Heat insulation structure of tent
By using insulated covers and connectors made of low thermal conductivity materials in the tent, combined with isolation cavities and partitions, the problem of rising internal temperature in the tent was solved, improving comfort and installation efficiency.
Patent Information
- Application Number
- CN202422939659.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-29
- Publication Date
- 2025-11-11
- Estimated Expiration
- 2034-11-29
AI Technical Summary
The metal structure of the tent can quickly absorb and conduct heat in the summer, causing the internal temperature to rise, affecting comfort and potentially damaging temperature-sensitive items.
The heat-insulating cover, connecting seat, and extended side plate are made of low thermal conductivity materials, combined with isolation cavities and isolation gaps to reduce the heat conduction area, and the installation process is simplified by guide blocks and fixing screws.
It effectively isolates high temperatures, improves comfort inside the tent, prevents damage to temperature-sensitive items, and simplifies the installation process.
Smart Images

Figure CN223536127U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of tents, and in particular to a heat insulation structure for tents. Background Technology
[0002] Tents, as a type of temporary building, are widely used in outdoor activities, warehousing, exhibitions and other fields. They can respond quickly when a temporary venue needs to be set up. Compared with traditional buildings, tents do not require complicated foundation treatment. Their prefabricated components and modular design allow the construction process to be carried out in an assembly line manner, which greatly shortens the construction cycle.
[0003] Tent frames are typically made of metal materials, such as steel or aluminum alloy. While these materials are sturdy and durable, they also have good thermal conductivity. In the hot summer, with strong solar radiation, the metal structure of the tent's exterior will quickly absorb and conduct heat, meaning that heat will rapidly transfer from the tent's outer surface to the interior space. This high temperature environment can make people working or participating in activities inside the tent feel stuffy and uncomfortable. Prolonged exposure to such an environment may lead to physical discomfort or even heatstroke and other health problems. Furthermore, high temperatures can also affect the storage of items inside the tent, especially for temperature-sensitive items such as food, medicine, and electronic products, which may experience a decline in quality or even damage. Utility Model Content
[0004] To solve the above-mentioned technical problems, this utility model provides a heat insulation structure for tents, aiming to solve the technical problem that in summer, the external metal structure of the tent will quickly absorb and conduct heat, meaning that heat is quickly transferred from the outer surface of the tent to the internal space, resulting in a high internal temperature of the tent.
[0005] The technical solution of this utility model to solve the above-mentioned technical problems is as follows:
[0006] A heat insulation structure for a tent includes a tent frame, which includes a plurality of spaced-apart support beams. A crossbeam and a tent fabric are connected between adjacent support beams. The tent fabric is located above the crossbeams. The structure also includes a heat insulation cover plate. A connecting seat is provided at the bottom of the heat insulation cover plate. The connecting seat is located at the top of the support beams and has an isolation cavity inside. Extended side plates extend from both sides of the connecting seat, with one end of each extended side plate extending to both sides of the support beam. The extended side plates are located above the tent fabric and are separated from the support beams to form an isolation gap. The heat insulation cover plate, the connecting seat, and the extended side plates are made of a low thermal conductivity material.
[0007] When the sun's heat radiates onto the heat-insulating cover and extended side panels, the heat-insulating cover, connecting seat, and extended side panels are made of low thermal conductivity materials. Low thermal conductivity materials mean that heat encounters greater resistance when passing through the material. This resistance slows down the rate of heat transfer, allowing the heat-insulating cover and extended side panels to effectively isolate high temperatures. Furthermore, the isolation cavities and isolation gaps inside the connecting seat effectively reduce the heat conduction area between the heat-insulating cover and the supporting beam, improving the comfort inside the tent.
[0008] Furthermore, in this application, the bottom of the connecting seat is provided with a guide block, and the top of the support beam is provided with a guide groove, wherein the guide block and the guide groove are slidably engaged.
[0009] During the tent setup process, operators only need to insert the guide block of the connector into the guide groove of the support beam and slide it along the guide groove to the designated position to complete the initial installation of the insulation components. This facilitates the positioning of the connector and simplifies the installation process.
[0010] Furthermore, in this application, the bottom of the connecting seat is provided with a fixing hole, the fixing hole communicates with the isolation cavity, the fixing hole is internally threaded with a fixing screw, the fixing screw is externally threaded with a fixing nut, the fixing nut is located inside the isolation cavity, and the guide groove is provided with fixing protrusions on both sides, so that the guide block abuts against the fixing protrusions.
[0011] When the connector is installed on the support beam, the fixing screw passes through the fixing hole of the connector and is locked by the fixing nut, so that the guide block abuts against the fixing protrusion, thereby firmly fixing the connector on the support beam, thus simplifying the installation method of the heat insulation cover.
[0012] Furthermore, in this application, the bottom of the connecting seat is provided with two limiting protrusions, the two limiting protrusions are separated to form a limiting interval, the limiting interval is located below the fixing hole, and the fixing screw is located inside the limiting interval.
[0013] Furthermore, in this application, the support beam has connecting slots on both sides, and the tarpaulin has connecting strips on both sides. The connecting strips are elastic, and the connecting strips on both sides of the tarpaulin are respectively engaged with the adjacent connecting slots.
[0014] Furthermore, in this application, a waterproof seat is provided on one side of the extended side plate, a connecting plate is provided at the bottom of the waterproof seat, a sealing block is provided at the bottom of the connecting plate, the sealing block is elastic, and the sealing block is located above the tarpaulin so that the sealing block abuts against the top of the adjacent tarpaulin.
[0015] Furthermore, in this application, a connecting steel cable connects adjacent support beams, support seats are provided on both sides of the support beams, a first connecting hole is provided inside the support seat, a steel cable frame is provided at both ends of the connecting steel cable, a fixing ring is provided on one side of the steel cable frame, a fixing buckle is passed through the fixing ring, the fixing buckle is n-shaped, the fixing buckle passes through the adjacent first connecting hole, a second connecting hole is provided on both sides of the opening of the fixing buckle, and a connecting bolt is threaded into the second connecting hole so that the connecting bolt closes the opening of the fixing buckle.
[0016] Furthermore, in this application, the top of the canopy frame is provided with a top beam, the top of the top beam is provided with a mounting frame, the top of the mounting frame is provided with a connecting chimney, and the connecting chimney communicates with the interior of the canopy frame.
[0017] Furthermore, in this application, the mounting frame is provided with a horizontal fixing rod inside, and the connecting chimney is provided with a fixing block outside. The fixing block is elastic, and a fixing slot is provided at the bottom of the fixing block, which engages with the fixing rod.
[0018] Furthermore, in this application, the bottom of the mounting frame is provided with an adjustment bracket, the bottom of the adjustment bracket is provided with an adjustment groove, the adjustment groove is slidably engaged with the top beam, one side of the top beam is provided with a plurality of first locking holes, the inside of the adjustment bracket is provided with a second locking hole communicating with the adjustment groove, and the second locking hole corresponds to any of the first locking holes.
[0019] This utility model has the following beneficial effects:
[0020] When the sun's heat radiates onto the heat-insulating cover and extended side panels, the heat-insulating cover, connecting seat, and extended side panels are made of low thermal conductivity materials. Low thermal conductivity materials mean that heat encounters greater resistance when passing through the material. This resistance slows down the rate of heat transfer, allowing the heat-insulating cover and extended side panels to effectively isolate high temperatures. Furthermore, the isolation cavities and isolation gaps inside the connecting seat effectively reduce the heat conduction area between the heat-insulating cover and the supporting beam, improving the comfort inside the tent. 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 crossbeam structure of this utility model.
[0023] Figure 3 This is a schematic diagram of the isolation interval and isolation cavity of this utility model.
[0024] Figure 4 yes Figure 3Enlarged view of point A in the image.
[0025] Figure 5 This is a structural schematic diagram of the support base of this utility model.
[0026] Figure 6 This is a schematic diagram of the structure of the chimney connected to this utility model.
[0027] In the attached figures, the following labels are used:
[0028] 1. Tent frame; 2. Tent fabric; 3. Support beam; 4. Crossbeam; 5. Connecting steel cable; 6. Heat insulation cover plate; 7. Fixing protrusion; 9. Connecting strip; 10. Connecting slot; 11. Guide groove; 12. Guide block; 13. Connecting seat; 14. Isolation cavity; 15. Extended side plate; 16. Isolation interval; 17. Waterproof seat; 18. Connecting plate; 19. Sealing block; 20. Limiting protrusion; 21. Limiting interval; 22. Fixing hole; 23. Fixing nut; 24. Fixing screw; 25. Support base; 26. First connecting hole; 27. Steel cable frame; 28. Fixing ring; 29. Fixing buckle; 30. Connecting bolt; 31. Second connecting hole; 32. Top beam; 33. Mounting frame; 34. Adjusting frame; 35. Adjusting groove; 36. First locking hole; 37. Fixing rod; 38. Connecting chimney; 39. Fixing block; 40. Fixing groove; 41. Second locking hole. Detailed Implementation
[0029] 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.
[0030] 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.
[0031] 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.
[0032] Reference Figures 1-4 In some specific embodiments, a heat insulation structure for a tent includes a tent frame 1, which includes multiple spaced support beams 3. A crossbeam 4 and a tent fabric 2 are connected between adjacent support beams 3. The tent fabric 2 is located above the crossbeam 4. The structure also includes a heat insulation cover plate 6. A connecting seat 13 is provided at the bottom of the heat insulation cover plate 6. The connecting seat 13 is located at the top of the support beam 3. An isolation cavity 14 is opened inside the connecting seat 13. Extended side plates 15 extend from both sides of the connecting seat 13. One end of the extended side plates 15 on both sides of the connecting seat 13 extends to both sides of the support beam 3. The extended side plates 15 are located above the tent fabric 2. The extended side plates 15 and the support beam 3 are separated to form an isolation interval 16. The heat insulation cover plate 6, the connecting seat 13 and the extended side plates 15 are made of low thermal conductivity materials.
[0033] Through the above technical solution, when the sun's temperature radiates onto the heat insulation cover 6 and the extended side panel 15, since the heat insulation cover 6, the connecting seat 13, and the extended side panel 15 are made of low thermal conductivity materials, and low thermal conductivity materials mean that heat will encounter greater resistance when passing through the material, this resistance slows down the speed of heat transfer, so that the heat insulation cover 6 and the extended side panel 15 can effectively isolate high temperature; and the isolation cavity 14 and isolation interval 16 inside the connecting seat 13 effectively reduce the heat conduction area between the heat insulation cover 6 and the supporting beam 3, improving the comfort inside the tent.
[0034] Furthermore, after the heat insulation cover 6, connecting seat 13 and extended side plate 15 are installed, when wind is generated in the environment, some of the heat from the heat insulation cover 6, connecting seat 13 and extended side plate 15 will be carried away by the isolation cavity 14 and the isolation interval 16, making it less likely for heat to accumulate in the isolation cavity 14 and the heat insulation interval, thus further improving its heat insulation efficiency.
[0035] It should be noted that the materials of the heat insulation cover 6, the connecting seat 13, and the extended side plate 15 can be polyurethane, glass fiber composite material, or polyester foam. Polyurethane material typically contains a large number of bubbles or pores, which are filled with air or other gases with low thermal conductivity. Air is a good insulator, so this porous structure greatly reduces the thermal conductivity of the material. Glass fiber composite material is composed of glass fiber and resin. Glass fiber itself has high thermal conductivity, but because it is surrounded by resin, it forms a discontinuous path, making it difficult for heat to pass through directly. Finally, polyester foam usually has a closed-cell structure. These closed pores contain air or other gases, which greatly reduces thermal conductivity. Therefore, the above three materials are preferred.
[0036] Reference Figures 3-4 In some specific embodiments, the bottom of the connecting seat 13 is provided with a guide block 12, and the top of the support beam 3 is provided with a guide groove 11, with the guide block 12 and the guide groove 11 slidingly engaged.
[0037] With the above technical solution, during the tent construction process, the operator only needs to insert the guide block 12 of the connecting seat 13 into the guide groove 11 of the support beam 3 and slide it along the guide groove 11 to the designated position to complete the initial installation of the heat insulation cover 6, thereby facilitating the positioning of the connecting seat 13 and simplifying the installation process.
[0038] In addition, the guide block 12 can lock the connecting seat 13 onto the support beam 3 through a subsequently designed fixing mechanism (such as screws or clips) to ensure that it will not move or loosen due to external forces.
[0039] The support beam 3 can be assembled in sections to facilitate transportation and installation.
[0040] Reference Figures 3-4 In some specific embodiments, the bottom of the connecting seat 13 is provided with a fixing hole 22, which is connected to the isolation cavity 14. The fixing hole 22 is internally threaded with a fixing screw 24, and the external thread of the fixing screw 24 is externally threaded with a fixing nut 23. The fixing nut 23 is located inside the isolation cavity 14. The guide groove 11 is provided with fixing protrusions 7 on both sides, so that the guide block 12 abuts against the fixing protrusions 7.
[0041] With the above technical solution, when the connecting seat 13 is installed on the support beam 3, the fixing screw 24 passes through the fixing hole 22 of the connecting seat 13 and is locked by the fixing nut 23, so that the guide block 12 abuts against the fixing protrusion 7, thereby making the connecting seat 13 firmly fixed on the support beam 3, thus simplifying the installation method of the heat insulation cover 6.
[0042] Reference Figure 4 In some specific embodiments, the bottom of the connecting seat 13 is provided with two limiting protrusions 20, the two limiting protrusions 20 are spaced apart to form a limiting interval 21, the limiting interval 21 is located below the fixing hole 22, and the fixing screw 24 is located inside the limiting interval 21.
[0043] Through the above technical solution, the limiting interval 21 formed by the two limiting protrusions 20 provides precise guidance and fixing space for the fixing screw 24, so that after the fixing screw 24 is screwed into the fixing hole 22, it can remain vertical by the constraint of the limiting interval 21 and avoid deviation; and under force or long-term use, the limiting protrusions 20 provide additional support for the fixing screw 24, and can also ensure that the fixing screw 24 always stays on the predetermined fixing axis, which can effectively maintain the stability of the connecting seat 13.
[0044] Reference Figure 3 In some specific embodiments, the support beam 3 has connecting slots 10 on both sides, and the tarpaulin 2 has connecting strips 9 on both sides. The connecting strips 9 are elastic, and the connecting strips 9 on both sides of the tarpaulin 2 are respectively engaged with the adjacent connecting slots 10.
[0045] Through the above technical solution, the connecting strips 9 on both sides of the tarpaulin 2 are elastic and can adapt to slight stretching and shrinkage. During installation, through elastic deformation, the connecting strips 9 can be smoothly inserted into the connecting slots 10 of the support beam 3 and return to their original shape after installation, thereby firmly fixing the tarpaulin 2 between the support beams 3, preventing the tarpaulin 2 from loosening under the action of wind or tension, and avoiding wrinkles or loosening of the tarpaulin 2.
[0046] Reference Figures 3-4In some specific embodiments, a waterproof seat 17 is provided on one side of the extended side plate 15, a connecting plate 18 is provided at the bottom of the waterproof seat 17, and a sealing block 19 is provided at the bottom of the connecting plate 18. The sealing block 19 is elastic and is located above the tarpaulin 2, so that the sealing block 19 abuts against the top of the adjacent tarpaulin 2.
[0047] Through the above technical solution, the waterproof seat 17 extends to the top of the tarpaulin 2 through the integrated design with the extended side plate 15, so that the sealing block 19 fits tightly with the top of the tarpaulin 2 through elasticity, forming a barrier structure. When rainwater drips onto the tarpaulin 2, the sealing block 19 can prevent rainwater from seeping into the connecting slot 10 or the interior of the tent, thereby improving the service life of the support beam 3 and protecting the items and people inside the tent from moisture.
[0048] Reference Figure 5 In some specific embodiments, a connecting steel cable 5 is connected between adjacent support beams 3. Support seats 25 are provided on both sides of the support beam 3. A first connecting hole 26 is opened inside the support seat 25. A steel cable frame 27 is provided at both ends of the connecting steel cable 5. A fixing ring 28 is provided on one side of the steel cable frame 27. A fixing buckle 29 is passed through the fixing ring 28. The fixing buckle 29 is n-shaped. The fixing buckle 29 passes through the adjacent first connecting hole 26. A second connecting hole 31 is opened on both sides of the opening of the fixing buckle 29. A connecting bolt 30 is threaded into the second connecting hole 31 so that the connecting bolt 30 closes the opening of the fixing buckle 29.
[0049] Through the above technical solution, the connecting steel cable 5 is connected to the support seat 25 of the support beam 3 through the fixing ring 28, so that the tension on the canopy 1 is evenly transmitted to multiple support beams 3, reducing the local stress borne by a single support beam 3, thereby improving the overall wind resistance and stability of the canopy 1; and through the combination of the fixing buckle 29 and the connecting bolt 30, a reliable mechanical lock is formed between the steel cable and the support seat 25, which can withstand greater tension and vibration impact.
[0050] Reference Figure 6 In some specific embodiments, the top of the canopy frame 1 is provided with a top beam 32, the top of the top beam 32 is provided with a mounting frame 33, the top of the mounting frame 33 is provided with a connecting chimney 38, and the connecting chimney 38 connects to the interior of the canopy frame 1.
[0051] With the above technical solution, when the temperature inside the tent rises, the hot air, due to its lower density, will naturally rise and be discharged from the top through the connected chimney 38, forming air convection, thereby reducing the overall temperature inside the tent.
[0052] Reference Figure 6In some specific embodiments, a fixing rod 37 is provided horizontally inside the mounting frame 33, and a fixing block 39 is provided on the outside of the chimney 38. The fixing block 39 is elastic, and a fixing groove 40 is provided at the bottom of the fixing block 39. The fixing groove 40 is engaged with the fixing rod 37.
[0053] With the above technical solution, the installation and dismantling of the chimney can be completed manually without the need for additional tools, thanks to the snap-fit connection between the fixing block 39 and the fixing rod 37, which improves construction efficiency and maintenance convenience.
[0054] Reference Figure 6 In some specific embodiments, the bottom of the mounting frame 33 is provided with an adjustment frame 34, the bottom of the adjustment frame 34 is provided with an adjustment groove 35, the adjustment groove 35 is slidably engaged with the top beam 32, a plurality of first locking holes 36 are provided on one side of the top beam 32, and a second locking hole 41 communicating with the adjustment groove 35 is provided inside the adjustment frame 34, the second locking hole 41 corresponds to any of the first locking holes 36.
[0055] Through the above technical solution, the adjustment groove 35 allows the adjustment frame 34 to slide on the top beam 32. By changing the position of the adjustment frame 34, the horizontal position of the mounting frame 33 and the chimney can be adjusted to meet the needs of different usage scenarios for the exhaust position.
[0056] 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. A heat insulation structure for a tent, comprising a tent frame, the tent frame including a plurality of spaced-apart support beams, with crossbeams and a tent fabric connecting adjacent support beams, the tent fabric being located above the crossbeams, characterized in that, It also includes a heat insulation cover plate, the bottom of which is provided with a connecting seat, which is located on the top of the support beam. The connecting seat has an isolation cavity inside, and extension side plates extend from both sides of the connecting seat. One end of the extension side plates on both sides of the connecting seat extends to both sides of the support beam, and the extension side plates are located above the tarpaulin. The extension side plates are separated from the support beam to form an isolation interval. The heat insulation cover plate, the connecting seat, and the extension side plates are made of low thermal conductivity materials.
2. The heat insulation structure of a tent according to claim 1, characterized in that, The bottom of the connecting seat is provided with a guide block, and the top of the support beam is provided with a guide groove. The guide block and the guide groove are slidably engaged.
3. The heat insulation structure of a tent according to claim 2, characterized in that, The bottom of the connector has a fixing hole that connects to the isolation cavity. A fixing screw is threaded into the fixing hole, and a fixing nut is threaded onto the fixing screw. The fixing nut is located inside the isolation cavity. Fixing protrusions are provided on both sides of the guide groove so that the guide block abuts against the fixing protrusions.
4. The heat insulation structure of a tent according to claim 3, characterized in that, The bottom of the connector is provided with two limiting protrusions, which are spaced apart to form a limiting interval. The limiting interval is located below the fixing hole, and the fixing screw is located inside the limiting interval.
5. The heat insulation structure of a tent according to claim 1, characterized in that, The support beam has connecting slots on both sides, and the tarpaulin has connecting strips on both sides. The connecting strips are elastic, and the connecting strips on both sides of the tarpaulin are respectively engaged with the adjacent connecting slots.
6. The heat insulation structure of a tent according to claim 5, characterized in that, A waterproof seat is provided on one side of the extended side plate, and a connecting plate is provided at the bottom of the waterproof seat. A sealing block is provided at the bottom of the connecting plate. The sealing block is elastic and is located above the tarpaulin, so that the sealing block abuts against the top of the adjacent tarpaulin.
7. The heat insulation structure of a tent according to claim 1, characterized in that, A connecting steel cable connects adjacent support beams. Support seats are provided on both sides of the support beams. A first connecting hole is opened inside the support seat. A steel cable frame is provided at both ends of the connecting steel cable. A fixing ring is provided on one side of the steel cable frame. A fixing buckle is passed through the fixing ring. The fixing buckle is N-shaped. The fixing buckle passes through the adjacent first connecting hole. A second connecting hole is opened on both sides of the opening of the fixing buckle. A connecting bolt is threaded into the second connecting hole so that the connecting bolt closes the opening of the fixing buckle.
8. The heat insulation structure of a tent according to claim 1, characterized in that, The top of the canopy frame is provided with a top beam, the top of the top beam is provided with a mounting frame, the top of the mounting frame is provided with a connecting chimney, and the connecting chimney connects to the interior of the canopy frame.
9. The heat insulation structure of a tent according to claim 8, characterized in that, The mounting frame has a horizontal fixing rod inside, and the outside of the connecting chimney has a fixing block. The fixing block is elastic, and the bottom of the fixing block has a fixing groove that engages with the fixing rod.
10. The heat insulation structure of a tent according to claim 8, characterized in that, The bottom of the mounting frame is provided with an adjustment bracket, and the bottom of the adjustment bracket is provided with an adjustment groove. The adjustment groove is slidably engaged with the top beam. A plurality of first locking holes are provided on one side of the top beam. A second locking hole communicating with the adjustment groove is provided inside the adjustment bracket. The second locking hole corresponds to any of the first locking holes.