The present invention relates to an electronic throttle body, particularly, a reset mechanism for an electronic throttle body.
The electronic throttle body of the vehicle in the current technology has a reset structure as shown in
The design of the reset mechanism solves the problem of reset and makes the throttle body return to the default position. However, it can not guarantee the product consistency. Due to a large number of parts working with each other, there may be many matching errors in the manufacturing process, which leads to different points of the reset mechanism returning to the default position. Moreover, a high number of parts results in an increase in frictional force, which affects the reaction speed of the product.
The present invention provides a reset mechanism for the electronic throttle body, which solves the problems including matching errors in the manufacturing process, inaccuracy of returning to the default position, slow reaction speed, and so forth (these problems are due to a high number of parts in the reset mechanism for the electronic throttle body). The mechanism of the present invention has simple structure and is produced by simplified manufacturing process and can easily and accurately control the default position of the throttle body.
The reset mechanism for the electronic throttle body of the present invention comprises a valve, a throttle shaft and a reset gear. It is characterized in that it also includes an upper spring seat, a lower spring seat, and a reset spring. The reset gear is provided with a support leg, and the support leg has two sides. The upper spring seat, the reset spring, and the lower spring seat are sleeved outside the reset gear in sequence. One torsion arm of the reset spring is fixed on the upper spring seat and the other torsion arm is fixed on the lower spring seat. The upper spring seat has a support leg surface, which corresponds to one side of the support leg; the lower spring seat has a support leg surface, which corresponds to the other side of the support leg. The throttle shaft is connected to the reset gear after passing through the lower spring seat, the reset spring, and the upper spring seat. There is a limiting block in the valve, and the valve limiting block has the first side and the second side. By default, the support leg surface of the upper spring seat is attached not only to the first side of the valve limiting block, but also to the side of the support leg of the reset gear. The support leg surface of the lower spring seat attached not only to the second side of the valve limiting block, but also to the other side of the support leg of the reset gear.
In the present invention, the reset mechanism for the electronic throttle body is characterized in that the reset gear is composed of a gear part and a rotating part connected under the gear part. A support leg is installed in the axial direction outside the rotating part, and the support leg has 2 sides. The upper spring seat, the reset spring and the lower spring seat are sequentially sleeved outside the rotating part of the reset gear.
In the present invention, the reset mechanism for the electronic throttle body is characterized in that one torsion arm of the reset spring is hung in the groove of the upper spring seat for fixation, and the other torsion arm is hung in the groove of the lower spring seat for fixation.
The technical effect of the present invention is as follows: compared with the previously designed emergency reset mechanism, the present invention can only use a spring to ensure that the throttle plate remains in the mechanism at the emergency point after power failure. The throttle plate can overcome the force of the torsion spring to rotate clockwise and anticlockwise, while the torsion spring ensures that the force will be applied to the reset gear to return to the emergency point position in both directions. The structure eliminates the original coupling ring and the emergency spring, reducing the uncertainty of the mid connection and reducing the frictional force when the coupling ring rotates.
As shown in
When in use, if the reset gear (21) rotates in the axial closing direction, the support leg surface (16) of the upper spring seat will instantly break away from the support leg (14) of the reset gear (21). At the same time, the support leg surface (15) of the lower spring seat will also instantly break away from the second side (18) of the valve limiting block. After the closing action is completed, it will be reset by the spring restoring force. On the contrary, if the reset gear (21) rotates in the axial opening direction, the support leg surface (15) of the lower spring seat-will instantly break away from the support leg (14) of the reset gear (21). At the same time, the support leg surface (16) of the upper spring seat will also instantly break away from the first side (17) of the valve-limiting block. After the opening action is completed, it will be reset by the spring restoring force.
In the present invention, one torsion arm (12) of the return spring (12) is hung in the groove (21) of the upper spring seat (11), and the other torsion arm is hung in the groove (22) of the lower spring seat (13).
In the present invention, a support leg (14) is installed in the axial direction outside the rotating part (212), and the support leg (14) has two sides. The rotating part (212) can also be provided two support legs in the axial direction, and each leg has an outward side.
In the present invention, the valve (19) is provided with a limiting block, which has a first side (17) and a second side (18). It can also be that each of two valve limiting blocks has an outward side.
The mechanism of the present invention has a simple structure and can be made with a simplified manufacturing process and can easily and accurately control the default position of the throttle body.
The above are only the preferred embodiments of the invention, but the invention is not intended to be limited thereby. That is to say, all equivalent changes and modifications made according to the content of the patent application scope of the invention shall be those which are technical for the invention.
Number | Date | Country | Kind |
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201910034054.2 | Jan 2019 | CN | national |
201920059319 .X | Jan 2019 | CN | national |
The subject application is a continuation of PCT/CN2020/071800 filed on Jan. 13, 2020, which claims priority on Chinese Patent Application Nos. 201910034054.2 and 201920059319.X, both filed on Jan. 15, 2019 in China. The contents and subject matter of the PCT international application and the Chinese priority applications are incorporated herein by reference.
Number | Date | Country | |
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Parent | PCT/CN2020/071800 | Jan 2020 | US |
Child | 17373654 | US |