Temperature detection device
By installing a temperature detection device with a temperature measurement module and a communication feedback module on the power motor, the problem of damage caused by high-temperature operation of the power motor is solved, and real-time and accurate temperature monitoring and abnormal feedback are realized.
Patent Information
- Application Number
- CN202422893093.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-26
- Publication Date
- 2025-11-07
- Estimated Expiration
- 2034-11-26
AI Technical Summary
In existing technologies, motors are prone to damage when operating in high-temperature environments for extended periods. Manual inspection is subject to errors and has a fixed inspection cycle, making it impossible to detect abnormal temperatures in a timely manner.
Design a temperature detection device, including a temperature measurement module and a communication feedback module, which is installed on the device under test. The device performs real-time temperature detection through the temperature measurement port and provides real-time feedback of the results through the communication feedback module. The device is equipped with a power supply battery and a split installation structure.
It enables accurate detection of motor temperature and timely feedback of abnormalities, reducing human error and ensuring safe operation of equipment.
Smart Images

Figure CN223525903U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to automatic detection technical field, especially relate to a temperature detection device. BACKGROUND
[0002] Glass needs to use power motor to provide power to production equipment in the production process. Due to the existence of glass melting furnace, the temperature of part of the glass production workshop is higher in the production process, which causes the power motor to run in high temperature state for a long time. Long time high temperature operation of the power motor may cause damage to the power motor, so it is necessary to detect the working temperature of the power motor regularly in the production process.
[0003] For this, the existing detection method is that the staff handholds temperature detector regularly to the position of the power motor to detect the power motor manually. However, manual detection has large error. Moreover, the detection cycle is fixed, which cannot ensure timely discovery of abnormal condition of high temperature of the power motor. UTILITY MODEL CONTENTS
[0004] The utility model solves the technical problem that provide a temperature detection device, can real time and accurately detect equipment temperature, timely feedback temperature abnormal condition.
[0005] In order to solve the above technical problem, the utility model adopts the technical scheme that:
[0006] A temperature detection device, including temperature measurement module, communication feedback module and the installation piece for setting on the equipment to be measured,
[0007] The temperature measurement module and the communication feedback module are arranged on the installation piece, one side of the installation piece is provided with a temperature measurement opening for abutting the equipment to be measured, the detection end of the temperature measurement module is located in the temperature measurement opening, and the temperature measurement module is in communication connection with the communication feedback module.
[0008] Further, the inside of the installation piece is provided with a receiving chamber communicating with the temperature measurement opening, and the temperature measurement module and the communication feedback module are located in the receiving chamber.
[0009] Further, the installation piece includes a protective sleeve and a connecting base.
[0010] The receiving chamber is located in the protective sleeve, the protective sleeve is detachably arranged on the connecting base, and the temperature measurement opening is arranged on the connecting base.
[0011] Further, it further includes a positioning frame.
[0012] The temperature measurement module and the communication feedback module are arranged on the positioning frame, and the positioning frame is arranged in the receiving chamber.
[0013] Furthermore, the positioning frame is slidably disposed within the storage cavity, and the sliding direction of the positioning frame is the direction of entering and exiting the sleeve opening of the protective sleeve.
[0014] Furthermore, the bottom surface of the connecting base is provided with a mounting connector, and the temperature measuring port is located on the mounting connector.
[0015] Furthermore, the bottom surface of the mounting component is provided with a contoured inclined surface surrounding the mounting joint.
[0016] Furthermore, it also includes the power supply battery;
[0017] The power supply battery is mounted on the mounting component and is electrically connected to both the temperature measurement module and the communication feedback module.
[0018] Furthermore, it also includes transceiver antennas;
[0019] The transceiver antenna is mounted on the mounting component and is electrically connected to the communication feedback module.
[0020] Furthermore, the mounting component is provided with a connector, and the transceiver antenna is detachably mounted on the connector.
[0021] The beneficial effects of this utility model are as follows: It provides a temperature detection device, including a temperature measuring module, a communication feedback module, and an installation component for mounting on the device under test. In use, the installation component is installed on the device under test, and at the same time as installation, the detection end of the temperature measuring module inside the temperature measuring port is facing the device under test. The temperature measuring module accurately detects the temperature of the device under test, and the communication feedback module provides real-time feedback of the detection results to the staff, ensuring that they can receive timely information on any abnormal temperature conditions of the device under test. Attached Figure Description
[0022] Figure 1 This is a perspective view of a temperature detection device according to the present invention;
[0023] Figure 2 This is a side view of a temperature detection device according to the present invention;
[0024] Figure 3 This is a cross-sectional view of a temperature detection device according to an embodiment of the present utility model. Figure 1 ;
[0025] Figure 4 This is a front view of a temperature detection device according to the present invention;
[0026] Figure 5 This is a cross-sectional view of a temperature detection device according to an embodiment of the present utility model. Figure 2 .
[0027] Label description:
[0028] 1, temperature measurement module; 2, communication feedback module; 3, mounting; 4, temperature measurement port; 5, storage chamber; 6, positioning frame; 7, mounting joint; 8, profiling slope; 9, power supply battery; 10, transceiver antenna; 11, connecting seat;
[0029] 31, protective sleeve; 32, connecting base. DETAILED DESCRIPTION
[0030] In order to explain the technical content of the utility model, the purpose and effect realized, the following will be explained in combination with the embodiment and the accompanying drawings.
[0031] In a high temperature environment, some production equipment power motor runs for a long time in a high temperature state; the long time high temperature operation of the power motor may cause damage to the power motor, so it is necessary to detect the working temperature of the power motor regularly during production. The existing detection method is that the staff holds the temperature detector regularly to the position of the power motor to detect the power motor manually. However, manual detection has a large error; and the detection period is fixed, which cannot ensure timely detection of abnormal conditions of high temperature of the power motor.
[0032] Based on this, please refer to Figures 1 to 5 The temperature detection device comprises a temperature measurement module 1, a communication feedback module 2 and a mounting 3 for being arranged on the equipment to be detected; the temperature measurement module 1 and the communication feedback module 2 are arranged on the mounting 3, the mounting 3 is used for abutting against one side of the equipment to be detected and is provided with a temperature measurement port 4, the detection end of the temperature measurement module 1 is located in the temperature measurement port 4, and the temperature measurement module 1 is in communication connection with the communication feedback module 2.
[0033] It can be seen that, compared with manual temperature detection of the equipment to be detected by the temperature detection device, the temperature detection device composed of the temperature measurement module 1, the communication feedback module 2 and the mounting 3 is directly arranged on the equipment to be detected; on the one hand, since the installation position of the temperature detection device is fixed, the detection end of the temperature measurement module 1 always measures the temperature by abutting against the temperature measurement port 4 of the equipment to be detected, so as to ensure that the temperature measurement result is accurate enough; on the other hand, the communication feedback module 2 is arranged, the data obtained from the equipment to be detected and the analysis result of the control module can be fed back to the terminal used by the operator through the communication feedback module 2, so as to ensure that the temperature feedback is timely enough; in order to facilitate the arrangement of the device, the communication feedback module 2 can preferably adopt wireless communication.
[0034] Furthermore, since the device is intended for long-term use on the device under test, a power supply battery 9 can be installed inside. The power supply battery 9 is mounted on the mounting component 3 and is electrically connected to both the temperature measurement module 1 and the communication feedback module 2. The device relies on the power supply battery 9 to maintain independent operation for extended periods without external power. Alternatively, a charging connector can be installed on the surface of the device to draw power from the device under test or other power sources using a charging cable.
[0035] In some embodiments, the mounting component 3 has a receiving chamber 5 that communicates with the temperature measuring port 4, and both the temperature measuring module 1 and the communication feedback module 2 are located inside the receiving chamber 5. The temperature measuring module 1 and the communication feedback module 2 are mounted on a positioning frame 6, which is located inside the receiving chamber 5.
[0036] Specifically, mounting component 3 includes a protective sleeve 31 and a connecting base 32; the receiving chamber 5 is located inside the protective sleeve 31, which is detachably mounted on the connecting base 32, and the temperature measuring port 4 is mounted on the connecting base 32. A positioning frame 6 is slidably mounted inside the receiving chamber 5, with the sliding direction of the positioning frame 6 being the direction of entry and exit from the sleeve opening of the protective sleeve 31. The cooperation between the positioning frame 6 and the protective sleeve 31 provides a method for assembling and installing the various components of the device: first, the communication feedback module 2, the temperature measuring module 1, etc., are placed on the positioning frame 6; then, the positioning frame 6 is slid into the protective sleeve 31; and finally, the connecting base 32 is installed. The overall assembly and disassembly are simple and easy to maintain. The positioning frame 6 ensures the stability of the temperature measuring module 1, the communication feedback module 2, etc., preventing them from being affected by factors such as the shaking of the device under test. Furthermore, a threaded connection is preferred between the protective sleeve 31 and the connecting base 32.
[0037] like Figure 2 and Figure 3 As shown, the bottom surface of the connecting base 32 is provided with a mounting connector 7, and the temperature measuring port 4 is located on the mounting connector 7. The mounting connector 7 can be a centrally controlled cylindrical connector, and its outer side wall is provided with mounting threads. During installation, it can be aligned and installed by opening a threaded groove on the target to be tested. The detection end of the temperature measuring module 1 passes through the housing chamber 5 into the hollow part of the mounting connector 7. When the mounting connector 7 is aligned and assembled with the device to be tested, the detection end of the temperature measuring module 1 slowly approaches the device to be tested. Furthermore, the bottom surface of the connecting base 32 of the mounting component 3 is provided with a contoured inclined surface 8 surrounding the mounting connector 7. During installation, the contoured inclined surface 8 is used to conform to the surface of the target device, improving the installation stability.
[0038] In some embodiments, the device has a transceiving antenna 10; the transceiving antenna 10 is arranged on the mounting member 3, and the transceiving antenna 10 is electrically connected with the communication feedback module 2. The mounting member 3 is provided with a connecting seat 11, and the transceiving antenna 10 is detachably arranged on the connecting seat 11. The device transmits data by means of the transceiving antenna 10, and realizes automatic real-time feedback. In addition to the communication by means of the antenna, the device can also select a communication mode according to the installation environment of the equipment to be measured. For example, if a monitoring terminal for centralized feedback data is arranged on site, the device can be connected to the monitoring terminal in a wired manner, thereby improving the system integration of the equipment to be measured.
[0039] Please refer to Figures 1 to 5 The embodiment one of the utility model discloses a temperature detection device, comprising temperature measurement module 1, power supply battery 9, communication feedback module 2 and be used for setting on the equipment of installation member 3 of measuring, temperature measurement module 1 and communication feedback module 2 all are arranged on installation member 3, and installation member 3 is used to butt the temperature measurement mouth 4 that is arranged on one side of equipment of measuring, and the detection end of temperature measurement module 1 is located in temperature measurement mouth 4, temperature measurement module 1 is connected with communication feedback module 2, and power supply battery 9 is arranged on installation member 3, and power supply battery 9 is electrically connected with temperature measurement module 1 and communication feedback module 2 respectively.
[0040] A temperature detection device, comprising temperature measurement module 1, power supply battery 9, communication feedback module 2 and be used for setting on the equipment of installation member 3 of measuring, temperature measurement module 1 and communication feedback module 2 all are arranged on installation member 3, and installation member 3 is used to butt the temperature measurement mouth 4 that is arranged on one side of equipment of measuring, and the detection end of temperature measurement module 1 is located in temperature measurement mouth 4, temperature measurement module 1 is connected with communication feedback module 2, and power supply battery 9 is arranged on installation member 3, and power supply battery 9 is electrically connected with temperature measurement module 1 and communication feedback module 2 respectively.
[0041] In the embodiment, the inside of the mounting member 3 is provided with a receiving chamber 5 communicating with the temperature measurement mouth 4, and the temperature measurement module 1 and the communication feedback module 2 are located in the receiving chamber 5. The mounting member 3 comprises a protective sleeve 31 and a connecting base 32. The receiving chamber 5 is located in the protective sleeve 31, the protective sleeve 31 is detachably arranged on the connecting base 32, the bottom surface of the connecting base 32 is provided with a mounting connector 7, and the temperature measurement mouth 4 is located on the mounting connector 7. The bottom surface of the connecting base 32 is provided with a profiled inclined surface 8 arranged around the mounting connector 7.
[0042] In the embodiment, the temperature measurement module 1 and the communication feedback module 2 are arranged on the positioning frame 6, and the positioning frame 6 is arranged in the receiving chamber 5. Moreover, the positioning frame 6 is slidingly arranged in the receiving chamber 5, and the sliding direction of the positioning frame 6 is the direction of the sleeve opening of the protective sleeve 31.
[0043] In the embodiment, the transceiving antenna 10 is detachably arranged on the connecting seat 11, and the transceiving antenna 10 is electrically connected with the communication feedback module 2. The mounting member 3 is provided with the connecting seat 11.
[0044] In summary, the utility model provides a kind of temperature detection device, including temperature measurement module, communication feedback module and for being set on the installation piece of equipment to be measured, installation piece is installed on equipment to be measured in use, in the installation of temperature measurement module simultaneously with the detection end of temperature measurement module in temperature measurement port to equipment to be measured, employer temperature measurement module accurately detects the temperature of equipment to be measured, and communication feedback module is in real time feedback detection result to staff, ensure that it can receive the temperature abnormal condition of equipment to be measured in time, with independent power supply, shell uses split type mounting structure, convenient to use.
[0045] The above is only the embodiment of the utility model, and does not limit the patent range of the utility model, and any equivalent transformation, direct or indirect application in related technical fields using the contents of the utility model specification and drawings are also included in the patent protection range of the utility model.
Claims
1. A temperature detecting device characterized by comprising: The temperature measuring module, the communication feedback module and a mounting member for being arranged on the device to be measured are included; The temperature measuring module and the communication feedback module are arranged on the mounting member, the mounting member is used for abutting against a surface of the device to be measured, a temperature measuring port is arranged on the surface, a detection end of the temperature measuring module is located in the temperature measuring port, and the temperature measuring module is in communication connection with the communication feedback module.
2. The temperature detecting device according to claim 1, wherein An accommodation chamber in communication with the temperature measuring port is arranged in the mounting member, and the temperature measuring module and the communication feedback module are located in the accommodation chamber.
3. The temperature detecting device according to claim 2, wherein The mounting member includes a protective sleeve and a connecting base. The accommodation chamber is located in the protective sleeve, the protective sleeve is detachably arranged on the connecting base, and the temperature measuring port is arranged on the connecting base.
4. The temperature detecting device according to claim 3, wherein A positioning frame is further included; The temperature measuring module and the communication feedback module are arranged on the positioning frame, and the positioning frame is arranged in the accommodation chamber.
5. The temperature detecting device according to claim 4, wherein The positioning frame is slidably arranged in the accommodation chamber, and a sliding direction of the positioning frame is a direction of entering or exiting a sleeve opening of the protective sleeve.
6. The temperature detecting device according to claim 3, wherein A bottom surface of the connecting base is provided with a mounting joint, and the temperature measuring port is located on the mounting joint.
7. The temperature detecting device according to claim 6, wherein A profiled inclined surface is arranged around the mounting joint on a bottom surface of the mounting member.
8. The temperature detecting device according to claim 1, wherein A power supply battery is further included; The power supply battery is arranged on the mounting member, and the power supply battery is in electrical connection with the temperature measuring module and the communication feedback module respectively.
9. The temperature detecting device according to claim 1, wherein A transceiving antenna is further included; The transceiving antenna is arranged on the mounting member, and the transceiving antenna is in electrical connection with the communication feedback module.
10. The temperature detecting device according to claim 9, wherein A connecting seat is arranged on the mounting member, and the transceiving antenna is detachably arranged on the connecting seat.