Air bag anti-falling clothes
By setting up connected airbags and integrated sensors on anti-fall clothing, immediate protection is achieved when the elderly fall, solving the problem of insufficient protection of existing products after falls, improving protection capabilities and comfort, and reducing usage costs.
Patent Information
- Application Number
- CN202422271354.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-18
- Publication Date
- 2025-09-09
- Estimated Expiration
- 2034-09-18
AI Technical Summary
Existing assistive tools cannot provide adequate protection for the elderly after falls, resulting in serious injuries, and existing product designs affect daily activities and comfort.
An airbag anti-fall suit is designed, which includes connected airbags set at the neck, chest, waist and hips, equipped with integrated sensors and inflation components. The sensors automatically inflate after detecting potential fall risks, and the airbags provide immediate protection at key parts.
It improves the protection ability during falls, reduces physical injuries, is suitable for a variety of people, provides immediate and effective protection without affecting daily activities, and the material is durable and reusable, reducing costs.
Smart Images

Figure CN223310718U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of anti-fall devices, and in particular to an airbag anti-fall suit. Background Art
[0002] As the global population ages, the proportion of the elderly continues to grow. Due to deteriorating physical function, muscle stiffness, and decreased balance, elderly people have difficulty moving and are more susceptible to falls. Falls have become one of the leading causes of accidental injuries among the elderly, posing a serious threat to their health and placing a heavy burden on their families and society.
[0003] Currently, a number of assistive products, such as crutches and handrails, have appeared on the market, aiming to improve mobility and reduce the risk of falls for the elderly. However, these assistive tools primarily focus on preventing falls and have limited immediate protection after a fall. In the event of an accidental fall, these products often fail to provide adequate protection to mitigate the injuries sustained by the elderly. Summary of the Invention
[0004] This application aims to solve at least one of the technical problems existing in the prior art or related art.
[0005] To this end, a first aspect of the present application is to provide an airbag anti-fall suit.
[0006] In view of this, according to a first aspect of the present application, an airbag anti-fall suit is provided, comprising:
[0007] The main body of the garment;
[0008] Airbags are sequentially arranged at the neck, chest, waist and hip of the garment body, the airbags arranged at the neck, chest, waist and hip are interconnected, the airbags are in contact with the surface of the garment body when not inflated, and expand on the surface of the garment body when inflated;
[0009] an inflatable component, disposed on the clothing body, connected to the airbag and used for inflating the airbag;
[0010] An integrated sensor is provided on the inflatable component and is electrically connected to the inflatable component; the integrated sensor is used to detect the wearer's motion state and control the inflatable component to inflate the airbag when a potential fall risk is detected.
[0011] The present application provides an airbag anti-fall suit, which significantly improves the wearer's protection against falls by arranging inflatable airbags at key positions, and effectively reduces physical injuries caused by falls; the application of integrated sensors enables the anti-fall suit to intelligently monitor the wearer's movement status and automatically trigger the inflation mechanism when potential risks are detected, thereby achieving immediate and effective protection; the airbag fits the main body of the suit when not inflated, and does not affect the wearer's daily activities and comfort; at the same time, the design of the inflation component and sensor also strives to be simple and light, which is convenient for the wearer to carry and use; the anti-fall suit is suitable for a variety of scenarios and groups, such as the elderly, children, athletes, etc., providing them with additional safety protection; improving the performance of personal protective equipment through scientific and technological means will help reduce injuries and medical costs caused by accidents such as falls, and improve the overall safety level of society.
[0012] In a possible technical solution, further, the airbag is an integrated structure, and the airbag forms a non-closed ring structure from the neck of the clothing body, and the two ends of the non-closed ring structure extend to the chest, waist and buttocks of the clothing body in sequence, and finally intersect and close at the buttocks of the clothing body to form an integrated structure;
[0013] In this technical solution, the integrated airbag structure ensures comprehensive protection for the wearer in the event of a fall, particularly around the neck, chest, waist, and hips. This design enhances the overall protective capabilities of the suit. Because the airbag is continuous and closed, it adheres closely to the wearer's body surface when inflated, providing a better fit and comfort. This design also avoids the discomfort or restriction that can arise from multiple independent airbags. The airbag's quick and easy deflation and recovery process facilitates cleaning and maintenance. Furthermore, due to the durability of the material, the suit can be reused multiple times, reducing costs.
[0014] In a possible technical solution, further, the inflatable component includes:
[0015] Miniature nitrogen tank, used to store nitrogen;
[0016] A control valve is provided at the bottle mouth of the miniature nitrogen tank;
[0017] A safety valve is provided at an end of the control valve away from the micro nitrogen tank;
[0018] A connector, provided at a side end of the control valve and connected to the control valve;
[0019] an inflation mechanism connected to an end of the connector away from the control valve, the inflation mechanism being in communication with the control valve via the connector;
[0020] In this technical solution, the high-pressure nitrogen in the miniature nitrogen tank and the efficient operation of the inflation mechanism enable the airbag to be filled to the required pressure in a very short time, thereby improving the protection efficiency; the setting of the safety valve increases the safety of the inflation component, preventing dangerous situations from occurring when the pressure is abnormal; at the same time, the sealing and stability of each component also ensure the reliability of the inflation process.
[0021] In a possible technical solution, further, the inflation mechanism includes:
[0022] An air pump, comprising an air inlet and an air outlet, wherein the air inlet is connected to the joint, and the air pump is connected to the control valve via the joint;
[0023] An inflation head, one end of which is arranged at the air outlet of the inflation pump and the other end is connected to the air bag;
[0024] In this technical solution, the use of an inflation pump enables nitrogen to be quickly and efficiently transferred to the airbag, shortening the inflation time and improving the protection efficiency; the inflation mechanism works in conjunction with components such as integrated sensors and miniature nitrogen tanks, so that the anti-fall suit can be quickly inflated and provide protection before the wearer falls, thereby greatly reducing the risk of injury caused by falls; the design of the inflation mechanism takes into account the comfort and convenience of the wearer; for example, the inflation pump and inflation head can be designed to be small and lightweight to reduce interference with the wearer's activities; at the same time, the entire inflation process is also automated, without the need for manual operation by the wearer.
[0025] In a possible technical solution, further comprising an adjustable belt, which is arranged around the waist of the clothing body and is used to fix the waist of the clothing body;
[0026] In this technical solution, the adjustable belt can effectively fix the main body of the clothing by wrapping around the waist and adjusting the tightness appropriately, preventing it from shifting or falling off when the wearer moves or falls; the firm waist fixation helps to enhance the wearer's stability when walking, sitting or performing other daily activities, and reduce the inconvenience or risk caused by loose clothing.
[0027] In a possible technical solution, further, a first buckle and a second buckle are respectively provided at both ends of the adjustable belt, and the first buckle and the second buckle are buckled with each other;
[0028] In this technical solution, after the wearer wraps the belt around the waist and adjusts it to the appropriate tightness, the first buckle and the second buckle will engage with each other, thereby firmly fixing the belt to the waist; this design not only ensures the wearer's stability during activities, but also avoids the inconvenience or safety hazards caused by the loose belt.
[0029] In a possible technical solution, further comprising a fixing component, the fixing component is used to fix the position of the airbag;
[0030] In this technical solution, the position of the airbag can be further fixed by setting the fixing component, thereby ensuring that the position of the airbag is fixed when falling, thereby achieving better protection after falling.
[0031] In a possible technical solution, further, the fixing assembly includes:
[0032] a neck fixing belt, provided on the neck of the clothing body, for fixing the airbag located on the neck of the clothing body;
[0033] a chest fixing belt, provided on the chest of the garment body, for fixing the airbag located on the chest of the garment body;
[0034] A waist fixing belt is provided at the waist of the clothing body and is used to fix the airbag located at the waist of the clothing body;
[0035] a hip fixing belt, provided on the hip of the garment body, for fixing the airbag located on the hip of the garment body;
[0036] In this technical solution, corresponding neck fixing straps, chest fixing straps, waist fixing straps and hip fixing straps are provided on the neck, chest, waist and hips of the clothing body to ensure that when the user falls, the airbags at the neck, chest, waist and hips can remain in their original positions, thereby providing more adequate protection for the user's neck, chest, waist and hips.
[0037] In a possible technical solution, further, soft sponges are provided on the front, back and sides of the clothing body;
[0038] In this technical solution, the soft sponge is provided in order to further protect the user through the cushioning effect of the provided soft sponge when the user falls.
[0039] In a possible technical solution, further comprising:
[0040] A reflective strip is provided on the main body of the clothing;
[0041] A wear-resistant strip is provided at the hem of the garment body and is used to wrap the hem of the garment body;
[0042] In this technical solution, the reflective strips are not only reflective under dark lights, reducing hazards to a certain extent, but also add a certain sense of design.
[0043] Additional aspects and advantages of the present application will become apparent in the following description or may be learned through practice of the present application. BRIEF DESCRIPTION OF THE DRAWINGS
[0044] The above and / or additional aspects and advantages of the present application will become apparent and easily understood from the description of the embodiments in conjunction with the following drawings, in which:
[0045] Figure 1 A schematic diagram of the three-dimensional structure of an airbag anti-fall suit according to one embodiment of the present application is shown;
[0046] Figure 2 A schematic structural diagram of an airbag anti-fall suit with the main body of the suit removed is shown according to an embodiment of the present application;
[0047] Figure 3 A side view of an airbag anti-fall suit according to one embodiment of the present application is shown;
[0048] Figure 4 A half-section exploded view of an airbag anti-fall suit according to one embodiment of the present application is shown;
[0049] Figure 5 A schematic structural diagram of an inflation assembly of an airbag anti-fall suit according to an embodiment of the present application is shown.
[0050] in, Figures 1 to 5 The corresponding relationship between the reference numerals and component names is as follows:
[0051] 1. The main body of the clothing;
[0052] 2. Airbag;
[0053] 3. Inflatable assembly; 31. Micro nitrogen tank; 32. Control valve; 33. Safety valve; 34. Connector; 35. Air mechanism; 351. Inflatable pump; 352. Inflatable head;
[0054] 4. Integrated sensor;
[0055] 5. Adjustable waist belt; 51. First buckle; 52. Second buckle;
[0056] 61. Neck strap; 62. Chest strap; 63. Waist strap; 64. Hip strap;
[0057] 7. Soft sponge;
[0058] 8. Reflective strips;
[0059] 9. Wear-resistant strips. DETAILED DESCRIPTION
[0060] In order to more clearly understand the above-mentioned objects, features and advantages of the present application, the present application is further described in detail below in conjunction with the accompanying drawings and specific embodiments. It should be noted that the embodiments of the present application and the features therein can be combined with each other in the absence of conflict.
[0061] In the following description, many specific details are set forth to facilitate a full understanding of the present application. However, the present application may also be implemented in other ways different from those described herein. Therefore, the scope of protection of the present application is not limited to the specific embodiments disclosed below.
[0062] Refer to the following Figures 1 to 5 The present invention describes an airbag anti-fall suit provided according to some embodiments of the present application.
[0063] Example 1
[0064] An airbag anti-fall suit comprises a suit body 1, an airbag 2, an inflation assembly 3 and an integrated sensor 4; wherein the airbags 2 are sequentially arranged at the neck, chest, waist and buttocks of the suit body 1, and the airbags 2 arranged at the neck, chest, waist and buttocks are interconnected. When the airbags 2 are not inflated, they adhere to the surface of the suit body 1 and expand on the surface of the suit body 1 when inflated; the inflation assembly 3 is arranged on the suit body 1, and the inflation assembly 3 is connected to the airbag 2 for inflating the airbag 2; the integrated sensor 4 is arranged on the inflation assembly 3 and electrically connected to the inflation assembly 3; the integrated sensor 4 is used to detect the wearer's movement state, and when a potential fall risk is detected, controls the inflation assembly 3 to inflate the airbag 2.
[0065] In this embodiment, the airbag anti-fall suit mainly relies on the synergy between the integrated sensor, the inflatable component, and the airbag. The specific process is as follows:
[0066] The integrated sensor 4 is mounted on the inflatable component 3 and electrically connected to it. The sensor continuously monitors the wearer's motion state, including parameters such as acceleration, angular velocity, and posture changes. These parameters can reflect the wearer's motion trajectory, speed, and whether he is in an unstable or about to fall state; the data collected by the sensor will be processed in real time, and the wearer's motion pattern will be analyzed through the built-in algorithm to assess whether there is a potential risk of falling; this assessment process is: set fixed X, Y, and Z thresholds for human walking, and thus derive the acceleration and velocity change V in the three directions when the human body falls; no matter which direction the human body falls, the velocity variable will be significantly different from the set X, Y, and Z thresholds; once the integrated sensor 4 detects that the velocity change V deviates from the preset threshold, it will immediately (about 0.02) The airbags 2 are arranged on the neck, chest, waist and buttocks, and the airbags 2 are inflated in no more than 0.1 second. When not inflated, these airbags adhere to the surface of the garment body 1 and do not affect the wearer's normal activities. When inflated, they expand rapidly and cover the wearer's key parts, forming a protective layer. When the wearer accidentally falls, the expanded airbags 2 can effectively absorb and disperse the impact force generated by the fall, reducing damage to the wearer's body, especially key parts such as the head, spine, pelvis, etc.
[0067] In this embodiment, the beneficial effects are as follows: by arranging inflatable airbags at key positions, the anti-fall suit significantly improves the wearer's protection ability when falling, and effectively reduces physical injuries caused by falls; the application of integrated sensors enables the anti-fall suit to intelligently monitor the wearer's movement status, and automatically trigger the inflation mechanism when potential risks are detected, thereby achieving immediate and effective protection; the airbags fit the main body of the clothes when not inflated, and do not affect the wearer's daily activities and comfort; at the same time, the design of the inflation components and sensors also strives to be simple and light, which is convenient for the wearer to carry and use; the anti-fall suit is suitable for a variety of scenarios and groups, such as the elderly, children, athletes, etc., providing them with additional safety protection; improving the performance of personal protective equipment through scientific and technological means helps reduce injuries and medical costs caused by accidents such as falls, and improves the overall safety level of society.
[0068] Furthermore, the airbag 2 is an integrated structure. The airbag 2 forms a non-closed ring structure from the neck of the clothing body 1. The two ends of the non-closed ring structure extend to the chest, waist and hips of the clothing body 1 in sequence, and finally intersect and close at the hips of the clothing body 1 to form an integrated structure.
[0069] It should be understood that, based on the above-mentioned feature definition, the airbag 2 starts from the neck of the clothing body 1 to form a non-closed annular structure; this annular structure is not completely closed, but extends at both ends, covering the chest and waist in turn, and finally intersecting and closing at the buttocks, thus forming a complete and continuous protective layer; this design ensures that the airbag can expand evenly when inflated, providing comprehensive protection for multiple key parts of the wearer; when the integrated sensor 4 detects that the wearer is at potential risk of falling, it will send a signal to the inflation component 3; after receiving the signal, the inflation component 3 inflates the airbag 2; because the airbag is an integrated structure, the inflation process will act on the entire airbag at the same time, causing it to expand rapidly and adhere to the wearer's body surface; because the airbag is continuous and closed, it can better adapt to the wearer's body contour and provide support and protection in multiple directions. Especially in key areas such as the neck, chest, waist and buttocks, the expansion of the airbag can significantly reduce the damage caused by falls;
[0070] It should be noted that the integrated airbag structure ensures comprehensive protection for the wearer in the event of a fall, especially for key areas such as the neck, chest, waist, and hips. This design enhances the overall protective capabilities of the suit. Because the airbag is continuous and closed, it adheres closely to the wearer's body surface when inflated, providing a better fit and comfort. This design also avoids the discomfort or restriction that may be associated with multiple independent airbags. The airbag's deflation and recovery process is simple and quick, making it easy for the wearer to clean and maintain. Furthermore, due to the durability of the material, the suit can be reused multiple times, reducing its cost.
[0071] Furthermore, the inflation assembly 3 includes a micro nitrogen tank 31, a control valve 32, a safety valve 33, a connector 34, and an inflation mechanism 35; wherein the micro nitrogen tank 31 is used to store nitrogen; the control valve 32 is arranged at the bottle mouth of the micro nitrogen tank 31; the safety valve 33 is arranged at the end of the control valve 32 away from the micro nitrogen tank 31; the connector 34 is arranged at the side end of the control valve 32 and is connected to the control valve 32; the inflation mechanism 35 is connected to the end of the connector 34 away from the control valve 32, and the inflation mechanism 35 is connected to the control valve 32 through the connector 34;
[0072] It should be understood that, based on the above-mentioned characteristic definitions, the integrated sensor 4 monitors the wearer's motion state in real time and, upon detecting a potential fall risk, sends a start signal to the control valve 32 of the inflatable assembly 3. Upon receiving the start signal, the control valve 32 rapidly opens, allowing the high-pressure nitrogen stored in the miniature nitrogen tank 31 to flow out. Nitrogen flows out through the open control valve 32, and the safety valve 33 acts as a safety barrier, ensuring that excess gas is automatically released in the event of an abnormal pressure to prevent danger. However, under normal circumstances, nitrogen passes through the control valve 32 and the connector 34 into the inflation mechanism 35. The connector 34 ensures the sealing and stability of the gas during transmission. After receiving the nitrogen, the inflation mechanism 35 rapidly guides it into the airbag 2. Since the airbag 2 is designed as an integrated structure extending from the neck to the hips, the nitrogen can evenly fill the entire airbag, causing it to expand rapidly and adhere closely to the wearer's body surface. The inflated airbag 2 can effectively absorb and disperse the impact force when the wearer falls, providing protection for key areas of the wearer's neck, chest, waist, and hips, thereby reducing injuries caused by falls.
[0073] It should be noted that the high-pressure nitrogen in the miniature nitrogen tank and the efficient operation of the inflation mechanism enable the airbag to be filled to the required pressure in a very short time, thereby improving the protection efficiency; the setting of the safety valve increases the safety of the inflation component, preventing dangerous situations from occurring when the pressure is abnormal; at the same time, the sealing and stability of each component also ensure the reliability of the inflation process.
[0074] Furthermore, the inflation mechanism 35 includes an inflation pump 351 and an inflation head 352; wherein the inflation pump 351 includes an air inlet and an air outlet, the air inlet is connected to the connector 34, and the inflation pump 351 is connected to the control valve 32 through the connector 34; one end of the inflation head 352 is arranged at the air outlet of the inflation pump 351, and the other end is connected to the airbag 2;
[0075] It should be understood that, based on the above-mentioned characteristic definitions, when the control valve 32 receives a signal from the integrated sensor 4 and opens, the high-pressure nitrogen stored in the micro nitrogen tank 31 enters the air inlet of the inflation pump through the safety valve 33 and the connector 34. The inflation pump is the core component of the inflation mechanism. It draws nitrogen from the air inlet mechanically or electrically, increases the pressure of the nitrogen through an internal compression mechanism, and then discharges it from the air outlet. In this process, the inflation pump plays the role of pressurizing and transmitting nitrogen. The nitrogen pressurized by the inflation pump flows out of the air outlet and enters one end of the inflation head. The inflation head is a connecting component that ensures that the nitrogen can flow smoothly to the airbag 2.
[0076] It should be noted that the use of an inflation pump enables nitrogen to be transferred to the airbag quickly and efficiently, shortening the inflation time and improving the protection efficiency; the inflation mechanism works in conjunction with components such as integrated sensors and miniature nitrogen tanks, so that the anti-fall suit can be quickly inflated and provide protection before the wearer falls, thereby greatly reducing the risk of injury caused by falls; the design of the inflation mechanism takes into account the comfort and convenience of the wearer; for example, the inflation pump and inflation head can be designed to be small and lightweight to reduce interference with the wearer's activities; at the same time, the entire inflation process is also automated and does not require manual operation by the wearer.
[0077] Furthermore, it also includes an adjustable belt 5, which is arranged around the waist of the clothing body 1 and is used to fix the waist of the clothing body 1;
[0078] It should be understood that, based on the above-mentioned characteristics, the adjustable waistband can effectively secure the main body of the garment by encircling the waist and adjusting the tightness appropriately, preventing displacement or falling off when the wearer moves or falls; the stable waist fixation helps to enhance the wearer's stability when walking, sitting or performing other daily activities, reducing the inconvenience or risk caused by loose clothing;
[0079] It should be noted that the adjustable belt 5 is made of a soft, breathable and elastic material, such as nylon, elastic fiber, etc., to ensure the wearer's comfort and durability for long-term wear.
[0080] Furthermore, a first buckle 51 and a second buckle 52 are respectively provided at both ends of the adjustable belt 5, and the first buckle 51 and the second buckle 52 are buckled with each other;
[0081] It should be understood that, based on the above-mentioned feature definitions, after the wearer wraps the belt around the waist and adjusts it to the appropriate tightness, the first buckle 51 and the second buckle 52 will engage with each other, thereby firmly fixing the belt to the waist; this design not only ensures the wearer's stability during activities, but also avoids the inconvenience or safety hazards caused by the loose belt.
[0082] Furthermore, it also includes a fixing component, which is used to fix the position of the airbag 2;
[0083] It should be understood that, based on the above-mentioned feature definitions, the position of the airbag 2 can be further fixed by setting the fixing component, thereby ensuring that the position of the airbag 2 is fixed when falling, thereby achieving better protection after falling.
[0084] Furthermore, the fixing assembly includes a neck fixing belt 61, a chest fixing belt 62, a waist fixing belt 63 and a hip fixing belt 64; wherein the neck fixing belt 61 is provided at the neck of the clothing body 1 for fixing the airbag 2 located at the neck of the clothing body 1; the chest fixing belt 62 is provided at the chest of the clothing body 1 for fixing the airbag 2 located at the chest of the clothing body 1; the waist fixing belt 63 is provided at the waist of the clothing body 1 for fixing the airbag 2 located at the waist of the clothing body 1; the hip fixing belt 64 is provided at the hip of the clothing body 1 for fixing the airbag 2 located at the hip of the clothing body 1;
[0085] It should be understood that, based on the above-mentioned feature definitions, the neck fixing belt 61, chest fixing belt 62, waist fixing belt 63 and hip fixing belt 64 are provided on the neck, chest, waist and hip of the clothing body to ensure that the airbags at the neck, chest, waist and hip positions can remain in their original positions when the user falls, thereby providing more adequate protection for the user's neck, chest, waist and hips.
[0086] It should be noted that the neck fixing belt 61, the chest fixing belt 62, the waist fixing belt 63 and the hip fixing belt 64 are made of elastic material and have a certain elastic force, which can support the tension of the inflated airbag.
[0087] Furthermore, soft sponges 7 are provided on the front, back and sides of the clothing body 1;
[0088] It should be understood that, based on the above-mentioned feature definition, the soft sponge 7 is provided in order to further protect the user through the cushioning effect of the provided soft sponge 7 when the user falls.
[0089] It should be noted that the soft sponge 7 has a certain thickness, which can greatly cushion the impact force caused by small sharp objects.
[0090] Furthermore, it also includes a reflective strip 8 and a wear-resistant strip 9; wherein the reflective strip 8 is provided on the clothing body 1; the wear-resistant strip 9 is provided at the hem of the clothing body 1, and is used to wrap the hem of the clothing body 1;
[0091] It should be understood that, based on the above-mentioned feature definitions, the reflective strips 8 are provided not only to reflect light under dark lights, thus reducing hazards to a certain extent, but also to increase a certain sense of design; and the wear-resistant strips 9 are provided to increase the service life of the clothing body 1.
[0092] In this application, the term "plurality" refers to two or more, unless otherwise specified. Terms such as "installed," "connected," "connected," and "fixed" should be interpreted broadly. For example, "connected" can mean fixed, removable, or integrally connected; and "connected" can mean directly or indirectly through an intermediary. Those skilled in the art will understand the specific meanings of these terms in this application based on the specific circumstances.
[0093] Throughout this specification, terms such as "one embodiment," "some embodiments," and "specific embodiments" mean that the specific features, structures, materials, or characteristics described in conjunction with that embodiment or example are included in at least one embodiment or example of the present application. In this specification, schematic representations of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in any one or more embodiments or examples.
[0094] The above description is merely a preferred embodiment of the present application and is not intended to limit the present application. Various modifications and variations are possible for those skilled in the art. Any modifications, equivalent substitutions, or improvements made within the spirit and principles of the present application shall be included within the scope of protection of the present application.
Claims
1. An airbag anti-fall suit, characterized in that: include: Clothing body (1); Airbags (2) are sequentially arranged at the neck, chest, waist and buttocks of the clothing body (1); the airbags (2) arranged at the neck, chest, waist and buttocks are connected to each other; the airbags (2) are in contact with the surface of the clothing body (1) when not inflated, and expand on the surface of the clothing body (1) when inflated; An inflatable component (3) is provided on the clothing body (1), the inflatable component (3) is connected to the airbag (2) and is used for inflating the airbag (2); An integrated sensor (4) is provided on the inflatable component (3) and is electrically connected to the inflatable component (3); the integrated sensor (4) is used to detect the wearer's motion state and, when a potential fall risk is detected, controls the inflatable component (3) to inflate the airbag (2).
2. The airbag anti-fall suit according to claim 1, characterized in that: The airbag (2) is an integrated structure. The airbag (2) forms a non-closed annular structure from the neck of the clothing body (1). The two ends of the non-closed annular structure extend to the chest, waist and buttocks of the clothing body (1) in sequence, and finally intersect and close at the buttocks of the clothing body (1) to form an integrated structure.
3. The airbag anti-fall suit according to claim 2, characterized in that: The inflatable component (3) comprises: A miniature nitrogen tank (31) for storing nitrogen; A control valve (32) is provided at the bottle mouth of the micro nitrogen tank (31); A safety valve (33) is provided at an end of the control valve (32) away from the micro nitrogen tank (31); A connector (34) is provided at a side end of the control valve (32) and is in communication with the control valve (32); An air filling mechanism (35) is connected to an end of the joint (34) away from the control valve (32), and the air filling mechanism (35) is communicated with the control valve (32) through the joint (34).
4. The airbag anti-fall suit according to claim 3, characterized in that: The inflation mechanism (35) comprises: An air pump (351) includes an air inlet and an air outlet, wherein the air inlet is connected to the connector (34), and the air pump (351) is connected to the control valve (32) via the connector (34). An inflation head (352) has one end disposed at the air outlet of the inflation pump (351) and the other end connected to the air bag (2).
5. The airbag anti-fall suit according to claim 4, characterized in that: It also includes an adjustable waist belt (5) which is arranged around the waist of the clothing body (1) and is used to fix the waist of the clothing body (1).
6. The airbag anti-fall suit according to claim 5, characterized in that: A first buckle (51) and a second buckle (52) are respectively provided at both ends of the adjustable waist belt (5), and the first buckle (51) and the second buckle (52) are buckled with each other.
7. The airbag anti-fall suit according to claim 6, characterized in that: It also includes a fixing component, which is used to fix the position of the airbag (2).
8. The airbag anti-fall suit according to claim 7, characterized in that: The fixing assembly includes: a neck fixing belt (61), arranged on the neck of the clothing body (1) and used for fixing the airbag (2) located on the neck of the clothing body (1); a chest fixing belt (62), arranged on the chest of the clothing body (1) and used for fixing the air bag (2) located on the chest of the clothing body (1); A waist fixing belt (63) is provided at the waist of the clothing body (1) and is used to fix the air bag (2) located at the waist of the clothing body (1); A hip fixing belt (64) is provided on the hip of the clothing body (1) and is used to fix the air bag (2) located on the hip of the clothing body (1).
9. The airbag anti-fall suit according to claim 8, characterized in that: Soft sponges (7) are provided on the front, back and sides of the clothing body (1).
10. The airbag anti-fall suit according to claim 9, characterized in that: Also includes: A reflective strip (8) is provided on the clothing body (1); A wear-resistant strip (9) is provided at the hem of the clothing body (1) and is used to wrap the hem of the clothing body (1).