Industrial temperature measurement thermal infrared imager convenient to assemble

Through a magnetic quick-release mechanism and modular design, the industrial temperature measurement infrared thermal imager can be quickly assembled and easily maintained, solving the problems of complex assembly and cumbersome maintenance of traditional equipment, and adapting to the needs of rapid installation and maintenance in industrial sites.

CN223727271UActive Publication Date: 2025-12-26XI'AN POLYTECHNIC UNIVERSITY
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Patent Information

Application Number
CN202522489033.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-11-24
Publication Date
2025-12-26
Estimated Expiration
2035-11-24

AI Technical Summary

Technical Problem

Existing traditional industrial temperature measurement infrared thermal imagers are complex to assemble, time-consuming, and prone to assembly errors. They are also cumbersome to maintain, making it difficult to meet the needs of rapid installation and convenient maintenance in industrial scenarios.

Method used

It adopts a magnetic quick-release mechanism and modular design, including quick fixation of the magnetic post and the plug slot, limiting of the plug strip and the plug slot, stable positioning of the cushioning foam, and a detachable top cover and angle adjustment mechanism. Combined with the convenient connection of Type-C connector and VGA interface, it can achieve quick assembly and independent disassembly.

Benefits of technology

The installation steps of the lens module have been simplified, assembly errors have been reduced, maintenance efficiency has been improved, the needs of rapid installation and convenient maintenance in industrial sites have been met, and costs and time costs have been reduced.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides an industrial temperature measurement thermal infrared imager convenient to assemble, which belongs to the technical field of industrial temperature measurement equipment and comprises an outer shell, one end of the outer shell is connected with a temperature measurement thermal infrared imaging lens module through a magnetic quick release mechanism, and the inner part of the outer shell is divided into a control panel mounting cavity and a battery mounting cavity through a fixedly connected isolation seat. According to the industrial temperature measurement thermal infrared imager provided by the utility model, the magnetic quick-release mechanism is arranged, so that the temperature measurement thermal infrared imager lens module and the outer shell can be quickly magnetically adsorbed and fixed in an inserted connection manner through the magnet columns and the inserted connection grooves, and complicated screw alignment operation is not needed; the installation steps of the lens module are greatly simplified, the upper cover plate is connected with the T-shaped insertion grooves of the outer shell in an inserted mode through the T-shaped insertion strips of the insertion mechanism, the clamping pieces and the manual bolts are matched for locking, the convenience of overall assembly is further improved, and ordinary operators can also rapidly complete equipment assembly.
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Description

TECHNICAL FIELD

[0001] The utility model relates to industrial temperature measuring equipment technical field, concretely is an industrial temperature measuring infrared thermal imager convenient to assemble. BACKGROUND

[0002] In the industrial production field, infrared thermal imager is the important tool for realizing equipment temperature monitoring, fault early warning, but the existing traditional industrial temperature measuring infrared thermal imager still has certain deficiency in practical application:

[0003] 1) the overall structure of traditional industrial temperature measuring infrared thermal imager is integrated or connects through a large number of screws, needs the accurate alignment of the hole position of multiple components when assembling, also has to carefully comb the complex line connection, not only consumes a lot of time, and very easy to appear assembly error, the professional skill requirement of operator is higher;

[0004] 2) when the equipment needs to be maintained or replaces part of the component in the later use, the disassembly process is also tedious, often needs to disassemble the whole equipment, can only overhaul or replace local parts, greatly increases the maintenance cost and time cost, is difficult to meet the demand of quick installation, convenient maintenance under the industrial scene. UTILITY MODEL CONTENT

[0005] The utility model aims at providing an industrial temperature measuring infrared thermal imager convenient to assemble to solve the problem in the above background art.

[0006] In order to realize the above-mentioned purpose, the utility model provides the following technical scheme: an industrial temperature measuring infrared thermal imager convenient to assemble, including shell body, the one end of shell body is connected with temperature measuring infrared thermal imager lens module through magnetic quick release mechanism, the inside of shell body is separated with control panel installation cavity and battery installation cavity through fixed connection's isolating seat, the inside temperature measuring infrared thermal imager control panel is installed in control panel installation cavity, the inside spare battery is installed in battery installation cavity;

[0007] The one end of shell body is connected with backplate, the top of shell body is detachably connected with upper cover plate through the plug-in mechanism, the upper cover plate is also installed with the installation mechanism convenient to angle adjustment, the bottom of shell body is fixedly connected with the mounting seat, a plurality of track grooves are formed in the bottom of mounting seat.

[0008] As a preferred scheme of the utility model: the temperature measuring infrared thermal imager lens module includes infrared lens, the inside temperature measuring sensor is installed in the lens shell of infrared lens, the lens shell is made of metal material, and the terminal block for the power supply and output transmission of infrared lens and temperature measuring sensor is installed on the back of lens shell.

[0009] As an optimal scheme of the utility model: the magnetic quick release mechanism includes multiple magnet columns fixedly installed at one end of the outer shell body, the magnet columns are inserted and fixed with the plug-in grooves provided on the back of the lens shell body and are magnetically adsorbed.

[0010] As an optimal scheme of the utility model: the temperature measurement infrared thermal imager control panel includes a control mainboard, the bottom of the control mainboard is fixedly connected with a mounting plate, the bottom of the mounting plate is fixedly connected with a plug-in strip, the top of the control mainboard is bonded with a buffer foam sheet, when the temperature measurement infrared thermal imager control panel is installed inside the control panel mounting cavity, the plug-in strip is inserted and limited with the plug-in groove provided in the inside of the shell body, and the top of the buffer foam sheet is tightly abutted with the bottom of the isolation seat.

[0011] As an optimal scheme of the utility model: one end of the control mainboard is integrated with a plug-in terminal, one end of the plug-in terminal is inserted with a terminal seat through the hole provided in the shell body, the other end of the control mainboard is integrated with a VGA interface, one end of the mounting plate is installed with a Type-c connector electrically connected with the control mainboard, one end of the Type-c connector and the VGA interface is inserted through the hole provided in the back plate and placed outside the shell body.

[0012] As an optimal scheme of the utility model: the inside bottom of the back plate is fixedly connected with a positioning protrusion, the positioning protrusion is inserted and connected with one end of the plug-in groove.

[0013] As an optimal scheme of the utility model: the upper cover plate is in the shape of "L", both sides of one end of the upper cover plate are fixedly connected with clamping sheets, after the upper cover plate is inserted into the shell body through the plug-in mechanism, one end of the upper cover plate is pressed and fixed to the back plate, the two clamping sheets are clamped to the two sides of the shell body, and the clamping sheets are further locked and fixed to the threaded holes provided in the shell body through manual bolts.

[0014] As an optimal scheme of the utility model: the plug-in mechanism includes a T-shaped plug-in strip fixedly connected to the bottom of the other end of the upper cover plate, the T-shaped plug-in strip is inserted and fixed with the T-shaped plug-in groove provided in the top of the shell body.

[0015] As an optimal scheme of the utility model: the bottom of the backup battery is clamped and connected with the limiting groove provided in the surface of the isolation seat.

[0016] As an optimal scheme of the utility model: the mounting mechanism includes a ball head seat fixedly connected with one end of the outside of the upper cover plate through a screw, the ball head seat is connected with a connecting seat through a mounted ball head, multiple mounting holes are provided in the surface of the connecting seat.

[0017] Compared with the prior art, the utility model has the beneficial effects that:

[0018] 1) The industrial temperature measurement infrared thermal imager is provided with the magnetic quick release mechanism, so that the temperature measurement infrared thermal imaging lens module and the shell body can be quickly magnetically adsorbed and plug-in fixed through the magnet column and the plug-in slot, without the need of complicated screw alignment operation, greatly simplifying the installation steps of the lens module, in addition, the temperature measurement infrared thermal imager control panel is plug-in limited with the plug-in slot of the shell body, and then the buffer foam sheet and the isolation seat are abutted, at the same time, the positioning protrusion of the back plate can assist positioning, and can be quickly and stably installed in the control panel installation cavity, and the standby battery can be conveniently installed through the limiting groove of the isolation seat, the upper cover plate is plug-in through the T-shaped plug-in strip of the plug-in mechanism and the T-shaped plug-in slot of the shell body, and then the clamping sheet and the manual bolt are locked, the convenience of overall assembly is further improved, so that ordinary operating personnel can also quickly complete equipment assembly.

[0019] 2) The industrial temperature measurement infrared thermal imager of the utility model is maintained and used, the modular structure design makes each component can be independently disassembled, when the infrared lens needs to be replaced, the lens module can be easily disassembled through the magnetic quick release mechanism, without the need of operating the control panel and other components, and the Type-c connector and the VGA interface are arranged outside the shell body, convenient for data transmission and equipment connection, the installation mechanism adopts the cooperation of the ball head and the ball seat, can flexibly adjust the angle of the infrared thermal imager, adapts to different industrial temperature measurement scenes, and the track groove at the bottom of the mounting seat also provides convenience for installation and position adjustment of the equipment in the industrial field, greatly reduces the later maintenance cost and time cost, meets the needs of quick installation and convenient maintenance in the industrial scene. BRIEF DESCRIPTION OF DRAWINGS

[0020] Figure 1 It is the overall structure schematic view of the utility model;

[0021] Figure 2 It is the overall structure schematic view of the utility model;

[0022] Figure 3 It is the partial split schematic view of the utility model;

[0023] Figure 4 It is the upper cover plate structure schematic view of the utility model;

[0024] Figure 5 It is the shell body structure schematic view of the utility model;

[0025] Figure 6 It is the temperature measurement infrared thermal imager control panel structure schematic view of the utility model;

[0026] Figure 7 It is the temperature measurement infrared thermal imager control panel structure schematic view of the utility model.

[0027] In the figure: 100, outer shell; 110, magnetic quick release mechanism; 111, magnet column; 112, plug-in slot; 120, isolation seat; 130, control panel mounting cavity; 140, battery mounting cavity; 150, back plate; 151, positioning protrusion; 160, plug-in mechanism; 161, T-shaped plug-in strip; 162, T-shaped plug-in slot; 170, upper cover plate; 171, clamping piece; 172, manual bolt; 200, temperature measurement infrared thermal imaging lens module; 210, infrared lens; 220, terminal seat; 300, temperature measurement infrared thermal imager control panel; 310, control mainboard; 311, buffer foam piece; 320, mounting plate; 330, plug-in strip; 340, plug-in groove; 350, plug-in terminal; 360, VGA interface; 370, Type-c connector; 400, backup battery; 410, limiting groove; 500, mounting mechanism; 510, ball head seat; 520, ball head; 530, connecting seat; 600, mounting seat; 610, track groove. DETAILED DESCRIPTION

[0028] In order to make the purpose, technical scheme and advantages of the embodiments of the present application clearer, the technical scheme in the embodiments of the present application will be described clearly and completely below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are some embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.

[0029] Please refer to Figures 1-7 A convenient-to-assemble industrial temperature measurement infrared thermal imager, comprising an outer shell 100, one end of the outer shell 100 is connected with a temperature measurement infrared thermal imaging lens module 200 through a magnetic quick release mechanism 110, the inside of the outer shell 100 is divided into a control panel mounting cavity 130 and a battery mounting cavity 140 through a fixedly connected isolation seat 120, the control panel mounting cavity 130 is internally mounted with a temperature measurement infrared thermal imager control panel 300, and the battery mounting cavity 140 is internally mounted with a backup battery 400.

[0030] One end of the outer shell 100 is clamped and connected with a back plate 150, the top of the outer shell 100 is detachably connected with an upper cover plate 170 through a plug-in mechanism 160, the upper cover plate 170 is further mounted with a mounting mechanism 500 convenient for angle adjustment, the bottom of the outer shell 100 is fixedly connected with a mounting seat 600, and the bottom of the mounting seat 600 is provided with a plurality of track grooves 610.

[0031] Specifically, during installation or maintenance of the industrial temperature measurement infrared thermal imager in the industrial field, first, the magnetic quick release mechanism 110 is used to realize quick docking with the temperature measurement infrared thermal imaging lens module 200, facilitating installation and replacement of the lens. The isolation seat 120 separates the inner housing 100 into a control board mounting cavity 130 and a battery mounting cavity 140, so that the control assembly and the power supply assembly are independently placed to avoid mutual interference. The control board mounting cavity 130 provides installation space for the temperature measurement infrared thermal imager control panel 300, and the battery mounting cavity 140 is used to place a backup battery 400 to ensure the endurance of the equipment. The back plate 150 closes the end of the housing 100 through clamping connection to prevent the internal components from being affected by dust or external force. The upper cover plate 170 is quickly installed on the top of the housing 100 through the plug-in mechanism 160, which not only protects the internal structure but also provides support for the installation mechanism 500. The installation mechanism 500 can flexibly adjust the angle of the equipment to adapt to different temperature measurement scenes. The mounting seat 600 and the rail groove 610 at the bottom facilitate the fixation of the equipment on the bracket or guide rail of the industrial production line, realizing overall quick deployment.

[0032] In the present embodiment: the temperature measurement infrared thermal imaging lens module 200 includes an infrared lens 210, and a temperature measurement sensor is installed inside the lens housing of the infrared lens 210. The lens housing is made of metal material, and a terminal block 220 for power supply and output transmission of the infrared lens 210 and the temperature measurement sensor is installed on the back of the lens housing.

[0033] Specifically, the metal lens housing not only provides stable protection for the infrared lens 210 and the temperature measurement sensor, but also quickly dissipates the heat generated during the operation of the components through its own heat conduction property, avoiding the influence of high temperature on measurement accuracy. During industrial temperature measurement, the infrared lens 210 of the temperature measurement infrared thermal imaging lens module 200 is responsible for collecting the infrared radiation signal of the measured equipment. The internal temperature measurement sensor converts the infrared signal into an electrical signal to provide raw data for temperature calculation. The terminal block 220 is connected with the lines of the infrared lens 210 and the temperature measurement sensor to obtain the electrical signal and provide power supply.

[0034] In the present embodiment: the magnetic quick release mechanism 110 includes a plurality of magnet columns 111 fixedly installed at one end of the housing 100, and the magnet columns 111 are inserted and fixed with the plug-in groove 112 opened on the back of the lens housing and magnetically attracted.

[0035] Specifically, when the temperature measurement infrared thermal imaging lens module 200 needs to be installed, the operator aligns the insertion slot 112 on the back of the lens shell with the magnet column 111 at one end of the outer shell 100. The insertion of the insertion slot 112 and the magnet column 111 is first precisely positioned to prevent the lens from being installed off-center and affecting the temperature measurement alignment. The magnetic force generated by the magnet column 111 will firmly attract the lens shell to the outer shell 100, and no additional tools are needed to complete the fixation, meeting the rapid assembly requirements of industrial sites. When the lens needs to be replaced or maintained, only the appropriate external force is needed to overcome the magnetic force to separate the temperature measurement infrared thermal imaging lens module 200 from the outer shell 100, avoiding the cumbersome disassembly problem of the traditional screw fixation method, and greatly improving the maintenance efficiency.

[0036] In this embodiment: the temperature measurement infrared thermal imager control panel 300 includes a control mainboard 310, the bottom of the control mainboard 310 is fixedly connected with a mounting plate 320, the bottom of the mounting plate 320 is fixedly connected with an insertion strip 330, the top of the control mainboard 310 is bonded with a buffer foam sheet 311, when the temperature measurement infrared thermal imager control panel 300 is installed inside the control panel mounting cavity 130, the insertion strip 330 is inserted and limited with the insertion groove 340 provided inside the outer shell 100, and the top of the buffer foam sheet 311 is tightly abutted with the bottom of the isolation seat 120.

[0037] Specifically, when the temperature measurement infrared thermal imager control panel 300 is installed, the insertion strip 330 at the bottom of the mounting plate 320 is precisely inserted with the insertion groove 340 inside the outer shell 100, limiting the left and right movement of the control panel inside the control panel mounting cavity 130, ensuring accurate alignment of the circuit interface, and the buffer foam sheet 311 on the top of the control mainboard 310 is tightly abutted with the bottom of the isolation seat 120 after the control panel is completely installed, using the elastic buffer of the foam to buffer the impact of industrial site vibration on the control panel, avoiding component loosening or solder point falling, effectively realizing the rapid positioning and installation of the temperature measurement infrared thermal imager control panel 300, and providing stable protection for the equipment during operation, ensuring reliable operation of the circuit system.

[0038] In this embodiment: one end of the control mainboard 310 is integrated with an insertion terminal 350, one end of the insertion terminal 350 passes through the opening provided in the outer shell 100 and is inserted with the terminal seat 220, the other end of the control mainboard 310 is integrated with a VGA interface 360, one end of the mounting plate 320 is installed with a Type-c connector 370 electrically connected with the control mainboard 310, and one end of the Type-c connector 370 and the VGA interface 360 passes through the opening provided in the back plate 150 and is placed outside the outer shell 100.

[0039] Specifically, when the control mainboard 310 is working, the plug-in terminal 350 is plugged with the terminal seat 220 of the temperature measurement infrared thermal imaging lens module 200 to transmit the temperature electrical signal collected by the lens module to the control mainboard 310 in real time for processing, and at the same time, stable power supply is provided for the lens module.

[0040] The VGA interface 360 can be directly connected with an industrial display to visually display the processed thermal image and temperature data, so that an operator can monitor in real time. The Type-c connector 370 can be used to charge the device to supplement the power of the backup battery 400, and can also be used to realize data interaction and direct power supply with a computer and other devices, so as to facilitate storage and analysis of temperature data. The cooperation of various interfaces meets the requirements of signal transmission, power supply and data management in an industrial scene.

[0041] In the embodiment, the inner bottom of the back plate 150 is fixedly connected with a positioning protrusion 151, and the positioning protrusion 151 is plugged with one end of the plug-in groove 340.

[0042] Specifically, when the back plate 150 is installed, the operator aligns the back plate 150 with the end of the outer shell 100 and clamps it in place. At this time, the positioning protrusion 151 at the inner bottom of the back plate 150 is inserted into one end of the plug-in groove 340 inside the outer shell 100, and forms end limiting with the plug-in strip 330 of the temperature measurement infrared thermal imager control board 300, so as to prevent the control mainboard 310 from sliding along the plug-in groove direction during device working or moving, and further enhance the installation stability of the control mainboard 310. At the same time, the cooperation of the positioning protrusion 151 and the plug-in groove 340 also provides accurate positioning for the installation of the back plate 150, so as to ensure that the back plate 150 can accurately clamp and close the end of the outer shell 100, and avoid exposure or dust entering of internal components due to installation deviation.

[0043] In the embodiment, the upper cover plate 170 has an "L" shape, and two clamping pieces 171 are fixedly connected to one end of the upper cover plate 170. After the upper cover plate 170 is plugged with the outer shell 100 through the plug-in mechanism 160, one end of the upper cover plate 170 is pressed and fixed to the back plate 150, and the two clamping pieces 171 are clamped to the two sides of the outer shell 100. In addition, the clamping pieces 171 are also locked and fixed to the threaded holes of the outer shell 100 through the manual bolts 172.

[0044] Specifically, when the upper cover plate 170 is installed, one end of the upper cover plate 170 is tightly pressed against the back plate 150 to prevent the back plate 150 from loosening and falling off in a vibrating environment, and the clamping pieces 171 on both sides are clamped from both sides of the outer shell 100 to limit the lateral movement of the upper cover plate 170 itself. In combination with the locking and fixing of the manual bolt 172 and the threaded hole of the outer shell 100, a multiple stable structure is formed, which not only realizes the rapid pre-fixing of the upper cover plate 170, but also ensures the connection strength through the bolt, effectively avoiding the loosening of the upper cover plate 170 and the back plate 150 in a high-frequency vibrating environment in the industrial field, and ensuring the stability of the overall structure of the equipment.

[0045] In the embodiment, the plug-in mechanism 160 includes a T-shaped plug-in strip 161 fixedly connected to the other end of the bottom of the upper cover plate 170, and the T-shaped plug-in strip 161 is plug-in fixed with a T-shaped plug-in slot 162 provided at the top of the outer shell 100.

[0046] Specifically, when the upper cover plate 170 is installed, the operator aligns the T-shaped plug-in strip 161 at the other end of the bottom of the upper cover plate 170 with the T-shaped plug-in slot 162 at the top of the outer shell 100, and pushes the upper cover plate 170 along the slot to realize rapid plug-in, ensuring the accurate installation position of the upper cover plate 170, and providing a basis for subsequent clamping of the clamping pieces 171 and fixing of the manual bolt 172. At the same time, the guiding effect of the T-shaped plug-in makes the installation process of the upper cover plate 170 unnecessary to repeatedly align, reducing the operation difficulty, and cooperating with the pressing effect of the “L”-shaped structure on the back plate 150, forming an efficient and stable assembly method to adapt to the rapid installation demand in the industrial scene.

[0047] In the embodiment, the bottom of the backup battery 400 is clamped and connected with a limiting groove 410 provided on the surface of the isolation seat 120, and the backup battery 400 is also electrically connected with the power supply end socket of the control mainboard 310 through the wire arrangement cooperation terminal.

[0048] Specifically, when the backup battery 400 is installed, the operator puts the battery into the battery installation cavity 140, and the bottom of the battery will naturally be clamped into the limiting groove 410 on the surface of the isolation seat 120 to limit the movement of the battery in the horizontal direction, preventing the battery from causing poor contact with the power supply interface of the control board due to shaking when the equipment is moved, carried or vibrated in the industrial field. Moreover, the clamping cooperation does not require additional fixing parts, which not only simplifies the installation steps of the battery, but also ensures the stability of power supply during the operation of the equipment, ensuring that the infrared thermal imager can still operate continuously and reliably without external power supply.

[0049] In the embodiment, the installation mechanism 500 includes a ball head seat 510 fixedly connected to one end of the outer side of the upper cover plate 170 by means of a screw, the ball head seat 510 is connected with a connecting seat 530 through a ball head 520 installed thereon, and a plurality of mounting holes are provided on the surface of the connecting seat 530.

[0050] Specifically, when the infrared thermal imager is fixed in the industrial field, the ball head base 510 of the mounting mechanism 500 is firmly connected with the upper cover plate 170 through screws, the ball head 520 can be flexibly rotated in the ball head base 510, and the connecting base 530 is driven to realize multi-angle adjustment, the operator can rotate the equipment according to the position and angle requirement of the measured equipment, so that the infrared lens 210 is aligned with the monitoring area, and the temperature measurement requirement of different positions and different angles of the production line is met; the plurality of mounting holes on the surface of the connecting base 530 are used for being connected with the field support or fixing base, and are fixed through bolts after the angle adjustment is completed, so that the equipment can stably work at the adjusted angle, and the temperature measurement accuracy is avoided from being affected by the angle deviation caused by vibration.

[0051] The contents not described in detail in the description belong to the prior art known by the person skilled in the art, although the utility model has been described in detail with reference to the foregoing embodiments, the person skilled in the art can still modify the technical solutions recorded in the foregoing embodiments or make equivalent replacement to part of the technical features, any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the utility model should be included in the protection scope of the utility model.

Claims

1. An industrial temperature measuring infrared thermal imager which is easy to assemble, comprising an outer housing (100), characterized in that: One end of the shell body (100) is connected with a temperature measurement infrared thermal imaging lens module (200) through a magnetic quick release mechanism (110), the inside of the shell body (100) is divided into a control panel mounting cavity (130) and a battery mounting cavity (140) by a fixedly connected isolation seat (120), the inside of the control panel mounting cavity (130) is mounted with a temperature measurement infrared thermal imager control panel (300), and the inside of the battery mounting cavity (140) is mounted with a backup battery (400). One end of the shell body (100) is clamped and connected with a back plate (150), the top of the shell body (100) is detachably connected with an upper cover plate (170) through a plug-in mechanism (160), the upper cover plate (170) is also mounted with a mounting mechanism (500) facilitating angle adjustment, and the bottom of the shell body (100) is fixedly connected with a mounting seat (600), and a plurality of track grooves (610) are formed in the bottom of the mounting seat (600).

2. The industrial temperature measurement infrared thermal imager of claim 1, wherein: The temperature measurement infrared thermal imaging lens module (200) comprises an infrared lens (210), a temperature measurement sensor is mounted in the lens shell of the infrared lens (210), the lens shell is made of metal material, and a terminal seat (220) for power supply and output transmission of the infrared lens (210) and the temperature measurement sensor is mounted on the back of the lens shell.

3. The industrial temperature measurement infrared thermal imager of claim 2, wherein: The magnetic quick release mechanism (110) comprises a plurality of magnet columns (111) fixedly mounted at one end of the shell body (100), and the magnet columns (111) are plug-in fixed and magnetically adsorbed with plug-in grooves (112) formed on the back of the lens shell.

4. The industrial temperature measuring infrared thermal imager of claim 2, wherein: The temperature measurement infrared thermal imager control panel (300) comprises a control mainboard (310), the bottom of the control mainboard (310) is fixedly connected with a mounting plate (320), the bottom of the mounting plate (320) is fixedly connected with a plug-in strip (330), the top of the control mainboard (310) is bonded with a buffer foam sheet (311), when the temperature measurement infrared thermal imager control panel (300) is mounted in the control panel mounting cavity (130), the plug-in strip (330) is plug-in limited with a plug-in groove (340) formed in the inside of the shell body (100), and the top of the buffer foam sheet (311) is tightly abutted with the bottom of the isolation seat (120).

5. The industrial temperature measuring infrared thermal imager of claim 4, wherein: One end of the control mainboard (310) is integrated with a plug-in terminal (350), one end of the plug-in terminal (350) penetrates an opening of the shell body (100) and is plug-in with the terminal seat (220), the other end of the control mainboard (310) is integrated with a VGA interface (360), one end of the mounting plate (320) is mounted with a Type-c connector (370) electrically connected with the control mainboard (310), and one end of the Type-c connector (370) and the VGA interface (360) penetrates an opening of the back plate (150) and is placed outside the shell body (100).

6. The industrial temperature measuring infrared thermal imager of claim 4, wherein: The inside bottom of the back plate (150) is fixedly connected with a positioning protrusion (151), and the positioning protrusion (151) is plug-in connected with one end of the plug-in groove (340).

7. The industrial temperature measurement infrared thermal imager of claim 1, wherein: The upper cover plate (170) is L-shaped, both sides of one end of the upper cover plate (170) are fixedly connected with clamping pieces (171), after the upper cover plate (170) is inserted into the outer shell (100) through the inserting mechanism (160), one end of the upper cover plate (170) is pressed and fixed to the back plate (150), the two clamping pieces (171) are clamped to the two sides of the outer shell (100), and the clamping pieces (171) are further locked and fixed to the threaded holes of the outer shell (100) through the hand bolts (172).

8. The industrial temperature measurement infrared thermal imager of claim 1, wherein: The inserting mechanism (160) comprises a T-shaped inserting strip (161) fixedly connected to the bottom of the other end of the upper cover plate (170), and the T-shaped inserting strip (161) is inserted and fixed into the T-shaped inserting groove (162) formed in the top of the outer shell (100).

9. The industrial temperature measurement infrared thermal imager of claim 1, wherein: The bottom of the standby battery (400) is clamped and connected to the limiting groove (410) formed in the surface of the isolation seat (120).

10. The industrial temperature measurement infrared thermal imager of claim 1, wherein: The mounting mechanism (500) comprises a ball head seat (510) fixedly connected to the outer side of one end of the upper cover plate (170) by means of a screw, the ball head seat (510) is connected with a connecting seat (530) through a mounted ball head (520), and a plurality of mounting holes are formed in the surface of the connecting seat (530).