The present invention relates to a power transmission device interlocking with an accelerator and a brake pedal that is required to embody a novel clutch system, which has a different structure and operation from that of a conventional clutch system, and more specifically to a power transmission device that is connected to an accelerator and a brake pedal in a state of acceleration or brake and can precisely control and operate a clutch assembly.
The wheels of the vehicle rotate in such way that rotations of the engine are changed in the transmission through the flywheel and clutch discs, and transmitted to the main shaft.
In case of manual transmission vehicles, the connection or disconnection of the flywheel and disc is achieved by the clutch pedal installed on the upper floor of the left side of the driver's seat. When the clutch pedal is pressed, the connection between the two members is cut off; when the pedal is released, the two member are connected. When the driver presses the clutch pedal, shifts the gear in a state of pressing the clutch, and then slowly takes the foot off the pedal, the vehicle becomes in a state of a semi-clutch, which is about to come into contact between the flywheel and disk.
In case of automatic transmission vehicles, the vehicles do not have a clutch pedal, and are driven by detecting rotations of the engine, speed of the vehicle, and automatically shifting the transmission depending on the vehicle loads. The vehicle consists of the torque converter, the oil pump, the hydraulic clutch, the planetary gear set, the rotary sensor, the deceleration gear, and the valve body. The transmission part consists of a combination of the planetary gear set, the wet multi-plate clutches, and the brake.
Manual and automatic transmission vehicles have developed by imitating strengths of each other. For example, manual transmission vehicles have adopted the automatic control algorithms of the automatic transmission; automatic transmission vehicles have partially adopted the mechanical friction clutch of the manual transmission for improving fuel efficiency. However, the design structures of the manual and automatic transmission vehicles have retained the first developed platforms, respectively.
In case of automatic transmission vehicles, they have to be switched in conjunction with the clutch pedal at the same time; thus, there is a low preference in South Korea and North America due to slipping when re-starting on ramps. Accordingly, it is necessary to develop a system that enables transmission without a clutch pedal and that prevents slipping on ramps.
In case of automatic transmission vehicles, they have a low fuel efficiency due to the torque transmission through fluid, and are vulnerable to a torque short that is transferred into the transmission from the engine in the abnormal event such as a sudden unintended acceleration. Accordingly, it is necessary to develop a system that eliminates possibilities of a sudden unintended acceleration by mechanically operating states of acceleration, semi-clutch, and stop.
Accordingly, the present invention is suggested to provide a novel clutch system that ensures a 100% torque transmission rate between an engine and a transmission in a vehicle system, can be commonly applied to conventional manual transmission and automatic devices, and operates by interlocking with an accelerator and a brake pedal.
To solve the problems mentioned above, the present invention provides a power transmission device for a vehicle having an accelerator pedal and a brake pedal, the power transmission device comprising: a driving bar mounted inside and interlocking with the accelerator pedal and the brake pedal, wherein the vehicle is in any one state of pressing the accelerator pedal, releasing the accelerator pedal, pressing the brake pedal, and releasing the brake pedal, wherein the driving bar moves to each position corresponding to each of the state.
The power transmission device may include an accelerator actuator connected to a cable of the accelerator pedal to operate, and a brake actuator connected to a cable of the brake pedal to operate and facing the accelerator actuator, wherein the driving bar may move to each position corresponding to each of the state by operation of each of the actuators.
The driving bar may be connected to a connection member connected to a driving shaft that transmits power to a clutch assembly.
When a driver presses the accelerator pedal, the driving bar of the transmission device may move in a first direction by operation of the accelerator actuator; when the accelerator pedal is released, the driving bar of the power transmission device may move in a second direction that is opposite to the first direction by releasing of the accelerator actuator; when the driver presses the brake pedal, the driving bar of the power transmission device may move in the second direction by operation of the brake actuator; and when the brake pedal is released, the driving bar of the power transmission device may move in the first direction by releasing of the brake actuator.
In addition, the present invention provides a power transmission device for a vehicle having an accelerator pedal and a brake pedal, the power transmission device comprising: an accelerator actuator connected to a cable of the accelerator pedal to operate; a brake actuator connected to a cable of the brake pedal to operate and facing the accelerator actuator, and a driving bar moving in a first direction or a second direction in conjunction with operation of each of the actuators, wherein the driving bar can move to any one of: a first position when the accelerator pedal is pressed; a second position when the accelerator pedal is released; a third position when the brake pedal is pressed, and a fourth position when the brake pedal is released.
The driving bar may be placed in the first position, the second position, the fourth position, and the third position in order, from the first direction.
The fourth position may be placed more to the first direction than to the third position, thereby converting a clutch assembly to a state of a semi-clutch.
The power transmission device of the clutch system of the present invention can expand the base of manual transmission vehicles with simplified transmission, and enables accurate and permanent uses by interlocking with the accelerator and brake pedal.
In addition, the power transmission device of the clutch system of the present invention mechanically operates power transmission, thereby preventing sudden unintended acceleration and enabling protection of both drivers and pedestrians.
Furthermore, the power transmission device of the present invention can be applied to all vehicles. In case of hybrid cars, the power transmission device can replace the main component that transmits power generated from the internal combustion engines at the point that the internal combustion engine operates. In addition, the power transmission device can be applied to the components that require power transmission in a large system such as electric vehicles and other power plants, which uses the internal combustion engines.
Hereafter, the present invention will be described in detail in conjunction with the accompanying drawings. All terms used in the specification and claims may not be limited to be interpreted as definitions in a generally-used dictionary, and may be defined according to the inventive concept of the present invention. The embodiments in the specification and structures shown in drawings are embodiments of the present invention, and are not restricting or limiting the scopes of the inventive concepts of the present invention.
The clutch system comprises an engine Eg, and a clutch assembly C connected or disconnected to the engine Eg. An input shaft 200 connects between the clutch assembly C and a transmission Tr. The configurations and functions of the engine Eg, the transmission Tr, and the input shaft 200 have been already disclosed; however, any of the conventional or newly developed ones can be used.
The location and state of the clutch assembly C are changed by pressing or releasing an accelerator pedal E, or pressing or releasing a brake pedal B. A power transmission device 1 and a driving shaft 100 are provided to transmit a state of pressing or releasing of the accelerator pedal and the brake pedal E, B to the clutch assembly C. The power transmission device 1 and the driving shaft 100 are connected to each other through a connection member S such as rod. The operation of the power transmission device 1 is transmitted to the driving shaft 100, and the operation of the driving shaft 100 is transmitted to the clutch assembly C. The driving shaft 100 is not connected to the transmission Tr. One side of the power transmission device 1 interlocks with the accelerator pedal E through a certain part, a cable for example, and the other side of the power transmission device 1 interlocks with the brake pedal B.
When the driver presses the accelerator pedal E, the connection member S linearly moves to a first direction of
When the driver releases the accelerator pedal E, the connection member S linearly moves a bit to a second direction of
In general, the clutch has a function of connecting between the engine and the transmission when the accelerator pedal E is either pressed or released. In this respect, the functions of clutch assembly C in
When the driver presses the brake pedal B, the connection member S linearly moves to the second direction of
When the driver releases the brake pedal B, the connection member S linearly moves a bit to the first direction of
To drive the vehicle, the driver starts the vehicle, pressing the brake pedal B, and presses the accelerator pedal E after releasing the brake pedal B. In this case, the states of the clutch system sequentially transition as shown in
In addition, the connection member S is placed in locations shown in
As mentioned above, the power transmission device 1 shown as a box in drawings in the present invention may be embodied with any type of structure that can move the connection member S in conjunction with the accelerator pedal E and the brake pedal B. Embodiments shown in
The power transmission device 1 may be defined as a rectangular box shape as an external shape. The box may be defined by a long rectangular frame 2 as illustrated. On the right side of the frame 2, an accelerator actuator E1 connected to a hydraulic line of the accelerator pedal E is installed, and on the left side, a brake actuator B1 connected to a hydraulic line of the brake pedal B is installed. A first head 22 is installed on the front side, the left side in
In
A first support 12 having a shape of “” and a second support 14 having a shape of “” are formed continuously on both of the top and bottom of the left side inside the frame 2. A rotary bar 16 protrudes outward through the first support 12, the inner space of the first support 12, and frame 2. An upper portion of a rotary bar 16 forms a first slope 16B, which corresponds with the slope 8A of the lower portion of the guide 8. A lower portion of the rotary bar 16, which is placed toward the inside, also forms an oblique second slope 16A.
In the present invention, a driving bar 10 is installed vertically inside the frame 2, and the right side of the driving bar 10 comes in contact with the first spring S1, and the left side comes in contact with the second spring S2. The front sides, the left sides in
The above describes the basic configuration of the power transmission device 1. Especially,
When the driver releases the accelerator pedal E from the state shown in
When the driver presses the brake pedal B from the state shown in
When the driver releases the brake pedal B from the state shown in
The connection member S also moves to the left side by the moving distance of the driving bar 10. Accordingly, the clutch assembly rotates to the position corresponding to the releasing state of the brake pedal B through the driving shaft 100, and becomes in the fourth state.
Thus, referring to
The power transmission device 1 and connection member S described above can be modified in various forms. The connection member S mentioned above is a rod-shaped linear member, but can be replaced by a link apparatus or a push apparatus with a trigger on the tip. The parts in the power transmission device 1, such as the frame 2, the moving bar 4, the first and second spring S1, S2, may also be replaced or modified if the driving bar 10 can be moved to each of the left and right positions according to the operation of the two actuators.
While embodiments of the present invention have been described, the present invention is not limited to what has been particularly shown.
Number | Date | Country | Kind |
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10-2019-0124670 | Oct 2019 | KR | national |
10-2019-0166488 | Dec 2019 | KR | national |
Filing Document | Filing Date | Country | Kind |
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PCT/KR2020/009550 | 7/20/2020 | WO |
Publishing Document | Publishing Date | Country | Kind |
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WO2021/071068 | 4/15/2021 | WO | A |
Number | Name | Date | Kind |
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5020645 | Sasa | Jun 1991 | A |
20220128103 | Yoon | Apr 2022 | A1 |
20220128104 | Yoon | Apr 2022 | A1 |
20220154779 | Yoon | May 2022 | A1 |
Number | Date | Country |
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2009-275805 | Nov 2009 | JP |
20-0313732 | May 2003 | KR |
20-0319147 | Jul 2003 | KR |
10-1916551 | Nov 2018 | KR |
2013168940 | Nov 2013 | WO |
Entry |
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Machine Translation of KR 200313732 Y1 (Year: 2003). |
Number | Date | Country | |
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20220126687 A1 | Apr 2022 | US |