TRANSMISSION SYSTEM
Transmission system (TS) comprising: a clutch module (CM) having an input (In) and a first and a second output (O1, O2), wherein between the first output and the input, a first clutch device (B, B1, C2) provided with first actuating means is present, and between the second output and the input a second clutch device (C, B2) with second actuating means is present, and a transmission module (TM), with an output (Out) and a first and a second input (i1, i2), wherein between the first input and the output, a first partial transmission provided with at least one transmission (VAR) is present, and between the second input and the output a second partial transmission provided with at least one further transmission or a mechanical connection is present, in which the two outputs (O1, O2) of the clutch module are connected to the two inputs (i1, i2) of the transmission module. The transmission system further comprises a short-circuit clutch (S), which is present between the two outputs of the clutch module and/or the two inputs of the transmission module. The transmission (VAR) inside the first partial transmission is continuously variable within a specified transmission range.
This application is a continuation of U.S. application Ser. No. 14/417,093, filed Jan. 23, 2015, now allowed, which is a U.S. National Stage application under 35 U.S.C. § 371 of International Application PCT/NL2013/050552 (published as WO 2014/017905 A1), filed Jul. 24, 2013, which claims the benefit of priority to NL 2009227, filed Jul. 24, 2012. Benefit of the filing date of each of these prior applications is hereby claimed. Each of these prior applications is hereby incorporated by reference in its entirety.
FIELD OF THE INVENTIONThe invention relates to a transmission system comprising:
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- a clutch module having an input and a first and a second output, wherein between the first output and the input, a first clutch device provided with first actuating means is present, and between the second output and the input a second clutch device with second actuating means is present, and
- a transmission module, with an output and a first and a second input, wherein between the first input and the output, a first partial transmission provided with at least one transmission is present, and between the second input and the output a second partial transmission provided with at least one further transmission or a mechanical connection is present,
- in which the two outputs of the clutch module are connected to the two inputs of the transmission module.
Such a transmission system is generally known.
SUMMARY OF THE INVENTIONIt is an object of the present invention to improve the known transmission system. To this end the transmission system according to the invention is characterized in that:
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- the transmission system comprises a short-circuit clutch, which is present between the two outputs of the clutch module and/or the two inputs of the transmission module, and
- the transmission inside the first partial transmission is continuously variable within a specified transmission range.
For embodiments of the transmission system according to the invention, reference is made to the appended claims.
The invention further relates to a transmission system for a vehicle, comprising an input, which can be connected to a drive source, and an output, which can be connected to a load, comprising:
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- a transmission provided with a transmission housing with a first input shaft and an output shaft connected to the output, wherein a first switchable speed transforming gear is present between the first input shaft and the output shaft,
- a clutch with a first clutch part, which is connected to the input, and a second clutch part, which is connected to the first input shaft of the transmission, and
- a planetary gear with at least three rotational members of which a first rotation body is connected to the input, and a second rotation body is coupled to the output,
- wherein the transmission further comprises a second input shaft, wherein between the second input shaft and the output shaft a second switchable speed transforming gear is present, and wherein the second rotational member of the planetary gear is connected with the second input shaft.
With respect to this transmission system, the invention is characterized in that a third rotational member of the planetary gear is connected to an electric motor.
An embodiment of this transmission system is characterized in that the third rotation body is further connected to a brake.
The invention will be further elucidated below on the basis of drawings. These drawings show embodiments of the transmission system according to the method in the present invention.
In
Examples of mechanical variable speed drives are:
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- a pulley variable speed drive with push belt or chain,
- a cone-ring variable speed drive with two cones and a ring,
- a planetary gear with at least three rotational members of which a third rotational member can support torque to the fixed world via actuating means.
In these embodiments:
- A=drive source
- L=load
- TS=transmission system
- In=input of transmission system
- Out=output of transmission system
- CM=clutch module
- O1, O2=outputs of clutch module
- TM=transmission module
- i1, i2=inputs of transmission module
- C, C1=clutches
- B,B1,B2=brakes
- P=planetary gear set
- VAR=variable speed drive
- T1, T2=first and second partial transmissions
- I, I1, I2, I11, I22=speed transforming gears
- S=short circuit clutch
- S1, S2, SR, S11, S22=transmission clutches
- IF=final speed transforming gear
- IR=reverse speed transforming gear
- EM=electric motor
In
Now the claw coupling and/or synchronizer S can be decoupled and S1 can be closed. By switching back again from the brake to the clutch drive can be performed via the variable speed drive and the higher gears can be realized. Thus there are two toothed gears with which driving from stand still is possible and the 3 gear and higher gears (3-10) can be realized with the variable speed drive. Because of this an extremely large ratio coverage can be achieved. In addition, the variable speed drive can be much smaller (RC between 3 and 4).
Now the claw coupling and/or synchronizer S can be decoupled and S1 can be closed. By switching back again from the brake to the clutch drive can be performed via the variable speed drive and the higher gears can be realized. Now switching from clutch to brake can be performed so that the ratio coverage can still be increased. Thus there are two toothed gears with which driving from stand still is possible and the 3rd and 4th gears can be realized with the variable speed drive. Because of this an extremely large ratio coverage can be achieved. In addition, the variable speed drive can be much smaller (RC between 2.5 and 3.5).
In the embodiments shown in
In the embodiments shown in
The transmission system shown in
Although the present invention is elucidated above on the basis of the given drawings, it should be noted that this invention is not limited whatsoever to the embodiments shown in the drawings. The invention also extends to all embodiments deviating from the embodiments shown in the drawings within the context defined by the claims.
Claims
1. A transmission system comprising:
- a clutch module having an input, a first output connected to a first input to a transmission module, and a second output connected to a second input to the transmission module, the clutch module comprising a first clutch device between the input and the first output of the clutch module and further comprising a second clutch device between the input and the second output of the clutch module;
- the transmission module comprising:
- a first partial transmission having at least one transmission, the first partial transmission connected along the first input to the transmission module;
- a second partial transmission having at least one further transmission or a mechanical connection, the second partial transmission connected along the second input to the transmission module,
- wherein the second partial transmission is a final speed transforming gear.
2. The transmission system of claim 1, wherein the second clutch device is connected along the second input to the transmission module.
3. The transmission system of claim 1, wherein the final speed transforming gear is connected to an output of the transmission module, and further connected to both an output of the first partial transmission and the second input to the transmission module.
4. The transmission system of claim 1, wherein the at least one transmission of the first partial transmission is a variable speed drive.
5. The transmission system of claim 4, wherein the variable speed drive is mechanical, hydraulic, electrical, or a combination thereof.
6. The transmission system of claim 5, wherein the variable speed drive is mechanical and is selected from the group consisting of (i) a pulley variable speed drive with a push belt or chain, (ii) a cone-ring variable speed drive with two cones and a ring, and (iii) a planetary gear with at least three rotational members.
7. The transmission system of claim 1, wherein the first partial transmission comprises first and second intermediate speed transforming gears, connected in parallel along the first input to the transmission module.
8. The transmission system of claim 7, further comprising a short circuit clutch between the first and second intermediate speed transforming gears.
9. The transmission system of claim 7, further comprising a transmission clutch between the first output of the clutch module and the first intermediate speed transforming gear.
10. The transmission system of claim 7, further comprising both a short circuit clutch between the first and second intermediate speed transforming gears and a transmission clutch between the first output of the clutch module and the first intermediate speed transforming gear.
11. The transmission system of claim 7, wherein the at least one transmission of the first partial transmission is a variable speed drive, between the first intermediate speed transforming gear and the final speed transforming gear.
12. The transmission system of claim 11, wherein the first partial transmission comprises the first and second intermediate speed transforming gears, connected in parallel along the first input to the transmission module, and further comprises the variable speed drive, between the first intermediate speed transforming gear and the final speed transforming gear, the first partial transmission further comprising:
- a short circuit clutch between the first and second intermediate speed transforming gears; and
- a transmission clutch between the first output of the clutch module and the first intermediate speed transforming gear.
13. The transmission system of claim 12, wherein the short circuit clutch is further between the first output of the clutch module and the second intermediate speed transforming gear.
14. The transmission system of claim 12, wherein the second intermediate speed transforming gear is between the short circuit clutch and the final speed transforming gear.
15. The transmission system of claim 12, wherein the first intermediate speed transforming gear is between the transmission clutch and the variable speed drive.
16. A transmission system comprising:
- a clutch module having an input, a first output connected to a first clutch device, and a second output connected to a second clutch device,
- wherein the first clutch device is further connected to a partial transmission having a variable speed drive, the partial transmission further connected along a first input to a transmission module; and
- wherein the second clutch device is further connected along a second input to the transmission module,
- wherein the first partial transmission comprises:
- a transmission clutch and a short circuit clutch, the transmission clutch connected along a first connection path from the first output of the clutch module and the short circuit clutch connected along a second connection path from the first output of the clutch module;
- a first intermediate speed transforming gear, connected between the transmission clutch and the variable speed drive, along the first connection path;
- a second intermediate speed transforming gear, connected between the short circuit clutch and the final speed transforming gear, along the second connection path,
- wherein the first connection path from the variable speed drive and the second connection path from the second intermediate speed transforming gear, in combination, form the first input to the transmission module,
- wherein both the first and second inputs to the transmission module are connected to a final speed transforming gear that is further connected to an output of the transmission module.
17. A transmission system comprising:
- a clutch module having an input, a clutch device between the input and a first output of the clutch module, and a planetary gear set between the input and a second output of the clutch module,
- wherein the first and second outputs of the clutch module are connected through a partial transmission to a final speed transforming gear that is further connected to an output of the transmission module,
- wherein the partial transmission comprises a plurality of parallel connection paths, each connection path connecting a speed transforming gear and respective transmission clutch, and further wherein a short circuit clutch is between two of said connection paths.
18. The transmission system of claim 17, wherein the plurality of parallel connection paths are four parallel connection paths, and further wherein the short circuit clutch is between a second and a third, adjacent connection path.
19. The transmission system of claim 17, further comprising an electric motor connected to a rotational member of the planetary gear set.
20. The transmission system of claim 19, wherein the rotational member is a sun wheel of the planetary gear set.
21. The transmission system of claim 17, which is a 6/7 speed transmission further comprising a brake connected between the electric motor and the planetary gear set.
Type: Application
Filed: Oct 12, 2017
Publication Date: Jul 9, 2020
Patent Grant number: 10955035
Inventors: Roëll Marie VAN DRUTEN (Eindhoven), Alexander Franciscus Anita SERRARENS (Waalre), Bas Gerard VROEMEN (Eindhoven)
Application Number: 15/782,036