High-altitude escape emergency kit

By designing an emergency escape kit for high-altitude buildings, which includes an escape device with a descent and a buffer module, the problem of existing escape tools being complex and difficult to use quickly has been solved, thus achieving a simple and safe emergency escape from high-rise buildings.

CN224024073UActive Publication Date: 2026-03-24SHENZHEN ZHONGDE MEMBRANE STRUCTURE CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-17
Publication Date
2026-03-24

AI Technical Summary

Technical Problem

Existing escape tools are complex in structure, take up a lot of space, and have many steps to use, making it difficult to meet the needs of high-rise residents for rapid escape in emergencies such as fires. In addition, traditional evacuation staircases are prone to congestion, and hot smoke and toxic gases can spread. Ladder trucks are also difficult to effectively rescue people on very high floors.

Method used

A high-altitude escape emergency kit was designed, including a kit body, an escape device, and a connecting structure. The escape device consists of a descent module and a buffer module. The descent module has an opening and can be quickly connected to the rescue target through the connecting structure. The buffer module provides protection during descent, and the gas generator enables rapid deployment.

Benefits of technology

It simplifies escape procedures, improves escape speed and safety, reduces the threat to rescue targets, and is suitable for emergency escape from high-rise buildings.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a high-altitude escape emergency kit. The high-altitude escape emergency kit comprises a kit body, an escape device and a connecting structure. Wherein the connecting structure is exposed relative to the bag body, and the connecting structure is used for connecting a rescue target and the bag body; a containing space is formed in the bag body, and the escape device is located in the containing space. The escape device comprises a slow descending module and a buffer module which are connected with each other, an opening is formed in the slow descending module, and the opening is used for enabling a rescue target to penetrate through the slow descending module through the connecting structure to be in contact with the buffer module when the bag body is opened. According to the high-rise escape bag, the bag body containing the escape device is arranged, the size is small, carrying is convenient, a rescue target and the bag body can be rapidly connected through the connecting structure in the using process, the escape device can be rapidly unfolded, the rescue target is protected in an all-around mode, and the safety of high-rise escape can be effectively improved.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of emergency escape, in particular to a high-altitude escape emergency kit. BACKGROUND

[0002] With the increase in the number of high-rise buildings, the problem of high-rise emergency escape is becoming increasingly prominent. When a disaster occurs, such as a fire in a high-rise building, residents cannot use the elevator in the disaster and can only rely on traditional evacuation stairs for evacuation and escape. However, for high-rise residents, congestion in the stairwell is likely to occur, making escape difficult and risky. Moreover, the fire will cause hot smoke and toxic gases to spread rapidly along the vertical channels such as stairwells and elevator shafts in the building, making the evacuation stairs difficult to pass. The ladder truck is limited by height and cannot effectively rescue the super high floors. This poses a great obstacle to the escape of high-rise residents during the disaster. The existing escape tools have complex structures, large space occupation, and many use steps, which are difficult for users to use. This poses a high operation requirement for the correct self-rescue of users in emergency situations and makes it difficult to truly help users escape quickly. CONTENT OF THE UTILITY MODEL

[0003] The present application provides a high-altitude escape emergency kit to solve at least one of the above technical problems, as described below:

[0004] A high-altitude escape emergency kit includes a kit body, an escape device, and a connecting structure. The connecting structure is exposed relative to the kit body, and the connecting structure is used to connect a rescue target and the kit body. The kit body has an accommodation space formed therein, and the escape device is located in the accommodation space.

[0005] The escape device includes a slow descent module and a buffer module connected to each other. The slow descent module has an opening. When the kit body is opened, the opening allows the rescue target to pass through the slow descent module and contact the buffer module through the connecting structure.

[0006] In some embodiments, the kit body includes a shell member and a back support member.

[0007] One side of the back support member faces the buffer module and is detachably connected to the shell member to form an accommodation space with the shell member. The other side of the back support member is provided with the connecting structure. The shell member is connected to the buffer module, the slow descent module, and / or the back support member. In one embodiment, the shell member is a hard shell. The hard shell can effectively accommodate the escape device after folding and can better maintain the shape of the kit body to protect the escape device in the kit body. When the escape device is not used daily, the hard shell of the kit body can also buffer external forces to prevent the escape device in the kit body from being squeezed and scratched if the kit body comes into contact or collides with surrounding objects.

[0008] In some embodiments, the back support is provided with a clamping portion that matches the shell, and the back support is clamped to the shell through the clamping portion.

[0009] In some embodiments, the buffer module comprises a support air bag and a buffer base, the support air bag is arranged along part or all of the side edges of the buffer base; at least one air port is arranged on the bottom and / or side of the buffer base. In actual application, the edge of the buffer base is supported by arranging the support air bag at the edge of the buffer base, and when the buffer base lands from high altitude and contacts the ground, the support air bag can effectively decompose the impact force received by the buffer base, reduce the deformation of the buffer base, and further reduce the threat to the rescue target in the buffer base.

[0010] In one embodiment, the support air bag comprises an upper support arranged at part or all of the edges of the top surface of the buffer base, and / or a lower support arranged at part or all of the edges of the bottom surface of the buffer base, and / or a side support arranged on the side surface of the buffer base. In actual application, one end of the side support is connected to the upper support, and the other end is connected to the lower support.

[0011] In some embodiments, the slow descent module comprises a canopy, and the opening is located on the canopy; one end of the canopy is connected to the buffer module.

[0012] In one embodiment, the opening is located at the center of the canopy, a plurality of canopy units are symmetrically arranged with respect to the center of the opening, and one end edge of the canopy unit away from the opening is connected to the buffer module. By arranging the opening at the center of the canopy, the rescue target can stably contact the buffer module when landing from high altitude. At the same time, by arranging the opening at the center of the canopy, the canopy can uniformly receive the resistance of the gas during the descent, reducing the possibility of tilting of the canopy.

[0013] In some embodiments, the canopy comprises a plurality of canopy units; the canopy unit comprises a canopy surface and a canopy support, one end of the canopy support is connected to the canopy surface, and the other end is connected to the buffer module. In actual application, the canopy support can be a rope structure or an air bag structure.

[0014] In one embodiment, the umbrella support comprises a plurality of first supports and at least one second support arranged on the first supports, wherein one end of the first support is connected to the umbrella surface and the other end is connected to the buffer module. The two ends of the second support are arranged on the adjacent first supports, respectively, so as to strengthen the structural strength between the adjacent first supports. In one embodiment, the first supports extend in the vertical direction, and the second supports extend in the horizontal direction, thereby connecting the plurality of first supports, wherein the connection between the second support and the first support is located at a predetermined distance from the umbrella surface on the first support, and the predetermined distance is not less than one half of the total length of the first support.

[0015] In some embodiments, the escape device further comprises at least one gas generator; the gas generator is connected to the buffer module; and the gas generator is provided with a trigger. When the umbrella support is a gas bag structure, the gas generator is also connected to the umbrella support. In one embodiment, the trigger can be exposed on the bag body, and the user can directly trigger the gas generator through the trigger to work, so as to quickly inflate the buffer module; the trigger can also be located inside the bag body, and the user can wirelessly connect the trigger through an external smart device to remotely trigger the trigger.

[0016] In an actual application process, the first support and the second support in the umbrella support are connected to the upper support, the lower support and the side support in the buffer base.

[0017] The gas generator can simultaneously inflate the first support and the second support, and after the first support and the second support are inflated, the umbrella surface can be supported, the umbrella surface can be fully unfolded and formed, and during the descent of the escape device from a high place, the umbrella support can maintain the umbrella surface from being deformed, thereby increasing the stability of the descent of the escape device.

[0018] In practical applications, due to the large overall volume of the escape device after deployment, the package needs to be opened on the side facing the outside of the high-rise building, such as a window or balcony or roof opening position. After opening the package, the escape device needs a little time to deploy from the package, and the gas generator is opened to make the buffer module and the slow descent module quickly inflate and form. In the process of inflating the buffer module and the slow descent module by the gas generator, the rescue target connected to the connection structure may be pulled from the inside to the outside of the building. At this time, the rescue target still needs to be relatively fixed with the inside of the building to prevent the rescue target with small mass from being pulled outwards when the escape device is not fully inflated. In some specific embodiments, an escape auxiliary device is further included; one end of the escape auxiliary device is detachably connected to one or more of the package, the escape device, and the connection structure, and the other end is used to connect with an external device; or one end of the escape auxiliary device is connected to the package and / or the escape device, and the other end is used to detachably connect with an external device. By setting the auxiliary escape device, the escape device can prevent the rescue target from being pulled outwards, and the overall safety during use of the escape device is improved.

[0019] In the specific use process of escaping in a high-rise building, the user first connects the rescue target with the connection structure. Specifically, the rescue target can be a person, an animal or other object. Through the connection structure, the rescue target can be fixed on the package at a position corresponding to the back support, so that the rescue target can first contact the buffer base in the buffer module after the buffer module is deployed. Then, one end of the escape auxiliary device is detachably connected with the connection structure, and the other end is connected with an external device, so that the rescue target and the package as a whole can be fixed relative to the external device. Specifically, the external device can be a building structure, a furniture structure or other heavy object in the building. At this time, the rescue target faces away from the outside of the building, the package faces the open space outside the building, and the gas generator is opened by the trigger to deploy the escape device in the package to the outside of the building. When it is confirmed that the escape device is fully inflated and deployed, the connection between the auxiliary escape device and the external device can be disconnected, or the connection between the auxiliary escape device and the connection structure can be disconnected, so that the rescue target can be tilted towards the outside of the building for safe descent from a high place.

[0020] In some specific embodiments, the escape auxiliary device includes an auxiliary rope; the auxiliary rope is provided with a length adjusting piece for adjusting the length of the auxiliary rope.

[0021] In some embodiments, the escape aid device is provided with at least one locking structure at one end for connecting with the external device, which is used to lock or separate the escape aid device from the external device. Specifically, the escape aid device can be connected with the external device through the locking structure, and the user can establish or break the relative fixed relationship between the external device and the rescue target through the locking structure. The locking structure includes a quick-hanging lock provided at the end of the escape aid device.

[0022] Beneficial effects: the application provides a high-altitude escape emergency kit, which comprises a kit body, an escape device and a connecting structure. The connecting structure is exposed relative to the kit body, and is used to connect the rescue target with the kit body. The escape device is located in the accommodation space of the kit body. The escape device comprises a slow descent module and a buffer module connected with each other. An opening is provided on the slow descent module, which is used to make the rescue target pass through the slow descent module and contact the buffer module through the connecting structure when the kit body is opened. By providing the kit body accommodating the escape device, the volume is small and convenient to carry. In the use process, the rescue target and the kit body can be quickly connected through the connecting structure, which is simple and convenient to operate, and can provide effective protection for the rescue target. BRIEF DESCRIPTION OF DRAWINGS

[0023] In order to more clearly illustrate the technical solutions of the embodiments of the application, the drawings needed in the embodiments will be briefly introduced below. It should be understood that the following drawings only show some embodiments of the application, and therefore should not be regarded as a limitation on the scope. For those skilled in the art, other related drawings can also be obtained without creative labor on the basis of these drawings.

[0024] Figure 1 It is a schematic diagram of the overall structure of the emergency kit after complete expansion in the application;

[0025] Figure 2 It is another schematic diagram of the overall structure of the emergency kit after complete expansion in the application;

[0026] Figure 3 It is a top view structural schematic diagram of the escape device after expansion in the application;

[0027] Figure 4 It is a bottom view structural schematic diagram of the escape device after expansion in the application;

[0028] Figure 5 It is a side view structural schematic diagram of the emergency kit after complete expansion in the application;

[0029] Figure 6 It is a structural schematic diagram of the emergency kit before expansion in the application;

[0030] Figure 7 It is a schematic diagram of the rescue target and the external device in the application.

[0031] The reference numerals are as follows: 1 - package; 11 - housing member; 12 - back support member; 13 - accommodation space; 2 - slow descent module; 21 - umbrella unit; 211 - umbrella surface; 212 - umbrella support member; 2121 - first support member; 2122 - second support member; 213 - umbrella connecting piece; 22 - opening; 3 - buffer module; 31 - support air bag; 311 - upper support member; 312 - lower support member; 313 - side support member; 32 - buffer base; 33 - gas port; 4 - connecting structure; 5 - gas generator; 51 - trigger; 6 - escape aid; 61 - auxiliary rope; 62 - length adjustment member; 63 - locking structure; 7 - external device; 8 - rescue target. DETAILED DESCRIPTION

[0032] The concept, specific structure, and technical effects of the present application will be described clearly and completely in conjunction with the embodiments and drawings below to fully understand the purpose, features, and effects of the present application.

[0033] Hereinafter, various embodiments of the present application will be described more fully. The present application can have various embodiments, and adjustments and changes can be made therein. However, it should be understood that there is no intention to limit various embodiments of the present application to the specific embodiments disclosed herein, but the present application should be understood to encompass all adjustments, equivalents, and / or alternatives falling within the spirit and scope of various embodiments of the present application.

[0034] Hereinafter, the term "include" or "may include" used in various embodiments of the present application indicates the presence of the disclosed function, operation, or element, and does not limit the addition of one or more functions, operations, or elements. In addition, as used in various embodiments of the present application, the terms "include", "have", and their equivalents are merely intended to indicate the presence of specific features, numbers, steps, operations, elements, components, or combinations thereof, and should not be understood as first excluding the presence or addition of one or more other features, numbers, steps, operations, elements, components, or combinations thereof.

[0035] In various embodiments of the present application, the expression "or" or "at least one of A or / and B" includes any combination of the listed terms or all combinations thereof. For example, the expression "A or B" or "at least one of A or / and B" can include A, can include B, or can include both A and B.

[0036] The expressions used in the various embodiments of the present application, such as "first", "second", etc., can modify various constituent elements in the various embodiments, but can not limit the corresponding constituent elements. For example, the above expressions do not limit the order and / or importance of the elements. The above expressions are only for the purpose of distinguishing one element from other elements. For example, the first user device and the second user device indicate different user devices, although both are user devices. For example, without departing from the scope of the various embodiments of the present application, a first element can be referred to as a second element, and similarly, a second element can also be referred to as a first element.

[0037] It should be noted that in the present application, unless otherwise explicitly specified and defined, the terms "mounting", "connecting", "fixing" and the like should be understood broadly, for example, can be fixedly connected, can be detachably connected, or integrally connected; can be mechanically connected, or can be electrically connected; can be directly connected, or can be indirectly connected through an intermediate medium; can be internal communication of two elements. For those of ordinary skill in the art, the specific meanings of the above terms in the present application can be understood according to the specific circumstances.

[0038] In the present application, those of ordinary skill in the art need to understand that the terms indicating the orientation or positional relationship herein are based on the orientation or positional relationship shown in the drawings, which is only for the purpose of facilitating the description of the present application and simplifying the description, and is not intended to indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the various embodiments of the present application.

[0039] The terms used in the various embodiments of the present application are only for the purpose of describing specific embodiments and are not intended to limit the various embodiments of the present application. As used herein, the singular form is intended to include the plural form, unless the context clearly indicates otherwise. Unless otherwise defined, all terms used herein (including technical and scientific terms) have the same meaning as commonly understood by those of ordinary skill in the art to which the various embodiments of the present application belong. The terms such as those defined in a generally used dictionary will be interpreted to have the same meaning as the contextual meaning in the relevant technical field and will not be interpreted to have an idealized or overly formal meaning, unless clearly defined in the various embodiments of the present application.

[0040] Embodiments

[0041] The present application provides a high-altitude escape emergency kit, which is simple in structure, convenient to operate, can effectively improve the escape speed of the rescue target from high altitude, and shorten the escape time, and the specific scheme is as follows:

[0042] The high-altitude escape emergency kit comprises a kit body 1, an escape device and a connecting structure 4. The connecting structure 4 is exposed relative to the kit body 1, and is used to connect a rescue target 8 with the kit body 1. The kit body 1 is formed with a containing space 13, and the escape device is located in the containing space 13.

[0043] The escape device comprises a slow descent module 2 and a buffer module 3 connected with each other. The slow descent module 2 is provided with an opening 22. When the kit body 1 is opened, the rescue target 8 passes through the connecting structure 4, and contacts the buffer module 3 through the slow descent module 2.

[0044] In some embodiments, as shown in Figure 2 and Figure 5 , the kit body 1 comprises a shell piece 11 and a back support piece 12. One side of the back support piece 12 is towards the buffer module 3, and is detachably connected with the shell piece 11 to form the containing space 13 with the shell piece 11. The other side of the back support piece 12 is provided with the connecting structure 4. The shell piece 11 is connected with the buffer module 3, and / or the slow descent module 2, and / or the back support piece 12. In one embodiment, the shell piece 11 is a hard shell. By arranging the hard shell, the hard shell can effectively contain the escape device after being folded and contracted, and can better maintain the shape of the kit body 1 to protect the escape device in the kit body 1. When the escape device is not used daily, if the kit body 1 contacts or collides with surrounding objects, the hard shell of the kit body 1 can also buffer external force to prevent the escape device in the kit body 1 from being squeezed and scratched.

[0045] In actual application, as shown in Figure 1 and Figure 5 , the shell piece 11 can be connected with the escape device, so that the shell piece 11 does not scatter when the escape device is completely unfolded. After landing is completed, the emergency kit as a whole does not have part loss, and can be reused, which can improve the utilization efficiency of resources.

[0046] In some embodiments, the back support piece 12 is provided with a clamping portion matched with the shell piece 11, and the back support piece 12 is clamped and connected with the shell piece 11 through the clamping portion. In actual application, the clamping portion of the back support piece 12 and the shell piece 11 can be clamped and connected through interference fit. A great friction force is generated between the clamping portion and the shell piece 11. When the escape device in the kit body 1 is triggered by using the gas generator 5, the escape device is inflated and expanded, and the pressure generated by the escape device in the shell piece 11 can further push open the shell piece 11 to realize complete unfolding of the escape device.

[0047] In some embodiments, the buffer module 3 comprises a support air bag 31 and a buffer base 32, the support air bag 31 is arranged along part or all of the side edges of the buffer base 32; at least one air port 33 is arranged on the bottom and / or side of the buffer base 32. In actual application, by arranging the support air bag 31 at the edge of the buffer base 32, the edge of the buffer base 32 can be supported, when the buffer base 32 lands from high altitude and contacts the ground, the support air bag 31 can effectively decompose the impact force received by the buffer base 32, reduce the deformation of the buffer base 32, and further reduce the threat to the rescue target 8 in the buffer base 32. As shown in Figure 4 and Figure 5 By arranging the air port 33 on the bottom and side of the buffer base 32 and regularly arranging the arrangement position of the air port 33, the airflow entering the buffer base 32 during the descent process can be rectified. In some embodiments, a flow guide nozzle is arranged on the air port 33 located at the bottom of the buffer base 32, by arranging the flow guide nozzle, the airflow direction entering the inside of the buffer base 32 through the air port 33 can be rectified, and the stability of the buffer base 32 during the falling process can be improved.

[0048] In one embodiment, as shown in Figure 1 The support air bag 31 comprises an upper support 321 arranged at part or all of the edges of the top surface of the buffer base 32, and / or a lower support 322 arranged at part or all of the edges of the bottom surface of the buffer base 32, and / or a side support 323 arranged on the side surface of the buffer base 32. In actual application, one end of the side support 323 is connected to the upper support 321, and the other end is connected to the lower support 322.

[0049] In some embodiments, the slow descent module 2 comprises a canopy, and the opening 22 is located on the canopy; the canopy comprises a plurality of canopy units 21; one end of the canopy is connected to the buffer module 3.

[0050] In one embodiment, as shown in Figure 5 The canopy further comprises a canopy connecting piece 213, part of the side edge of the canopy connecting piece 213 is arranged along the length direction of the canopy support 212, and / or part of the side edge of the canopy connecting piece 213 is arranged along the joint of the adjacent canopy unit 21, by arranging the canopy connecting piece 213 between the adjacent canopy units 21, the connection between the adjacent canopy units 21 can be reinforced, and in the process of descending from high altitude, the contact area of the canopy unit 21 with the air is larger, and a larger flow resistance space can also be formed therein.

[0051] In some embodiments, the canopy comprises a plurality of canopy units 21, the canopy unit 21 comprises a canopy surface 211 and a canopy support 212, one end of the canopy support 212 is connected to the canopy surface 211, and the other end is connected to the buffer module 3.

[0052] In one embodiment, the umbrella support 212 comprises a plurality of first supports 2121 and at least one second support 2122 arranged on the first supports 2121. One end of the first support 2121 is connected to the umbrella surface 211, and the other end is connected to the buffer module 3. The two ends of the second support 2122 are arranged on adjacent first supports 2121, respectively, which can enhance the structural strength between adjacent first supports 2121. In one embodiment, the first support 2121 extends vertically, and the second support 2122 extends horizontally to connect the plurality of first supports 2121. As shown in Figure 1 and Figure 5 .

[0053] In one embodiment, as shown in Figure 3 , the opening 22 is located at the center of the umbrella body, and the plurality of umbrella units 21 are symmetrically arranged with respect to the center of the opening 22. The edge of the umbrella unit 21 far from the opening 22 is connected to the buffer module 3. By arranging the opening 22 at the center of the umbrella body, the rescue target 8 can stably contact the buffer module 3 when falling from a high altitude. At the same time, arranging the opening 22 at the center of the umbrella body can also make the umbrella body evenly resist the air resistance during the falling process, reducing the possibility of tilting of the umbrella body.

[0054] In actual application, the umbrella support 212 can be a rope structure or an airbag structure. The specific structure of the umbrella support 212 is not limited in this embodiment. The user can set the umbrella support 212 to be a rope structure or an airbag structure according to actual needs. When the rope structure is used as the umbrella support 212, it occupies less space, and the overall structure of the escape emergency kit is more portable. When the airbag structure is used as the umbrella support 212, the buoyancy of the umbrella body in the air during the falling process can be further increased.

[0055] In some embodiments, the escape device further comprises at least one gas generator 5. The gas generator 5 is connected to the buffer module 3. The gas generator 5 is provided with a trigger 51. When the umbrella support 212 is an airbag structure, the gas generator 5 is also connected to the umbrella support 212. In one embodiment, as shown in Figure 6 and Figure 7 , the trigger 51 can be exposed on the kit body 1. The user can directly trigger the gas generator 5 through the trigger 51 to quickly inflate the buffer module 3. The trigger 51 can also be located inside the kit body 1. The user can wirelessly connect the trigger 51 to an external smart device to remotely trigger the trigger 51.

[0056] In an actual application, the first support 2121 and the second support 2122 in the umbrella support 212 are in communication with the upper support 321, the lower support 322 and the side support 323 in the buffer base 32.

[0057] The gas generator 5 can realize simultaneous inflation of the first support 2121 and the second support 2122, and after the first support 2121 and the second support 2122 are inflated, the umbrella surface 211 can be supported, the umbrella surface 211 can be fully unfolded and formed, and during the descent of the escape device from a high place, the umbrella support 212 can maintain the umbrella surface 211 from being deformed, and increase the stability of the descent of the escape device.

[0058] In an actual application, since the overall volume of the escape device after unfolding is large, the package 1 needs to be opened on the side facing the outside of the high-rise building, such as a window or a balcony or a terrace or the like.

[0059] After the package 1 is opened, the escape device needs time to unfold from the package 1, and the gas generator 5 is opened to enable the buffer module 3 and the slow descent module 2 to be quickly inflated and formed. During the inflation of the buffer module 3 and the slow descent module 2 by the gas generator 5, a force of pulling the rescue target 8 from the inside of the building to the outside of the building on the connection structure 4 can be generated. At this time, the rescue target 8 still needs to be relatively fixed with the inside of the building to prevent the rescue target 8 with small mass from being pulled outwards when the escape device is not fully inflated. In some specific embodiments, the escape auxiliary device 6 is further included; one end of the escape auxiliary device 6 is detachably connected to one or more of the package 1, the escape device and the connection structure 4, and the other end is used for connection with the external device 7; or one end of the escape auxiliary device 6 is connected to the package 1 and / or the escape device, and the other end is used for detachable connection with the external device 7. By setting the auxiliary escape device, the escape device can prevent the rescue target 8 from being pulled outwards, and the overall safety during use of the escape device is improved.

[0060] In a specific use process of escaping in a high-rise building, for example, Figure 7As shown, the user first connects the rescue target 8 with the connecting structure 4. Specifically, the rescue target 8 can be a person, an animal or other objects. Through the connecting structure 4, the rescue target 8 can be fixed on the bag body 1 at a position corresponding to the back supporting member 12, so that the rescue target 8 can first contact the buffer base 32 in the buffer module 3 after the buffer module 3 is unfolded. Then, one end of the escape aid device 6 is detachably connected with the connecting structure 4, and the other end is connected with the external device 7, so that the rescue target 8 and the bag body 1 as a whole can be fixed relative to the external device 7. Specifically, the external device 7 can be a building structure, a furniture structure or other heavy objects in the building. At this time, the rescue target 8 faces away from the outside of the building, the bag body 1 faces the open space outside the building, and the trigger 51 is triggered to start the gas generator 5 to unfold the escape device in the bag body 1 to the outside of the building. After confirming that the escape device is fully inflated and unfolded, the connection between the escape aid device and the external device 7 is disconnected, or the connection between the escape aid device and the connecting structure 4 is disconnected, so that the rescue target 8 can be dumped to the outside of the building for safe landing from a high place.

[0061] In some embodiments, the escape aid device 6 includes an auxiliary rope 61, and the auxiliary rope 61 is provided with a length adjusting member 62 for adjusting the length of the auxiliary rope 61. In actual application, the distance between the building structure, furniture structure or other heavy objects in the building to which the auxiliary rope 61 needs to be connected and the escape position of the rescue target 8 can be greatly different according to different actual scenes. Therefore, the length of the auxiliary rope 61 can be adjusted flexibly by providing the length adjusting member 62 on the auxiliary rope 61. In one embodiment, the auxiliary rope 61 further includes an elastic rope, which can be connected with the external device 7 having different distances from the rescue target 8 through elastic stretching and contraction.

[0062] In some embodiments, one end of the escape aid device 6 used for connecting the external device 7 is provided with at least one locking structure 63 for locking or separating the escape aid device 6 and the external device 7. Specifically, the escape aid device 6 can be connected with the external device 7 through the locking structure 63, and the user can establish or disconnect the relative fixed relationship between the external device 7 and the rescue target 8 by the locking structure 63. The locking structure 63 includes a quick-hanging lock provided at the end of the escape aid device 6.

[0063] The embodiment provides a high-altitude escape emergency kit, which comprises a kit body, an escape device and a connecting structure. The connecting structure is exposed relative to the kit body, and the connecting structure is used for connecting a rescue target and the kit body; the escape device is arranged in the kit body, and an opening is arranged on a slow descent module of the escape device, so that the rescue target passes through the slow descent module and contacts a buffer module through the connecting structure when the kit body is opened. The kit body containing the escape device is small in size and convenient to carry, the rescue target can be quickly connected with the kit body through the connecting structure in the use process, the operation is simple, and effective protection can be provided for the rescue target.

[0064] The above is a specific description of the preferred embodiment of the application, but the application creation is not limited to the embodiment, and those skilled in the art can make various equivalent modifications or replacements without departing from the spirit of the application. The equivalent modifications or replacements are all included in the range defined by the claims of the application.

Claims

1. A high-altitude escape emergency kit, characterized in that, Includes the package body, escape device, and connecting structure; The connecting structure is exposed relative to the package body and is used to connect the rescue target to the package body; an accommodating space is formed inside the package body, and the escape device is located within the accommodating space; The escape device includes a descent module and a buffer module connected to each other. The descent module has an opening, which is used to allow the rescue target to pass through the connection structure and contact the buffer module when the package is opened.

2. The high-altitude escape emergency kit according to claim 1, characterized in that, The package includes an outer shell and a back support. One side of the back support faces the buffer module and is detachably connected to the outer shell to form the receiving space with the outer shell. The other side of the back support is provided with the connection structure. The outer shell is connected to the buffer module and / or the slow descent module and / or the back support.

3. The high-altitude escape emergency kit according to claim 2, characterized in that, The back support is provided with a locking part that engages with the outer shell, and the back support is connected to the outer shell through the locking part.

4. The high-altitude escape emergency kit according to claim 1, characterized in that, The buffer module includes a support airbag and a buffer base, wherein the support airbag is disposed along part or all of the side edges of the buffer base; and at least one air vent is disposed on the bottom and / or side of the buffer base.

5. A high-altitude escape emergency kit according to claim 1, characterized in that, The descent control module includes a canopy, and the opening is located on the canopy; one end of the canopy is connected to the buffer module.

6. A high-altitude escape emergency kit according to claim 5, characterized in that, The umbrella body includes multiple umbrella units; each umbrella unit includes an umbrella canopy and an umbrella support member, with one end of the umbrella support member connected to the umbrella canopy and the other end connected to the buffer module.

7. A high-altitude escape emergency kit according to claim 1, characterized in that, The escape device further includes at least one gas generator; the gas generator is connected to the buffer module and / or the descent module; and the gas generator is equipped with a trigger.

8. A high-altitude escape emergency kit according to claim 1, characterized in that, It also includes an escape assist device; one end of the escape assist device is detachably connected to one or more of the package body, the escape device, and the connecting structure, and the other end is used to connect to an external device; Alternatively, one end of the escape aid device may be connected to the package and / or the escape device, and the other end may be detachably connected to an external device.

9. A high-altitude escape emergency kit according to claim 8, characterized in that, The escape aid device includes an auxiliary rope; The auxiliary rope is equipped with a length adjustment component for adjusting the length of the auxiliary rope.

10. A high-altitude escape emergency kit according to claim 8, characterized in that, The escape assist device is provided with at least one locking structure at one end for connecting to an external device, the locking structure being used to lock or separate the escape assist device from the external device.