COMPACT DRIVELINE
20220185105 · 2022-06-16
Inventors
Cpc classification
F16H2200/0004
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H2037/049
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B60K17/02
PERFORMING OPERATIONS; TRANSPORTING
F16H2003/0811
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H57/0441
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H2200/2064
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B60K2025/022
PERFORMING OPERATIONS; TRANSPORTING
B60Y2200/15
PERFORMING OPERATIONS; TRANSPORTING
F16H2003/0818
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H2200/0086
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H3/14
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H2200/0034
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
A system for a driveline is provided. In one example a driveline may include a first and a second input shaft gear disposed on an input shaft. In one example, the first input shaft gear may selectively drivingly engage with the input shaft via a first clutch and the second input shaft gear may selectively drivingly engage with the input shaft via a second clutch. In another example, a first and a second counter shaft gear may be disposed on a countershaft and drivingly engage with the countershaft, wherein the first input shaft gear drivingly engages with the first countershaft gear and the second input shaft gear is drivingly engages with the second countershaft gear via an idler gear.
Claims
1. A driveline, comprising: a first and a second input shaft gear disposed on an input shaft, wherein the first input shaft gear is selectively drivingly engaged with the input shaft via a first clutch and the second input shaft gear is selectively drivingly engaged with the input shaft via a second clutch; a first and a second countershaft gear disposed on a countershaft and drivingly engaged with the countershaft; wherein the first input shaft gear is drivingly engaged with the first countershaft gear and the second input shaft gear is drivingly engaged with the second countershaft gear via an idler gear.
2. The driveline according to claim 1, wherein the first input shaft gear is in meshing engagement with the first countershaft gear, the second input shaft gear is in meshing engagement with the idler gear and the idler gear is in meshing engagement with the second countershaft gear.
3. The driveline according to claim 1, wherein the first and the second clutch are disposed on and coaxial with the input shaft.
4. The driveline according to claim 1, wherein the first countershaft gear and the second countershaft gear are rigidly mounted on the countershaft.
5. The driveline according to claim 1, wherein an absolute value of a first gear ratio between the first input shaft gear and the first countershaft gear equals an absolute value of a second gear ratio between the second input shaft gear and the second countershaft gear.
6. The driveline according to claim 5, wherein the absolute value of the first gear ratio and the absolute value of the second gear ratio are equal to one.
7. The driveline according to claim 1, further comprising an output shaft and an output shaft gear disposed on and drivingly engaged with the output shaft, wherein the output shaft gear is in meshing engagement with the first countershaft gear.
8. The driveline according to claim 7, wherein the output shaft gear is rigidly mounted on the output shaft.
9. The driveline according to claim 5, wherein an absolute value of a drive ratio between the input shaft and the output shaft equals one.
10. The driveline according to claim 1, further comprising an engine in driving engagement with the input shaft.
11. The driveline according to claim 10, wherein an output shaft of the engine is rigidly connected to or made in one piece with the input shaft.
12. The driveline according to claim 10, further including a torque converter comprising an impeller portion and a turbine portion, wherein the engine is drivingly engaged with the impeller portion and wherein an output shaft of the turbine portion is made in one piece with the input shaft.
13. The driveline according to claim 12, including a power take-off drivingly engaged or in mesh with the impeller portion.
14. The driveline according to claim 1, wherein the first and/or the second clutch is a friction clutch, a dog clutch or a synchronizer clutch.
15. The driveline according to claim 14, wherein the first and the second clutch are multi-plate clutches.
Description
BRIEF DESCRIPTION OF THE FIGURES
[0021] Embodiments of the presently proposed driveline are described in the following detailed description and are illustrated in the accompanying figures in which
[0022]
[0023]
[0024]
DETAILED DESCRIPTION
[0025] In
[0026] Further, the first and the second clutch 140, 150 are disposed on the input shaft 110 and coaxial with the input shaft 110. For example, the first and the second clutch 140, 150 may comprise a common outer plate carrier and may each include a separate inner plate carrier. The outer plate carrier may be rigidly connected to the input shaft 110, and the inner plate carrier of the first clutch 140 and the inner plate carrier of the second clutch 150 may be connected to or engaged with the first input shaft gear 120 and the second input shaft gear 130, respectively. For example, the outer plate carrier can be connected to or engaged with the input shaft 110, and the first and the second input shaft gears 120, 130 can be provided on hollow shafts coaxially disposed on the input shaft 110 and selectively engaged with the input shaft via the first and the second clutch 140, 150.
[0027] In general, the first and/or the second clutch 140, 150 can include a friction clutch, a dog clutch, or a synchronizer clutch, for example. However, it is understood that the first clutch 140 and/or the second clutch 150 may include other types of clutching devices configured to selectively drivingly engage the input shaft gears 120, 130 with the input shaft 110. For instance, both clutches are multi-plate clutches.
[0028] The driveline 10 further includes an output shaft 310 with an output shaft gear 320 disposed on and drivingly engaged with the output shaft 310. The output shaft gear 320 may be rigidly mounted on the output shaft 310. The output shaft 310 comprises an output flange 330 for transferring torque to the wheels of a vehicle, for example.
[0029] According to the presented embodiment, the first input shaft gear 120 is in meshing engagement with the first countershaft gear 220, the second input shaft gear 130 is in meshing engagement with the idler gear 240, and the idler gear 240 is in meshing engagement with the second countershaft gear 230. The output shaft gear 320 is in meshing engagement with the first countershaft gear 220. It is understood that the driveline 10 may comprise alternative lay-outs, wherein further gears and/or clutches are provided to drivingly engage the input shaft 110 with the output shaft 310. However, the presently described embodiment reduces or minimizes transmission losses between the input shaft 110 and the output shaft 310 and may have a compact layout.
[0030] An absolute value of a first gear ratio between the first input shaft gear 120 and the first countershaft gear 220 may be equal to an absolute value of a second gear ratio between the second input shaft gear 130 and the second countershaft gear 230. For instance, the absolute value of the first gear ratio and the absolute value of the second gear ratio may be equal to one. In addition, an absolute value of a drive ratio between the input shaft 110 and the output shaft 310 may be equal to one. As a result, a lx1 transmission with two drive modes is provided. A forward drive mode is provided by engaging the first clutch 140 and by disengaging the second clutch 150, and a reverse drive mode is provided by engaging the second clutch 150 and by disengaging the first clutch 140.
[0031] For instance, the first input shaft gear 120, the first countershaft gear 220 and the output shaft gear 320 may comprise an equal number of gear teeth. In addition, the second input shaft gear 130 and the second countershaft gear 230 may comprise an equal number of gear teeth. The number of gear teeth of the first input shaft gear 120, the first countershaft gear 220 and of the output shaft gear 320 may be larger than a number of gear teeth of the idler gear 240, and the number of gear teeth of the idler gear 240 may be larger than the number of gear teeth of the second input shaft gear 130 and the second countershaft gear 230. For example, the number of gear teeth of the first input shaft gear 120, the first countershaft gear 220 and of the output shaft gear 320 may be 54, the number of gear teeth of the idler gear 240 may be 28, and the number of gear teeth of the second input shaft gear 130 and the second countershaft 230 gear may be 27.
[0032] The driveline 10 may further include an engine 410 in driving engagement with the input shaft 110 through a torque converter 420. The torque converter 420 comprises an impeller portion and a turbine portion, wherein the engine 410 is drivingly engaged with the impeller portion and the input shaft 110 is drivingly engaged with an output shaft of the turbine portion. For instance, the input shaft 110 may be made in one piece with the output shaft of the turbine portion.
[0033] However, as an alternative, the engine 410 may be directly drivingly engaged with the input shaft 110 and, for instance, the output shaft of the engine 410 may be made in one piece with the input shaft 110.
[0034] The engine 410 may be or may comprise a combustion engine, e.g. a diesel engine or an LP gas engine, an electric engine, or a hybrid engine.
[0035] The driveline 10 according to
[0036] The PTO gear train may provide an additional power output for a working function and/or the driveline 10 itself. For instance, the PTO gear train 500 may drive a driveline hydraulic pump, for example for actuation of the first and the second clutch 140, 150, and/or drive a working function hydraulic pump, for example for fork lift working operations. The power outputs of the PTO gear train 500 may be drivingly engaged with the third PTO gear 540 and/or the third PTO gear 540 and the second PTO gear 530. An absolute value of a gear ratio between the third PTO gear 540 and the first PTO gear 520 may be smaller than one. An absolute value of a gear ratio between the second PTO gear 530 and the first PTO gear 520 may be smaller than one. For example, the number of gear teeth of the first PTO gear 520 may be 35, the number of gear teeth of the second PTO gear 530 may be 31, and the number of gear teeth of the third PTO gear 540 may be 34.
[0037] Finally, the driveline 10 provided in
[0038]
[0039]
[0040]
[0041] The powershift driveline presented herein may provide a power output of up to 60 kW while keeping a very short length form engine to output flange.
[0042] It will be appreciated that the configurations herein are exemplary in nature, and that these specific examples are not to be considered in a limiting sense, because numerous variations are possible. For example, the above technology can be applied to a variety of systems that include electric motors. The subject matter of the present disclosure includes all novel and non-obvious combinations and sub-combinations of the various systems and configurations, and other features, functions, and/or properties disclosed herein.
[0043] As used herein, the terms “approximately” and “substantially” are construed to mean plus or minus five percent of the range unless otherwise specified.
[0044]
[0045] The following claims particularly point out certain combinations and sub-combinations regarded as novel and non-obvious. These claims may refer to “an” element or “a first” element or the equivalent thereof. Such claims should be understood to include incorporation of one or more such elements, neither requiring nor excluding two or more such elements. Other combinations and sub-combinations of the disclosed features, functions, elements, and/or properties may be claimed through amendment of the present claims or through presentation of new claims in this or a related application. Such claims, whether broader, narrower, equal, or different in scope to the original claims, also are regarded as included within the subject matter of the present disclosure.