Vibration motor structure integrating multi-point temperature monitoring
By integrating a vibration motor structure with multi-point temperature monitoring, and utilizing fan cooling and temperature sensors to monitor the temperature at various locations of the motor, the problem of difficult monitoring and cumbersome troubleshooting of the distribution of motor heat points in existing technologies is solved, thus achieving efficient heat dissipation and real-time monitoring of abnormal temperatures.
Patent Information
- Application Number
- CN202422896724.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-27
- Publication Date
- 2025-11-18
- Estimated Expiration
- 2034-11-27
AI Technical Summary
Existing vibratory motors often suffer from problems such as loose wiring, loose installation, material overload, and insufficient lubricant, making it difficult to monitor the distribution of heat points and cumbersome to troubleshoot.
Design a vibration motor structure integrating multi-point temperature monitoring, including monitoring components and heat dissipation mechanism. The structure uses a fan to introduce airflow for heat dissipation, and uses a temperature sensor to monitor the temperature at various locations on the motor body in real time. The heat dissipation space is separated by a partition to facilitate the detection of abnormal temperatures.
It enables efficient monitoring of temperature at various locations on the motor body and timely alarm for abnormal temperatures, simplifying the troubleshooting process and improving the practicality and reliability of the motor.
Smart Images

Figure CN223567477U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to vibration motor technical field, concretely is a vibration motor structure of integrated multipoint temperature monitoring. BACKGROUND
[0002] Vibration motor is installed a set of adjustable eccentric block at each end of rotor shaft, and centrifugal force produced by high speed rotation of shaft and eccentric block is used to get exciting force. Vibration motor has large vibration frequency range, and only when exciting vibration force and power are properly matched, mechanical noise can be reduced. Vibration motor has six classifications according to starting and running mode, running speed and the like.
[0003] The existing vibration motor often causes the body to heat up due to a series of reasons such as loose wiring, loose installation, material overload and insufficient lubricating grease when in use, and these heating points are still distributed at various positions on the body, which is relatively inconvenient to monitor, and it is also relatively cumbersome to troubleshoot after monitoring temperature abnormalities, therefore we propose a vibration motor structure integrated with multipoint temperature monitoring. UTILITY MODEL CONTENTS
[0004] The utility model aims at solving one of the technical problems existing in the prior art or related art.
[0005] Therefore, the utility model adopts the technical scheme that:
[0006] A vibration motor structure integrated with multipoint temperature monitoring, comprising: a body assembly and a monitoring assembly arranged on the body assembly; the monitoring assembly comprises a heat dissipation mechanism arranged on the body assembly and a monitoring mechanism arranged at the bottom of the body assembly; the heat dissipation mechanism comprises a fixed box arranged at the top of the body assembly, a fan fixed on the fixed box, a filtering mechanism arranged in the fixed box, a second shell fixed on the outer side of the body assembly, an air hole connected between the fixed box and the second shell and a partition plate arranged between the body assembly and the second shell; the monitoring mechanism comprises a fixed cylinder fixed at the bottom of the body assembly, a spring fixed on the inner side of the fixed cylinder, a sealing plate connected at the bottom of the spring, a temperature sensor arranged on the sealing plate, a connecting rod fixed at the bottom of the sealing plate, a through hole provided in the second shell for the connecting rod to pass through and a baffle fixed at the bottom end of the connecting rod.
[0007] In a preferred example, the utility model can be further configured as: the body assembly comprises a motor body and a first shell arranged on the outer side of the motor body.
[0008] In a preferred example, the utility model can be further configured as: the bottom of the motor body is provided with a filter plate.
[0009] The utility model discloses a further configuration in a preferable example can be: the filter mechanism includes the fixed frame of installing in the fixed box, the fixed frame has placed filter cotton.
[0010] The utility model discloses a further configuration in a preferable example can be: the partition board equidistance distribution in the shell two inboard, and the monitoring mechanism is correspondingly set up between the partition board.
[0011] The utility model discloses a further configuration in a preferable example can be: the fixed box is fixed with magnetic plate on both sides.
[0012] The above technical scheme of the utility model has following beneficial technical effects:
[0013] 1. The utility model discloses a monitoring assembly can utilize the fan and import the outside airflow between the shell one and the shell two, and the motor body is heat dissipated, and then cooperation partition board divides the heat dissipation space, and when heat dissipation, the baffle moves downward, makes temperature sensor move to between the shell one and the shell two, and the temperature of heat dissipation airflow is monitored, when temperature sensor monitors that temperature is too high, then according to position judges which position of motor body appears temperature rise, and then facilitates subsequent investigation, and the practicality is higher.
[0014] 2. The utility model discloses a monitoring assembly, when the fixed box is not operated, can utilize temperature sensor and directly monitor the temperature in the motor body, and the abnormal temperature can also send out the alarm in advance, and the design is reasonable. DRAWINGS
[0015] Fig. 1 It is the integrated multipoint temperature monitoring's vibration motor structure sectional view of the utility model;
[0016] Fig. 2 It is the integrated multipoint temperature monitoring's vibration motor structure A place enlarged view of the utility model.
[0017] REFERENCE SIGNS
[0018] 100, body assembly;110, motor body;120, shell one;130, filter plate;
[0019] 200, monitoring assembly;210, fixed box;211, fixed frame;212, filter cotton;213, magnetic plate;220, fan;230, shell two;240, air hole;250, partition board;
[0020] 310, fixed cylinder;320, spring;330, sealing plate;340, temperature sensor;350, connecting rod;360, through hole;370, baffle. DETAILED DESCRIPTION
[0021] In order to make the purpose, technical scheme and advantages of the utility model more clearly, the utility model is further explained in detail below in combination with specific embodiments and referring to the drawings. It should be noted that the embodiments of the utility model and the features in the embodiments can be combined with each other without conflict.
[0022] It is understood that the description is only exemplary and is not intended to limit the scope of the utility model.
[0023] Some embodiments of the utility model provide a vibration motor structure integrated with multi-point temperature monitoring, which is described below in combination with the drawings.
[0024] In combination with Figs. 1-2 As shown in the utility model provides a vibration motor structure integrated with multi-point temperature monitoring, comprising: machine body assembly 100 and monitoring assembly 200 set on the machine body assembly 100, the machine body assembly 100 includes motor machine body 110 and the shell one 120 set on the outer side of the motor machine body 110, the bottom of the motor machine body 110 is provided with filter plate 130, and the air can be filtered through filter plate 130.
[0025] Among them, the monitoring assembly 200 includes the heat dissipation mechanism set on the machine body assembly 100 and the monitoring mechanism set on the bottom of the machine body assembly 100;The heat dissipation mechanism includes the fixed box 210 installed on the top of the machine body assembly 100, the fan 220 fixed on the fixed box 210, the filter mechanism set in the fixed box 210, the shell two 230 fixed on the outer side of the machine body assembly 100, the air hole 240 connected between the fixed box 210 and the shell two 230 and the partition plate 250 set between the machine body assembly 100 and the shell two 230;The monitoring mechanism includes the fixed cylinder 310 fixed on the bottom of the machine body assembly 100, the spring 320 fixed on the inner side of the fixed cylinder 310, the sealing plate 330 connected on the bottom of the spring 320, the temperature sensor 340 installed on the sealing plate 330, the connecting rod 350 fixed on the bottom of the sealing plate 330, the through hole 360 opened in the shell two 230 for the connecting rod 350 to pass through and the baffle 370 fixed on the bottom end of the connecting rod 350, through the monitoring assembly 200, the external airflow can be introduced into the shell one 120 and the shell two 230 by the fan 220, the motor machine body 110 is cooled, and the baffle 370 moves downward to make the temperature sensor 340 move to the shell one 120 and the shell two 230, the temperature of the cooling airflow is monitored, when the temperature sensor 340 monitors that the temperature is too high, then according to the position, which position of the motor machine body 110 appears temperature rise, and then the subsequent troubleshooting is facilitated, and the practicability is higher.
[0026] Specific, the filter mechanism includes fixed frame 211 installed in the fixed box 210, the fixed frame 211 is placed with filter cotton 212, the incoming air can be filtered, and the fixed box 210 is pulled out upwards, and the filter cotton 212 can be taken out and replaced on the side, which is more convenient.
[0027] Further, the partition plate 250 is equidistantly distributed inside the shell two 230, and the monitoring mechanism is correspondingly arranged between the partition plate 250, and multiple point spaces can be monitored.
[0028] On the other hand, the fixed box 210 is fixed with magnetic plate 213 on both sides, which can be fixed on both sides of the motor body 110, and is convenient to disassemble.
[0029] The working principle and use process of the utility model: first, the fan 220 is used to guide the outside airflow into the shell one 120 and the shell two 230, and the motor body 110 is cooled, and the partition plate 250 is used to separate the cooling space, the baffle 370 moves downward during cooling, the temperature sensor 340 moves to the shell one 120 and the shell two 230, the temperature of the cooling airflow is monitored, when the temperature sensor 340 detects that the temperature is too high, the position of the motor body 110 can be determined according to the position.
[0030] Although the embodiments of the utility model have been shown and described, those skilled in the art can understand that various changes, modifications, replacements and variations can be made to these embodiments without departing from the principles and purposes of the utility model, and the scope of the utility model is defined by the claims and its equivalents.
Claims
1. A vibrating motor structure integrated with multipoint temperature monitoring, characterized by, The utility model relates to a monitoring device for motor, which comprises a body assembly (100) and a monitoring assembly (200) arranged on the body assembly (100). The monitoring assembly (200) comprises a heat dissipation mechanism arranged on the body assembly (100) and a monitoring mechanism arranged at the bottom of the body assembly (100). The heat dissipation mechanism comprises a fixed box (210) mounted on the top of the body assembly (100), a fan (220) fixed on the fixed box (210), a filtering mechanism arranged in the fixed box (210), a shell two (230) fixed on the outside of the body assembly (100), an air hole (240) connected between the fixed box (210) and the shell two (230), and a partition plate (250) arranged between the body assembly (100) and the shell two (230). The monitoring mechanism comprises a fixed cylinder (310) fixed at the bottom of the body assembly (100), a spring (320) fixed on the inside of the fixed cylinder (310), a sealing plate (330) connected at the bottom of the spring (320), a temperature sensor (340) mounted on the sealing plate (330), a connecting rod (350) fixed at the bottom of the sealing plate (330), a through hole (360) provided in the shell two (230) for the connecting rod (350) to pass through, and a baffle (370) fixed at the bottom end of the connecting rod (350).
2. The vibrating motor structure integrated with multipoint temperature monitoring according to claim 1, wherein, The body assembly (100) comprises a motor body (110) and a shell one (120) arranged on the outside of the motor body (110).
3. The vibrating motor structure integrated with multipoint temperature monitoring according to claim 2, wherein, The bottom of the motor body (110) is provided with a filter plate (130).
4. The vibrating motor structure integrated with multipoint temperature monitoring according to claim 1, wherein, The filtering mechanism comprises a fixed frame (211) mounted in the fixed box (210), and the fixed frame (211) is provided with filter cotton (212) therein.
5. The vibrating motor structure integrated with multipoint temperature monitoring according to claim 1, wherein, The partition plates (250) are equidistantly arranged on the inside of the shell two (230), and the monitoring mechanism is arranged between the partition plates (250).
6. The vibrating motor structure integrated with multipoint temperature monitoring of claim 1, wherein, The fixed box (210) is provided with magnetic plates (213) on both sides.