Fence device for inflatable tent
The inflatable tent is sealed and ventilated by the energy supply component and guide component driven by the air pump, which solves the comfort problem of the inflatable tent in different seasons and improves the user experience.
Patent Information
- Application Number
- CN202422721631.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-07
- Publication Date
- 2025-09-30
- Estimated Expiration
- 2034-11-07
AI Technical Summary
Inflatable tents have poor thermal insulation performance in winter, the temperature inside the tent is too high in summer and the risk of mosquito bites is high, and the waterproof fabric is inconvenient to store and use.
An energy supply component and a guide component are used, and an air pump is used to provide power to slide the enclosure component to close the tent entrance. Air holes are provided on the enclosure component to achieve air circulation. The enclosure component includes an air column bag and a guide rail, and the air pump directly drives the entire process.
The effective closure and ventilation of the tent in different seasons is achieved, which improves the comfort of use, reduces the risk of stuffiness and mosquito bites, and makes it more convenient to use.
Smart Images

Figure CN223398469U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to an improvement of outdoor equipment, in particular to an enclosure device for an inflatable tent. Background Art
[0002] Inflatable tents typically feature a layer of waterproof fabric as a barrier, which offers poor insulation in winter. While lowering the waterproof fabric in summer can block insects, the enclosed interior creates a stagnant airflow, ultimately leading to excessive temperatures. Fully opening the barrier creates a risk of mosquito bites. Furthermore, the waterproof fabric must be stored separately, hindering storage and transportation efficiency. Utility Model Content
[0003] In order to overcome the deficiencies of the prior art, the utility model provides an enclosure device for an inflatable tent.
[0004] The utility model adopts the following technical solution: an enclosure device for an inflatable tent, which is used to be installed on a tent body. The tent body is connected to an air pump and supplied with air by the air pump. The enclosure device includes an energy supply component, a guide component and an enclosure component. The guide component is fixed at the entrance of the tent body. The energy supply component pushes the enclosure component to move along the guide component to close the entrance of the tent body.
[0005] The enclosure assembly includes a plurality of air bags, adjacent to each other, and ends of the air bags are engaged in the guide assembly, and the energy supply assembly pushes the air bags to slide in the guide assembly.
[0006] The guide assembly includes a pair of guide rails, which are respectively arranged at the entrance of the body and the ends of the air column bag are correspondingly engaged in the guide rails and slide along the guide rails.
[0007] The guide rail includes a pair of guide air columns, which are fixed at the entrance of the main body. The pair of guide air columns are parallel to each other and a gap is provided between the pair of guide air columns for inserting the air column bag. The guide air columns are connected to the main body.
[0008] The energy supply component includes an extension air column, which is fixed on the body and communicated with the body. The end of each air column bag is fixed on the extension air column, and the extension air column is engaged with the guide rail and slides along the direction of the guide rail.
[0009] The extended air column is provided with a vent hole, the air column bag is connected to the extended air column through the vent hole, the end of the extended air column is closed, and when the extended air column is inflated, the extended air column drives the air column bag to slide along the guide rail to close the entrance of the inflatable tent.
[0010] An air vent is provided on the end surface of the enclosure component, and the air vent passes through the enclosure component.
[0011] Compared to existing technologies, the present invention uses an air pump to provide primary power to the functional components throughout the enclosure process, eliminating the need for additional power to achieve closed-space inflatable tents. Ventilation holes are provided on the end surfaces of the enclosure components, extending throughout the enclosure. Once closed, these holes allow air to circulate inside and outside the tent, reducing stuffiness and, in summer, reducing mosquito bites and providing greater comfort. BRIEF DESCRIPTION OF THE DRAWINGS
[0012] Figure 1 It is a structural diagram of the enclosure device in the utility model;
[0013] Figure 2 yes Figure 1 A magnified schematic diagram of the local structure;
[0014] Figure 3 This is a schematic structural diagram of the enclosure assembly of the enclosure device in the present utility model;
[0015] Figure 4 This is an enlarged schematic diagram of the structure of the enclosure assembly of the enclosure device in the present utility model;
[0016] In the figure: 1. Tent body; 2. Energy supply component; 21. Extended air column; 22. Vent; 3. Guide component; 31. Guide rail; 32. Guide air column; 4. Enclosure component; 41. Air column bag. DETAILED DESCRIPTION
[0017] Below, the present invention is further described in conjunction with the accompanying drawings and specific implementation methods. It should be noted that, under the premise of no conflict, the various embodiments or technical features described below can be arbitrarily combined to form new embodiments.
[0018] Reference Figure 1-4A containment device for an inflatable tent is used to be installed on a tent body 1. The tent body 1 is connected to an air pump and supplied with air by the air pump. The containment device includes an energy supply component 2, a guide component 3, and a containment component 4. The guide component 3 is fixed at the entrance of the tent body 1. The energy supply component 2 pushes the containment component 4 to move along the guide component 3 to close the entrance of the body. The containment component 4 includes a plurality of air column bags 41. Adjacent air column bags 41 are interconnected and the ends of the air column bags 41 are engaged in the guide component 3. The energy supply component 2 pushes the air column bags 41 to slide in the guide component 3. During the entire containment process, the air pump provides the original power to the functional components, and thus the space of the inflatable tent can be closed without other power. An air vent is provided on the end surface of the containment component 4, and the air vent runs through the containment component 4. After closure, air can circulate inside and outside the tent through the air vent, thereby reducing stuffiness. When used in the summer, staying in the tent can also reduce mosquito bites, making it more comfortable to use.
[0019] The guide assembly 3 includes a pair of guide rails 31, each positioned at the entrance of the main body. The ends of the airbag 41 engage within and slide along the guide rails 31. The guide rails 31 include a pair of guide air columns 32, secured to the main body entrance. The columns 32 are parallel to each other, with a gap between them for the airbag 41 to insert. The columns 32 are connected to the main body. The columns 32 are directly inflated by an air pump, hardening their surfaces and guiding the movement of the airbag 41.
[0020] The energy supply component 2 includes an extension air column 21, which is fixed to the main body and connected to the main body. The end of each air column bag 41 is fixed to the extension air column 21. The extension air column 21 is engaged with the guide rail 31 and slides along the direction of the guide rail 31. The extension air column 21 is inflated and extended. During the extension process, the air column bag 41 is driven to slide along the guide rail 31 and thus close the entrance on the main body. The entire process is completed by the air pump, and the air pump needs to continuously inflate the main body during the entire use process. That is, it does not need to be stored separately before use, which is more convenient to use.
[0021] The extended air column 21 is provided with an air vent 22, and the air column bag 41 is connected to the extended air column 21 through the air vent 22. The end of the extended air column 21 is closed. When the extended air column 21 is inflated by the air pump, the extended air column 21 drives the air column bag 41 to slide along the guide rail 31 to close the entrance of the inflatable tent. The extended air column 21 is engaged with the guide rail 31 and slides along the guide rail 31. The extended air column 21 is inflated and stretched, and during the stretching process, it drives the air column bag 41 to slide along the guide rail 31 and then closes the entrance on the main body. The entire process is completed by the air pump, and the air pump needs to continuously inflate the main body during the entire use process, driving the entire inflatable tent to be filled with gas to achieve the closure of the entrance. When not in use, it only needs to be deflated, and it does not need to be stored separately for use, which is more convenient to use.
[0022] Compared with the prior art, the utility model uses an air pump to provide original power to the functional components during the entire enclosure process, thereby realizing the spatial closure of the inflatable tent without the need for other power. An air vent is provided on the end face of the enclosure component 4, and the air vent runs through the enclosure component 4. After closure, air can circulate inside and outside the tent through the air vent, thereby reducing stuffiness. When used in the summer, staying in the tent can also reduce mosquito bites, making it more comfortable to use. When the extended air column 21 is inflated by the air pump, the extended air column 21 drives the air column bag 41 to slide along the guide rail 31 to close the entrance of the inflatable tent. The extended air column 21 is engaged with the guide rail 31 and slides along the guide rail 31. The extended air column 21 is inflated and stretched, and during the stretching process, it drives the air column bag 41 to slide along the guide rail 31 to close the entrance on the main body. The entire process is completed by the air pump, and the air pump needs to continuously inflate the body during the entire use process, driving the entire inflatable tent to be filled with gas to achieve the closure of the entrance. When not in use, it only needs to be deflated, and it does not need to be stored separately, which is more convenient to use.
[0023] The above-mentioned embodiments are only preferred embodiments of the present invention and cannot be used to limit the scope of protection of the present invention. Any non-substantial changes and replacements made by technicians in this field on the basis of the present invention fall within the scope of protection required by the present invention.
Claims
1. An enclosure device for an inflatable tent, for installation on a tent body, comprising a tent body connected to an air pump for air supply, characterized in that: The enclosure device includes an energy supply component, a guide component and an enclosure component. The guide component is fixed at the entrance of the tent body. The energy supply component pushes the enclosure component to move along the guide component to close the entrance of the tent body. The enclosure assembly includes a plurality of air bags, adjacent to each other, and ends of the air bags are engaged in the guide assembly, and the energy supply assembly pushes the air bags to slide in the guide assembly.
2. The enclosure device for an inflatable tent according to claim 1, characterized in that: The guide assembly includes a pair of guide rails, which are respectively arranged at the entrance of the body and the ends of the air column bag are correspondingly engaged in the guide rails and slide along the guide rails.
3. The enclosure device for an inflatable tent according to claim 2, characterized in that: The guide rail includes a pair of guide air columns, which are fixed at the entrance of the main body. The pair of guide air columns are parallel to each other and a gap is provided between the pair of guide air columns for inserting the air column bag. The guide air columns are connected to the main body.
4. The enclosure device for an inflatable tent according to claim 2, characterized in that: The energy supply component includes an extension air column, which is fixed on the body and communicated with the body. The end of each air column bag is fixed on the extension air column, and the extension air column is engaged with the guide rail and slides along the direction of the guide rail.
5. The enclosure device for an inflatable tent according to claim 4, characterized in that: The extended air column is provided with a vent hole, the air column bag is connected to the extended air column through the vent hole, the end of the extended air column is closed, and when the extended air column is inflated, the extended air column drives the air column bag to slide along the guide rail to close the entrance of the inflatable tent.
6. An enclosure device for an inflatable tent according to any one of claims 1 to 5, characterized in that: An air vent is provided on the end surface of the enclosure component, and the air vent passes through the enclosure component.