Electrical fire-fighting detection equipment
By combining a high-precision infrared thermometer and an ultrasonic detector, the problems of poor detection effect and inadequate alarm function of electrical fire protection testing equipment have been solved, achieving rapid and accurate fire prevention and improving the detection effect of electrical fire protection equipment.
Patent Information
- Application Number
- CN202423298769.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-31
- Publication Date
- 2026-01-16
- Estimated Expiration
- 2034-12-31
AI Technical Summary
Existing electrical fire protection testing equipment has poor testing effectiveness and inadequate alarm functions, making it unable to effectively prevent fires.
By combining a high-precision infrared thermometer and an ultrasonic detector, the system detects the temperature and discharge phenomena of electrical equipment through infrared and ultrasonic signals. The data is displayed on a screen and an audible alarm is emitted to alert staff, enabling rapid and accurate fire prevention.
It enables rapid and accurate measurement of the surface temperature of electrical equipment, detection of abnormal heating points, and timely prevention of fires, thus improving the effectiveness and reliability of electrical fire protection testing.
Smart Images

Figure CN223800014U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to electrical fire fighting technical field, concretely is a kind of electrical fire fighting detection equipment. BACKGROUND
[0002] Electrical fire fighting is a kind of fire prevention, fire extinguishing and rescue technical means, mainly applied to various electrical equipment, warehouse, workshop and other places. It prevents and responds to the fire caused by electrical fault through specific technical means, so as to protect the safety of personnel and property.
[0003] In prior art, the detection effect of ordinary electrical fire fighting detection equipment is poor and the alarm function is poor. UTILITY MODEL CONTENT
[0004] The utility model provides a kind of electrical fire fighting detection equipment to solve the problem in background art.
[0005] To achieve the above object, the utility model provides the following technical scheme: a kind of electrical fire fighting detection equipment, including integral device main body, the integral device main body includes connecting seat and fixed seat, wherein connecting seat is located at the bottom of integral device main body, and wherein fixed seat is located at the top of integral device main body, the longer side of the outer periphery of connecting seat is movably connected with storage drawer, the longer side of the outer periphery of storage drawer is provided with handle at middle, the outer periphery of the shorter side of storage drawer is provided with connecting block, the outer periphery of the top of storage drawer is provided with inner cavity, the shorter side of the outer periphery of connecting seat is installed with protective pad, and the outer periphery of the top of connecting seat is installed with fixed seat;
[0006] The shorter side of the outer periphery of fixed seat is installed with buzzer, the outer periphery of the top of fixed seat is provided with ultrasonic detector, the outer periphery of the top of fixed seat is installed with high-precision infrared thermometer away from ultrasonic detector, the longer side of the outer periphery of fixed seat is provided with display screen, and the longer side of the outer periphery of fixed seat is installed with control switch close to display screen.
[0007] Further, the longer side of the outer periphery of connecting seat is installed with protective pad, wherein the inside of protective pad is provided with buffer rebound sponge.
[0008] Further, the longer side of the outer periphery of connecting seat is installed with protective pad, wherein the inside of protective pad is provided with buffer rebound sponge.
[0009] Further, the longer side of the outer periphery of connecting seat is installed with protective pad, wherein the inside of protective pad is provided with buffer rebound sponge.
[0010] Further, four groups of control switches are evenly arranged on the longer side of the fixed seat close to the display screen.
[0011] Further, the fixed seat, the buzzer, the display screen, the control switch, the ultrasonic detector and the high-precision infrared thermometer are internally electrically connected.
[0012] Compared with the prior art, the electrical fire detection equipment has the following advantages
[0013] Beneficial effects:
[0014] 1. The electrical fire detection equipment is provided with a fixed seat, a buzzer, an ultrasonic detector, a high-precision infrared thermometer, a display screen and a control switch. Four groups of control switches are evenly arranged on the longer side of the fixed seat close to the display screen. The fixed seat, the buzzer, the display screen, the control switch, the ultrasonic detector and the high-precision infrared thermometer are internally electrically connected. The high-precision infrared thermometer converts the radiation energy of the emitted infrared rays into an electrical signal. The size of the infrared radiation energy corresponds to the temperature of the object itself. The temperature of the object can be determined according to the size of the converted electrical signal. In the electrical fire detection, the portable high-precision infrared thermometer can quickly and accurately measure the surface temperature of the object to find abnormal heating parts, thereby preventing the occurrence of fire. The ultrasonic detector works on the principle of heterodyne method and is a special instrument for detecting high-frequency sound waves of electrical spark discharge in electrical equipment operation. When the electrical system is running, the ultrasonic detector is used to detect the corona, creeping and arc (electric spark) and other strong discharge phenomena of the electrical equipment. These phenomena will form some form of ionization to interfere with the surrounding air molecules, thereby forming turbulence, i.e. the source of ultrasonic signals. The ultrasonic detector detects the high-frequency noise generated by these phenomena, uses the "heterodyne method" to compile it into an audible sound signal for the human ear, and provides data through the display screen. When the ultrasonic detector and the high-precision infrared thermometer detect abnormalities, the buzzer emits a sound to remind the staff and prevent the occurrence of fire. The electrical fire detection equipment effectively solves the problems of poor detection effect and poor alarm function of ordinary electrical fire detection equipment. BRIEF DESCRIPTION OF DRAWINGS
[0015] Fig. 1 It is a whole structure schematic view of the utility model;
[0016] Fig. 2 It is a storage drawer structure schematic view of the utility model;
[0017] Fig. 3 It is a fixed seat structure schematic view of the utility model.
[0018] In the figure: 1, the overall device main body; 2, connecting seat; 3, fixed seat; 4, protective pad; 5, buzzer; 6, ultrasonic detector; 7, high-precision infrared thermometer; 8, storage drawer; 9, handle; 10, connecting block; 11, inner cavity; 12, display screen; 13, control switch. DETAILED DESCRIPTION
[0019] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the utility model.
[0020] Please refer to Figs. 1-3 The utility model discloses an electrical fire-fighting detection equipment,
[0021] Specifically, an electrical fire-fighting detection equipment, including overall device main body 1, overall device main body 1 including connecting seat 2 and fixed seat 3, wherein connecting seat 2 is located at the bottom of overall device main body 1, wherein fixed seat 3 is located at the top of overall device main body 1, the longer side of the periphery of connecting seat 2 is movably connected with storage drawer 8, the longer side of the periphery of storage drawer 8 is provided with handle 9 at the middle, the shorter side of the periphery of storage drawer 8 is provided with connecting block 10, the top of the periphery of storage drawer 8 is provided with inner cavity 11, the shorter side of the periphery of connecting seat 2 is installed with protective pad 4, and the top of the periphery of connecting seat 2 is installed with fixed seat 3.
[0022] The shorter side of the periphery of fixed seat 3 is installed with buzzer 5, the top of the periphery of fixed seat 3 is provided with ultrasonic detector 6, the top of the periphery of fixed seat 3 is installed with high-precision infrared thermometer 7 away from ultrasonic detector 6, and the longer side of the periphery of fixed seat 3 is provided with display screen 12, and the longer side of the periphery of fixed seat 3 is installed with control switch 13 close to display screen 12.
[0023] In the embodiment, the longer side of the periphery of connecting seat 2 is installed with protective pad 4, and the inside of protective pad 4 is provided with buffer rebound sponge.
[0024] Specifically, the setting of multiple groups of protective pads 4 buffers the impact force from the outside, and protects the inside of overall device main body 1.
[0025] In the embodiment, connection grooves are formed on the longer sides of the inner part of the connecting seat 2, and the protective cloth is wrapped around the outer ring surface of the handle 9 arranged at the middle of the longer side of the outer periphery of the storage drawer 8, and the outer periphery size of the connecting block 10 arranged on the shorter sides of the outer periphery of the storage drawer 8 is matched with the inner size of the connection grooves formed on the longer sides of the inner part of the connecting seat 2.
[0026] Specifically, the staff puts the fire-fighting related tools into the inner cavity 11 of the storage drawer 8, and when it is needed to use, the storage drawer 8 is easily pulled out under the matching effect of the connecting block 10 and the connection groove by pulling the handle 9, and the arrangement of the protective cloth protects the hands of the staff and improves the comfort.
[0027] In the embodiment, four groups of control switches 13 are evenly arranged on the longer side of the outer periphery of the fixing seat 3 close to the display screen 12, and the fixing seat 3, the buzzer 5, the display screen 12, the control switch 13, the ultrasonic detector 6 and the high-precision infrared thermometer 7 are internally electrically connected.
[0028] Specifically, the high-precision infrared thermometer 7 converts the radiant energy of the emitted infrared rays into an electric signal, the size of the infrared radiation energy corresponds to the temperature of the object itself, and according to the size of the converted electric signal, the temperature of the object can be determined. In the fire electrical detection, the portable high-precision infrared thermometer 7 can quickly and accurately measure the surface temperature of the object to find abnormal heating parts, thereby preventing the occurrence of fire. At the same time, the working principle of the ultrasonic detector 6 is the heterodyne principle, which is a special instrument for detecting high-frequency sound waves of electrical spark discharge in electrical equipment operation. When the electrical system is running, the ultrasonic detector 6 is used to detect the corona, creeping and arc (electric spark) and other strong discharge phenomena of electrical equipment. These phenomena will form a certain form of ionization to interfere with the surrounding air molecules, thereby forming a source of ultrasonic signals. The ultrasonic detector 6 detects the high-frequency noise generated by these phenomena, uses the "heterodyne method" to compile it into an audible sound signal for the human ear, and provides data through the display screen 12. At the same time, when the ultrasonic detector 6 and the high-precision infrared thermometer 7 detect abnormalities, the buzzer 5 emits a sound to remind the staff and prevent the occurrence of fire.
[0029] In summary, the electrical fire detection equipment, when using the overall device body 1, the protective pad 4 is installed on the longer side of the connecting seat 2, and the inside of the protective pad 4 is provided with a buffer rebound sponge, so that the setting of the plurality of protective pads 4 buffers the impact force from the outside, protects the inside of the overall device body 1, the connecting groove is arranged on the longer side of the inside of the connecting seat 2, the protective cloth is wrapped on the outer ring surface of the handle 9 arranged at the middle of the longer side of the storage drawer 8, the outer peripheral size of the connecting block 10 arranged on the shorter side of the storage drawer 8 is matched with the inner size of the connecting groove arranged on the longer side of the inside of the connecting seat 2, so that the staff puts the fire-related tools into the inner cavity 11 of the storage drawer 8, when needed, the storage drawer 8 is pulled out under the matching of the connecting block 10 and the connecting groove, and the protective cloth protects the hands of the staff and improves the comfort, the control switch 13 is arranged on the longer side of the fixed seat 3 close to the display screen 12, and the inside of the fixed seat 3, the buzzer 5, the display screen 12, the control switch 13, the ultrasonic detector 6 and the high-precision infrared thermometer 7 is electrically connected, so that the high-precision infrared thermometer 7 converts the radiation energy of the emitted infrared rays into an electric signal, the size of the infrared radiation energy corresponds to the temperature of the object itself, and the temperature of the object can be determined according to the size of the converted electric signal; in the electrical fire detection, the portable high-precision infrared thermometer 7 can quickly and accurately measure the surface temperature of the object, find the abnormal heating position, thereby preventing the occurrence of fire, and the working principle of the ultrasonic detector 6 is the heterodyne principle, which is a special instrument for detecting high-frequency sound waves of electrical spark discharge in electrical equipment operation; when the electrical system operates, the ultrasonic detector 6 is used to detect the corona, creeping and arc (spark) and other strong discharge phenomena of the electrical equipment, which will form a certain form of ionization to interfere with the surrounding air molecules, thereby forming a source of turbulence, i.e. an ultrasonic signal, the ultrasonic detector 6 detects the high-frequency noise generated by the phenomenon, uses the "heterodyne method" to compile it into an audible sound signal for the human ear, and provides data through the display screen 12, and when the ultrasonic detector 6 and the high-precision infrared thermometer 7 detect abnormalities, the buzzer 5 emits a sound to remind the staff, preventing the occurrence of fire, effectively solving the problems of poor detection effect and poor alarm function of ordinary electrical fire detection equipment, so the utility model is a very practical product and is worth popularizing and applying.
[0030] Although the embodiments of the utility model have been shown and described, it can be understood by those skilled in the art that various changes, modifications, replacements and modifications can be made to these embodiments without departing from the principles and spirits of the utility model, and the scope of the utility model is defined by the appended claims and their equivalents.
Claims
1. An electrical fire detection device comprising a unitary device body (1) characterised in that: The whole device body (1) includes connecting seat (2) and fixed seat (3), wherein connecting seat (2) is located at the bottom of the whole device body (1), wherein fixed seat (3) is located at the top of the whole device body (1), the longer side of the outer periphery of the connecting seat (2) is movably connected with the storage drawer (8), the longer side of the outer periphery of the storage drawer (8) is provided with a handle (9) at the middle, the shorter sides of the outer periphery of the storage drawer (8) are provided with connecting blocks (10), the top of the outer periphery of the storage drawer (8) is provided with an inner cavity (11), the shorter sides of the outer periphery of the connecting seat (2) are provided with protective pads (4), and the top of the outer periphery of the connecting seat (2) is provided with a fixed seat (3); The shorter side of the outer periphery of the fixed seat (3) is provided with a buzzer (5), the top of the outer periphery of the fixed seat (3) is provided with an ultrasonic detector (6), the top of the outer periphery of the fixed seat (3) is provided with a high-precision infrared thermometer (7) away from the ultrasonic detector (6), the longer side of the outer periphery of the fixed seat (3) is provided with a display screen (12), and the longer side of the outer periphery of the fixed seat (3) close to the display screen (12) is provided with a control switch (13).
2. An electrical fire detection apparatus according to claim 1, wherein: The longer side of the outer periphery of the connecting seat (2) is provided with a protective pad (4), wherein the inside of the protective pad (4) is provided with a buffer rebound sponge.
3. An electrical fire detection apparatus according to claim 1, wherein: The longer sides of the inner periphery of the connecting seat (2) are provided with connecting grooves, and the outer ring surface of the handle (9) provided at the middle of the longer side of the outer periphery of the storage drawer (8) is wrapped with a protective cloth.
4. An electrical fire detection apparatus according to claim 1, wherein: The outer periphery of the connecting block (10) provided on the shorter sides of the outer periphery of the storage drawer (8) is matched with the inner periphery of the connecting groove provided on the longer sides of the inner periphery of the connecting seat (2).
5. An electrical fire detection apparatus according to claim 1, wherein: The longer side of the outer periphery of the fixed seat (3) close to the display screen (12) is provided with four groups of uniformly distributed control switches (13).
6. An electrical fire detection apparatus according to claim 1, wherein: The inner periphery of the fixed seat (3), the buzzer (5), the display screen (12), the control switch (13), the ultrasonic detector (6) and the high-precision infrared thermometer (7) are electrically connected.