TPMS INFLATION VALVE FOR COMMERCIAL VEHICLE AND TPMS SENSOR SUBASSEMBLY
20220314715 · 2022-10-06
Inventors
Cpc classification
B60C29/005
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A TPMS inflation valve for a commercial vehicle includes an inflation valve body, an inflation valve seat and a sensor subassembly. The inflation valve body and the inflation valve seat are components split apart from each other. The inflation valve is mounted on an automobile rim by means of the inflation valve seat, and the inflation valve body is provided with an installation portion for a valve core. The inflation valve body and the inflation valve seat are assembled and connected to form an airflow channel for communication. A cavity located outside the automobile rim and close to the automobile rim is formed at the position where the inflation valve body and the inflation valve seat are assembled and connected. The sensor subassembly is arranged in the cavity in communication with the airflow channel of the inflation valve or located on the airflow channel.
Claims
1. A TPMS inflation valve for a commercial vehicle, wherein the inflation valve is provided with an inflation valve body, an inflation valve seat and a sensor subassembly, wherein the inflation valve body and the inflation valve seat are components split apart from each other, the inflation valve is mounted on an automobile rim by means of the inflation valve seat, the inflation valve body is provided with an installation portion for a valve core; the inflation valve body and the inflation valve seat are assembled and connected to form an airflow channel for communication, a cavity located outside the automobile rim and close to the automobile rim is formed at the position where the inflation valve body and the inflation valve seat are assembled and connected, the sensor subassembly is arranged in the cavity, and the cavity is in communication with the airflow channel of the inflation valve or is located on the airflow channel.
2. The TPMS inflation valve for a commercial vehicle according to claim 1, wherein an antenna of the sensor subassembly can be an epitaxial antenna thereof by means of the inflation valve body.
3. The TPMS inflation valve for a commercial vehicle according to claim 1, wherein the antenna of the sensor subassembly is welded on the inflation valve seat.
4. The TPMS inflation valve for a commercial vehicle according to claim 1, wherein a threaded connection structure is arranged at the tail part of the inflation valve seat, a clamping groove is formed in the inflation valve seat to arrange a sealing gasket, and the inflation valve is mounted on the rim in a compressed manner through cooperation of an upper groove wall of the clamping groove with a fastener and a washer connected with the threaded connection structure.
5. The TPMS inflation valve for a commercial vehicle according to claim 1, wherein the inflation valve seat is insulated from the rim.
6. The TPMS inflation valve for a commercial vehicle according to claim 1, wherein the inflation valve body and the inflation valve seat are in threaded connection and are fastened by means of a threaded sealant, and the inflation valve body and the inflation valve seat are further sealed by means of a sealing ring.
7. The TPMS inflation valve for a commercial vehicle according to claim 1, wherein the sensor subassembly is compressed by a limiting spring above to maintain ventilation between a part above the sensor subassembly and the top wall of the cavity; a plurality of support bulges are arranged at the bottom of the sensor subassembly, the support bulges maintain the sensor subassembly in a radial position and support the bottom of the sensor subassembly away from the bottom wall of the cavity to maintain ventilation, a gap between a side wall of the cavity and a side surface of the sensor subassembly provides an airflow channel on a side surface, the airflow channels form an airflow channel in the cavity together and are in communication with an airflow channel of the inflation valve body and the inflation valve seat.
8. The TPMS inflation valve for a commercial vehicle according to claim 8, wherein the pressing spring is a left-hand spring, and a spring end face is in a sliding friction state when the inflation valve body and the inflation valve seat are screwed.
9. A TPMS sensor subassembly applicable to be mounted in the inflation valve, comprising a shell, a capsule and an internal circuit board, wherein a spring limiting portion is arranged at the top of the shell, a plurality of support bulges are arranged at the bottom of the sensor subassembly, and a vent hole in communication with an electronic device in the circuit board is formed in the sensor subassembly.
10. The TPMS sensor subassembly applicable to be mounted in the inflation valve according to claim 9, wherein a claw part is formed at a lateral part of the shell, the lateral part of the capsule is clamped with the claw part of the shell, a ventilation groove of a side surface is formed between claws, and a vent hole is formed on the top of the shell.
11. The TPMS inflation valve for a commercial vehicle according to claim 2, wherein the antenna of the sensor subassembly is welded on the inflation valve seat.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
[0021] Referring to the drawings, a TPMS inflation valve for a commercial vehicle, provided by the invention, is provided with an inflation valve body 2, an inflation valve seat 3 and a sensor subassembly 1, wherein the inflation valve body 2 and the inflation valve seat 3 are components split apart from each other; the inflation valve is mounted on an automobile rim 100 by means of the inflation valve seat 3; the inflation valve body 2 is provided with an installation portion for a valve core 200; the valve core 200 is mounted at the front part in the inflation valve body 2; the inflation valve body 2 and the inflation valve seat 3 are assembled and connected to form an airflow channel 500 for communication; a cavity 400 located outside the automobile rim 100 and close to the automobile rim 100 is formed at the position where the inflation valve body 2 and the inflation valve seat 3 are assembled and connected; the sensor subassembly 1 is arranged in the cavity 400; and the cavity 400 is in communication with the airflow channel 500 of the inflation valve or is located on the airflow channel 500.
[0022] The sensor subassembly mainly comprises a circuit board and a packaging body thereof to form a module which is applicable to being mounted in the cavity 400. As shown in
[0023] As shown in
[0024] As shown in
[0025] As shown in
[0026] As an alternative, modes such as forming air holes in components can also form the airflow channel for communication.
[0027] The above descriptions are only specific embodiments of the present invention, but structural features of the present invention are not limited thereto. Any changes or modifications made by those skilled in the art in the field of the present invention shall fall within the scope of protection of the present invention.