Anti-drowning armlet
By integrating monitoring, early warning, and inflation components, the anti-drowning armband solves the problem that existing equipment cannot monitor and provide timely feedback in real time, achieving automated anti-drowning and easy rescue effects.
Patent Information
- Application Number
- CN202520213676.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-11
- Publication Date
- 2025-12-16
- Estimated Expiration
- 2035-02-11
AI Technical Summary
Existing drowning prevention devices cannot monitor potential drowning risks in real time and provide timely feedback to swimmers. Furthermore, swimmers are unlikely to actively deploy airbags when drowning, leading to frequent drowning incidents.
Design a drowning prevention armband that integrates monitoring, early warning and inflation components. It can monitor the swimmer's condition and environment in real time, automatically issue early warnings and trigger the airbag to float to the surface when drowning occurs, and use fluorescent tracers to assist in rescue.
It improves swimming safety by reducing drowning incidents through real-time monitoring and early warning, ensuring that swimmers can automatically float to the surface and be easily rescued when drowning.
Smart Images

Figure CN223672770U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of sports safety, specifically, relates to a kind of anti-drowning arm ring. BACKGROUND
[0002] Swimming as a kind of both can enhance physical fitness and can adjust heart and lung function movement, more and more in recent years by the masses love. But novice swimmer often lacks safety awareness or overestimates oneself actual ability thus leading to drowning event, in addition to novice swimmer often there is pursuit outdoor wild swimming swimmer also prone to drowning event. For this, it is particularly necessary to monitor the environment and give the swimmer a safety warning, to inform potential risk factors in advance and make corresponding anti-drowning behavior.
[0003] The existing anti-drowning equipment on the market often gives corresponding rescue measures after the drowning event, cannot monitor the factors that may lead to drowning in real time and give feedback to the swimmer in time, assist the swimmer to get away from the drowning environment by self or others, and avoid the occurrence of drowning event as far as possible. And when the drowning condition occurs, the swimmer needs to open the anti-drowning air bag actively, but the swimmer in the drowning state is in a state of confusion and difficult to open the air bag. Therefore, in order to protect the swimmer's life safety by automatic anti-drowning technology when the drowning event occurs, the utility model provides an anti-drowning arm ring which can improve the safety of swimmer and has safety warning function. SUMMARY
[0004] In view of the existing deficiencies, the utility model provides an anti-drowning arm ring, which monitors the swimmer's own condition and the surrounding environment in real time, warns the potential drowning risk in advance, and triggers the air bag to lift the buoyancy in time when the drowning event occurs, so as to protect the safety of swimmer.
[0005] To achieve the above purpose, the utility model takes the technical scheme that:
[0006] An anti-drowning arm ring, comprising a wearing component, an inflation component, a monitoring component and a warning component, the inflation component is embedded in the middle of the inside of the wearing component for inflation, the monitoring component for monitoring the motion condition of the user and the surrounding environment is installed on the inside of the wearing component close to the user side, and the warning component for warning is installed on the surface of the outside of the wearing component.
[0007] Further, the wearing component includes a semi-ring arm ring with hollow inside, the head end of the arm ring is fixedly connected with an elastic band, the inner side of the end of the elastic band has a buckle and a plurality of fixing holes, the inner side of the elastic band is fixedly connected with an air bag, the tail end of the arm ring is fixedly connected with a fixing buckle on the outer side, and a plurality of buckle female buckles are arranged on the outer side of the arm ring.
[0008] Further, the inflatable assembly is embedded in the wearing assembly, the inflatable assembly comprises a gas reaction device fixedly connected inside the head end of the semi-ring-shaped arm ring, the gas reaction device is fixedly connected with sealed air bags on the left and right sides, the inside bottom end of the gas reaction device is provided with a compressed gas tank, the top end of the compressed gas tank is provided with sealed silica gel, the inside top of the gas reaction device is provided with a reaction button, the reaction button is a round plate structure, the inside of the reaction button is provided with a long reaction steel needle and a plurality of short reaction steel needles, the bottom of the plurality of short reaction steel needles is provided with a fluorescent tracer wrapped by a film, and the short reaction steel needles are not in contact with the fluorescent tracer.
[0009] Further, the monitoring assembly is embedded inside the semi-ring-shaped arm ring, the monitoring assembly is provided with a blood oxygen sensor on the outside, the light transmission intensity information is converted into an electrical signal to connect the reaction button, and the monitoring assembly is provided with a built-in gyroscope sensor and a water depth sensor.
[0010] Further, the early warning assembly comprises an LED early warning lamp strip, the LED early warning lamp is arranged on the outside of the semi-ring-shaped arm ring, and the light of the LED early warning lamp strip is intelligently processed and then output for transformation through the real-time information collected by the monitoring assembly.
[0011] Compared with the prior art, the utility model has the following beneficial effects:
[0012] 1、the utility model discloses a wearing assembly, inflatable assembly, monitoring assembly, early warning assembly's mutual cooperation, when the user exists too many possible factors of causing drowning when swimming, can through early safety early warning and remove the drowning factor of self or call others to help to remove the drowning factor, avoid the occurrence of the event of drowning as far as possible, and once actual drowning event also can carry out the automatic pop -up air bag and float on the water surface through the fluorescent tracer and show the trace to be easily found by the rescue personnel.
[0013] 2、the utility model discloses can monitor the motion state and surrounding environment of swimmer in real time, early warning potential drowning risk, and when the event of drowning occurs, timely trigger air bag release gas and carry out buoyancy lifting, thereby improve the safety of swimmer. ACCURACY
[0014] Figure 1 It is the overall structure schematic view of the utility model.
[0015] Figure 2 It is the overhead structure schematic view of the utility model.
[0016] Figure 3 It is the front view sectional view of the inflatable assembly in the utility model.
[0017] Figure 4 It is the control flow chart of the utility model.
[0018] In the diagram: 100, Wearing component; 101, Semi-circular armband; 102, Elastic band; 103, Buckle; 104, Fixing hole; 105, Fixing buckle; 106, Buckle nut; 200, Inflation component; 201, Gas reaction device; 202, Sealing airbag; 203, Compressed gas tank; 204, Sealing silicone; 205, Reaction button; 206, Long reaction needle; 207, Short reaction needle; 208, Fluorescent tracer; 300, Monitoring component; 301, Blood oxygen sensor; 302, Gyroscope sensor; 303, Water depth sensor; 400, Warning component; 401, LED warning light strip. Detailed Implementation
[0019] The technical solutions of this utility model will be clearly and completely described below with reference to the embodiments of this utility model. Obviously, the described embodiments are only some embodiments of this utility model, and not all embodiments. Based on the embodiments of this utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of this utility model.
[0020] Example:
[0021] like Figures 1 to 4 As shown, an anti-drowning armband with safety warning includes a wearing component 100, an inflation component 200, a monitoring component 300, and a warning component 400. The inflation component 200 for inflation is embedded in the middle of the wearing component 100. The monitoring component 300 for monitoring the user's own movement and the surrounding environment is installed inside the wearing component 100 near the user. The warning component 400 for warning is installed on the outer surface of the wearing component 100.
[0022] By having the wearable component 100, the inflation component 200, the monitoring component 300, and the early warning component 400 work together, when there are too many factors that may cause drowning during swimming, the user can use early safety warnings to move away from drowning factors or call for help from others to move away from drowning factors, thus avoiding drowning incidents as much as possible. In the event of an actual drowning incident, the airbag can automatically deploy to float to the surface and be detected by fluorescent tracer 208, making it easy for rescuers to spot.
[0023] In this embodiment, the wearing component 100 is a structure that facilitates the user's wearing of the anti-drowning armband.
[0024] like Figure 1 , Figure 2As shown, the wearing assembly 100 includes the elastic band 102 fixedly connected at the head end of the semi-circular arm ring 101, the plurality of buckle male buckles 103 and the plurality of fixing holes 104 penetratingly provided at the back end of the elastic band 102, the fixing buckle 105 fixedly connected at the tail end of the semi-circular arm ring 101, and the plurality of buckle female buckles 106 provided at the front surface of the fixing buckle 105.
[0025] It should be noted that the buckle male buckles 103 and the buckle female buckles 106 are corresponding accessories in size, which play a role in fixing the size of the arm ring, and the width of the elastic band 102 is smaller than the width of the fixing buckle 105, so as to ensure that the elastic band 102 can slide through the fixing buckle 105, thereby facilitating the user to wear.
[0026] The inflation assembly 200 in the embodiment is a structure for inflating the anti-drowning arm ring.
[0027] As shown in Figure 1 , Figure 2 and Figure 3 , the inflation assembly 200 includes the compressed gas tank 203 at the bottom end inside the gas reaction device 201, the sealing silica gel 204 fixedly provided at the top of the compressed gas tank 203, the sealing gas bag 202 fixedly connected at the left and right sides of the gas reaction device 201, and the reaction button 205 at the top end inside the gas reaction device 201.
[0028] It should be noted that the reaction button 205 is a solenoid valve button, when the reaction button 205 is not started, the long reaction steel needle 206 and the short reaction steel needle 207 do not touch the sealing silica gel 204 and the fluorescent tracer 208, once the reaction button 205 is started by the signal from the sensor or forcibly started, the long reaction steel needle 206 will pierce the sealing silica gel 204, so that the gas in the compressed gas tank 203 enters the sealing gas bag 202 through the cavity inside the gas reaction device 201, so that the sealing gas bag 202 is inflated, and the short reaction steel needle 207 pierces the fluorescent tracer 208 at the bottom and is discharged from the inside of the reaction button 205.
[0029] In addition, the length of the gas reaction device 201 and the compressed gas bag is shorter than the semi-circular arm ring 101, so as to ensure that the shell of the semi-circular arm ring 101 can protect the gas reaction device 201 and the compressed gas bag from being pierced by dangerous articles in the water flow.
[0030] The monitoring assembly 300 in the embodiment is a structure for monitoring the environment around the user and enabling the pre-warning assembly 400 and the inflation assembly 200 to react.
[0031] As shown in Figure 1 , Figure 2 , Figure 3As shown, the monitoring assembly 300 includes a blood oxygen sensor 301 fixedly connected inside the semi-circular arm ring 101 and a gyroscope sensor 302 and a water depth sensor 303 fixedly connected inside the right side of the semi-circular arm ring 101. When the blood oxygen sensor 301 monitors that the blood oxygen concentration is lower than the preset value, the inflation assembly 200 and the warning assembly 400 are linked to operate. When the gyroscope sensor 302 monitors that the human body swing amplitude and frequency fluctuate greatly and frequently compared with the normal swimming posture data, the inflation assembly 200 and the warning assembly 400 are linked to operate. When the water depth sensor 303 monitors that the water depth value is greater than the preset value, the inflation assembly 200 and the warning assembly 400 are linked to operate, so that the inflation assembly 200 and the warning assembly 400 start to operate.
[0032] As shown, Figure 1 The warning assembly 400 includes an LED warning light strip 401 fixedly connected outside the semi-circular arm ring 101. The real-time information collected by the monitoring assembly 300 is linked to the LED warning light strip 401 light change through electrical signals.
[0033] The working principle of the above embodiment is as follows:
[0034] In use, the anti-drowning arm ring is worn on the arm of the user through the elastic band 102, the fixed buckle 105, the fixed hole 104, the buckle sub-buckle 103 and the buckle female buckle 106. When the user encounters a drowning factor, the monitoring organization comprehensively processes and judges whether the user has an actual drowning condition according to the real-time information collected by the blood oxygen sensor 301, the gyroscope sensor 302 and the water depth sensor 303. If the collected information does not reach the preset value meeting the drowning condition, only the LED warning light strip 401 multiple light warning reaction is made. If the collected information reaches the preset value meeting the drowning condition, the blood oxygen sensor 301, the gyroscope sensor 302 and the water depth sensor 303 are linked to react the button 205 in the form of electrical signals. The reaction button 205 is pressed to start, the long reaction steel needle 206 pierces the sealing silica gel 204 to release the gas in the compressed gas cylinder 203 into the cavity to enter the sealing air bag 202 fixedly connected on both sides of the gas reaction device 201. The air bag expands to float the user on the water surface by buoyancy, thereby achieving the purpose of preventing drowning. At the same time, the short reaction steel needle 207 pierces the fluorescent tracer 208, and the fluorescent tracer 208 is released on the water surface, which is convenient for rescue personnel to search and rescue.
[0035] It is to be noted that the monitoring organization comprehensively processes the real-time information collected by the blood oxygen sensor 301, the gyroscope sensor 302 and the water depth sensor 303 to determine whether the user is in an actual drowning condition, and if the collected information does not reach the preset value meeting the drowning condition, only the LED warning light band 401 performs a variety of light warning reactions. The various light warning reactions are as follows: yellow light: the gyroscope sensor 302 reaches the response preset value, the water depth sensor 303 reaches the response preset value, red light: the blood oxygen sensor 301 reaches the response preset value, the blood oxygen sensor 301 and the water depth sensor 303 reach the response preset value, the blood oxygen sensor 301 and the gyroscope sensor 302 reach the response preset value, and the inflatable assembly 200 operates simultaneously when the red warning light is on.
[0036] In addition, the manual force braking reaction button 205 can be manually operated at any warning stage.
[0037] Obviously, the above embodiments of the present application are only examples for clearly illustrating the present application, and are not intended to limit the embodiments of the present application. For those skilled in the art, other different forms of changes or variations can be made on the basis of the above description, and all the embodiments cannot be exhausted here. Any obvious changes or variations derived from the technical solutions of the present application still fall within the protection scope of the present application.
Claims
1. An anti-drowning arm band, characterized by: Including wearing components (100), inflation components (200), monitoring components (300), early warning components (400), the inside of the wearing components (100) is inlaid with the inflation components (200) for inflation, the inside of the wearing components (100) is installed with the monitoring components (300) for monitoring the motion condition of user oneself and surrounding environment close to user side, the outside surface of the wearing components (100) is installed with the early warning components (400) for early warning.
2. The anti-drowning arm ring of claim 1, wherein: The wearing components (100) include the hollow half ring arm ring (101), the head end of the arm ring is fixedly connected with the elastic band (102), the inner side of the elastic band (102) end has the buckle sub buckle (103) and multiple fixing holes (104), the inner side of the elastic band (102) is fixedly connected with the air bag point, the tail end of the arm ring is fixedly connected with the fixed buckle (105) outside, and the outer side of the arm ring is provided with multiple buckle female buckles (106).
3. The anti-drowning arm ring of claim 1, wherein: The inflation components (200) are embedded in the wearing components (100), the inflation components (200) include the gas reaction device (201) fixedly connected in the head end inside of the half ring arm ring (101), the gas reaction device (201) is fixedly connected with the sealed air bag (202) on the left and right sides, the inside bottom end of the gas reaction device (201) has the compressed gas tank (203), the top end of the compressed gas tank (203) has the sealed silica gel (204), the inside top of the gas reaction device (201) has the reaction button (205), the reaction button (205) is a round sheet structure, the inner side of the reaction button (205) is provided with a long reaction steel needle (206) and a plurality of short reaction steel needles (207), the bottom of the plurality of short reaction steel needles (207) is provided with the fluorescent tracer (208) wrapped by the film, and the short reaction steel needle (207) does not contact the fluorescent tracer (208).
4. The anti-drowning arm ring of claim 1, wherein: The monitoring components (300) are embedded in the inside of the half ring arm ring (101), the outer side of the monitoring components (300) has the blood oxygen sensor (301), the light transmission intensity information is converted into an electrical signal to connect the reaction button (205), the monitoring components (300) are sealed and built-in gyro sensor (302) and water depth sensor (303).
5. The anti-drowning arm ring of claim 1, wherein: The early warning components (400) include the LED early warning lamp strip (401), and the LED early warning lamp is arranged on the outer side of the half ring arm ring (101).