Adjustable positioning structure of arc tent

By introducing an adjustable positioning structure into the curved tent, and utilizing the combination of adjusting arms and fixing bolts, the problem of the positioning structure being unable to be adjusted was solved, enabling precise adjustment and fixation of the connecting beams, and ensuring the stability and adaptability of the tent on different terrains.

CN223661499UActive Publication Date: 2025-12-12SUPERB TENT CO LTD
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Patent Information

Application Number
CN202423213030.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-25
Publication Date
2025-12-12
Estimated Expiration
2034-12-25

AI Technical Summary

Technical Problem

The existing tent positioning structure cannot be adjusted according to changes in terrain, resulting in unstable connections between the connectors and the connecting beams, which affects the stability of the tent.

Method used

An adjustable positioning structure is adopted, including a connector, an adjusting seat, an adjusting arm, and a positioning block. By rotating the adjusting arm and cooperating with the fixing bolts, the angle of the connecting beam can be adjusted and fixed, ensuring a stable connection between the connector and the connecting beam.

Benefits of technology

The precise adjustment and fixation of the connecting beams ensured the stability and accuracy of the curved tent structure on different terrains, enhancing the adaptability and stability of the structure.

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Abstract

The utility model discloses an adjustable positioning structure of an arc-shaped tent, which relates to the field of tents, and is characterized by comprising a connecting piece and a plurality of connecting beams, a plurality of first mounting surfaces are arranged outside the connecting piece, an adjusting seat is arranged on one side of each first mounting surface, two adjusting plates are arranged on one side of each adjusting seat, and a plurality of second mounting surfaces are arranged on the other side of each adjusting plate. The two adjusting plates are spaced to form an adjusting interval, an adjusting arm is rotationally connected in the adjusting interval, a plurality of first connecting holes are formed in any adjusting plate, the first connecting holes are communicated with the adjusting interval, a second connecting hole is formed in one side of the adjusting arm, a fixing bolt is arranged in any first connecting hole in a penetrating mode, and the second connecting hole is communicated with the adjusting interval. The fixing bolt is in threaded fit with the second connecting hole, and the technical problems that an original positioning structure cannot be adjusted according to the change of the terrain, so that connection between the connecting piece and the connecting beam is not stable, and stability is affected are solved.
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Description

Technical Field

[0001] This utility model relates to the field of tents, and in particular to an adjustable positioning structure for an arc-shaped tent. Background Technology

[0002] Tents need to remain stable under different terrain and climate conditions. Connectors are a key part of the tent structure. They are the intersection of multiple connecting beams, forming a sturdy grid structure. Positioning structures are usually set outside the connectors to ensure that the multiple connecting beams of the tent are correctly aligned, thereby improving the stability of the overall structure.

[0003] However, tents are erected on different terrains such as slopes, uneven grass, or hard ground. The original positioning structure cannot be adjusted according to the changes in terrain, resulting in unstable connections between the connectors and the connecting beams, which affects stability. Utility Model Content

[0004] To solve the above-mentioned technical problems, this utility model provides an adjustable positioning structure for an arc-shaped tent. The purpose is to solve the technical problem that the original positioning structure cannot be adjusted according to changes in terrain, resulting in unstable connection between the connector and the connecting beam, which affects stability.

[0005] The technical solution of this utility model to solve the above-mentioned technical problems is as follows:

[0006] An adjustable positioning structure for an arc-shaped tent includes a connector and multiple connecting beams. The connector has multiple first mounting surfaces on its exterior. One side of each first mounting surface has an adjusting seat. One side of each adjusting seat has two adjusting plates, spaced apart to form an adjusting interval. An adjusting arm is rotatably connected within the adjusting interval. Each adjusting plate has multiple first connecting holes that communicate with the adjusting interval. One side of each adjusting arm has a second connecting hole. A fixing bolt passes through each of the first connecting holes and is threaded into the second connecting hole. One end of each adjusting arm has a positioning insert. Both ends of each connecting beam have connecting ends. One end of each connecting end has a second mounting surface. The second mounting surface has a positioning slot. The positioning insert engages with an adjacent positioning slot, placing the adjusting seat inside the adjacent positioning slot. The second mounting surface abuts against an adjacent first mounting surface.

[0007] When the installation angle of the connecting beam needs to be adjusted, the adjusting arm rotates along the adjustment interval, causing the positioning block to rotate to the required installation angle. At this time, the fixing bolt passes through the first connecting hole corresponding to the second connecting hole and engages with the threaded second connecting hole, thus fixing the angle adjusted by the adjusting arm. When the connecting beam is installed, as the second mounting surface of the connecting beam gradually approaches the first mounting surface of the connector, the positioning slot will align with the positioning block along the angle adjusted by the adjusting arm. When the positioning slot and the positioning block are aligned, the operator pushes the positioning block to insert it into the positioning slot. Because the adjusting arm restricts the angle of the positioning block, the installation angle of the connecting beam is maintained. Finally, the first mounting surface and the second mounting surface abut, so that even after the terrain changes, the installation angle of the connecting beam can still be accurately adjusted and fixed, thus ensuring the accuracy and stability of the arc-shaped tent structure.

[0008] Furthermore, in this application, one end of the adjusting arm is provided with a connecting plug, and a connecting slot is provided on one side of the positioning plug, and the connecting plug is inserted into the connecting slot.

[0009] When the connecting beam is replaced, the shape of the positioning slot on the second mounting surface will also change. At this time, the shape of the positioning block will not match the positioning slot, causing the positioning block to be unable to be inserted into the positioning slot. The positioning block can be disassembled and replaced by connecting the positioning block and the connecting block through the connecting slot, so that the positioning block can adapt to positioning slots of different shapes, thus improving the adaptability of the structure.

[0010] Furthermore, in this application, a first setting hole is provided on the other side of the positioning plug, the first setting hole is connected to the connecting slot, a second setting hole is provided on one side of the connecting plug, a connecting bolt is inserted in the first setting hole, and the connecting bolt is threadedly engaged with the second setting hole.

[0011] When the positioning block is replaced, the connecting slot of the positioning block is inserted into the connecting block. The connecting bolt and the threaded engagement of the second setting hole can effectively fasten the positioning block and the connecting block together, ensuring the stability and firmness of the connection.

[0012] Furthermore, in this application, a limiting plate is provided on the outer edge of the connecting plug, the limiting plate is located between the connecting plug and the adjusting arm, and the limiting plate abuts against the positioning plug.

[0013] Furthermore, in this application, the adjustment interval is provided with two fastening plates, the fastening plates are elastic, the two fastening plates are respectively fixed to the adjacent adjustment plates, the two fastening plates are separated by a gap, and the adjustment arm is located within the gap between the two fastening plates.

[0014] Furthermore, in this application, the adjusting arm is provided with adjusting shafts on both sides, the adjusting shafts are rotatably connected to the adjacent adjusting plates, the fastening plate has through holes inside, and the adjusting shafts pass through the adjacent through holes.

[0015] Furthermore, in this application, the first mounting surface is provided with a first fixing hole, and a second fixing hole is provided on one side of the second mounting surface, the second fixing hole corresponding to the adjacent first fixing hole.

[0016] Furthermore, in this application, the connector has a visible cavity inside, and the first fixing hole communicates with the visible cavity.

[0017] Furthermore, in this application, a weight-reducing cavity is provided inside the visible cavity, and the weight-reducing cavity extends through both sides of the connector.

[0018] Furthermore, in this application, the shape of the positioning block matches that of the positioning slot, and the width of the positioning block is shorter than the depth of the positioning slot.

[0019] This utility model has the following beneficial effects:

[0020] When the installation angle of the connecting beam needs to be adjusted, the adjusting arm rotates along the adjustment interval, causing the positioning block to rotate to the required installation angle. At this time, the fixing bolt passes through the first connecting hole corresponding to the second connecting hole and engages with the threaded second connecting hole, thus fixing the angle adjusted by the adjusting arm. When the connecting beam is installed, as the second mounting surface of the connecting beam gradually approaches the first mounting surface of the connector, the positioning slot will align with the positioning block along the angle adjusted by the adjusting arm. When the positioning slot and the positioning block are aligned, the operator pushes the positioning block to insert it into the positioning slot. Because the adjusting arm restricts the angle of the positioning block, the installation angle of the connecting beam is maintained. Finally, the first mounting surface and the second mounting surface abut, so that even after the terrain changes, the installation angle of the connecting beam can still be accurately adjusted and fixed, thus ensuring the accuracy and stability of the arc-shaped tent structure. Attached Figure Description

[0021] Figure 1 This is a schematic diagram of the structure of this utility model.

[0022] Figure 2 This is a schematic diagram of the visible cavity structure of this utility model.

[0023] Figure 3 This is a schematic diagram of the positioning slot of this utility model.

[0024] Figure 4 This is a schematic diagram of the positioning insert of this utility model.

[0025] Figure 5 This is a schematic diagram of the structure of the adjusting arm of this utility model.

[0026] In the attached figures, the following labels are used:

[0027] 1. Connector; 2. First mounting surface; 3. Visible cavity; 4. Weight reduction cavity; 5. Connecting beam; 6. First fixing hole; 7. Second mounting surface; 8. Positioning slot; 9. Second fixing hole; 10. Connecting end; 11. Positioning block; 12. Connecting slot; 13. First setting hole; 14. Connecting bolt; 15. Adjusting seat; 16. Adjusting plate; 17. Adjusting interval; 18. First connecting hole; 19. Adjusting arm; 20. Connecting block; 21. Limiting plate; 23. Second connecting hole; 24. Fixing bolt; 25. Adjusting shaft; 26. Fastening plate; 27. Through hole; 28. Second setting hole. Detailed Implementation

[0028] The embodiments of this utility model are described in detail below. Examples of these embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain this utility model, and should not be construed as limiting this utility model.

[0029] In the description of this utility model, it should be understood that the terms "center," "longitudinal," "lateral," "length," "width," "thickness," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," "outer," "clockwise," and "counterclockwise," etc., indicating the orientation or positional relationship, are based on the orientation or positional relationship shown in the accompanying drawings and are only for the convenience of describing this utility model and simplifying the description. They do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this utility model. Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of indicated technical features. Thus, features defined with "first" and "second" may explicitly or implicitly include one or more of the stated features. In the description of this utility model, "a plurality of" means two or more, unless otherwise explicitly specified.

[0030] In the description of this utility model, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "joining" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection, an electrical connection, or a connection that allows for communication; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or the interaction between two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.

[0031] Reference Figures 1-5 In some specific embodiments, an adjustable positioning structure for an arc-shaped tent includes a connector 1 and multiple connecting beams 5. The connector 1 has multiple first mounting surfaces 2 on its exterior. One side of the first mounting surface 2 has an adjusting seat 15. One side of the adjusting seat 15 has two adjusting plates 16, which are spaced apart to form an adjusting interval 17. An adjusting arm 19 is rotatably connected within the adjusting interval 17. Multiple first connecting holes 18 are opened in any one of the adjusting plates 16, and the first connecting holes 18 communicate with the adjusting interval 17. A second connecting hole 23 is opened on one side of the adjusting arm 19. A fixing bolt 24 passes through any one of the first connecting holes 18 and is threaded into the second connecting hole 23. One end of the adjusting arm 19 has a positioning insert 11. Both ends of the connecting beams 5 have connecting ends 10. One end of the connecting end 10 has a second mounting surface 7. A positioning slot 8 is opened in the second mounting surface 7. The positioning insert 11 is inserted into the adjacent positioning slot 8, so that the adjusting seat 15 is located inside the adjacent positioning slot 8. The second mounting surface 7 abuts against the adjacent first mounting surface 2.

[0032] Through the above technical solution, when it is necessary to adjust the installation angle of the connecting beam 5, the adjusting arm 19 rotates along the adjusting interval 17, so that the positioning block 11 rotates to the required installation angle. At this time, the fixing bolt 24 passes through the first connecting hole 18 corresponding to the second connecting hole 23 and is threadedly engaged with the second connecting hole 23, so that the angle adjusted by the adjusting arm 19 is fixed. When the connecting beam 5 is installed, as the second mounting surface 7 of the connecting beam 5 gradually approaches the first mounting surface 2 of the connector 1, the positioning slot 8 will align with the positioning block 11 along the angle adjusted by the adjusting arm 19. When the positioning slot 8 and the positioning block 11 are aligned, the operator pushes to insert the positioning block 11 into the positioning slot 8. Since the adjusting arm 19 restricts the angle of the positioning block 11, the installation angle of the connecting beam 5 is maintained. Finally, the first mounting surface 2 and the second mounting surface 7 abut, so that the installation angle of the connecting beam 5 can still be accurately adjusted and fixed after the terrain changes, thereby ensuring the accuracy and stability of the arc-shaped tent structure.

[0033] In addition, in order to increase the installation area of ​​the first mounting surface 2 and the second mounting surface 7, the second mounting surface 7 at one end of the connecting end 10 can be cut before the positioning block 11 is inserted into the positioning slot 8, so that the shape of the second mounting surface 7 matches the first mounting surface 2, thereby further enhancing the stability of the connecting beam 5 after installation.

[0034] Reference Figures 4-5 In some specific embodiments, one end of the adjusting arm 19 is provided with a connecting plug 20, and a connecting slot 12 is provided on one side of the positioning plug 11, and the connecting plug 20 is inserted into the connecting slot 12.

[0035] With the above technical solution, when the connecting beam 5 is replaced, the shape of the positioning slot 8 of the second mounting surface 7 will also change. At this time, the shape of the positioning block 11 will not match the positioning slot 8, causing the positioning block 11 to be unable to be inserted into the positioning slot 8. The positioning block 11 can be disassembled and replaced with the connecting block 20 through the connecting slot 12 of the positioning block 11, so that the positioning block 11 can adapt to positioning slots 8 of different shapes, thus improving the adaptability of the structure.

[0036] Reference Figures 4-5 In some specific embodiments, a first setting hole 13 is provided on the other side of the positioning plug 11, the first setting hole 13 is connected to the connecting slot 12, a second setting hole 28 is provided on one side of the connecting plug 20, a connecting bolt 14 is passed through the first setting hole 13, and the connecting bolt 14 is threadedly engaged with the second setting hole 28.

[0037] With the above technical solution, when the positioning plug 11 is replaced, the connecting slot 12 of the positioning plug 11 is inserted into the connecting plug 20. Through the threaded engagement of the connecting bolt 14 and the second setting hole 28, the positioning plug 11 and the connecting plug 20 can be effectively fastened together to ensure the stability and firmness of the connection.

[0038] Reference Figures 4-5 In some specific embodiments, a limiting plate 21 is provided on the outer edge of the connecting plug 20. The limiting plate 21 is located between the connecting plug 20 and the adjusting arm 19, and the limiting plate 21 abuts against the positioning plug 11.

[0039] With the above technical solution, when the connecting slot 12 of the positioning plug 11 is inserted into the connecting plug 20, the limiting plate 21 abuts against the positioning plug 11 so that the first setting hole 13 and the second setting hole 28 can be aligned.

[0040] Reference Figure 5 In some specific embodiments, the interior of the adjustment interval 17 is provided with two fastening plates 26. The fastening plates 26 are elastic. The two fastening plates 26 are respectively fixed to the adjacent adjustment plates 16. The two fastening plates 26 are separated by a gap. The adjustment arm 19 is located within the gap between the two fastening plates 26.

[0041] Through the above technical solution, the elastic properties of the fastening plate 26 can ensure that the adjusting arm 19 maintains a certain tension when rotating, which helps to maintain the accuracy of adjustment and prevent the angular deviation caused by the loosening of the adjusting arm 19.

[0042] Reference Figure 5 In some specific embodiments, the adjusting arm 19 is provided with adjusting shafts 25 on both sides, the adjusting shafts 25 are rotatably connected to the adjacent adjusting plate 16, and the fastening plate 26 is provided with through holes 27 inside, through which the adjusting shafts 25 pass.

[0043] Through the above technical solution, the design of the adjusting shaft 25 ensures the stability of the adjusting arm 19 during rotation and reduces shaking during the adjustment process; and by passing the adjusting shaft 25 through the adjacent through holes 27, it can be ensured that the fastening plate 26 remains stable during the adjustment process and will not shift due to external force.

[0044] Reference Figures 1-3 In some specific embodiments, the first mounting surface 2 is provided with a first fixing hole 6, and a second fixing hole 9 is provided on one side of the second mounting surface 7. The second fixing hole 9 corresponds to the adjacent first fixing hole 6.

[0045] With the above technical solution, when the first mounting surface 2 abuts against the adjacent second mounting surface 7, the second fixing hole 9 corresponds to the adjacent first fixing hole 6. The presence of the first fixing hole 6 and the second fixing hole 9 allows the use of bolts or other fixing elements to fix the first mounting surface 2 and the second mounting surface 7 together, making the connection more secure.

[0046] Reference Figures 1-3 In some specific embodiments, a visible cavity 3 is provided inside the connector 1, and the first fixing hole 6 communicates with the visible cavity 3.

[0047] With the above technical solution, since the first fixing hole 6 connects to the visible cavity 3, maintenance personnel can more easily inspect the internal condition of the connector 1, thereby promptly discovering potential internal problems such as damage, wear, or corrosion.

[0048] Reference Figures 1-3 In some specific embodiments, a weight-reducing cavity 4 is provided inside the visible cavity 3, and the weight-reducing cavity 4 passes through both sides of the connector 1.

[0049] Through the above technical solution, the weight reduction cavity 4 is a cavity opened inside the connector 1. Its main purpose is to reduce the overall weight of the connector 1 so as to reduce the weight during transportation.

[0050] Reference Figures 1-3In some specific embodiments, the positioning block 11 matches the shape of the positioning slot 8, and the width of the positioning block 11 is shorter than the depth of the positioning slot 8.

[0051] Through the above technical solution, due to the matching shape, the positioning plug 11 can be accurately inserted into the positioning slot 8, thereby ensuring the alignment accuracy of the entire structure; and the width of the positioning plug 11 is shorter than the depth of the positioning slot 8, which allows the adjusting seat 15 to be located inside the positioning slot 8 so that the first mounting surface 2 and the second mounting surface 7 can abut against each other.

[0052] It should be noted that, in this document, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such process, method, article, or apparatus.

Claims

1. An adjustable positioning structure for an arc-shaped tent, comprising connectors and multiple connecting beams, characterized in that, The connector has multiple first mounting surfaces on its exterior. An adjusting seat is located on one side of each first mounting surface. Two adjusting plates are located on one side of each adjusting seat, forming an adjusting interval. An adjusting arm is rotatably connected within the adjusting interval. Multiple first connecting holes are formed within any one of the adjusting plates, communicating with the adjusting interval. A second connecting hole is formed on one side of each adjusting arm. A fixing bolt passes through any one of the first connecting holes, threaded into the second connecting hole. A positioning block is located at one end of each adjusting arm. Connecting ends are located at both ends of the connecting beam. A second mounting surface is located at one end of each connecting end. A positioning slot is located within the second mounting surface. The positioning block is inserted into an adjacent positioning slot, placing the adjusting seat inside the adjacent positioning slot. The second mounting surface abuts against an adjacent first mounting surface.

2. The adjustable positioning structure for an arc-shaped tent according to claim 1, characterized in that, One end of the adjusting arm is provided with a connecting plug, and a connecting slot is provided on one side of the positioning plug, and the connecting plug is inserted into the connecting slot.

3. The adjustable positioning structure for an arc-shaped tent according to claim 2, characterized in that, A first setting hole is provided on the other side of the positioning plug, which is connected to the connecting slot. A second setting hole is provided on one side of the connecting plug, and a connecting bolt is inserted in the first setting hole. The connecting bolt is threaded into the second setting hole.

4. The adjustable positioning structure for an arc-shaped tent according to claim 3, characterized in that, The outer edge of the connecting plug is provided with a limiting plate, which is located between the connecting plug and the adjusting arm, and the limiting plate abuts against the positioning plug.

5. The adjustable positioning structure for an arc-shaped tent according to claim 1, characterized in that, The adjustment interval is provided with two fastening plates, which are elastic. The two fastening plates are respectively fixed to the adjacent adjustment plates, and the two fastening plates are separated by a gap. The adjustment arm is located within the gap between the two fastening plates.

6. The adjustable positioning structure for an arc-shaped tent according to claim 5, characterized in that, The adjusting arm has adjusting shafts on both sides, and the adjusting shafts are rotatably connected to the adjacent adjusting plates. The fastening plate has through holes inside, and the adjusting shafts pass through the adjacent through holes.

7. The adjustable positioning structure for an arc-shaped tent according to claim 1, characterized in that, The first mounting surface has a first fixing hole, and the second mounting surface has a second fixing hole on one side, the second fixing hole corresponding to the adjacent first fixing hole.

8. The adjustable positioning structure for an arc-shaped tent according to claim 7, characterized in that, The connector has a visible cavity inside, and the first fixing hole communicates with the visible cavity.

9. The adjustable positioning structure for an arc-shaped tent according to claim 8, characterized in that, The visible cavity has a weight-reducing cavity inside, which extends through both sides of the connector.

10. The adjustable positioning structure for an arc-shaped tent according to claim 1, characterized in that, The positioning block matches the shape of the positioning slot, and the width of the positioning block is shorter than the depth of the positioning slot.