一种智能穿戴用声波电机

By improving the external reset structure and limit switch, the problems of inconvenient maintenance and easy damage to the magnetic conductor of the acoustic motor have been solved, achieving convenient maintenance and cost reduction.

CN224520901UActive Publication Date: 2026-07-17ZHOUKOU CHAOYUE TECH ELECTRONICS

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ZHOUKOU CHAOYUE TECH ELECTRONICS
Filing Date
2025-07-23
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

The reset structure of the acoustic motor is located in the positioning cylinder, which makes replacement and maintenance inconvenient and damages the positioning cylinder, resulting in high maintenance costs. The magnetic conductor limit is also prone to damage, which also increases maintenance costs.

Method used

The magnetic conductor is reset using an external spring and slide cylinder structure, and is limited by the cooperation of the driven frame and buffer sleeve to prevent the magnetic conductor from colliding with the limiting groove. The support block structure is easy to disassemble for maintenance.

Benefits of technology

This design enables convenient reset structure maintenance, reduces the maintenance cost of acoustic motors, extends the service life of the magnetic conductor, and improves practical performance.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224520901U_ABST
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Abstract

本实用新型涉及电机技术领域,具体为一种智能穿戴用声波电机,包括壳体以及连接在壳体一端的安装块,所述壳体的内部安装有两个支撑块,所述支撑块的外部开设有环槽,本申请通过外置将弹簧、滑筒等结构,在保证导磁体正常复位的同时还可以便于对复位结构进行维修,解决了常规复位结构是对输出轴进行复位来带动导磁体复位,使得复位结构常位于定位筒中,导致人员不便于对复位结构进行更换维修的问题,有利于提高声波电机的实用性能;本申请通过从动架配合限位柱以及缓冲套,可以对导磁体进行限位,解决了目前通过限位槽对导磁体限位,使得导磁体可能会与限位槽碰撞,导致导磁体容易损坏的问题,有利于降低声波电机的维护成本。
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Claims

1. A smart wear acoustic motor, comprising a shell (1) and a mounting block (2) connected to one end of the shell (1), characterized in that: The housing (1) has two support blocks (3) installed inside. The support blocks (3) have an annular groove (4) on their outside. A coil (5) is installed in the annular groove (4). The support blocks (3) have two magnetic blocks (6) connected inside. A limiting groove (7) is provided on one side of the support block (3), and two limiting blocks (8) are connected in the limiting groove (7). An arc groove (9) is provided on one side of each of the two limiting blocks (8), and a guide rod (10) is connected in the arc groove (9). A spring (11) is connected to both ends of the arc groove (9), and the spring (11) is sleeved on the outside of the guide rod (10). One end of each of the two springs (11) is connected to a slide cylinder (12), one end of each of the two slide cylinders (12) is connected to a connecting rod (13), one end of each slide cylinder (12) is connected to a driven frame (14), one side of the limiting block (8) is connected to a limiting post (15), and the outside of the limiting post (15) is connected to a buffer sleeve (16). 2.The smart wearable acoustic motor of claim 1, wherein: The slide cylinder (12) has a through hole on one side that is adapted to the guide rod (10), and the slide cylinder (12) will slide outside the guide rod (10) and in the arc groove (9). 3.The smart wearable acoustic motor of claim 1, wherein: The mounting block (2) is internally connected to a positioning cylinder (17), one end of which is connected to a fixing plate (18), and a wire groove (19) is provided on one side of the fixing plate (18). 4.The smart wearable acoustic motor of claim 3, wherein: The positioning cylinder (17) is internally connected to an output shaft (20), and the output shaft (20) is externally connected to a magnetic conductor (21). The magnetic conductor (21) is disposed in the limiting groove (7) of the two support blocks (3), and one side of the magnetic conductor (21) is disposed outside the connecting rod (13).

5. The smart wear acoustic motor of claim 4, wherein: The output shaft (20) has two bearings (22) externally connected to it, and the two bearings (22) are respectively disposed in the positioning cylinder (17) and the housing (1). 6.The smart wearable acoustic motor of claim 5, wherein: An eccentric block (23) is connected to one end of the output shaft (20).