Novel airway detection device
Through the design of metal hose and fan assembly with gas filter sponge and sealing foam, the structural complexity and false alarm problems of pump-suction gas detector are solved, and low-noise, low-power and high-sensitivity gas detection is achieved.
Patent Information
- Application Number
- CN202422514831.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-17
- Publication Date
- 2025-09-19
- Estimated Expiration
- 2034-10-17
AI Technical Summary
Existing pump-suction gas detectors have complex structures, large volumes, heavy masses, high power consumption, high noise, high costs, and cannot be bent, resulting in poor measurement stability, prone to false alarms, and unable to meet the requirements of small flows or fine sampling.
Metal hose and fan assembly are used in conjunction with sensor cover, gas filter sponge and sealing foam to achieve arbitrary angle bending and gas filtration, reduce sensor sampling impact, prevent side leakage, and improve detection sensitivity and reliability.
It achieves low noise and low power consumption, extends sensor life, is suitable for small flows or fine sampling, improves detection sensitivity and reliability, and avoids false alarms.
Smart Images

Figure CN223362152U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of detection devices, in particular to a novel airway detection device. Background Art
[0002] A portable gas detector is a portable gas detection tool primarily used to detect the type and concentration of gases in an environment. Using gas sensors to detect the composition and content of target gases, this instrument has a wide range of applications, including industrial safety, environmental monitoring, and emergency rescue. Portable gas detectors are crucial for ensuring industrial safety, environmental protection, and public safety.
[0003] Portable gas detectors rely on a variety of technologies and sensors to detect different gases. These include natural diffusion, multiple sensor technologies, optics, laser technology, and PID sensor technology. These technologies combine to ensure the instrument can accurately and efficiently detect a variety of gases.
[0004] Commonly used portable gas detectors can be divided into diffusion type gas detectors and pump suction type gas detectors according to their air intake method. Their specific application scenarios are as follows:
[0005] (1) Diffusion gas detectors are suitable for open places, such as open workshops. They can be worn on the body and continuously, in real time, and accurately display the concentration of toxic and harmful gases on site. This instrument can be installed on workers so that they can always understand the gas concentration in the surrounding environment to ensure safety. Diffusion gas detectors are also equipped with vibration alarm accessories to avoid the alarm being inaudible in noisy environments, and are equipped with computer chips to record data and provide specific guidance for workers' health and safety.
[0006] (2) Pump-type gas detectors are suitable for entering confined spaces for testing, such as reaction tanks, storage tanks, sewers, or other underground pipelines. Before entering these spaces, testing must be carried out to ensure safety. Pump-type gas detectors can actively extract samples for testing through the action of a pump, improving the efficiency and accuracy of testing.
[0007] At present, most of the pump-suction gas detectors on the market use the traditional combination of air pump motor and metal hard tube for gas sampling. The disadvantages of this method are poor measurement stability, complex structure, large size, heavy mass, high power consumption, high noise, high cost, short life, no gas filtering device, the probe cannot be bent and cannot be used flexibly, and it cannot achieve special requirements such as small flow or fine sampling. Moreover, this method has a great impact on the sensor sampling, and is prone to erroneous sampling, resulting in false alarms of the detector and other defects. Utility Model Content
[0008] In order to overcome the above technical problems, the utility model discloses a novel airway detection device.
[0009] The technical solution adopted by the present invention to achieve the above-mentioned purpose is:
[0010] A novel airway detection device, the device being electrically connected to a leak detector;
[0011] The device comprises:
[0012] a sensor housing including a front airway;
[0013] Gas filter sponge, which is arranged at the air inlet end of the front air duct and is used to filter out air moisture and particulate impurities;
[0014] a sensor assembly, which is arranged at the gas outlet end of the front airway and is used to detect gas concentration and composition;
[0015] A sealing foam is filled and disposed between the sensor cover and the sensor assembly to allow gas to enter the sensor assembly and prevent side leakage;
[0016] a fan assembly including a rear air duct for regulating the gas flow rate of the sensor assembly during preheating and operation according to gas concentration and sensitivity;
[0017] A metal hose, comprising a middle air passage, communicating with the sensor housing and the fan assembly, and configured to adjust a measurable range and a measuring angle;
[0018] The front airway, the middle airway and the rear airway are connected in sequence to form a detection airway.
[0019] The novel airway detection device described above, wherein the sensor housing comprises an air inlet housing portion and an air outlet housing portion that are integrally formed, and the cross-sectional diameter of the sensor housing gradually increases from the air inlet housing portion to the air outlet housing portion, and the front airway passes through the center of the sensor housing and connects the air inlet housing portion and the air outlet housing portion;
[0020] A filter sponge installation groove is provided on the air intake cover portion surrounding the front air duct, and the gas filter sponge is arranged in the filter sponge installation groove;
[0021] A foam installation groove is provided on the air outlet cover portion around the front air duct, and the sealing foam is installed in the foam installation groove and abuts against the sensor component.
[0022] The novel airway detection device mentioned above, wherein the sensor assembly includes a sensor, a sensor plate and a sensor seat, and the sensor is arranged corresponding to the front airway;
[0023] The sensor is electrically connected to the sensor plate and is installed in the metal hose through the sensor seat.
[0024] The novel airway detection device described above, wherein the sensor board includes a circuit board and an end pin positioning seat, the end pin positioning seat is provided with a plurality of end pin fixing grooves for fixing the end pins of the sensor, the end pins of the sensor are installed in the end pin fixing grooves and are electrically connected to the circuit board;
[0025] The circuit board is electrically connected to a warning light.
[0026] The novel airway detection device mentioned above, wherein the sensor seat comprises an integrally formed seat body, and a first mounting edge and a second mounting edge respectively extending from both ends of the seat body;
[0027] A first mounting groove for positioning the sensor is formed between the first mounting edge and the seat body, and a fool-proof positioning groove for fool-proof fixing of the sensor is provided in the first mounting groove;
[0028] A second mounting groove for positioning the end foot positioning seat is formed between the second mounting edge and the seat body;
[0029] A plurality of groups of end pin avoidance through holes for passing the end pins of the sensor are arranged through the seat body, and the end pin avoidance through holes are arranged corresponding to the end pin fixing grooves.
[0030] The novel airway detection device described above, wherein a plurality of groups of abutting and stabilizing protrusions and a plurality of groups of locking buckles are extended from the second mounting edge, and the abutting and stabilizing protrusions and the locking buckles are alternately arranged;
[0031] A plurality of locking through holes are provided through the circuit board;
[0032] The abutting and stabilizing protrusion abuts against the circuit board, and the locking buckle and the locking through hole are detachably arranged.
[0033] The above-mentioned novel airway detection device, wherein the metal hose comprises a hose body, and a first butt end and a second butt end provided at both ends of the hose body;
[0034] The first docking end includes a first receiving groove for receiving the sensor assembly, and a first locking thread structure is provided around the first receiving groove;
[0035] The second docking end includes a first docking seat, the first docking seat ring is provided with a fixing annular protrusion for fixing the fan assembly, and a stop annular protrusion for limiting the docking assembly position is provided between the first docking seat and the hose body.
[0036] The novel airway detection device described above, wherein the fan assembly includes a fan cover, a fan and a fan airtight pad, an airflow adjustment cavity is formed between the fan cover and the fan airtight pad, and the fan is arranged in the airflow adjustment cavity;
[0037] The fan cover includes a second docking seat, the second docking seat is provided with a fastening annular groove corresponding to the fastening annular protrusion, the first docking seat is inserted into the second docking seat, and the fastening annular protrusion is fastened in the fastening annular groove to achieve docking assembly;
[0038] A waterproof ring is provided between the fixing annular protrusion and the fixing annular groove.
[0039] The novel airway detection device described above further comprises an annular light guide ring, wherein the annular light guide ring comprises an integrally formed light guide end, and a third butt joint end and a fourth butt joint end provided at both ends of the light guide end;
[0040] A second receiving groove for receiving the sensor assembly is provided through the light guide end, and the light guide end is provided corresponding to the warning light;
[0041] The third docking end includes a mounting boss, and the air outlet cover portion is adaptively provided with a mounting groove corresponding to the mounting boss;
[0042] The fourth butting end includes a second locking thread structure adapted to match the first locking thread structure.
[0043] The novel airway detection device mentioned above, wherein the device further comprises an MCU processor, and the MCU processor is electrically connected to the fan and the warning light respectively;
[0044] The MCU processor controls the warning light via a single line of the MW1838EA protocol.
[0045] The beneficial effects of the present invention are as follows: the new detection airway device of the present invention innovatively cooperates with the metal hose and fan assembly for gas sampling, realizes bending at any angle to adjust the measurable range and measurement angle, and is provided with a gas filter sponge at the front end of the detection airway to effectively filter out air moisture and particulate impurities, reduce the impact on the sensor during sampling, avoid problems such as erroneous sampling leading to false alarms of the detector, extend the service life of the sensor, achieve the advantages of low noise and low power consumption, and is suitable for special sampling requirements such as small flow or fine sampling. Secondly, the sealing foam is used to allow the gas to be measured to enter the sensor assembly to prevent leakage, effectively improving the detection sensitivity and reliability. BRIEF DESCRIPTION OF THE DRAWINGS
[0046] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0047] Figure 1 It is a schematic diagram of the structure of the utility model;
[0048] Figure 2 It is a cross-sectional schematic diagram of the utility model;
[0049] Figure 3 This is an explosion diagram of the utility model;
[0050] Figure 4 It is a three-dimensional schematic diagram of the sensor seat in the present utility model;
[0051] Figure 5 It is a three-dimensional schematic diagram of the sensor board in the present utility model;
[0052] Figure 6 It is a three-dimensional schematic diagram of the metal hose in the utility model. DETAILED DESCRIPTION
[0053] The present invention will be further described below through specific embodiments to make the technical solution of the present invention easier to understand and grasp, rather than to limit the present invention.
[0054] Example: See Figures 1 to 6 , this embodiment provides a novel airway detection device, the device being electrically connected to a leak detector;
[0055] The device comprises:
[0056] A sensor housing 1 including a front airway;
[0057] The gas filter sponge 2 is arranged at the air inlet end of the front air duct and is used to filter out moisture and particulate impurities in the air;
[0058] a sensor assembly 3, which is arranged at the gas outlet end of the front airway and is used to detect gas concentration and composition;
[0059] A sealing foam 4 is filled and disposed between the sensor housing 1 and the sensor assembly 3 to prevent gas from entering the sensor assembly 3 and preventing side leakage;
[0060] A fan assembly 5, comprising a rear air duct, for regulating the gas flow of the sensor assembly 3 during preheating and operation according to gas concentration and sensitivity;
[0061] A metal hose 6, which includes a central air passage and communicates with the sensor housing 1 and the fan assembly 5, and is used to adjust the measurable range and measurement angle;
[0062] The front airway, the middle airway and the rear airway are connected in sequence to form a detection airway.
[0063] Specifically, the metal hose 6 and the fan assembly 5 are innovatively used in combination for gas sampling, and can be bent at any angle to adjust the measurable range and measurement angle. A gas filter sponge 2 is provided at the front end of the detection airway to effectively filter out moisture and particulate impurities in the air, reduce the impact on the sensor 31 during sampling, avoid problems such as erroneous sampling leading to false alarms of the detector, extend the service life of the sensor 31, achieve the advantages of low noise and low power consumption, and be suitable for special sampling requirements such as small flow or fine sampling. Secondly, the sealing foam 4 is used to allow the gas to be measured to enter the sensor assembly 3 to prevent leakage, effectively improving the detection sensitivity and reliability.
[0064] Preferably, the sensor cover 1 includes an air inlet cover portion and an air outlet cover portion that are integrally formed, and the cross-sectional diameter of the sensor cover 1 gradually increases from the air inlet cover portion to the air outlet cover portion, and the front air duct passes through the center of the sensor cover 1 and connects the air inlet cover portion and the air outlet cover portion;
[0065] A filter sponge installation groove is provided on the air intake cover portion surrounding the front air duct, and the gas filter sponge 2 is provided in the filter sponge installation groove;
[0066] A foam installation groove is provided on the air outlet cover portion surrounding the front air passage, and the sealing foam 4 is installed in the foam installation groove and abuts against the sensor assembly 3 .
[0067] Specifically, the sensor cover 1 is used to form the sealed front airway and protect the sensor assembly 3 and the sealing foam 4 to improve the stability and reliability of gas detection;
[0068] The sensor cover 1 is made of ABS plastic (or other types of plastic) or metal material, and its surface is processed by electroplating, electrophoresis or spraying.
[0069] Specifically, the gas filter sponge 2 is made of sponge material (including polyurethane, polyether, polyvinyl alcohol, polyester, etc.), but is not limited to sponge. It can also be a waterproof breathable membrane (the main component is tetrafluoroethylene polymer) and other materials to filter out air moisture and particulate impurities to protect the sensor 31 from damage or failure and extend the life of the sensor 31.
[0070] Specifically, the sealing foam 4 is made of foam material, including polyethylene foam, polyester foam, rubber foam, etc., and is used to allow gas to enter the interior of the sensor component 3 and prevent gas from leaking through the bypass, thereby causing a decrease in detection sensitivity or detection failure.
[0071] Preferably, the sensor assembly 3 includes a sensor 31, a sensor plate 32 and a sensor seat 33, and the sensor 31 is arranged corresponding to the front airway;
[0072] The sensor 31 is electrically connected to the sensor plate 32 and is installed in the metal hose 6 through the sensor seat 33; specifically, the sensor 31 can be selected according to the corresponding type and type for application according to different gas detection needs. The sensor 31 is used to detect gas concentration and composition. The goal is to convert gas information into electrical signals or other forms of information output to meet the requirements of information transmission, processing, storage, display, recording and control.
[0073] Preferably, the sensor board 32 includes a circuit board 321 and an end pin positioning seat 322, wherein the end pin positioning seat 322 is provided with a plurality of end pin fixing grooves for fixing the end pins of the sensor 31, and the end pins of the sensor 31 are installed in the end pin fixing grooves and are electrically connected to the circuit board 321;
[0074] The circuit board 321 is electrically connected to a warning light 323 .
[0075] Specifically, the sensor board 32 is made of FR-4 or other types of circuit board 321 materials, and is used to provide electrical connection for the sensor 31 and fix the sensor base 33;
[0076] The warning light 323 is a colorful warning light, model SMD / 1615 / RGB (full color), but not limited to this model, and is used to display three warning colors of red, orange, and yellow according to the detected gas concentration to warn the user.
[0077] Preferably, the sensor seat 33 includes an integrally formed seat body 331 , and a first mounting edge 332 and a second mounting edge 333 extending from both ends of the seat body 331 .
[0078] A first mounting groove for positioning the sensor 31 is formed between the first mounting edge 332 and the seat body 331 , and a foolproof positioning groove 334 for foolproofly fixing the sensor 31 is provided in the first mounting groove;
[0079] A second mounting groove for positioning the end foot positioning seat 322 is formed between the second mounting edge 333 and the seat body 331;
[0080] A plurality of end pin avoidance through holes 335 for inserting the end pins of the sensor 31 are provided through the seat body 331 , and the end pin avoidance through holes 335 are provided corresponding to the end pin fixing grooves.
[0081] Specifically, the sensor seat 33 is made of ABS plastic, and other types of plastics can also be used. The material type and color are not limited. It is used to fix the sensor 31 and prevent the sensor 31 from being inserted wrongly, causing malfunctions.
[0082] Preferably, a plurality of groups of abutting and stabilizing protrusions 336 and a plurality of groups of locking buckles 337 are extended from the second mounting edge 333 , and the abutting and stabilizing protrusions 336 and the locking buckles 337 are alternately arranged, thereby effectively improving the assembly stability of the circuit board 321 and the sensor base 33 ;
[0083] A plurality of locking through holes 324 are provided through the circuit board 321;
[0084] The abutting and stabilizing protrusion 336 abuts against the circuit board 321 , and the locking buckle 337 and the locking through hole 324 are detachably provided, thereby facilitating the assembly convenience of the circuit board 321 and the sensor base 33 .
[0085] Specifically, when the sensor 31 is assembled in the first mounting groove and the circuit board 321 is assembled on the second mounting groove, the end foot of the sensor 31 is fixed in the end foot fixing groove through the end foot avoidance hole 335, the abutting and stabilizing protrusion 336 abuts against the circuit board 321, and the locking buckle 337 is locked in the locking hole 324 to complete the assembly operation of the sensor component 3.
[0086] Preferably, the metal hose 6 includes a hose body 61 and a first butt end 62 and a second butt end 63 provided at both ends of the hose body 61;
[0087] The first docking end 62 includes a first receiving groove for receiving the sensor assembly 3, and a first locking thread structure is provided around the first receiving groove;
[0088] The second docking end 63 includes a first docking seat, which is provided with a fixing annular protrusion 64 for fixing the fan assembly 5, and a stop annular protrusion 65 for limiting the docking assembly position is provided between the first docking seat and the hose body 61.
[0089] Specifically, the metal hose 6 is used to support the sensor 31, extend the measurable range, and adjust the measuring angle of the sensor 31, wherein the hose body 61 is wrapped with a steel wire spring and a stainless steel outer layer, and the outermost layer is made of insulating materials such as thermoplastic tubes, and the first docking end 62 and the second docking end 63 are both made of aluminum alloy or copper alloy.
[0090] Preferably, the fan assembly 5 includes a fan cover 51, a fan 52 and a fan airtight pad 53, an airflow adjustment cavity is formed between the fan cover 51 and the fan airtight pad 53, and the fan 52 is disposed in the airflow adjustment cavity;
[0091] The fan cover 51 includes a second docking seat, and the second docking seat is provided with a fixing annular groove corresponding to the fixing annular protrusion 64. The first docking seat is inserted into the second docking seat, and the fixing annular protrusion 64 is fixed in the fixing annular groove to achieve docking assembly.
[0092] A waterproof ring 54 is provided between the fixing annular protrusion 64 and the fixing annular groove.
[0093] Specifically, the fan cover 51 is made of ABS plastic, and can also be made of other types of plastic or metal, and the material type is not limited. It is used to fix the fan 52 and form the airflow adjustment chamber with negative pressure with the fan 52;
[0094] The fan 52 is not limited to an axial flow fan 52, and may also be other types of fans 52 (e.g., a centrifugal fan 52, an ion fan 52, or other blower fans 52). The fan 52 is a core component of the airway system, and its function is to generate a flow-controllable negative pressure on the detection airway, provide a power source for gas inhalation, and adjust and control the preheating of the sensor 31 and the gas flow during operation according to the gas concentration and sensitivity.
[0095] The fan airtight pad 53 is made of silicone rubber, but is not limited to silicone rubber, and is used to seal the periphery of the fan 52 so that the fan 52 generates sufficient negative pressure to supply the detection airway.
[0096] Preferably, the device further comprises an annular light guide ring 7, wherein the annular light guide ring 7 comprises an integrally formed light guide end, and a third butt joint end and a fourth butt joint end provided at both ends of the light guide end;
[0097] A second receiving groove for receiving the sensor assembly 3 is provided through the light guide end, and the light guide end is provided corresponding to the warning light 323;
[0098] The third docking end includes a mounting boss, and the air outlet cover portion is adaptively provided with a mounting groove corresponding to the mounting boss;
[0099] The fourth butting end includes a second locking thread structure adapted to match the first locking thread structure.
[0100] Specifically, the annular light guide ring 7 is made of frosted PC plastic material, but is not limited to this material. It can also be made of other materials such as organic glass material, etc., for transmitting the warning color of the warning light 323 to warn the user.
[0101] Preferably, the device further includes an MCU processor, which is electrically connected to the fan 52 and the warning light 323 respectively. Specifically, the MCU processor controls the speed of the fan 52 through pulse width modulation (PWM), and repeatedly adjusts the speed (air flow rate and flow velocity) to the optimal speed according to the concentration of the gas to be detected and the sensitivity characteristics of the sensor 31. During the gas detection process, the gas to be detected enters the detection airway, and the sensor 31 detects and converts it into an electrical signal, which is then processed by the MCU processor and displayed and alarmed.
[0102] The MCU processor controls the warning light 323 via a single line of the MW1838EA protocol.
[0103] The control method of the novel airway detection device of the present utility model comprises the following steps:
[0104] Step 1: adjusting the angle and position of the metal hose 6 according to the emission position of the gas to be measured so that the air inlet end of the front airway enters the gas to be measured;
[0105] Step 2: The leak detector is powered on, the sensor 31 is turned on, and a 60-second preheating process is started. To allow the sensor 31 to preheat quickly and fully, the MCU processor does not start the fan 52 during the first 30 seconds. After the preheating time reaches 30 seconds, the MCU processor starts the fan 52. At this time, the speed of the fan 52 is pulse-width modulated (PWM) by the MCU processor to repeatedly adjust to the optimal speed based on the concentration of the gas being tested and the sensitivity characteristics of the sensor 31.
[0106] Step 3: When the preheating time reaches 30 seconds, the MCU processor starts the fan 52. Due to the negative pressure, the gas to be measured is filtered by the gas filter 2 and flows into the front airway of the sensor housing 1.
[0107] Step 4: The filtered gas to be measured enters the sensor assembly 3 along the front airway. At this time, the sealing foam 4 effectively prevents the gas from leaking through the bypass.
[0108] Step 5: The gas flowing through the sensor assembly 3 flows along the middle air passage of the metal hose 6 into the fan assembly 5 and is discharged;
[0109] Step 6: After the 60-second preheating operation is completed, the leak detector enters the standby detection state. At this time, the gas to be tested enters the detection airway again. The sensor component 3 detects the concentration and composition of the gas and converts it into an electrical signal. After being processed by the MCU processor, it is displayed and an alarm is sounded. The warning color of the warning light 323 is transmitted and emitted by the annular light guide ring 7.
[0110] The sensitivity, noise, power consumption, service life and cost of the airway detection device of the present invention were compared with those of the traditional pumping device. The detailed test results are shown in Table 1:
[0111] Table 1 Comparative test results
[0112]
[0113]
[0114] The novel detection airway device of the present invention innovatively uses the metal hose and fan assembly for gas sampling, and can be bent at any angle to adjust the measurable range and measurement angle. A gas filter sponge is provided at the front end of the detection airway to effectively filter out air moisture and particulate impurities, reduce the impact on the sensor during sampling, avoid problems such as erroneous sampling leading to false alarms of the detector, extend the service life of the sensor, achieve the advantages of low noise and low power consumption, and is suitable for special sampling requirements such as small flow or fine sampling. Secondly, the sealing foam sponge is used to allow the gas to be measured to enter the sensor assembly to prevent side leakage, effectively improving the detection sensitivity and reliability.
[0115] The above description is merely a preferred embodiment of the present invention and does not constitute any form of limitation on the present invention. Any person skilled in the art can, without departing from the scope of the present invention, utilize the above-disclosed technical means and technical content to make many possible variations and modifications to the present invention, or modify it into equivalent embodiments with equivalent variations. Therefore, all equivalent variations based on the shape, structure, and principle of the present invention that do not depart from the content of the present invention's technical solution should be included in the scope of protection of the present invention.
Claims
1. A novel airway detection device, characterized in that: The device is electrically connected to the leak detector; The device comprises: a sensor housing including a front airway; Gas filter sponge, which is arranged at the air inlet end of the front air duct and is used to filter out air moisture and particulate impurities; a sensor assembly, which is arranged at the gas outlet end of the front airway and is used to detect gas concentration and composition; A sealing foam is filled and disposed between the sensor cover and the sensor assembly to allow gas to enter the sensor assembly and prevent side leakage; a fan assembly including a rear air duct for regulating the gas flow rate of the sensor assembly during preheating and operation according to gas concentration and sensitivity; A metal hose, comprising a middle air passage, communicating with the sensor housing and the fan assembly, and configured to adjust a measurable range and a measuring angle; The front airway, the middle airway and the rear airway are connected in sequence to form a detection airway.
2. The novel airway detection device according to claim 1 is characterized in that: The sensor cover includes an air inlet cover portion and an air outlet cover portion that are integrally formed, and the cross-sectional diameter of the sensor cover gradually increases from the air inlet cover portion to the air outlet cover portion, and the front air duct passes through the center of the sensor cover and connects the air inlet cover portion and the air outlet cover portion; A filter sponge installation groove is provided on the air intake cover portion surrounding the front air duct, and the gas filter sponge is arranged in the filter sponge installation groove; A foam installation groove is provided on the air outlet cover portion around the front air duct, and the sealing foam is installed in the foam installation groove and abuts against the sensor component.
3. The novel airway detection device according to claim 2, characterized in that: The sensor assembly includes a sensor, a sensor plate and a sensor seat, and the sensor is arranged corresponding to the front airway; The sensor is electrically connected to the sensor plate and is installed in the metal hose through the sensor seat.
4. The novel airway detection device according to claim 3 is characterized in that: The sensor board includes a circuit board and an end pin positioning seat, wherein the end pin positioning seat is provided with a plurality of end pin fixing grooves for fixing the end pins of the sensor, and the end pins of the sensor are installed in the end pin fixing grooves and are electrically connected to the circuit board; The circuit board is electrically connected to a warning light.
5. The novel airway detection device according to claim 4 is characterized in that: The sensor seat includes an integrally formed seat body, and a first mounting edge and a second mounting edge respectively extending from two ends of the seat body; A first mounting groove for positioning the sensor is formed between the first mounting edge and the seat body, and a fool-proof positioning groove for fool-proof fixing of the sensor is provided in the first mounting groove; A second mounting groove for positioning the end foot positioning seat is formed between the second mounting edge and the seat body; A plurality of groups of end pin avoidance through holes for passing the end pins of the sensor are arranged through the seat body, and the end pin avoidance through holes are arranged corresponding to the end pin fixing grooves.
6. The novel airway detection device according to claim 5, characterized in that: A plurality of groups of abutting and stabilizing protrusions and a plurality of groups of locking buckles are extended from the second mounting edge, and the abutting and stabilizing protrusions and the locking buckles are alternately arranged; A plurality of locking through holes are provided through the circuit board; The abutting and stabilizing protrusion abuts against the circuit board, and the locking buckle and the locking through hole are detachably arranged.
7. The novel airway detection device according to claim 6, characterized in that: The metal hose comprises a hose body, and a first butt end and a second butt end provided at both ends of the hose body; The first docking end includes a first receiving groove for receiving the sensor assembly, and a first locking thread structure is provided around the first receiving groove; The second docking end includes a first docking seat, the first docking seat ring is provided with a fixing annular protrusion for fixing the fan assembly, and a stop annular protrusion for limiting the docking assembly position is provided between the first docking seat and the hose body.
8. The novel airway detection device according to claim 7, characterized in that: The fan assembly includes a fan cover, a fan and a fan airtight pad, an airflow adjustment cavity is formed between the fan cover and the fan airtight pad, and the fan is arranged in the airflow adjustment cavity; The fan cover includes a second docking seat, the second docking seat is provided with a fastening annular groove corresponding to the fastening annular protrusion, the first docking seat is inserted into the second docking seat, and the fastening annular protrusion is fastened in the fastening annular groove to achieve docking assembly; A waterproof ring is provided between the fixing annular protrusion and the fixing annular groove.
9. The novel airway detection device according to claim 8, characterized in that: The device further includes an annular light guide ring, the annular light guide ring including an integrally formed light guide end, and a third butt joint end and a fourth butt joint end provided at both ends of the light guide end; A second receiving groove for receiving the sensor assembly is provided through the light guide end, and the light guide end is provided corresponding to the warning light; The third docking end includes a mounting boss, and the air outlet cover portion is adaptively provided with a mounting groove corresponding to the mounting boss; The fourth butting end includes a second locking thread structure adapted to match the first locking thread structure.
10. The novel airway detection device according to claim 9, characterized in that: The device further includes an MCU processor, and the MCU processor is electrically connected to the fan and the warning light respectively; The MCU processor controls the warning light via a single line of the MW1838EA protocol.
Citation Information
Cited By
Airway detection device
CN119199033A