Tent

The truss support structure design simplifies the tent packing process, solves the problem of inconvenient tent packing, and achieves more convenient packing and stable tent stability and sealing performance, making it suitable for outdoor camping.

CN223675940UActive Publication Date: 2025-12-16CAMPVALLEY XIAMEN LEISURE PRODS
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Patent Information

Application Number
CN202423030174.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-09
Publication Date
2025-12-16
Estimated Expiration
2034-12-09

AI Technical Summary

Technical Problem

Existing tents are cumbersome to fold and bulky, making them inconvenient to carry and store, especially for first-time users.

Method used

A truss support structure was designed, including top rod components and support components. The cover cloth has channels, through which the top rod components pass and connect to the support components, simplifying the storage process. A stable support system is formed through the top cover structure and the transition structure.

Benefits of technology

It simplifies the tent packing process, reduces the packing volume, improves the convenience of carrying and storing, reduces the difficulty of operation, and enhances the tent's stability and sealing performance.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a tent which comprises truss supporting bones, the truss supporting bones comprise ejector rod assemblies and supporting assemblies, the ejector rod assemblies are arranged at the tops of the truss supporting bones, and the supporting assemblies are connected with the ejector rod assemblies so that the truss supporting bones can be supported; and the covering cloth is provided with a channel, the channel is used for allowing the ejector rod assembly to penetrate through, one part of the covering cloth covers the ejector rod assembly, and the other part of the covering cloth is located below the ejector rod assembly and the supporting assembly after the ejector rod assembly penetrates through the channel. The covering cloth is prevented from being disorderly supported outside the tent, the storage size of the tent is effectively reduced, and great convenience is provided, especially for a backpack camping environment or a storage environment with a limited space; the storage difficulty is reduced, and the operation is simpler and more convenient. Based on the arrangement of the channel, after the ejector rod assembly penetrates through the channel, it can be guaranteed that matching between the covering cloth and the truss supporting bone is tighter, repeated adjustment and time waste caused by cloth loosening in the storage process are reduced, and the storage efficiency is improved.
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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 tents provide temporary shelter in outdoor camping, the storage problem has always been defective. First, the folding of the tent is complicated, and it needs to be folded according to a specific order and way, which is undoubtedly a challenge for first-time users. Second, 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. SUMMARY

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

[0005] In order to solve the above problems, the present application provides a tent, which comprises:

[0006] A truss support frame, comprising a top rod assembly and a support assembly, the top rod assembly is arranged at the top of the truss support frame, and the support assembly is connected with the top rod assembly to support the truss support frame.

[0007] A cover cloth, provided with a channel, the channel is used for the top rod assembly to pass through, a part of the cover cloth covers the top rod assembly, and another part of the cover cloth is located below the top rod assembly and the support assembly after passing through the channel through the top rod assembly.

[0008] Preferably, the cross-sectional size of the channel is not greater than the radial size of each support rod in the top rod assembly.

[0009] Preferably, the top rod assembly comprises:

[0010] A top cover structure arranged at the top of the truss support frame, the top cover structure comprises a top cover connector and a plurality of top cover support rods, one end of each of the plurality of top cover support rods is connected with the top cover connector;

[0011] An adapter structure arranged at the other end of the top cover support rod and located between the top cover structure and the support assembly, the adapter structure comprises a plurality of adapter connectors and a plurality of adapter support rods, both ends of the adapter support rod are connected with the top cover support rod and the support assembly through the adapter connector respectively, and the adapter support rod can be connected with the support assembly after passing through the channel.

[0012] Preferably, two of the top cover struts arranged adjacently are connected to one end of the adapter connector and the adapter strut through the adapter connector, and the other end of the two adapter struts is connected to the support assembly through the adapter connector, and the top cover struts and the adapter connectors arranged adjacently form a quadrilateral mechanism.

[0013] Preferably, the adapter struts arranged adjacently are provided with a connecting bridge at the end close to the support assembly, and the connecting bridge and the adjacent adapter struts form a triangular mechanism.

[0014] Preferably, the channel is arranged on the area of the cover cloth close to the connection between the adapter strut and the support assembly, and the channel is used for threading the adapter strut.

[0015] Preferably, the cover cloth is connected to the top rod assembly through a first fixing member, and the center of the top cover connector is provided with a fixing hole for threading the first fixing member, so that the first fixing member can thread the cover cloth and the top cover connector in sequence.

[0016] Preferably, the side of the cover cloth away from the truss support frame and the side of the truss support frame away from the cover cloth are provided with sealing members for sealing the tent.

[0017] Preferably, the outer surface of the cover cloth is provided with a second fixing member located at the two ends of the cover cloth close to the support assembly, and the second fixing member can be arranged around the outer circumferential side of the support assembly.

[0018] Preferably, each support rod in the support assembly comprises a support pipe and an extension pipe, and the end of the support pipe towards the extension pipe is provided with a limiting structure for limiting the extension pipe when the extension pipe is at the end of the stroke of the support pipe.

[0019] The relative rotation of the extension pipe and the support pipe can make the extension pipe move relative to the support pipe and be embedded into the support pipe.

[0020] Based on the above technical solution, the tent has the following advantages:

[0021] The design that the top rod assembly passes through the channel simplifies the storage steps of the tent, and the user only needs to press the support assembly outside, and the cover cloth at the top and the cover cloth inside the support assembly can be compacted by the support assembly, so that the cover cloth can be stored neatly. On the one hand, the cover cloth is prevented from being randomly supported outside the tent, and the storage volume of the tent is effectively reduced, which provides great convenience for carrying and storing the tent, especially for backpack camping or limited storage environment. On the other hand, the storage difficulty is also reduced, and the operation is more convenient for the person who uses it for the first time. Moreover, the design of the tent of the present application is based on the setting of the channel, so that the cooperation between the cover cloth and the truss support bone is more compact after the top rod assembly passes through the channel. The repeated adjustment and time waste caused by loose cloth during storage are reduced, and the storage efficiency is improved. BRIEF DESCRIPTION OF DRAWINGS

[0022] 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 also obtain other drawings according to these drawings without creating any creative labor.

[0023] Figure 1 is a perspective view of the tent with five top cover support rods provided by the embodiment of the present application.

[0024] Figure 2 is an enlarged view of A in Figure 1

[0025] Figure 3 is an enlarged view of B in Figure 1

[0026] Figure 4 is a structural schematic view of the storage process of the tent (without cover cloth) provided by the embodiment of the present application.

[0027] Figure 5 is a structural schematic view of the truss support bone and the tent with four top cover support rods provided by the embodiment of the present application.

[0028] Figure 6 is a structural schematic view of the truss support bone and the tent with five top cover support rods provided by the embodiment of the present application.

[0029] Figure 7 is a structural schematic view of the truss support bone and the tent with six top cover support rods provided by the embodiment of the present application.

[0030] Figure 8 is a top view of three types of truss support bones provided by the embodiment of the present application. ​​

[0031] Figure 9 is a side view of the tent provided by the embodiment of the present application.

[0032] Figure 10 is Figure 9 a local enlarged view at C in FIG. 1.

[0033] Wherein, the reference signs are explained as follows: tent 100, cover cloth 11, passageway 111, first fixing member 112, sealing member 113, second fixing member 114, nut 115, truss support 12, top rod assembly 121, top cover structure 1211, top cover connecting member 12111, top cover support rod 12112, fixing hole 12113, adapter structure 1212, adapter connecting member 12121, adapter support rod 12122, connecting bridge 12123, support assembly 122, support tube 1221, telescopic tube 1222, limiting structure 1223. DETAILED DESCRIPTION

[0034] 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 skilled in the art without creative work fall within the scope of protection of the present application.

[0035] The term "one embodiment" or "an embodiment" as used herein means that a particular feature, structure, or characteristic described in connection with the embodiment can be included in at least one implementation of the application. The appearances of the term "in one embodiment" or "in an embodiment" in various places in the specification are not necessarily all referring to the same embodiment, and the use of the terms in various places in the specification are not necessarily all referring to the same embodiment. In the description of the application, it should be understood that the terms "upper", "lower", "left", "right", "top", "bottom", and the like refer to the orientation or positional relationship shown in the drawings, and are only used to facilitate the description of the application and simplify the description, and do not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the application. In addition, the terms "first", "second", are used for descriptive purposes only, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of the technical features indicated. Therefore, the features limited by "first", "second" can be explicitly or implicitly included one or more features. Moreover, the terms "first", "second", and the like are used to distinguish similar objects, and do not necessarily describe a particular order or sequence. It should be understood that the data thus used can be interchanged under appropriate circumstances, so that the embodiments of the application described herein can be implemented in an order other than that illustrated or described herein.

[0036] As Figures 1-10 shown, the present application provides a tent 100, as Figure 1 and Figures 5-7As shown, the tent 100 comprises a truss support frame 12 and a cover cloth 11, wherein the cover cloth 11 is a cloth structure with shading or other shielding effects.

[0037] The truss support frame 12 comprises a top rod assembly 121 arranged at the top of the truss support frame 12 and a support assembly 122 connected to the top rod assembly 121 to support the truss support frame 12.

[0038] The cover cloth 11 is provided with a passage 111 for the top rod assembly 121 to pass through. A part of the cover cloth 11 covers the top rod assembly 121, and another part of the cover cloth 11 is located below the top rod assembly 121 and the support assembly 122 after passing through the passage 111.

[0039] As can be seen, the tent 100 provided by the present application has the following advantages. When the tent 100 is unfolded and used, the design of the top rod assembly 121 and the support assembly 122 provides more stable support, ensuring the firmness and durability of the tent 100 in an outdoor environment. In addition, the design of the top rod assembly 121 passing through the passage 111 simplifies the storage steps of the tent 100. The user only needs to press the support assembly 122 from the outside, and the cover cloth 11 at the top and inside the support assembly 122 can be compacted by the support assembly 122, so that the cover cloth 11 can be stored neatly. This design not only avoids the disorder of the cover cloth 11 outside the tent 100, effectively reducing the storage volume of the tent 100, but also provides great convenience for carrying and storing the tent 100, especially for backpacking or limited space storage environments. In addition, this design also reduces the difficulty of storage, especially for first-time users, making the operation more convenient. Furthermore, the design of the tent 100 based on the passage 111 ensures that the cover cloth 11 and the truss support frame 12 cooperate more closely after the top rod assembly 121 passes through the passage 111, reducing the repeated adjustment and time waste caused by loose cloth during storage, and improving the storage efficiency.

[0040] Therefore, the tent 100 provided by the present application has significant technical effects in solving the storage problem of the traditional tent 100. Not only does it make the storage of the tent 100 more convenient and efficient, but it also optimizes the carrying and storage performance of the tent 100, thereby better meeting the needs of outdoor camping enthusiasts.

[0041] In the embodiment of the present application, the cross-sectional size of the passage 111 is adapted to the radial size of each rod in the top rod assembly 121, specifically, the cross-sectional size of the passage 111 is not greater than the radial size of each rod in the top rod assembly 121.

[0042] In this way, the top rod assembly 121 can be closely fitted with the channel 111 when passing through the channel 111, so as to reduce the shaking of the tent 100 during erection and use, improve the overall structural strength and durability of the tent 100, and improve the overall stability of the tent 100. In addition, since the size of the channel 111 is matched with the radial size of the support rod of the top rod assembly 121, the user can easily pass the top rod assembly 121 through the channel 111 when erecting the tent 100, without the need for complex alignment or adjustment, thereby simplifying the erection process. In addition, the close fitting mode can also improve the sealing performance of the tent 100, reduce the possibility of moisture penetrating into the interior of the tent 100 through the channel 111, and improve the waterproof performance of the tent 100.

[0043] As shown in Figures 5-7 The top rod assembly 121 specifically further includes a top cover structure 1211 and an adapter structure 1212.

[0044] The top cover structure 1211 is arranged at the top of the truss support frame 12, and the top cover structure 1211 includes a top cover connector 12111 and a plurality of top cover support rods 12112. One end of each of the plurality of top cover support rods 12112 is connected to the top cover connector 12111.

[0045] The adapter structure 1212 is arranged at the other end of the top cover support rod 12112 and located between the top cover structure 1211 and the support assembly 122. The adapter structure 1212 includes a plurality of adapter connectors 12121 and a plurality of adapter support rods 12122. Both ends of each of the plurality of adapter support rods 12122 are connected to the top cover support rod 12112 and the support assembly 122 through the adapter connector 12121. The adapter support rod 12122 can be connected to the support assembly 122 after passing through the channel 111.

[0046] It can be understood that the support assembly 122 is connected to the adapter structure 1212 and the top cover structure 1211, i.e., from top to bottom, the top cover structure 1211, the adapter structure 1212, and the support assembly 122 are connected in sequence. The adapter support rod 12122 of the adapter structure 1212 can pass through the cover cloth 11, i.e., one end of the adapter support rod 12122 towards the top cover structure 1211 and the top cover structure 1211 are located inside the cover cloth 11, and the other end of the adapter support rod 12122 towards the support assembly 122 and the support assembly 122 are located outside the cover cloth 11.

[0047] Preferably, the plurality of top cover support rods 12112 are movably connected through the top cover connector 12111, and the plurality of top cover support rods 12112 are arranged in sequence and at intervals along the circumference of the top cover connector 12111. Specifically, the plurality of top cover support rods 12112 are arranged in sequence and at equal intervals along the circumference of the top cover connector 12111.

[0048] In the embodiments of the present application, the lengths of the top cover struts 12112 are all equal; the lengths of the adapter struts 12122 are all equal; and the lengths of the struts of the support assemblies 122 are all equal.

[0049] In the embodiments of the present application, the number of the struts of the support assemblies 122 corresponds to the number of the top cover struts 12112.

[0050] As can be seen, the design of the top cover structure 1211 and the adapter structure 1212 forms a more stable support system at the top of the tent 100, and the connection mode of the top cover struts 12112 and the adapter struts 12122 can effectively disperse and transmit the force received at the top, thereby improving the stability of the entire tent 100 structure. This design also makes the tent 100 setting process more modular, and the user can quickly connect the top cover struts 12112 and the adapter struts 12122, simplifying the setting steps and improving the setting efficiency.

[0051] As shown in FIG. 1, two top cover struts 12112 are arranged adjacent to each other, and the two ends of the two top cover struts 12112 away from the top cover adapter are connected by the adapter connecting pieces 12121 and one end of the adapter struts 12122. Figure 8 As shown in FIG. 1, the other ends of two adapter struts 12122 arranged adjacent to each other are connected by the adapter connecting pieces 12121 and the support assemblies 122, and the top cover struts 12112 arranged adjacent to each other and the adapter connecting pieces 12121 arranged adjacent to each other enclose a quadrilateral mechanism.

[0052] It can be understood that two top cover struts 12112 are connected by the top cover connecting pieces 12111, two adapter struts 12122 are connected by the adapter connecting pieces 12121, and the top cover struts 12112 and the adapter struts 12122 arranged adjacent to each other are connected by the adapter connecting pieces 12121. Thus, the two top cover struts 12112 and the two adapter struts 12122 are arranged to enclose a quadrilateral mechanism.

[0053] In addition, each of the top cover struts 12112 in the top cover structure 1211 and the adapter struts 12122 in the adapter structure 1212 is made of a flexible material that can be bent, so that the top cover structure 1211 can present an arc-shaped structure to meet the requirements of the top of the tent 100.

[0054] The design of the quadrilateral mechanism can effectively disperse and bear the force from all directions, thereby enhancing the stability and load-bearing capacity of the top of the entire tent 100. In addition, the quadrilateral structure can resist external pressure, reduce the deformation of the top of the tent 100 under the action of wind or other external forces, and maintain the shape and space of the tent 100. Furthermore, the quadrilateral mechanism can evenly distribute the force received at the top to each of the top cover struts 12112 and the adapter struts 12122, reduce local stress concentration, and improve the durability of the overall structure.

[0055] In this embodiment of the application, the first end of the top cover support rod 12112 is movably connected to the top cover connector 12111, that is, each top cover support rod 12112 can rotate relative to the top cover connector 12111, so that each top cover support rod 12112 can extend in the same direction.

[0056] Similarly, the second end of the top cover support rod 12112 is movably connected to the adapter connector 12121, and the first end of the adapter support rod 12122 is also movably connected to the adapter connector 12121. That is, each top cover support rod 12112 can rotate relative to the adapter connector 12121, and the adapter support rod 12122 can rotate relative to the adapter connector 12121 so that the extension direction of each adapter support rod 12122 is the same as the extension direction of each top cover support rod 12112; wherein, the first end and the second end of the top cover support rod 12112 are respectively located at both ends of the top cover support rod 12112.

[0057] Furthermore, the second end of the adapter rod 12122 is movably connected to the adapter connector 12121, and the support rod of the support assembly 122 is also movably connected to the adapter connector 12121. That is, each adapter rod 12122 can rotate relative to the adapter connector 12121, and the telescopic rod can rotate relative to the adapter connector 12121 so that the extension direction of each telescopic rod is the same as the extension direction of each adapter rod 12122; wherein, the first end and the second end of the adapter rod 12122 are respectively located at both ends of the adapter rod 12122.

[0058] Ultimately, as Figure 4 As shown, the top cover support rod 12112, the transition support rod 12122 and the telescopic rod all extend in the same direction. The top cover connector 12111 and each transition connector 12121 are located at both ends of the extension direction, thereby realizing the storage of the truss support bone 12.

[0059] Therefore, as described above, by setting the top cover connector 12111 and the adapter connector 12121, the truss support rib 12 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 truss support rib 12 and improving its storage efficiency. After the truss support rib 12 is stored, the extension directions of the top cover support rod 12112, the adapter support rod 12122, and the telescopic rod are all the same, ensuring that the truss support rib 12 can extend along the same axis after all components are folded, thereby reducing the overall storage volume of the truss support rib 12, making it easy to carry and store, and suitable for scenarios where the truss support rib 12 is stored in a small space after storage. The quadrilateral mechanism formed by the two top cover support rods 12112 and the two adapter support rods 12122 provides a stable support structure for the tent 100, and also facilitates folding and unfolding.

[0060] like Figures 5-8 As shown, this application provides three structural forms of truss support bones 12:

[0061] Firstly, there are four top cover support rods 12112. Figure 8 From a top view, the included angle between each of the top cover support rods 12112 is 90°, and in this structure, the length L1 of the top cover support rod 12112 is less than the length L2 of the adapter support rod 12122. By setting the included angle between each of the top cover support rods 12112 to 90°, a more stable support structure can be provided, which is suitable for tents 100 that require strong load-bearing capacity. Furthermore, the shorter length of the top cover support rod 12112 compared to the adapter support rod 12122 helps to make the overall structure more stable and easier to store.

[0062] Secondly, there are five top cover support rods 12112. Figure 8 From a top view, the included angle between each of the top cover support rods 12112 is 72°, and in this structure, the length L1 of the top cover support rod 12112 is greater than the length L2 of the adapter support rod 12122. By setting the included angle between each of the top cover support rods 12112 to 72°, a more uniform distribution of support force can be provided, which is suitable for medium-sized tents 100. Furthermore, since the length of the top cover support rod 12112 is greater than that of the adapter support rod 12122, this design can provide a larger coverage area when unfolded, increasing the usable space of the tent 100. In addition, the pentagonal structure has high mechanical stability, which helps to resist external forces and maintain the shape of the tent 100.

[0063] Thirdly, there are six top cover support rods 12112. Figure 8 From a top-down view, the included angle between each of the top cover support rods 12112 is 60°, and in this structure, the length L1 of the top cover support rod 12112 is greater than the length L2 of the transition support rod 12122. By setting the included angle between each of the top cover support rods 12112 to 60°, the most uniform force distribution can be provided, which is suitable for large tents 100 or environments requiring higher stability. Furthermore, similar to the second method mentioned above, the longer top cover support rods 12112 can provide a larger coverage area, making the interior space of the tent 100 more spacious. In addition, the hexagonal structure has a high degree of symmetry, which not only makes the truss support rib 12 aesthetically pleasing, but also makes the structure of the truss support rib 12 more stable and less prone to deformation under the action of external forces such as wind.

[0064] In other embodiments, the number of top cover support rods 12112 and the design of each top cover support rod 12112 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, as shown in Figure 8 The included angle between the first ends of the two adjacent adapter struts 12122 is in the range of 120°-160°, specifically, the included angle between the tangential directions of the first ends of the two adjacent adapter struts 12122 at the connection with the adapter connector 12121 is in the range of 120°-160°.

[0066] For example, in the embodiment of the present application, when the number of top cover struts 12112 is four, the included angle is 149°; when the number of top cover struts 12112 is five, the included angle is 137°; and when the number of top cover struts 12112 is six, the included angle is 125°.

[0067] The angle range of the included angle defined by this structure can provide more stable structural support, because the angle in this range is neither very sharp nor very flat, which helps to disperse and withstand the pressure from the top of the tent 100, making the entire truss support frame 12 more stable, and this design can make the truss support frame 12 better adapt to different terrains, whether it is flat ground or terrain with a certain slope, it can maintain good stability and support force; secondly, the larger included angle can increase the wind resistance of the truss support frame 12, specifically, under the action of wind, the larger included angle can better disperse the wind force, reducing the risk of the tent 100 being blown up; thirdly, this included angle range helps the tent 100 to form a more spacious internal space when it is unfolded, maximizing the use area inside the tent 100 and improving the use comfort.

[0068] As shown in Figure 2 The adjacent adapter struts 12122 are provided with a connecting bridge 12123 at one end close to the support assembly 122, and the connecting bridge 12123 and the adjacent adapter struts 12122 are arranged to form a triangular mechanism. The triangular mechanism has at least the following technical effects: the triangle is considered to be one of the most stable structures in nature, by forming a triangular mechanism, the stability of the overall structure of the tent 100 can be significantly enhanced, and the shaking and deformation can be reduced; the triangular structure can effectively disperse and transfer the load, so that the entire tent 100 structure can withstand greater weight, such as snow or heavy objects; the triangular mechanism can resist torque and twisting, maintaining the integrity of the tent 100 structure, especially in the case of strong wind or uneven load.

[0069] As shown in Figure 2As shown, the channel 111 is arranged on the area of the cover cloth 11 close to the connection between the adapter support pole 12122 and the support assembly 122, and the channel 111 is used for the adapter support pole 12122 to pass through. By arranging the channel 111 on the area, it is convenient for the adapter support pole 12122 to pass through, and it is also convenient for the adapter support pole 12122 to be connected with the support pole of the support assembly 122.

[0070] As shown in FIG. 1, the cover cloth 11 is connected with the top pole assembly 121 through the first fixing member 112, and the center of the top cover connecting member 12111 is provided with a fixing hole 12113, which is used for the first fixing member 112 to pass through, so that the first fixing member 112 can pass through the cover cloth 11 and the top cover connecting member 12111 in sequence. Figures 9-10 In the embodiment of the present application, the first fixing member 112 refers to a bolt, and after the bolt passes through the cover cloth 11 and the top cover connecting member 12111, it is locked by a nut 115. By using a bolt connection, the fastening of the connection can be enhanced; in addition, the first fixing member 112 can provide better sealing performance to prevent wind and water from entering, thereby improving the windproof and waterproof performance of the tent 100.

[0071] As can be seen, by using the first fixing member 112 to pass through the cover cloth 11 and the top cover connecting member 12111 in sequence, the steps of assembling the tent 100 can be simplified, the erection process is more rapid and convenient, a firm connection point is provided, and the stability of the top structure of the tent 100 is enhanced. Furthermore, the design of the fixing hole 12113 allows stress to be evenly dispersed through the center point, reduces local pressure concentration, and improves the durability of the tent 100.

[0072] Preferably, the side of the cover cloth 11 away from the truss support bone 12 and the side of the truss support bone 12 away from the cover cloth 11 are both provided with a sealing member 113 for sealing the tent 100. The use of the sealing member 113 can effectively prevent moisture from entering through the gap between the cover cloth 11 and the truss support bone 12, keep the inside dry, and thus improve the sealing performance of the tent 100.

[0073] In the embodiment of the present application, the sealing member 113 refers to a sealing ring or a rubber pad.

[0074] As shown in FIG. 1, the outer surface of the cover cloth 11 is provided with a second fixing member 114, which is located on both ends of the cover cloth 11 close to the support assembly 122, and the second fixing member 114 can be arranged around the outer circumferential side of the support pole of the support assembly 122. By fixing the cover cloth 11 at both ends of the support assembly 122, the stability of the whole tent 100 can be enhanced, and the tent 100 will not be displaced under the action of side wind or other external forces, so as to avoid tilting or collapse.

[0075] Figure 3 As can be seen, by arranging the second fixing member 114 on both ends of the cover cloth 11 close to the support assembly 122, the stability of the whole tent 100 can be enhanced, and the tent 100 will not be displaced under the action of side wind or other external forces, so as to avoid tilting or collapse. ​

[0076] As shown in Figure 3 Each of the support rods in the support assembly 122 respectively comprises a support tube 1221 and a telescopic tube 1222, the support tube 1221 is provided with a limiting structure 1223 at one end thereof facing the telescopic tube 1222, the limiting structure 1223 can limit the telescopic tube 1222 when the telescopic tube 1222 is located at the stroke terminal of the support tube 1221;

[0077] The relative rotation of the telescopic tube 1222 and the support tube 1221 can make the telescopic tube 1222 move relative to the support tube 1221 and be embedded into the support tube 1221.

[0078] In the embodiment of the present application, the radial dimension of the telescopic tube 1222 is smaller than the radial dimension of the support tube 1221, the limiting structure 1223 is fixedly arranged at one end of the support tube 1221 facing the telescopic tube 1222, the limiting structure 1223 can limit the telescopic tube 1222, i.e. fix the position of the telescopic tube 1222, when the telescopic tube 1222 is located at the stroke terminal of the support tube 1221; the stroke terminal represents that only a small part of the telescopic tube 1222 is embedded in the end of the support tube 1221, or the telescopic tube 1222 is separated from the support tube 1221;

[0079] Therefore, the relative rotation of the telescopic tube 1222 and the support tube 1221 can make the telescopic tube 1222 be embedded in the inside of the support tube 1221, which represents that the telescopic tube 1222 can be screwed into the inside of the pipe of the support tube 1221 to realize that the telescopic tube 1222 is mostly overlapped with the support tube 1221, or the telescopic tube 1222 is completely embedded into the support tube 1221.

[0080] Therefore, by designing the radial dimension of the telescopic tube 1222 to be smaller than the radial dimension of the support tube 1221, the telescopic tube 1222 can be nested in the inside of the support tube 1221 to realize compact storage; when the telescopic tube 1222 is located at the stroke terminal of the support tube 1221, the limiting structure 1223 can limit the telescopic tube 1222 to ensure that the telescopic tube 1222 remains in a fixed position after being unfolded, improve the overall stability of the truss support frame 12, and the action of the limiting structure 1223 can also prevent the telescopic tube 1222 from accidentally sliding out or falling off during use, thereby increasing the safety of the tent 100; by the relative rotation of the telescopic tube 1222 and the support tube 1221, the telescopic tube 1222 can be screwed into the inside of the support tube 1221 to realize the compactness of the telescopic tube 1222 when being stored, greatly reducing the storage volume, and this design also makes the assembly and disassembly process of the truss support frame 12 more rapid and convenient, which can be completed by simply rotating the telescopic tube 1222.

[0081] As shown in Figure 4As shown, the number of the top cover supporting rods 12112 is five, which shows the changes of the components of the truss support frame 12 when it is stored. The changes will be described in detail as follows:

[0082] When the truss support frame 12 is in the unfolded state, the first telescopic rod is extended relative to the second telescopic rod, and the top cover structure 1211 and the adapter structure 1212 are in the bent state. When the truss support frame 12 needs to be stored, the first step is to rotate the telescopic tube 1222 or the supporting tube 1221, so that the telescopic tube 1222 and the supporting tube 1221 are relatively rotated, and the supporting tube 1221 is embedded in the inside of the supporting tube 1221 along the direction O in the drawing. At this time, the fixing member 14 moves close to the adapter connecting member 12121, thereby shortening the overall length of the telescopic rod. The second step is to manually press the top cover connecting member 12111 along the direction P in the drawing, so that the top cover structure 1211 is overlapped relative to the adapter structure 1212, and the top cover supporting rod 12112 is rotated relative to the top cover connecting member 12111 and the adapter connecting member 12121, so that the top cover connecting member 12111 is located at the bottom end. At this time, the adapter connecting member 12121 can also change under the pressing action of the top cover connecting member 12111, so that the telescopic rod is rotated relative to the adapter connecting member 12121, and the adapter supporting rod 12122 is rotated relative to the adapter connecting member 12121 and the adapter connecting member 12121. Finally, the side of the telescopic rod is pressed along the direction Q in the drawing, so that the telescopic rod, the adapter supporting rod 12122 and the top cover supporting rod 12112 are close to each other, and finally the extension directions of the telescopic rod, the adapter supporting rod 12122 and the top cover supporting rod 12112 are the same. At this time, the storage of the truss support frame 12 is completed.

[0083] The above description has fully disclosed the specific embodiments of the present application. It should be pointed out that any modification of the specific embodiments of the present application made by those skilled in the art does not deviate from the scope of the claims of the present application. Accordingly, the scope of the claims of the present application is not limited to the foregoing specific embodiments.

Claims

1. A tent, characterized in that, The tent includes: A truss support (12) includes a top rod assembly (121) and a support assembly (122). The top rod assembly (121) is disposed on the top of the truss support (12), and the support assembly (122) is connected to the top rod assembly (121) to support the truss support (12). A covering cloth (11) is provided with a channel (111) for the top rod assembly (121) to pass through. A portion of the covering cloth (11) covers the top rod assembly (121), and another portion of the covering cloth (11) passes through the channel (111) and is located below the top rod assembly (121) and the support assembly (122).

2. The tent according to claim 1, characterized in that, The cross-sectional dimension of the channel (111) is not greater than the radial dimension of each support rod in the top rod assembly (121).

3. The tent according to claim 1, characterized in that, The push rod assembly (121) includes: A top cover structure (1211) is provided on the top of the truss support bone (12). The top cover structure (1211) includes a top cover connector (12111) and a plurality of top cover support rods (12112). One end of each of the plurality of top cover support rods (12112) is connected to the top cover connector (12111). A transition structure (1212) is disposed at the other end of the top cover support rod (12112) and located between the top cover structure (1211) and the support assembly (122). The transition structure (1212) includes a plurality of transition connectors (12121) and a plurality of transition support rods (12122). Both ends of the transition support rods (12122) are respectively connected to the top cover support rod (12112) and the support assembly (122) through the transition connectors (12121). The transition support rods (12122) can pass through the channel (111) and connect to the support assembly (122).

4. The tent according to claim 3, characterized in that, The two adjacent top cover support rods (12112) are connected at the end away from the top cover connector (12111) through the adapter connector (12121) and the adapter support rod (12122). The other ends of the two adjacent adapter support rods (12122) are connected to the support assembly (122) through the adapter connector (12121). The adjacent top cover support rods (12112) and the adjacent adapter connector (12121) form a quadrilateral structure.

5. The tent according to claim 4, characterized in that, The adjacent transition rods (12122) are provided with a connecting bridge (12123) at one end near the support assembly (122), and the connecting bridge (12123) and the adjacent transition rods (12122) are arranged to form a triangular mechanism.

6. The tent according to claim 3, characterized in that, The channel (111) is located on the area of ​​the cover cloth (11) near the connection between the adapter rod (12122) and the support assembly (122), and the channel (111) is used for the adapter rod (12122) to pass through.

7. The tent according to claim 3, characterized in that, The covering cloth (11) is connected to the top rod assembly (121) through the first fastener (112). The top cover connector (12111) has a fixing hole (12113) in the center. The fixing hole (12113) is used for the first fastener (112) to pass through, so that the first fastener (112) can pass through the covering cloth (11) and the top cover connector (12111) in sequence.

8. The tent according to claim 7, characterized in that, A sealing element (113) is provided on the side of the cover (11) away from the truss support (12) and on the side of the truss support (12) away from the cover (11) for sealing the tent.

9. The tent according to claim 3, characterized in that, The outer surface of the covering cloth (11) is provided with a second fastener (114). The second fastener (114) is located on both ends of the covering cloth (11) near the support assembly (122). The second fastener (114) can surround the outer periphery of the support rod in the support assembly (122).

10. The tent according to claim 1, characterized in that, Each support rod in the support assembly (122) includes a support tube (1221) and a telescopic tube (1222). The support tube (1221) has a limiting structure (1223) at one end facing the telescopic tube (1222). The limiting structure (1223) can limit the telescopic tube (1222) when the telescopic tube (1222) is at the end of the stroke of the support tube (1221). The relative rotation of the telescopic tube (1222) and the support tube (1221) enables the telescopic tube (1222) to move relative to the support tube (1221) and be embedded in the support tube (1221).