC 1 2 3 4 .circle-solid. .diamond-solid. .circle-solid. .diamond-solid. 5 6 7 8 .circle-solid. .diamond-solid. .circle-solid. .diamond-solid. 9 R .diamond-solid. and .circle-solid. represent that the same shapes are coupled to form a gear shift stage.
(32)
(33) [Third Embodiment]
(34) As illustrated in
(35) The single pinion planetary gear 100 may include three rotating elements, that is, a sun gear S1, a ring gear R1, and a carrier Ca1, as a single planetary gear. At this time, the sun gear S1 may be connected to the input shaft IN.
(36) The power transmission and interruption of the ring gear R1 and the carrier Ca1 may be controlled through the brakes B1 and B2 and the clutches C1 and C2, respectively. At this time, the brakes B1 and B2 and the clutches C1 and C2 may control the ring gear R1 and the carrier Ca1 such that the same operation as the above-described first embodiment can be performed.
(37) The stacked planetary gear 200 may have a structure in which a pair of single planetary gears are stacked, and have four rotating elements. Substantially, the stacked planetary gear 200 may include six rotating elements because the pair of planetary gears are provided. Among the rotating elements, however, a pair of carriers Ca2 and Ca3 may be rotated at the same time, and a ring-sun gear R-S including any one ring gear and any one sun gear may be operated at the same time. The carrier may serve to fix a plurality of planetary gears. The ring-sun gear R-S may selectively receive power from the input shaft IN through the clutch C3.
(38) The pair of carriers Ca2 and Ca3 may be rotated together as described above. The output shaft OUT may be connected to the carriers Ca2 and Ca3, and the carriers Ca2 and Ca3 may be engaged with the ring-sun gear R-S.
(39) Furthermore, the carrier Ca2 may be engaged with the ring gear R2. The power transmission and interruption of the ring gear R2 may be controlled through the brake B3 and the clutch C4. The clutch C4 may control the ring gear R2 to transmit power from the input shaft IN or interrupt power from the input shaft IN.
(40) The other carrier Ca3 may be engaged with the sun gear 52. At this time, the sun gear 52 may receive power through the clutches C1 and C2 of the single pinion planetary gear 100.
(41) The power train in accordance with the third embodiment of the present invention may be configured in substantially the same manner as the first embodiment, and provide nine forward speeds and one reverse speed according to the speed map thereof.
(42) [Fourth Embodiment]
(43) As illustrated in
(44) The double pinion planetary gear 100 may include a carrier C, a sun gear S1, and a ring gear R. Since the sun gear S1 has the same structure as that of the third embodiment, the detailed descriptions thereof are omitted herein.
(45) The ring gear R may be configured in the same manner as the third embodiment. The power train in accordance with the fourth embodiment may further include a one-way clutch OWC to prevent a slip at starting.
(46) The power train may include a pair of carriers C. As described with reference to the third embodiment, the carriers C may transmit an output to the stacked planetary gear 200 while being selectively controlled through the clutch C1. The carriers C may have the same structure as those of the above-described embodiment, except that the carriers C are provided as the pair of carriers. Thus, the detailed descriptions thereof are omitted herein.
(47) In the fourth embodiment of the present invention, it has been described that the stacked planetary gear 200 is used. However, although a Ravigneaux planetary gear, a Simpson planetary gear, or a two simple planetary gear is applied, the same effect can be obtained.
(48) As described above, the power train in accordance with the embodiments of the present invention include seven rotating elements configured through two planetary gear sets, and operate three rotating elements using three brakes and four clutches, thereby providing nine forward speeds and one reverse speed.