Emergency rescue belt
Patent Information
- Application Number
- DE202025105218
- Authority / Receiving Office
- DE · DE
- Patent Type
- Utility models
- Current Assignee / Owner
- Filing Date
- 2025-09-02
- Publication Date
- 2025-10-30
- Estimated Expiration
- 2035-09-30
Smart Images

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Abstract
Description
Technical field
[0001] The present utility model relates to the technical field of an emergency rescue belt, specifically an emergency rescue belt. State of the art
[0002] When people drown, it is almost always a sudden emergency; people die if they stop breathing within two minutes. Drowning leads to a loss of life within a short period. Due to the complex situation in the water and the urgent need for action, drowning rescues are very difficult. An emergency drowning rescue belt is used to provide a buoyancy aid for drowning victims. When someone is drowning, people on the shore inflate the rescue belt and pull the drowning person to shore as quickly as possible to prevent suffocation.
[0003] To solve the problem of drowning in emergency situations, research into an emergency rescue belt is urgently needed. Content of the utility model
[0004] To solve the above problem, the present utility model provides a technical solution: an emergency rescue belt comprising several inflatable tubes, wherein one end of the inflatable tube is an inflation opening, the other end of which is a screw nut closure end, wherein the inflation opening on the inflatable tube can be screwed into the screw nut closure end on another inflatable tube.
[0005] Furthermore, several inflatable tubes can be connected from the head to the end via screw connections.
[0006] The advantage of a utility model compared to the prior art is this: The present utility model uses several inflatable tubes; depending on the situation, the second and third tubes can be connected, thus creating an emergency rescue belt of varying lengths to meet rescue needs in emergency situations. The rescue belt is inflated through the inflation valve, straightens out after inflation, and is then extended to the drowning person. Once the drowning person has caught hold of the belt, it is pulled to shore. This is an emergency tool for rescuing people near water who cannot swim.
[0007] After use of this utility model has ended, the gas can be released directly, and the rescue belt can be folded and stored. The rescue belt in the aforementioned design is compact and portable. Explanation of the illustrations Fig. shows a structural diagram of an emergency rescue belt of the present utility model; Fig. shows a diagram of a connection between two inflatable tubes; Fig. shows a folded diagram of an inflatable tube.
[0008] (1) Inflatable tube; (2) Inflation opening; (3) Screw nut closure end. Designs
[0009] The present utility model is explained in more detail below in conjunction with the illustrations.
[0010] The present utility model is shown in detail in conjunction with the illustrations.
[0011] In its embodiment, the present utility model provides an emergency rescue belt comprising several inflatable tubes (1), wherein one end of the inflatable tube (1) is an inflation opening (2) and the other end is a screw nut closure end (3), wherein the inflation opening (2) on the inflatable tube can be screwed into the screw nut closure end (3) on another inflatable tube (1). Example implementation:
[0012] When using this utility model for short-distance rescue, one or two inflatable tubes (1) can be selected. One of the inflatable tubes (1) is screwed through the inflation opening (2) into the screw nut closure end of the other inflatable tube (1). Short-distance rescue is achieved by inflating the tube through the inflation opening (2) at the end. After inflation by people on the shore, the tube straightens out. Using buoyancy, the rescue belt can be extended to the drowning person. Once the drowning person has caught it, they are pulled to shore. This is an emergency tool for rescuing people near water who cannot swim.
[0013] When used for long-distance rescue, several inflatable tubes (1) can be connected from the head to the end.
[0014] In the present utility model, each inflatable tube (1) can be inflated and deployed independently. When deflated, the aforementioned inflatable tube (1) is a rope; two or more of these can be connected to adapt to the rescue distance and extend the rescue length. The length of the aforementioned inflatable tube can be approximately 20 meters; the connection of two tubes can reach 40 meters, and so on.
[0015] As a further explanation of the present utility model, several inflatable tubes (1) can be connected by screw connections from the head to the end.
[0016] The present utility model and its embodiments are described above. This description is not limiting; the embodiment shown in the figures is merely one of the embodiments of the present utility model, and its practical structure is not limited to it. In summary, if a person skilled in the art in the field is prompted to develop similar designs and embodiments without inventive creation, without deviating from the purpose of the present utility model, they fall within the scope of protection of the present utility model.
Claims
[1] Emergency rescue belt, characterized by , that this comprises several inflatable tubes (1), wherein one end of the inflatable tube (1) is an inflation opening (2), the other end of which is a screw nut closure end (3), wherein the inflation opening (2) on the inflatable tube (1) can be screwed into the screw nut closure end (3) on another inflatable tube (1). [2] Emergency rescue belt according to claim 1, characterized by , that several inflatable tubes (1) can be connected from the head to the end in screw connection.