Inflatable tent device
By introducing an isolation structure and an automatic inflation/deflation mechanism into the inflatable tent, the problems of easy breakage of the air column and the complexity of inflation/deflation are solved, realizing the separation of the air column and electric inflation, thus improving the safety and portability of the inflatable tent.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- 苏政雯
- Filing Date
- 2026-02-24
- Publication Date
- 2026-05-12
AI Technical Summary
Existing inflatable tents have easily damaged air columns, are complicated to use and maintain, are inconvenient for camping, and are difficult to set up and take down.
An inflatable tent device was designed, comprising multiple air columns, a bottom fixing structure, an automatic expansion and contraction structure, and an inflation and deflation structure. It employs an isolation structure, a lifting control structure, a locking and fixing structure, and a sealing structure to achieve the separation and sealing of the air columns, and supports electric inflation and automatic expansion and contraction.
It improves the safety and lifespan of inflatable tents, simplifies the maintenance and deployment process, and enhances portability and functionality.
Smart Images

Figure CN122014050A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of inflatable tents, and more specifically, to an inflatable tent device. Background Technology
[0002] Currently, inflatable tents often suffer from air column damage after multiple uses. Repurchasing or repairing them is costly in terms of manpower and resources, and discovering damage after arriving at the campsite only exacerbates the waste of time, money, and effort. Furthermore, the complexity of setting up and taking down inflatable tents contributes to their breakage. Additionally, issues such as the difficulty in carrying camping pegs further complicate matters, making inflatable tents less than ideal. Summary of the Invention
[0003] The purpose of this invention is to provide an inflatable tent device to solve the above-mentioned problems existing in the prior art.
[0004] In a first aspect, embodiments of the present invention provide an inflatable tent device, comprising multiple air columns, a bottom fixing structure, an automatic retraction and detraction structure, and an inflation and deflation structure, wherein there is an isolation structure between the air columns, and the isolation structure includes a lifting control structure, a locking and fixing structure, and a sealing structure.
[0005] The control lifting structure includes a sealed pull rope, a barrier material, a storage bag, a currently isolated unsealed pull rope, and an adjacent isolated unsealed pull rope;
[0006] The isolation structure is disposed between two different segments of the air column; the isolation structure is used to separate the air columns in different areas so that the gas in the blocked air column does not exchange.
[0007] The control lifting structure is set between two different sections of air columns, and the sealing pull rope built into the double-layer fabric controls whether the air columns are blocked.
[0008] The locking and fixing structure is installed on the outside of the tent controlling the lifting structure and is used to fix the sealing rope; the locking and fixing structure is used to fix the barrier material between the air columns that are accurately placed in different areas;
[0009] The sealing structure is located at the boundary of the gas column; the control lifting structure is located inside the sealing structure; the sealing structure is used to seal the barrier material so that the gas does not flow from the boundary of the barrier material.
[0010] The automatic retraction structure is placed and fixed on the bottom fixed structure;
[0011] An inflation / deflation structure is installed on the tent surface and connected to multiple air columns for inflating and deflating the tent. Optionally, the control lifting structure controls the sliding of the barrier material, and a storage bag is provided inside the double-layered fabric at the edge of the air columns;
[0012] The sealing pull rope and the head of the barrier material are fixedly connected; the barrier material slides downward along the boundary of the sealing structure under the pull of the sealing pull rope.
[0013] The tail of the non-sealed pull rope and the barrier material are fixedly connected; the barrier material slides upward along the boundary of the sealing structure under the pull of the non-sealed pull rope.
[0014] Optionally, the sealing structure includes a sealing disc A and a sealing disc B, which are hollow; the hollow portions of the sealing discs A and B allow gas to flow when the barrier material is not blocking the flow.
[0015] The edges of sealing discs A and B are tightly connected to the fabric of the air columns inside the tent; sealing discs A and B are positioned between the two air columns that need to be blocked.
[0016] The inner layer of the A sealing disc is equipped with a small A sealing rubber ring and a large A sealing rubber ring; the inner layer of the B sealing disc is equipped with a small B sealing rubber ring and a large B sealing rubber ring; the A sealing disc and the B sealing disc can be sealed together by the sealing rubber rings.
[0017] There is a hole and an opening in the outer layer of tent fabric between the A sealing disc and the B sealing disc; the hole is connected by an adjacent non-sealed pull rope; the opening is the diameter of the barrier material; and the opening is connected by a sealing pull rope.
[0018] Optionally, the locking structure includes a sealed locking structure and a non-sealed locking structure, wherein the sealed locking structure is used to fix and control the pulling of the sealing pull rope;
[0019] The non-sealed locking structure is used to secure adjacent, non-sealed pull ropes.
[0020] Optionally, the sealing lock structure includes a sealing rotating handle, a sealing handle frame, a sealing rope rotating rod, a sealing fixing rope disc, and a sealing rotating rope hole, wherein the sealing rotating rope hole allows for the passage of a sealing pull rope;
[0021] The sealing rope rotating rod is used to wind the sealing pull rope;
[0022] The sealing and fixing rope disc is connected to one end of the sealing rope rotating rod; the sealing and fixing rope disc is used to prevent the rope from slipping.
[0023] The sealing rotating handle is connected to one end of the sealing rope rotating rod; the sealing rotating handle is used to pull the sealing rope.
[0024] The sealing handle frame and the sealing rotating handle are of the same size; the sealing rotating handle can be pulled out from the sealing handle frame.
[0025] Optionally, the inflation / deflation structure includes multiple inflation / deflation ports, and one inflation / deflation port is included in one section of the gas column;
[0026] The edge of the inflation / deflation port is a spiral rubber ring;
[0027] The charging and discharging ports are sealed with a removable cloth.
[0028] Optionally, the automatic storage structure includes a protruding hanging item, a rotating storage rod, a storage cavity, a light bulb, and a lighting protective cover, wherein the protruding hanging item is installed at one end of the rotating storage rod;
[0029] The light bulb is installed at the other end of the rotating storage rod;
[0030] Highlight the hanging ropes that wrap around the tent; rotate the storage rod inward to rotate and store the tent in the storage cavity;
[0031] Highlight the hanging ropes that wrap around the tent; rotate the storage rod outwards to unfold the tent from the storage cavity.
[0032] Optionally, the volume of the storage cavity is sufficient to accommodate the entire tent.
[0033] Optionally, the lighting cover is snapped onto the outside of the lighting bulb; the lighting cover is removable.
[0034] Optionally, the bottom fixing structure is placed at the bottom of the automatic retraction structure, and camping pegs are placed in the hollow part of the bottom fixing structure.
[0035] Compared with the prior art, the embodiments of the present invention achieve the following beneficial effects:
[0036] This invention also provides an inflatable tent device, including multiple air columns, a bottom fixing structure, an automatic retraction structure, and an inflation / deflation structure. An isolation structure exists between the air columns, comprising a control lifting structure, a locking and fixing structure, and a sealing structure. The control lifting structure includes a sealing pull cord, a non-sealed pull cord, barrier material, and a storage bag. The non-sealed pull cord includes a currently isolating non-sealed pull cord and an adjacent isolating non-sealed pull cord. The isolation structure is positioned between pairs of different air columns. The isolation structure separates air columns in different areas, preventing gas exchange within the isolated air columns. The control lifting structure, positioned between pairs of different air columns, uses sealing pull cords embedded in a double-layered fabric to control whether the air columns are isolated. The locking and fixing structure is located outside the tent of the control lifting structure and is used to fix the sealing pull cords. The locking and fixing structure is used to fix the barrier material accurately placed between air columns in different areas. The sealing structure is located at the boundary of the air columns; the control lifting structure is located inside the sealing structure. The sealing structure seals the barrier material, preventing gas from flowing from the boundary of the barrier material. An automatic retraction mechanism is placed and secured on the bottom fixed structure. The inflation / deflation mechanism is located on the tent surface and connected to multiple air columns for inflating and deflating the tent.
[0037] Inflatable tents can be divided into sections, allowing for the continued use of other air columns in case of damage to one column, thus enhancing safety. The inflation / deflation ports are compatible with electric inflators for automatic inflation. The automatic take-up and take-down mechanism includes a rotating storage rod for easy folding and stowage. A lighting system is also included, and the hollow section at the bottom of the support structure can store camping pegs. Attached Figure Description
[0038] Figure 1 This is a schematic diagram of the tent structure in an inflatable tent device provided in an embodiment of the present invention.
[0039] Figure 2 This is a schematic diagram of the tent storage structure in an inflatable tent device provided in an embodiment of the present invention.
[0040] Figure 3 This is a schematic diagram of the isolation structure in an inflatable tent device provided in an embodiment of the present invention.
[0041] Figure 4 This is a schematic diagram of the locking and fixing structure in an inflatable tent device provided in an embodiment of the present invention.
[0042] The diagram shows the following markings: 100 - Air column; 200 - Inflation / deflation structure; 3 - Isolation structure; 4 - Automatic retraction / expansion structure; 5 - Bottom fixing structure; 6 - Locking and fixing structure; 7 - Hanging rope; 32 - Control lifting structure; 321 - Storage bag; 322 - Sealing pull rope; 323 - Barrier material; 324 - Adjacent isolation non-sealed pull rope; 325 - Currently isolation non-sealed pull rope; 34 - Sealing structure; 341 - A sealing disc; 342 - B sealing disc; 343 - A small sealing rubber ring; 344 - B small sealing rubber ring; 345 - A large sealing rubber ring; 346 - B large sealing rubber ring; 351 - Hole; 352 - Opening; 401 - Rotating storage rod; 402 - Light bulb; 403 - Lighting protective cover; 405 - Storage cavity; 406 - Protruding hanging item; 501 - Camping peg; 60 - Sealing locking structure; 61 - Non-sealing locking structure. 601-Sealed rotating handle; 602-Sealed handle frame; 603-Sealed rope rotating rod; 604-Sealed fixed rope disc; 605-Sealed rope rotating hole; 611-Unsealed rotating handle; 612-Unsealed handle frame; 613-Unsealed rope rotating rod; 614-Unsealed fixed rope disc; 615-Unsealed rope rotating hole. Detailed Implementation
[0043] The present invention will now be described in detail with reference to the accompanying drawings.
[0044] Example
[0045] like Figure 1 As shown, an embodiment of the present invention provides an inflatable tent device, such as... Figure 1 and Figure 2 As shown, the inflatable tent device includes multiple air columns 100, a bottom fixing structure 5, an automatic retraction structure 4, and an inflation / deflation structure 200, with an isolation structure 3 between the air columns.
[0046] Among them, such as Figure 3 As shown, the isolation structure 3 includes a control lifting structure 32, a locking and fixing structure 6, and a sealing structure 34.
[0047] The control lifting structure includes a sealing pull rope 322, a barrier material 323, a storage bag 321, a currently isolated non-sealed pull rope 325, and an adjacent isolated non-sealed pull rope 324.
[0048] Among them, the current isolation non-sealed pull rope 325 controls the pulling out of the barrier material corresponding to the current isolation structure, and the adjacent isolation non-sealed pull rope 324 controls the pulling out of the barrier material corresponding to the adjacent isolation structure.
[0049] The isolation structure 3 is disposed between two different segments of the air column 100. The isolation structure 3 is used to separate the air column 100 in different areas, so that the gas in the blocked air column does not exchange.
[0050] The control lifting structure 32 is set between two different sections of air columns 100, and the sealing pull rope 322 built into the double-layer fabric controls whether the air columns 100 are blocked.
[0051] The locking and fixing structure 6 is installed on the outside of the tent controlling the lifting structure 32 and is used to fix the sealing pull rope 322. The locking and fixing structure 6 is used to fix the barrier material 323 between the air columns 100 that are accurately placed in different areas.
[0052] A sealing structure 34 is disposed at the boundary of the gas column 100; the control lifting structure 32 is disposed inside the sealing structure 34. The sealing structure 34 is used to seal the barrier material 323, so that gas does not flow from the boundary of the barrier material 323.
[0053] In this embodiment, the inflatable tent uses two layers of fabric. On the one hand, this allows some parts of the control structure to pass through the middle layer of the double-layer structure, and on the other hand, it increases the tent's sturdiness.
[0054] The automatic retraction structure is placed and fixed on the bottom fixed structure.
[0055] The inflation / deflation mechanism is located on the surface of the tent and is connected to multiple air columns for inflating and deflating the tent.
[0056] With the above structure, if it is confirmed that the gas columns are blocked, the blocking structure will block the gas.
[0057] Optionally, the control lifting structure 32 controls the sliding of the blocking material 323, and a storage bag 321 is provided inside the double-layer fabric at the edge of the air column.
[0058] The sealing pull rope 322 and the head of the barrier material 323 are fixedly connected; the barrier material 323 slides downward along the boundary of the sealing structure 34 under the pull of the sealing pull rope 322.
[0059] The tail of the non-sealed isolation pull rope 325 and the barrier material 323 are fixedly connected; the barrier material 323 slides upward along the boundary of the sealing structure 34 under the pull of the non-sealed isolation pull rope 325.
[0060] When there is no barrier between the air columns, the current non-sealed pull rope 325 pulls the barrier material 323 into the storage bag 321, and the air columns are connected for inflation.
[0061] When blocking the air columns, the sealing pull rope 322 pulls the blocking material 323 out of the storage bag 321 to block the air columns from being inflated.
[0062] The storage bag and the tent air column are connected by fabric at their respective boundaries.
[0063] The lifting mechanism 310 is pulled manually by pulling its pull line.
[0064] Optionally, the sealing structure 34 includes a sealing disc A 341 and a sealing disc B 342, both of which are hollow. The hollow portions of the sealing discs 341 and B 342 allow gas to flow when the barrier material 323 is not blocking the flow.
[0065] The edges of the sealing disc A 341 and sealing disc B 342 are tightly connected to the fabric of the air column inside the tent; the sealing disc A 341 and sealing disc B 342 are positioned between two air columns that need to be blocked.
[0066] The inner layer of the A sealing disc 341 is equipped with a small A sealing rubber ring 343 and a large A sealing rubber ring 345; the inner layer of the B sealing disc 342 is equipped with a small B sealing rubber ring 344 and a large B sealing rubber ring 346; the A sealing disc 341 and the B sealing disc 342 can be sealed together by the sealing rubber rings.
[0067] There is a hole 351 and an opening 352 in the outer layer of tent fabric between the A sealing disc 341 and the B sealing disc 342; the hole 351 is connected by an adjacent non-sealed pull rope 324; the opening 352 is the diameter of the barrier material; the opening 352 is connected by a sealing pull rope 322.
[0068] The sealing pull rope 322 pulls the barrier material 323, which moves from the opening 352 to between sealing disc A 341 and sealing disc B 342 until it reaches the bottom of sealing disc A 341 and sealing disc B 342. The sealing rubber rings of sealing disc A 341 and sealing disc B 342 seal the edge of the barrier material 323, blocking the air column.
[0069] With the above structure, the sealing rubber ring better blocks the airflow. When sealing, it also isolates the pull line from the outside, providing a good seal and thus blocking the flow between gases, thereby separating the air column and allowing the air column to be inflated individually.
[0070] Optionally, the locking structure 6 includes a sealed locking structure 60 and a non-sealed locking structure 61, wherein, as shown... Figure 4 As shown.
[0071] The sealing latch structure 60 is used to secure the sealing pull cord 322. The sealing pull cord 322 is secured when the barrier material 323 moves downward from the storage bag 321 to the bottom of the sealing structure 34.
[0072] The non-sealed locking structure 61 is used to secure adjacent insulating non-sealed pull ropes 324. When the barrier material of the previous air column moves upward through the non-sealed locking structure 61 and returns to the storage pack 321, the adjacent insulating non-sealed pull ropes 324 are secured.
[0073] Among them, such as Figure 4 As shown, the sealing latch structure 60 and the non-sealing latch structure 61 have the same structure but opposite directions, and one is wrapped around and fixed to the sealing pull rope 322, while the other is wrapped around and fixed to the adjacent isolation non-sealing pull rope 324.
[0074] The non-sealed locking structure 61 includes a non-sealed rotating handle 611, a non-sealed handle frame 612, a non-sealed rope rotating rod 613, a non-sealed fixed rope disc 614, and a non-sealed rotating rope hole 615, the non-sealed rotating rope hole 615 allowing adjacent isolated non-sealed pull ropes 324 to pass through. The non-sealed rope rotating rod 613 is used to wind around adjacent isolated non-sealed pull ropes 324. The non-sealed fixed rope disc 614 is connected to one end of the non-sealed rope rotating rod 613; the non-sealed fixed rope disc 614 prevents the rope from slipping. The non-sealed rotating handle 611 is connected to one end of the non-sealed rope rotating rod 613; the non-sealed fixed rope disc 614 is used to pull adjacent isolated non-sealed pull ropes 324. The non-sealed handle frame 612 is sized to match the non-sealed rotating handle 611; the non-sealed rotating handle 611 can be pulled out from the non-sealed handle frame 612. The non-sealed rotating handle 611 is pulled out from the non-sealed handle frame 612. The non-sealed rotating handle 611 rotates, and the adjacent insulating non-sealed pull rope 324 is wrapped around the non-sealed rope rotating rod 613 until a fixed length is reached. The non-sealed rotating handle 611 is then placed in the non-sealed handle frame 612.
[0075] The barrier material of the previous air column is the same as that of barrier material 323, but they are not the same.
[0076] Optionally, the sealing lock structure 60 includes a sealing rotating handle 601, a sealing handle frame 602, a sealing rope rotating rod 603, a sealing fixing rope disc 604, and a sealing rotating rope hole 605, wherein the sealing rotating rope hole 605 can be used by the sealing pull rope 322.
[0077] The sealing rope rotating rod 603 is used to wind the sealing pull rope 322.
[0078] The sealing and fixing rope disc 604 is connected to one end of the sealing rope rotating rod 603; the sealing and fixing rope disc 604 is used to prevent the rope from slipping.
[0079] The sealing rotating handle 601 is connected to one end of the sealing rope rotating rod 603; the sealing rotating handle 601 is used to pull the sealing rope 322.
[0080] The sealed handle frame 602 and the sealed rotating handle 601 are of the same size; the sealed rotating handle 601 can be pulled out from the sealed handle frame 602.
[0081] The size of the hole through which the sealing rotating handle 601 can be pulled out is the same as that of the sealing rope rotating rod 603.
[0082] The sealing rotating handle 601 is pulled out from the sealing handle frame 602. The sealing rotating handle 601 rotates, and the sealing pull rope 322 is wound around the sealing rope rotating rod 603 until a fixed length is reached. The sealing rotating handle 601 is then placed in the sealing handle frame 602.
[0083] The fixed length is the length of the rope marked on it, which allows the barrier material to completely block the air column.
[0084] The above structure allows control over whether the barrier material blocks the air column by adjusting the length of the rope. Furthermore, the rope length is fixed by pulling the rotating handle in and out of the handle frame, preventing slippage. Since the length of the sealing rope is fixed when the barrier material is fully covered, the fixed-position sealing handle frame makes adjusting the sealing rope quick and easy.
[0085] Optionally, the inflation / deflation structure includes multiple inflation / deflation ports, and one inflation / deflation port is included in one section of the gas column.
[0086] The edge of the inflation / deflation port is provided with a spiral rubber ring.
[0087] The inflation / deflation port can be matched with an electric inflator to perform electric inflation.
[0088] The charging / discharging port can be tightly connected to the inflation device and the inflation plug.
[0089] The charging and discharging ports are sealed with a removable cloth.
[0090] When using the charging / discharging port as the inflation point, a removable fabric is used for protection.
[0091] The above method ensures a tighter seal during inflation. Normally, the fabric is used to hold the air in place; the removable fabric can be removed for inflation when needed.
[0092] Optionally, the automatic storage structure 4 includes a protruding hanging item 406, a rotating storage rod 401, a storage cavity 405, a light bulb 402, and a lighting protective cover 403, with the protruding hanging item 406 installed at one end of the rotating storage rod 401.
[0093] The light bulb 402 is installed at the other end of the rotating storage rod 401.
[0094] like Figure 2 As shown.
[0095] Protruding hanging item 406 is wrapped around the hanging rope 7 on the tent. Rotate storage rod 401 inward to rotate and store the tent in storage cavity 405.
[0096] Among them, the hanging rope 7 on the tent is as follows Figure 1 As shown.
[0097] Protruding hanging item 406 is wrapped around the hanging rope 7 on the tent. Rotate storage rod 401 outward to rotate and unfold the tent from storage cavity 405.
[0098] The rotation of the rotating storage rod 401 inward or outward is controlled by a remote controller via electricity.
[0099] Optionally, the volume of the storage cavity is sufficient to accommodate the entire tent.
[0100] The diameter of the receiving cavity is such that it does not compress the sealing disc in the locking and fixing structure.
[0101] Optionally, the lighting protective cover 403 is snapped onto the outside of the lighting bulb 402. The lighting protective cover 403 is removable.
[0102] The light bulb 402 is installed inside the rotating storage rod 401. A battery, electrically connected to the light bulb 402, is fixed inside the rotating storage rod 401. A lighting protective cover 403 is snapped onto the outside of the rotating storage rod 401. The light bulb is activated by a remote control.
[0103] Optionally, the bottom fixing structure 5 is placed at the bottom of the automatic retraction structure 4, and the camping peg 501 is placed in the hollow position of the bottom fixing structure 5.
[0104] The bottom fixing structure has a smooth bottom that is parallel to the bottom surface.
[0105] Through the aforementioned structure, the inflatable tent can divide the air columns, allowing the remaining air columns to continue operating even if one column is damaged, thus enhancing safety. Furthermore, the inflation / deflation port is compatible with an electric inflator for electric inflation. The rotating storage rod in the automatic take-up and take-down structure allows the tent to be stored away. The automatic take-up and take-down structure also includes a light for illumination, and the hollow section of the bottom support structure can store camping pegs.
[0106] Numerous specific details are set forth in the specification provided herein. However, it will be understood that embodiments of the invention may be practiced without these specific details. In some instances, well-known apparatuses, structures, and techniques have not been shown in detail so as not to obscure the understanding of this specification.
[0107] Similarly, it should be understood that, in order to simplify this disclosure and aid in understanding one or more of the various aspects of the invention, features of the invention are sometimes grouped together in a single embodiment, figure, or description thereof in the above description of exemplary embodiments of the invention. However, this disclosed apparatus should not be construed as reflecting an intention that the claimed invention requires more features than expressly recited in each claim. Rather, as reflected in the following claims, inventive aspects lie in fewer than all features of a single foregoing disclosed embodiment. Therefore, the claims following the detailed description are hereby expressly incorporated into this detailed description, wherein each claim itself is a separate embodiment of the invention.
[0108] Those skilled in the art will understand that modules in the device of the embodiments can be adaptively changed and placed in one or more devices different from that embodiment. Modules, units, or components in the embodiments can be combined into a single module, unit, or component, and further, they can be divided into multiple sub-modules, sub-units, or sub-components. Except where at least some of such features and / or processes or units are mutually exclusive, any combination can be used to combine all features disclosed in this specification (including the accompanying claims, abstract, and drawings) and all processes or units of any device or apparatus so disclosed. Unless expressly stated otherwise, each feature disclosed in this specification (including the accompanying claims, abstract, and drawings) may be replaced by an alternative feature that serves the same, equivalent, or similar purpose.
[0109] Furthermore, those skilled in the art will understand that although some embodiments herein include certain features included in other embodiments but not others, combinations of features from different embodiments are intended to be within the scope of the invention and form different embodiments. For example, in the following claims, any of the claimed embodiments can be used in any combination.
[0110] The various component embodiments of the present invention can be implemented in hardware, or as software modules running on one or more processors, or a combination thereof. Those skilled in the art will understand that microprocessors or digital signal processors (DSPs) can be used in practice to implement some or all of the functions of some or all of the components in the apparatus according to embodiments of the present invention. The present invention can also be implemented as a device or apparatus program (e.g., a computer program and computer program product) for performing part or all of the apparatus described herein. Such a program implementing the present invention can be stored on a computer-readable medium, or can be in the form of one or more signals. Such signals can be downloaded from an Internet website, provided on a carrier signal, or provided in any other form.
[0111] It should be noted that the above embodiments are illustrative of the invention and not restrictive, and that those skilled in the art can devise alternative embodiments without departing from the scope of the appended claims. In the claims, any reference signs placed between parentheses should not be construed as limiting the claims. The word "comprising" does not exclude the presence of elements or steps not listed in the claims. The word "a" or "an" preceding an element does not exclude the presence of a plurality of such elements. The invention can be implemented by means of hardware comprising several different elements and by means of a suitably programmed computer. In the unit claims enumerating several means, several of these means may be embodied by the same item of hardware. The use of the words first, second, and third, etc., does not indicate any order. These words can be interpreted as names.
Claims
1. An inflatable tent device, characterized in that, It includes multiple air columns, a bottom fixing structure, an automatic retraction and deceleration structure, and an inflation / deflation structure. There are isolation structures between the air columns, including a control lifting structure, a locking and fixing structure, and a sealing structure. The control lifting structure includes a sealing pull rope, barrier material, a storage bag, a currently isolated non-sealed pull rope, and an adjacent isolated non-sealed pull rope. The isolation structures are positioned between pairs of different air column segments. These isolation structures separate air columns in different areas, preventing gas exchange within the isolated air columns. The control lifting structure, positioned between pairs of different air column segments, is built into a double-layered fabric. The system includes a sealing pull cord that controls whether air columns are blocked; a locking and fixing structure located on the outside of the tent controlling the lifting structure for securing the sealing pull cord; the locking and fixing structure for securing the barrier material between air columns accurately placed in different areas; a sealing structure located at the boundary of the air columns; the lifting and controlling structure located inside the sealing structure; the sealing structure for sealing the barrier material to prevent gas from flowing from the boundary of the barrier material; an automatic retraction and deflating structure placed and fixed on the bottom fixing structure; and an inflation / deflation structure located on the surface of the tent, connected to multiple air columns, for inflating or deflating the tent.
2. The inflatable tent device according to claim 1, characterized in that, The control lifting structure controls the sliding of the barrier material, and a storage bag is provided inside the double-layer fabric at the edge of the air column; the sealing pull rope is fixedly connected to the head of the barrier material; the barrier material slides downward along the boundary of the sealing structure under the pull of the sealing pull rope; the currently non-sealing pull rope is fixedly connected to the tail of the barrier material; the barrier material slides upward along the boundary of the sealing structure under the pull of the currently non-sealing pull rope.
3. The inflatable tent device according to claim 1, characterized in that, The sealing structure includes a sealing disc A and a sealing disc B, both of which are hollow. The hollow portions of the sealing discs A and B allow gas to flow even when the barrier material is not blocking the flow. The edges of the sealing discs A and B are tightly connected to the fabric of the air columns inside the tent. The sealing discs A and B are positioned between two air columns that need to be blocked. The inner layer of the sealing disc A contains a small sealing rubber ring A and a large sealing rubber ring A. The inner layer of the sealing disc B contains a small sealing rubber ring B and a large sealing rubber ring B. The sealing discs A and B can be sealed together by the sealing rubber rings. A hole and an opening exist in the outer layer of tent fabric between the sealing discs A and B. An adjacent non-sealing pull rope passes through the hole. The size of the opening is the diameter of the barrier material. A sealing pull rope passes through the opening.
4. The inflatable tent device according to claim 1, characterized in that, The locking structure includes a sealed locking structure and a non-sealed locking structure. The sealed locking structure is used to fix and control the pulling of the sealed pull rope; the non-sealed locking structure is used to fix adjacent, isolated, non-sealed pull ropes.
5. An inflatable tent device according to claim 4, characterized in that, The sealing lock structure includes a sealing rotating handle, a sealing handle frame, a sealing rope rotating rod, a sealing fixing rope disc, and a sealing rope hole. The sealing rope hole allows the sealing pull rope to pass through. The sealing rope rotating rod is used to wind the sealing pull rope. The sealing fixing rope disc is connected to one end of the sealing rope rotating rod and prevents the rope from slipping. The sealing rotating handle is connected to one end of the sealing rope rotating rod and is used to pull the sealing pull rope. The sealing handle frame is sized to match the sealing rotating handle. The sealing rotating handle can be pulled out from the sealing handle frame.
6. An inflatable tent device according to claim 1, characterized in that, The inflation / deflation structure includes multiple inflation / deflation ports, with one inflation / deflation port per section of the air column; the edge of the inflation / deflation port has a spiral rubber ring; and the inflation / deflation port is sealed with removable fabric.
7. An inflatable tent device according to claim 6, characterized in that, The automatic storage structure includes a protruding hanging item, a rotating storage rod, a storage cavity, a light bulb, and a lighting protective cover. The protruding hanging item is installed at one end of the rotating storage rod, and the light bulb is installed at the other end of the rotating storage rod. Highlight the hanging ropes that wrap around the tent; rotate the storage rod inward to rotate and store the tent in the storage cavity; highlight the hanging ropes that wrap around the tent; rotate the storage rod outward to rotate and unfold the tent from the storage cavity.
8. An inflatable tent device according to claim 7, characterized in that, The volume of the storage cavity is large enough to accommodate the entire tent.
9. An inflatable tent device according to claim 7, characterized in that, The lighting protective cover is snapped onto the outside of the lighting bulb; the lighting protective cover is removable.
10. An inflatable tent device according to claim 1, characterized in that, The bottom fixing structure is placed at the bottom of the automatic retraction structure, and camping pegs are placed in the hollow part of the bottom fixing structure.