This application is based on and derives the benefit of Indian Application 201811034484 filed on 12 Sep. 2018, the contents of which are incorporated herein by reference.
The embodiments herein relate to a throttle control mechanism for a vehicle.
Generally, a throttle mechanism of a vehicle is used for regulating a speed and power of an engine by controlling the flow of fuel provided to the engine. Some vehicles have two hand operated throttle controls, one hand operated throttle control is used to vary a speed and power of the engine by varying the flow of fuel provided to the engine, and another hand operated throttle control is used to maintain a fixed speed and power of the engine by maintaining a fixed flow of fuel to the engine. A conventional throttle mechanism which incorporates the aforementioned hand operated throttle controls are subjected to occupy more packaging space and involves more number of components. Providing a compact arrangement and packaging of the components in the aforementioned hand operated throttle mechanism is one of the challenges faced by the original equipment manufacturers (OEM'S).
Therefore, there exists a need for a throttle control mechanism for a vehicle, which obviates the aforementioned drawbacks. Further, there exists a need for a throttle control apparatus, which obviates the aforementioned drawbacks.
The principal object of an embodiment of this invention is to provide a throttle control apparatus for a vehicle.
Another object of an embodiment of this invention is to provide a throttle control mechanism for a vehicle.
Another object of an embodiment of this invention is to provide a throttle control apparatus which comprises a common slotted intermediate lever for connecting cables which are connected to corresponding hand operated first throttle control assembly (rotary type throttle control assembly)and second throttle control assembly(fixed type throttle control assembly).
Yet, another object of an embodiment of this invention is to provide a throttle control mechanism for a vehicle, which comprises a first throttle control assembly and a second throttle control assembly that are connected to a common slotted intermediate lever of an throttle control apparatus through corresponding cables, where both hand operated throttle control assemblies work independently.
A further object of an embodiment of this invention is to provide a throttle control mechanism for a vehicle, which consumes less packaging space and involves less number of components.
These and other objects of the embodiments herein will be better appreciated and understood when considered in conjunction with the following description and the accompanying drawings. It should be understood, however, that the following descriptions, while indicating embodiments and numerous specific details thereof, are given by way of illustration and not of limitation. Many changes and modifications may be made within the scope of the embodiments herein without departing from the spirit thereof, and the embodiments herein include all such modifications.
The embodiments of the invention are illustrated in the accompanying drawings, throughout which like reference letters indicate corresponding parts in the various figures. The embodiments herein will be better understood from the following description with reference to the drawings, in which:
The embodiments herein and the various features and advantageous details thereof are explained more fully with reference to the non-limiting embodiments that are illustrated in the accompanying drawings and detailed in the following description. Descriptions of well-known components and processing techniques are omitted so as to not unnecessarily obscure the embodiments herein. The examples used herein are intended merely to facilitate an understanding of ways in which the embodiments herein may be practiced and to further enable those of skill in the art to practice the embodiments herein. Accordingly, the examples should not be construed as limiting the scope of the embodiments herein.
The embodiments herein achieve a throttle control mechanism for a vehicle. Further embodiments herein achieve a throttle control apparatus which comprises a common slotted intermediate lever for connecting cables which are connected to corresponding hand operated first throttle control assembly and second throttle control assembly. Referring now to the drawings, and more particularly to
The first throttle control assembly 802 is used to vary a speed and power of an engine (not shown) by varying the flow of fuel to the engine. The first throttle control assembly 802 is connected to an intermediate lever 810L (as shown in
The second throttle control assembly 804 is used to maintain a fixed speed and power of the engine by maintaining a fixed flow of fuel to the engine (not shown).The second throttle control assembly 804 is connected to the intermediate lever 810L of the throttle control apparatus 810 through the second cable 808. The second throttle control assembly 804 is a hand operated adjustable throttle control assembly or a hand operated fixed type throttle control assembly. The second throttle control assembly 804 includes a hand operated throttle control means 804L and may include other standard components as present in a standard hand operated adjustable throttle control assembly. The hand operated throttle control means 804L of the second throttle control assembly 804 is configured to be moved and locked at a plurality of positions to maintain the speed of the engine at corresponding fixed rpm. The hand operated throttle control means 804L is at least a hand operated throttle control lever. However, it is also within the scope of the invention to provide the second throttle control assembly 804 with a hand operated throttle control knob or any other hand operated throttle control means without otherwise deterring the intended function of the second throttle control assembly 804 as can be deduced from the description and corresponding drawings.
The first cable 806 connects the first throttle control assembly 802 with the intermediate lever 810L of the throttle control apparatus 810. The first cable 806 is supported by the mounting bracket 814. The first cable 806 has a first end 806f and a second end 806s. The first end 806f of the first cable 806 is connected to the first throttle control assembly 802 and the second end 806s of the first cable 806 is movably connected to a slot 810La (as shown in
The second cable 808 connects the second throttle control assembly 804 with the intermediate lever 810L of the throttle control apparatus 810. The second cable 808 is supported by the mounting bracket 814. The second cable 808 has a first end 808f and a second end 808s.The first end 808f of the second cable 808 is connected to the second throttle control assembly 804 and the second end 808s of the second cable 808 is movably connected to a slot 810Lb (as shown in
In an embodiment, the throttle control apparatus 810 includes an intermediate lever 810L, a pivot shaft (not shown), a shaft housing 810H, a lever 810R, a spring washer (not shown) and a nut (not shown). The intermediate lever 810L is connected to one end of the pivot shaft (not shown) and is also connected to the first throttle control assembly 802 and the second throttle control assembly 804 through the first cable 806 and the second cable 808 respectively. The intermediate lever 810L is also called as pivot shaft lever or throttle linkage lever. In an embodiment, the intermediate lever 810L has a first portion 810Lf and a second portion 810Ls. The first portion 810Lf of the intermediate lever 810L is connected to the second end 806s of the first cable 806. In an embodiment, the first portion 810F of the intermediate lever 810L defines a slot 810La (a shown in
The pivot shaft (not shown) is movably received inside the shaft housing 810H. One end of the pivot shaft (not shown) is welded to the intermediate lever 810L and another end of the pivot shaft (not shown) is connected to the lever 810R through nut and spring washer (not shown). The shaft housing 810H is used to house the pivot shaft (not shown). The shaft housing 810H is supported by the mounting bracket 814. One end of the lever 810R is connected to the pivot shaft (not shown) and the other end of the lever 810R is connected to the linkage 812.
The linkage 812 has a first end 812f and a second end 812s. The first end 812f of the linkage 812 is connected to the lever 810R and the second end 812s of the linkage 812 is connected to a lever (not shown) of a fuel injection pump (not shown). The linkage 812 is at least a pushrod.
The working of the throttle control mechanism 800 is as follows. When an operator moves the hand operated rotary throttle control means 802R of first throttle control assembly 802 to vary the speed of the engine, the first throttle control assembly 802 pulls the first cable 806 which moves the intermediate lever 810L in an anticlockwise direction and the pivot shaft (not shown) moves the lever 810R in an anti-clockwise direction and the lever 810R in turn pushes the linkage 812 which pushes the lever (not shown) of the fuel injection pump (not shown) to vary the flow of fuel to the engine therein to vary the speed of the engine. The second cable 808 remains in a stationary position on movement of the intermediate lever 810L during operation of the first throttle control assembly 802.
Now, when the operator moves the hand operated adjustable throttle control means 804L of second throttle control assembly 804 to maintain the speed of the engine at a fixed rpm, the second throttle control assembly 804 pulls the second cable 808 which moves the intermediate lever 810L in an anticlockwise direction and the pivot shaft (not shown) moves the lever 810R in an anti-clockwise direction and the lever 810R in turn pushes the linkage 812 which pushes the lever (not shown) of the fuel injection pump (not shown) to maintain fixed flow of fuel to the engine to maintain the speed of the engine at a fixed rpm. The first cable 806 remains in a stationary position on movement of the intermediate lever 810L during operation of the second throttle control assembly 802.
Therefore, a throttle control mechanism 800 for a vehicle is provided.
The foregoing description of the specific embodiments will so fully reveal the general nature of the embodiments herein that others can, by applying current knowledge, readily modify and/or adapt for various applications such specific embodiments without departing from the generic concept, and, therefore, such adaptations and modifications should and are intended to be comprehended within the meaning and range of equivalents of the disclosed embodiments. It is to be understood that the phraseology or terminology employed herein is for the purpose of description and not of limitation. Therefore, while the embodiments herein have been described in terms of embodiments, those skilled in the art will recognize that the embodiments herein can be practiced with modification within the spirit and scope of the embodiments as described herein.
Number | Date | Country | Kind |
---|---|---|---|
201811034484 | Sep 2018 | IN | national |
Filing Document | Filing Date | Country | Kind |
---|---|---|---|
PCT/IN2019/050668 | 9/12/2019 | WO | 00 |