Tent

The innovative design of the tent frame simplifies the packing process, reduces the packing volume, solves the problem of inconvenient packing of existing tents, and improves the convenience of carrying and storing them.

CN223661506UActive Publication Date: 2025-12-12CAMPVALLEY XIAMEN LEISURE PRODS
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Patent Information

Application Number
CN202422864297.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-22
Publication Date
2025-12-12
Estimated Expiration
2034-11-22

AI Technical Summary

Technical Problem

Existing tents are cumbersome to fold and bulky, making them inconvenient to carry and store.

Method used

A tent frame structure was designed, including a canopy assembly, a folding assembly, and a support assembly. The support assembly is connected to the support cover by fasteners and is located outside the support cover. When the tent is folded up, the support assembly presses against the support cover to reduce the folded volume. The tent is folded up quickly by a rotatable link and a telescopic tube.

Benefits of technology

It simplifies the tent packing process, reduces the packing volume, makes it easy to carry and store, and improves structural stability and ease of use.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the field of tents, and discloses a tent support and a tent comprising the same, the tent comprises a tent support and a supporting cover, the tent support comprises a tent top assembly, a folding assembly and a supporting assembly, the tent top assembly is arranged at the top of the tent support, the folding assembly comprises a plurality of second connecting rods, and one end of each second connecting rod is connected with the tent top assembly; the other end is connected with the supporting assembly; the supporting cover is arranged outside the tent top assembly and the folding assembly in a covering mode and connected with the tent top assembly through a fastener arranged outside the supporting cover, and the second connecting rod can penetrate through the supporting cover, so that the supporting assembly and the fastener are both located outside the supporting cover. According to the tent, the supporting assembly is arranged outside the supporting cover, so that when the tent is stored, the external supporting assembly can tightly press the internal supporting cover, the supporting cover is prevented from overflowing to other areas, the overall storage size of the tent is reduced, carrying and storage are convenient, storage convenience of the tent is achieved, and the problem that the tent is inconvenient to store is solved.
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Description

TECHNICAL FIELD

[0001] The present application relates to the field of tents, in particular to a tent. BACKGROUND

[0002] Although the existing tent provides a temporary residence in outdoor camping, its storage problem has always been defective. First of all, the tent is cumbersome when folding, and needs to be folded according to a specific order and way, which is undoubtedly a challenge for first-time users; secondly, the storage volume of the tent is large, even if it is folded, it still occupies a lot of space, which brings inconvenience to carrying and storing, etc. These problems make the tent particularly inconvenient to store, and bring many troubles to outdoor camping enthusiasts.

[0003] Therefore, the problem of inconvenient storage of the tent needs to be solved. CONTENT OF THE UTILITY MODEL

[0004] In view of the above problems of the prior art, the purpose of the present application is to solve the defect of the tent in the prior art which is inconvenient to store.

[0005] In order to solve the above problems, the present application provides a tent, which comprises a tent support and a supporting cover, the tent support comprises a canopy assembly, a folding assembly and a supporting assembly, the canopy assembly is arranged at the top of the tent support, the folding assembly comprises a plurality of second connecting rods, one end of each second connecting rod is connected with the canopy assembly, and the other end is connected with the supporting assembly;

[0006] The supporting cover is covered outside the canopy assembly and the folding assembly, and is connected with the canopy assembly by a fastener arranged outside the supporting cover, the second connecting rod can pass through the supporting cover, so that the supporting assembly and the fastener are located outside the supporting cover.

[0007] Preferably, the canopy assembly comprises a first adapter and a plurality of first connecting rods, the first ends of the plurality of first connecting rods are movably connected through the first adapter, and the plurality of first connecting rods are sequentially and spaced arranged along the circumference of the first adapter;

[0008] The folding assembly is arranged at one end of the canopy assembly away from the first adapter, and further comprises a plurality of second adapters, the second ends of the first connecting rods are movably connected with the first ends of the two adjacent second connecting rods through the second adapters;

[0009] The supporting assembly is arranged at one end of the folding assembly away from the second adapter, and comprises a plurality of telescopic pipes and a plurality of third adapters, the second ends of the two adjacent second connecting rods are movably connected with the telescopic pipes through the third adapters.

[0010] Preferably, the included angle formed by two adjacent second connecting rods at their first ends is in the range of 120°-160°.

[0011] Preferably, the number of first connecting rods is four, and the length of the first connecting rods is less than the length of the second connecting rods.

[0012] Preferably, the number of first connecting rods is five or six, and the length of the first connecting rods is greater than the length of the second connecting rods.

[0013] Preferably, the telescopic tube comprises a first telescopic tube and a second telescopic tube, and the support assembly further comprises a fixing member;

[0014] The radial dimension of the first telescopic tube is less than the radial dimension of the second telescopic tube, and the fixing member is fixedly arranged at one end of the second telescopic tube facing the first telescopic tube, and the fixing member can limit the first telescopic tube when the first telescopic tube is at the end of the stroke of the second telescopic tube.

[0015] The relative rotation of the first telescopic tube and the second telescopic tube can enable the first telescopic tube to be embedded inside the second telescopic tube.

[0016] Preferably, the first end of the first connecting rod is sleeved with a connecting sleeve, and the first adapter is provided with a limiting groove matched with the connecting sleeve, and the first connecting rod can be embedded in the limiting groove through the connecting sleeve and can rotate relative to the limiting groove for storage.

[0017] Preferably, the periphery of the first adapter is provided with a circumferential connecting hole for inserting the first connecting rod.

[0018] The side surface of the first adapter away from the support assembly is provided with a top connecting hole, and the circumferential connecting hole and the top connecting hole are connected to form the limiting groove, and the first connecting rod can rotate between the circumferential connecting hole and the top connecting hole for storage.

[0019] Preferably, the center of the first adapter is provided with a through hole for passing the fastener, so that the fastener can pass through the support cover and the first adapter in sequence.

[0020] Preferably, the side of the support cover away from the tent support and the side of the tent support away from the support cover are respectively provided with sealing members for sealing the tent.

[0021] Based on the above technical solution, the tent described in the present application has the following beneficial effects:

[0022] The support cover is connected with the tent support through fasteners, and the fasteners are located outside the support cover, facilitating adjustment of the tent support and the support cover, and enhancing the structural stability of the tent as a whole; and by arranging the support assembly outside the support cover, the external support assembly can press the internal support cover when the tent is stored, avoiding "overflow" of the support cover to other areas, reducing the overall storage volume of the tent, facilitating carrying and storage, thereby realizing convenient storage of the tent. The tent of this structure is more suitable for storing in a smaller space after being stored. BRIEF DESCRIPTION OF DRAWINGS

[0023] In order to more clearly illustrate the technical solutions of the present application, the following will briefly introduce the drawings needed to be used in the embodiments or prior art description. Obviously, the drawings in the following description are only some embodiments of the present application, and those skilled in the art can obtain other drawings according to these drawings without creative labor.

[0024] Figure 1 is a structural schematic view of the tent in a first perspective provided by the embodiments of the present application.

[0025] Figure 2 is a structural schematic view of the tent in a second perspective provided by the embodiments of the present application.

[0026] Figure 3 is a structural schematic view of the tent in a third perspective provided by the embodiments of the present application.

[0027] Figure 4 is a partial enlarged view of A in Figure 3

[0028] Figure 5 is a partial structure schematic view of the tent provided by the embodiments of the present application.

[0029] Figure 6 is a partial enlarged view of B in Figure 5

[0030] Figure 7 is a structural schematic view of a tent support with four first connecting rods provided by the embodiments of the present application.

[0031] Figure 8 is a structural schematic view of a tent support with five first connecting rods provided by the embodiments of the present application.

[0032] Figure 9 is a structural schematic view of a tent support with six first connecting rods provided by the embodiments of the present application.

[0033] Figure 10 is a top view of three types of tent supports provided by the embodiments of the present application.​​

[0034] Figure 11 is a structural schematic diagram of a tent support storage process provided by an embodiment of the present application.

[0035] Figure 12 is Figure 11 is a local enlarged view at C in

[0036] Figure 13 is a structural schematic diagram of a first adapter and a first connecting rod connection provided by an embodiment of the present application.

[0037] Figure 14 is a structural schematic diagram of a first adapter provided by an embodiment of the present application.

[0038] In the drawings, reference signs are used to indicate: a tent support 100, a canopy top assembly 11, a first adapter 111, a limiting groove 1111, a first connecting rod 112, a connecting sleeve 113, a folding assembly 12, a second adapter 121, a second connecting rod 122, a support assembly 13, a third adapter 131, a telescopic pipe 132, a first telescopic pipe 1321, a second telescopic pipe 1322, a fixing piece 14; a tent 200, a support cover 21, a fastener 22, a sealing piece 23. DETAILED DESCRIPTION

[0039] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative work fall within the scope of protection of the present application.

[0040] The terms "one embodiment" or "an embodiment" as may be used herein means that a particular feature, structure, or characteristic described in connection with the embodiment is included in at least one implementation of the application. The appearances of the phrase "in one embodiment" or "in an embodiment" in various places in the specification are not necessarily all referring to the same embodiment, nor are they necessarily referring to a single embodiment. As such, the terms "first," "second," and the like herein do not denote any order, quantity, or importance, but rather are used to distinguish one element from another. Also, the terms "comprises," "comprising," "includes," "including," "contains," "containing," "has," "having," or the like are inclusive or open-ended and do not exclude additional, unrecited elements or method steps. The terms "a," "an," and "the" herein do not denote a limitation of quantity, and are to be construed to cover both the singular and the plural, unless otherwise indicated herein or clearly contradicted by the context. The terms "exemplary" and "for example" are utilized herein to mean "serving as an example, instance, or illustration," and are not intended to convey a limitation as to a possible scope. The term "in response to" is utilized herein to mean "in response to a determination that" and not "in response to a verification that."

[0041] As shown in Figures 1-14 The application discloses a tent 200, as shown in Figures 1-6 The tent 200 comprises a tent support 100 and a support cover 21, and the support cover 21 is a cloth structure having a shading effect.

[0042] The tent support 100 comprises a canopy assembly 11, a folding assembly 12, and a support assembly 13. The canopy assembly 11 is arranged at the top of the tent support 100. The folding assembly 12 comprises a plurality of second connecting rods 122. One end of each second connecting rod 122 is connected to the canopy assembly 11, and the other end is connected to the support assembly 13.

[0043] The support cover 21 covers the outside of the canopy assembly 11 and the folding assembly 12, and is connected to the canopy assembly 11 through a fastener 22 arranged outside the support cover 21. The second connecting rods can pass through the support cover 21, so that the support assembly 13 and the fastener 22 are both located outside the support cover 21.

[0044] It can be understood that the support assembly 13 is connected to the folding assembly 12 and the canopy assembly 11, that is, from top to bottom, the canopy assembly 11, the folding assembly 12, and the support assembly 13 are connected in sequence. The second connecting rods 122 of the folding assembly 12 can pass through the support cover 21, that is, one end of each second connecting rod 122 towards the canopy assembly 11 and the canopy assembly 11 are both located inside the support cover 21, and the other end of each second connecting rod 122 towards the support assembly 13 and the support assembly 13 are both located outside the support cover 21.

[0045] Therefore, according to the above, the support cover 21 is connected with the tent support 100 through the fastener 22, and the fastener 22 is located outside the support cover 21, which is convenient for adjusting the tent support 100 and the support cover 21, and also enhances the overall structural stability of the tent 200; and by arranging the support assembly 13 outside the support cover 21, when the tent 200 is stored, the external support assembly 13 can press the internal support cover 21 tightly, avoiding the support cover 21 from "overflowing" to other areas, reducing the overall storage volume of the tent 200, facilitating carrying and storage, thereby realizing the storage convenience of the tent 200. The tent 200 with this structure is more suitable for storing in a smaller space after being stored. In summary, the tent 200 design of the present application provides an effective technical solution to improve the problem of inconvenient storage of the tent 200.

[0046] Specifically, as shown in the drawings, the tent top assembly 11 is arranged at the top of the tent support 100, which includes a first adapter 111 and a plurality of first connecting rods 112. The first ends of the plurality of first connecting rods 112 are movably connected through the first adapter 111, and the plurality of first connecting rods 112 are arranged in sequence along the circumference of the first adapter 111. Figures 7-14

[0047] The folding assembly 12 is arranged at one end of the tent top assembly 11 away from the first adapter 111, which also includes a plurality of second adapters 121. The second ends of the first connecting rods 112 are movably connected through the second adapters 121 and the first ends of the adjacent two second connecting rods 122.

[0048] The support assembly 13 is arranged at one end of the folding assembly 12 away from the second adapter 121, which includes a plurality of telescopic pipes 132 and a plurality of third adapters 131. The second ends of the adjacent two second connecting rods 122 are movably connected through the third adapters 131 and the telescopic pipes 132.

[0049] In the embodiment of the present application, the plurality of first connecting rods 112 are arranged in sequence along the circumference of the first adapter 111 at equal intervals.

[0050] In the embodiment of the present application, the lengths of the first connecting rods 112 are equal; the lengths of the second connecting rods 122 are equal; and the lengths of the telescopic pipes 132 are equal.

[0051] In the embodiment of the present application, the number of telescopic pipes 132 corresponds to the number of first connecting rods 112.

[0052] ​It is understandable that two first links 112 are connected by a first adapter 111, two adjacent second links 122 are connected by a third adapter 131, and adjacent first links 112 and second links 122 are connected by a second adapter 121. Thus, the two first links 112 and the two second links 122 are arranged together to form a quadrilateral mechanism.

[0053] It is understandable that each telescopic tube 132 is respectively set on the third adapter 131 opposite to the first adapter 111 in the quadrilateral mechanism to support the entire tent frame 100, that is, to support the canopy assembly 11 and the folding assembly 12.

[0054] Furthermore, each of the first links 112 in the canopy assembly 11 and the second links 122 in the folding assembly 12 are made of flexible, bendable material, which allows the canopy assembly 11 to present an arc-shaped structure to meet the top requirements of the tent 200.

[0055] In this embodiment of the application, the first end of the first link 112 is movably connected to the first adapter 111, that is, each first link 112 can rotate relative to the first adapter 111, so that each first link 112 can extend in the same direction.

[0056] Similarly, the second end of the first link 112 is movably connected to the second adapter 121, and the first end of the second link 122 is also movably connected to the second adapter 121. That is, each first link 112 can rotate relative to the second adapter 121, and each second link 122 can rotate relative to the second adapter 121, so that the extension direction of each second link 122 is the same as the extension direction of each first link 112; wherein, the first end and the second end of the first link 112 are respectively located at the two ends of the first link 112.

[0057] Furthermore, the second end of the second link 122 is movably connected to the third adapter 131, and the telescopic rod is also movably connected to the third adapter 131, that is, each second link 122 can rotate relative to the third adapter 131, and the telescopic rod can rotate relative to the third adapter 131 so that the extension direction of each telescopic rod is the same as the extension direction of each second link 122; wherein, the first end and the second end of the second link 122 are respectively located at both ends of the second link 122;

[0058] Ultimately, as Figure 11 As shown, the first link 112, the second link 122 and the telescopic rod all extend in the same direction. The first adapter 111 and each of the second adapters 121 are located at both ends of the extension direction, thereby realizing the storage of the tent frame 100.

[0059] Therefore, as described above, by setting the first adapter 111 and the second adapter 121, the tent frame 100 can be flexibly folded and unfolded when not in use, allowing it to be quickly folded into a compact form, simplifying the storage steps of the tent frame 100 and improving its storage efficiency. After the tent frame 100 is stored, the extension directions of the first connecting rod 112, the second connecting rod 122, and the telescopic rod are all the same, ensuring that the tent frame 100 extends along the same axis after all components are folded, thereby reducing the overall storage volume of the tent frame 100, making it easy to carry and store, and suitable for scenarios where the tent frame 100 is stored in a small space after being folded. The quadrilateral mechanism formed by the two first connecting rods 112 and the two second connecting rods 122 provides a stable support structure for the tent 200, while also facilitating folding and unfolding.

[0060] like Figures 7-10 As shown, this application provides three structural forms of tent frame 100:

[0061] Firstly, there are four first connecting rods 112. Figure 7 From a top-down view, the included angle between each of the first connecting rods 112 is 90°, and in this structure, the length L1 of the first connecting rod 112 is less than the length L2 of the second connecting rod 122. By setting the included angle between each of the first connecting rods 112 to 90°, a more stable support structure can be provided, which is suitable for tents 200 that require strong load-bearing capacity. Furthermore, the shorter length of the first connecting rod 112 compared to the second connecting rod 122 helps to make the overall structure more stable and easier to store.

[0062] Secondly, there are five first connecting rods 112. Figure 8 From a top view, the included angle between each of the first links 112 is 72°, and in this structure, the length L1 of the first link 112 is greater than the length L2 of the second link 122. By setting the included angle between each of the first links 112 to 72°, a more uniform distribution of support force can be provided, which is suitable for medium-sized tents 200. Furthermore, since the length of the first link 112 is greater than that of the second link 122, this design can provide a larger coverage area when unfolded, increasing the usable space of the tent 200. In addition, the pentagonal structure has high mechanical stability, which helps to resist external forces and maintain the shape of the tent 200.

[0063] Thirdly, the number of first connecting rods 112 is six. Figure 9From a top-down view, the included angle between each of the first connecting rods 112 is 60°, and in this structure, the length L1 of the first connecting rod 112 is greater than the length L2 of the second connecting rod 122. By setting the included angle between each of the first connecting rods 112 to 60°, the most uniform force distribution can be provided, which is suitable for large tents 200 or environments requiring higher stability. Furthermore, similar to the second method mentioned above, the longer first connecting rod 112 can provide a larger coverage area, making the interior space of the tent 200 more spacious. In addition, the hexagonal structure has a high degree of symmetry, which not only makes the tent frame 100 aesthetically pleasing but also makes the structure of the tent frame 100 more stable and less prone to deformation under the action of external forces such as wind.

[0064] In other embodiments, the number of first links 112 and the design of each first link 112 can be set as needed. Different structural forms will have different mechanical properties, so they can be adjusted as needed according to different usage environments and load-bearing requirements.

[0065] Preferably, such as Figure 10 As shown, the included angle formed by the first ends of two adjacent second links 122 is in the range of 120°-160°. Specifically, at the connection point between the first ends of the two second links 122 and the second adapter 121, the included angle formed between the tangent directions of the two second links 122 is in the range of 120°-160°.

[0066] For example, in the embodiments of this application, when there are four first connecting rods 112, the included angle is 149°; when there are five first connecting rods 112, the included angle is 137°; and when there are six first connecting rods 112, the included angle is 125°.

[0067] It is understood that the first ends of the two connecting rods in this application are connected by the second adapter 121. When the two adjacent third adapters 131 are "connected", they form a triangular structure on the side, which can enhance the structural stability of the tent frame 100.

[0068] Therefore, by limiting the angle range using this structural form, a more stable structural support can be provided. Because the angle within this range is neither too sharp nor too flat, it helps to disperse and bear the pressure from the top of the tent 200, making the entire tent frame 100 more stable. Furthermore, this design allows the tent frame 100 to better adapt to different terrains, maintaining good stability and support whether on flat ground or sloped terrain. Secondly, a larger angle increases the wind resistance of the tent frame 100. Specifically, under wind force, a larger angle can better disperse wind force, reducing the risk of the tent 200 being blown away by the wind. Moreover, this angle range helps the tent 200 create a more spacious interior space when unfolded, maximizing the usable area inside the tent 200 and improving user comfort.

[0069] like Figure 12 As shown, the telescopic tube 132 includes a first telescopic tube 1321 and a second telescopic tube 1322, and the support assembly 13 also includes a fastener 14.

[0070] Wherein, the radial dimension of the first telescopic tube 1321 is smaller than the radial dimension of the second telescopic tube 1322. The fixing member 14 is fixedly disposed at one end of the second telescopic tube 1322 facing the first telescopic tube 1321. When the first telescopic tube 1321 is located at the end of the stroke of the second telescopic tube 1322, the fixing member 14 can limit the position of the first telescopic tube 1321, that is, fix the position of the first telescopic tube 1321. The end of the stroke indicates that only a small part of the first telescopic tube 1321 is embedded in the end of the second telescopic tube 1322, or the first telescopic tube 1321 is separated from the second telescopic tube 1322.

[0071] Thus, the relative rotation of the first telescopic tube 1321 and the second telescopic tube 1322 enables the first telescopic tube 1321 to be embedded inside the second telescopic tube 1322. This means that the first telescopic tube 1321 can be screwed into the pipe of the second telescopic tube 1322, so that most of the first telescopic tube 1321 overlaps with the second telescopic tube 1322, or the first telescopic tube 1321 is completely embedded in the second telescopic tube 1322.

[0072] Therefore, by designing the radial dimension of the first telescopic tube 1321 to be smaller than that of the second telescopic tube 1322, the first telescopic tube 1321 can be nested inside the second telescopic tube 1322, achieving compact storage. When the first telescopic tube 1321 is located at the end of the stroke of the second telescopic tube 1322, the fixing member 14 can limit the first telescopic tube 1321, ensuring that the telescopic tube 132 remains in a fixed position after unfolding, improving the overall stability of the tent frame 100. In addition, the fixing member 14 can also prevent the first telescopic tube 1321 from accidentally slipping out or falling off during use, increasing the safety of the tent 200. Through the relative rotation of the first telescopic tube 1321 and the second telescopic tube 1322, the first telescopic tube 1321 can be screwed into the interior of the second telescopic tube 1322, achieving compactness of the telescopic tube 132 when stored, greatly reducing the storage volume. Furthermore, this design also makes the assembly and disassembly process of the tent frame 100 faster and more convenient, requiring only a simple rotation of the telescopic tube 132.

[0073] like Figures 13-14 As shown, the first end of the first connecting rod 112 is fitted with a connecting sleeve 113, and the first adapter 111 is provided with a limiting groove 1111 that is adapted to the connecting sleeve 113. The first connecting rod 112 can be embedded in the limiting groove 1111 through the connecting sleeve 113 and can rotate relative to the limiting groove 1111 for storage.

[0074] In this embodiment of the application, the matching of the connecting sleeve 113 and the limiting groove 1111 refers to the matching of their size, shape and engagement method.

[0075] Furthermore, the first adapter 111 has a circumferential connecting hole on its periphery, which is used for the insertion of the first connecting rod 112.

[0076] The first adapter 111 has a top connection hole on the side surface away from the support assembly 13, that is, the top connection hole is provided on the top surface of the first adapter 111; the circumferential connection hole and the top connection hole are connected to form the limiting groove 1111, and the first connecting rod 112 can rotate between the circumferential connection hole and the top connection hole for storage.

[0077] It is understandable that the circumferential connecting hole and the top connecting hole only indicate different directions of penetration into the first adapter 111. That is, the circumferential connecting hole refers to penetration from the side of the first adapter 111 into its interior, while the top connecting hole refers to penetration from the top surface of the first adapter 111 into its interior. Therefore, the limiting groove 1111 is a cuboid-like receiving groove. The first connecting rod 112 can be inserted into the receiving groove through the connecting sleeve 113, and while engaging with the receiving groove, it can also rotate relative to the receiving groove between its side and top surfaces. Specifically, when the tent frame 100 is in the unfolded state, the connecting sleeve 113 can fit against the bottom surface of the receiving groove; when the tent frame 100 is in the retracted state, the connecting sleeve 113 can fit against the side surface of the receiving groove.

[0078] Therefore, the matching design of the connecting sleeve 113 and the limiting groove 1111 allows the first connecting rod 112 to rotate relative to each other within the limiting groove 1111, thus facilitating the unfolding and folding of the tent frame 100. Since the limiting groove 1111 is formed by the connection between the circumferential connecting hole and the top connecting hole, the first connecting rod 112 can rotate between the circumferential connecting hole and the top connecting hole. This design increases the range of rotation of the first connecting rod 112, making the folding process more flexible. Furthermore, the engagement method of the connecting sleeve 113 and the limiting groove 1111 ensures the connection stability between the first connecting rod 112 and the first adapter 111, preventing the tent frame 100 from loosening when unfolded.

[0079] In this embodiment, the structures of the second adapter 121 and the third adapter 131 are the same as those of the first adapter 111. The only difference between the second adapter 121 and the third adapter 131 and the first adapter 111 is the number of limiting grooves 1111. Specifically, the number of first connecting rods 112 can be set as needed according to actual conditions. If there are four first connecting rods 112, then there are also four limiting grooves 1111, that is, the first adapter 111 has four limiting grooves 1111. The number of the first connecting rods is variable, while the number of limiting grooves 1111 in the second connecting rod 121 and the third connecting rod 131 is fixed at three. This is because the second connecting rod 121 only needs to connect two adjacent second connecting rods 122 and one first connecting rod 112, and the third connecting rod 131 only needs to connect two adjacent second connecting rods 122 and the telescopic tube 132. Therefore, the three limiting grooves 1111 are arranged at equal intervals along the circumference of the second connecting rod 121 or along the circumference of the third connecting rod 131.

[0080] like Figure 11 As shown, this application uses five first connecting rods 112 as an example to demonstrate the changes in the components of the tent frame 100 when it is stored. The details are as follows:

[0081] When the tent frame 100 is in the unfolded state, the first telescopic pole extends relative to the second telescopic pole, and the canopy assembly 11 and the folding assembly 12 are in a bent state. When the tent frame 100 needs to be folded up, the first step is to rotate either the first telescopic tube 1321 or the second telescopic tube 1322, so that the first telescopic tube 1321 and the second telescopic tube 1322 rotate relative to each other. The second telescopic tube 1322 can be embedded in the interior of the tent frame 1322 along the O direction shown in the figure. At this time, the fixing member 14 will move closer to the third adapter 131, thereby shortening the overall length of the telescopic pole. The second step is to manually press the first adapter 111 along the P direction shown in the figure, so that the canopy assembly 11 is relative to the folding assembly. When the 12 links overlap, the first connecting rod 112 will rotate relative to the first adapter 111 and the second adapter 121, so that the first adapter 111 is completely at the bottom. At this time, the third adapter 131 can also change under the pressing action of the first adapter 111, so that the telescopic rod rotates relative to the third adapter 131, and the second connecting rod 122 rotates relative to the second adapter 121 and the third adapter 131. Finally, the side of the telescopic rod is squeezed along the Q direction in the figure, so that the telescopic rod, the second connecting rod 122 and the first connecting rod 112 come closer to each other, and finally the extension direction of the telescopic rod, the second connecting rod 122 and the first connecting rod 112 is the same. At this time, the storage of the tent frame 100 is completed.

[0082] like Figure 4 and Figure 6 As shown, the first adapter 111 has a through hole at its center, which is used for fasteners 22 to pass through, so that fasteners 22 can pass through the support cover 21 and the first adapter 111 in sequence.

[0083] In this embodiment, the fastener 22 refers to a bolt. After the screw passes through the support cover 21 and the first adapter 111, it is locked by a nut. By using a bolt connection, the tightness of the connection can be enhanced; in addition, the bolt fastener 22 can provide better sealing performance, preventing the intrusion of wind and water, and improving the windproof and waterproof performance of the tent 200.

[0084] Therefore, by using the fastener 22 for connection, the installation and disassembly of the support cover 21 becomes quick and easy, and users can easily set up and store the tent 200; in addition, the fastening method of the fastener 22 also reduces wear at the connection points and extends the service life of the tent 200.

[0085] Furthermore, a sealing element 23 is provided on the side of the support cover 21 away from the tent frame 100, and on the side of the tent frame 100 away from the support cover 21, respectively, for sealing the tent 200.

[0086] In this embodiment, the sealing element 23 refers to a sealing ring or a rubber gasket.

[0087] Therefore, by designing a sealing ring, moisture and wind can be effectively prevented from entering the interior of the tent 200 through the gap between the tent frame 100 and the support cover 21, thus improving the waterproof and windproof performance of the tent 200. Secondly, the seal 23 not only seals the support cover 21 and the tent frame 100, but also increases the overall structural stability of the tent 200. In addition, the seal 23 can reduce the direct contact between the support cover 21 and the tent frame 100 and the fasteners 22, thereby reducing wear and extending the service life of the tent 200.

[0088] The foregoing description has fully disclosed the specific embodiments of this application. It should be noted that any modifications made to the specific embodiments of this application by those skilled in the art do not depart from the scope of the claims. Accordingly, the scope of the claims is not limited to the foregoing specific embodiments.

Claims

1. A tent characterized in that, The tent includes a tent support (100) and a support cover (21), the tent support (100) includes a canopy assembly (11), a folding assembly (12) and a support assembly (13), the canopy assembly (11) is arranged at the top of the tent support (100), the folding assembly (12) includes a plurality of second connecting rods (122), one end of each of the second connecting rods (122) is connected with the canopy assembly (11), and the other end is connected with the support assembly (13); The support cover (21) covers the outside of the canopy assembly (11) and the folding assembly (12), and is connected with the canopy assembly (11) through a fastener (22) arranged outside the support cover (21), the second connecting rod (122) can pass through the support cover (21), so that the support assembly (13) and the fastener (22) are both located outside the support cover (21).

2. The tent according to claim 1, wherein The canopy assembly (11) includes a first adapter (111) and a plurality of first connecting rods (112), the first ends of the plurality of first connecting rods (112) are movably connected through the first adapter (111), and the plurality of first connecting rods (112) are sequentially and spacedly arranged along the circumference of the first adapter (111); The folding assembly (12) is arranged at one end of the canopy assembly (11) away from the first adapter (111), and further includes a plurality of second adapters (121), the second ends of the first connecting rods (112) are movably connected with the first ends of two adjacent second connecting rods (122) through the second adapters (121); The support assembly (13) is arranged at one end of the folding assembly (12) away from the second adapter (121), and includes a plurality of telescopic tubes (132) and a plurality of third adapters (131), the second ends of two adjacent second connecting rods (122) are movably connected with the telescopic tubes (132) through the third adapters (131).

3. The tent of claim 2, wherein, The included angle formed by two adjacent second connecting rods (122) at the first ends thereof is between 120° and 160°.

4. The tent of claim 2, wherein, The number of the first connecting rods (112) is four, and the length of the first connecting rods (112) is less than the length of the second connecting rods (122).

5. The tent of claim 2, wherein, The number of the first connecting rods (112) is five or six, and the length of the first connecting rods (112) is greater than the length of the second connecting rods (122).

6. The tent of claim 2, wherein, The telescopic tube (132) includes a first telescopic tube (1321) and a second telescopic tube (1322), and the support assembly (13) further includes a fixing member (14); The radial dimension of the first telescopic pipe (1321) is smaller than that of the second telescopic pipe (1322), the fixing member (14) is fixedly arranged at one end of the second telescopic pipe (1322) towards the first telescopic pipe (1321), and the fixing member (14) can limit the first telescopic pipe (1321) when the first telescopic pipe (1321) is at the stroke end of the second telescopic pipe (1322). The relative rotation of the first telescopic pipe (1321) and the second telescopic pipe (1322) can enable the first telescopic pipe (1321) to be embedded in the inside of the second telescopic pipe (1322).

7. The tent of claim 2, wherein, The first end of the first connecting rod (112) is sleeved with a connecting sleeve (113), the first adapter (111) is provided with a limiting groove (1111) matched with the connecting sleeve (113), the first connecting rod (112) can be embedded in the limiting groove (1111) through the connecting sleeve (113) and can rotate relative to the limiting groove (1111) for storage.

8. The tent of claim 7, wherein, The first adapter (111) is provided with a circumferential connecting hole on the side, and the circumferential connecting hole is used for inserting the first connecting rod (112); The side surface of the first adapter (111) away from the support assembly (13) is provided with a top connecting hole, the circumferential connecting hole and the top connecting hole are communicated to form the limiting groove (1111), and the first connecting rod (112) can rotate between the circumferential connecting hole and the top connecting hole for storage.

9. The tent of claim 2, wherein, The center of the first adapter (111) is provided with a through hole, the through hole is used for penetrating the fastener (22), so that the fastener (22) can penetrate the support cover (21) and the first adapter (111) in sequence.

10. The tent of claim 9, wherein, The side of the support cover (21) away from the tent support and the side of the tent support away from the support cover (21) are respectively provided with sealing members (23) for sealing the tent.