A folding tent support with uniform stress and high stability

CN224742138UActive Publication Date: 2026-09-11HESHAN FENGZHIDA OUTDOOR PROD CO LTD
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Patent Information

Application Number
CN202522168168.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-14
Publication Date
2026-09-11
Estimated Expiration
2035-10-14

AI Technical Summary

Technical Problem

现有的帐篷支架一般为折叠结构,以方便携带使用,但市场上的帐篷支架折叠后体积较大,折叠后长度一般超过1米,不方便放上小汽车携带,同时现有的帐篷支架因中间不能形成稳定的支撑,防风效果欠佳,容易受大风吹击造成变形,泄水性能欠佳,容易积水,消费者体验欠佳,公布号为CN202510371862.3 的发明专利公开了了一种帐篷架的稳固装置,通过分支拉索、拉伸弹簧、复位弹簧等部件将整个帐篷的重心降低,重心降低,支撑面增大,物体的稳度增大,稳定性增强,同时稳定构件在帐篷架体撑开时为分支拉索提供拉力,可以使得整个帐篷架体在力的作用下更稳固,更能抵御外力,防风效果好,使用寿命更长,相较于普通帐篷架体,使用效果更佳,但帐篷支架折叠时,分支拉索不能处于绷紧状态,会出现干扰折叠的情况,同时帐篷支架折叠后体积较大,折叠后长度超过1米,不方便放上小汽车携带,消费者体验欠佳

Benefits of technology

[0015]相对于现有技术,本实用新型通过底座与下铰接件之间设有一弹簧,上铰接件安装有若干钢丝绳,角剪叉机构始端的上端与固定套铰接,角剪叉机构始端的下端与滑动套铰接,钢丝绳穿过下铰接件及底座后与角剪叉机构末端的上端连接,角剪叉机构连接钢丝绳,钢丝绳在拉伸的过程中,达到受力平衡的作用,钢丝绳处于拉紧状态,强度高,方便连接与收放,中间的弹簧实现下铰接件上下微调,缓冲打开与收折时的受力,收折时,弹簧处于压缩状态,钢丝绳处于绷紧状态,角剪叉机构向下运行,钢丝绳的一端向下运行,钢丝绳的另一端相对于底座向上运行,钢丝绳的两端在相应移动,达到钢丝绳一直处于张紧状态,避免出现干扰折叠的情况,帐篷支架打开时,弹簧处于压缩状态,钢丝绳处于绷紧状态,角剪叉机构向上运行,钢丝绳的一端向上运行,钢丝绳的另一端相对于底座向下运行,钢丝绳的两端在相应移动,达到钢丝绳一直处于张紧状态,避免出现干扰打开的情况,帐篷支架打开后,滑动套锁定后,帐篷支架受外界力下压时,弹簧受垂直力,均匀分配到帐篷支架与钢丝绳,帐篷支架整体受力均匀、支撑稳定,帐篷支架折叠后体积小,折叠后长度小于1米,方便放上小汽车携带,帐篷支架中间能形成稳定的支撑,防风效果好,受大风吹击不容易变形,泄水性能好,避免出现积水现象,消费者体验好。

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Abstract

The utility model discloses a kind of folding tent supports that stress is uniform and high stability, including telescopic support foot, edge scissor mechanism, middle scissor mechanism, angle scissor mechanism and main beam rod, the bottom of the main beam rod is installed with a base, the outside of the main beam rod is equipped with upper hinge piece and lower hinge piece, a spring is equipped between the base and lower hinge piece, the upper hinge piece is installed with several steel ropes, the top of the telescopic support foot is installed with a fixed sleeve, the upper portion of the telescopic support foot is slidably connected with a sliding sleeve, the steel rope is connected after passing through lower hinge piece and base with the upper end of angle scissor mechanism terminal end.The utility model tent support whole stress is uniform, and support is stable, steel rope is in taut state in opening and folding process, opening and folding are stable, the length after folding is less than 1 meter, facilitate to put on car carrying, tent support middle can form stable support, windproof effect is good, drainage performance is good, consumer experience is good.
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Description

Technical Field

[0001] This utility model relates to the field of tent technology, specifically to a folding tent frame that is uniformly stressed and highly stable. Background Technology

[0002] Tents are generally composed of tent frames and a tent fabric. The tent frames play a crucial role in the tent's structural stability, water drainage speed, and water-proofing performance. Existing tent frames are generally folding structures for easy carrying, but these frames are quite bulky when folded, typically exceeding 1 meter in length, making them inconvenient to load into a car. Furthermore, existing tent frames often lack stable support in the middle, resulting in poor wind resistance and susceptibility to deformation from strong winds. Their poor water drainage also leads to water accumulation, resulting in a subpar consumer experience. (Publication number: CN202510371862.3) The invention patent discloses a stabilizing device for a tent frame. Through components such as branch cables, tension springs, and return springs, the center of gravity of the entire tent is lowered. A lower center of gravity increases the support surface, thereby increasing the stability of the object. Simultaneously, the stabilizing components provide tension to the branch cables when the tent frame is unfolded, making the entire tent frame more stable under force, better resistant to external forces, providing better wind protection, and extending its service life. Compared to ordinary tent frames, it offers superior performance. However, when the tent frame is folded, the branch cables cannot be kept taut, which can interfere with folding. Furthermore, the folded tent frame is quite bulky, exceeding 1 meter in length, making it inconvenient to load into a car and resulting in a poor consumer experience. Therefore, to avoid the shortcomings of the existing technology, it is necessary to improve it. Utility Model Content

[0003] The purpose of this invention is to overcome the shortcomings and deficiencies in the existing technology and provide a folding tent frame with uniform force distribution and high stability.

[0004] This utility model is achieved through the following technical solution:

[0005] A folding tent frame with uniform force distribution and high stability includes telescopic support legs, side scissor mechanisms, a center scissor mechanism, an angle scissor mechanism, and a main beam. A base is mounted at the bottom of the main beam. An upper hinge and a lower hinge are fitted onto the outer side of the main beam. A spring is provided between the base and the lower hinge. Several steel wire ropes are installed on the upper hinge. A fixed sleeve is mounted at the top of the telescopic support leg. A sliding sleeve is slidably connected to the upper part of the telescopic support leg. The beginning and end of the side scissor mechanisms... The ends are respectively hinged to the fixed sleeve and sliding sleeve of the adjacent telescopic support legs. The starting end of the middle scissor mechanism is hinged to the middle of the side scissor mechanism. The upper end of the end of the middle scissor mechanism is hinged to the upper hinge member. The lower end of the end of the middle scissor mechanism is hinged to the lower hinge member. The upper end of the starting end of the corner scissor mechanism is hinged to the fixed sleeve. The lower end of the starting end of the corner scissor mechanism is hinged to the sliding sleeve. The wire rope passes through the lower hinge member and the base and is connected to the upper end of the end of the corner scissor mechanism.

[0006] Furthermore, the side scissor lift mechanism includes four or more consecutive side scissor lift assemblies, the number of which is an even number. The middle scissor lift mechanism includes two or more consecutive middle scissor lift assemblies. The upper end of the starting end of the side scissor lift mechanism is hinged to the fixed sleeve, the lower end of the starting end of the side scissor lift mechanism is hinged to the sliding sleeve, the upper end of the ending end of the side scissor lift mechanism is hinged to the fixed sleeve of the adjacent telescopic support leg, the lower end of the ending end of the side scissor lift mechanism is hinged to the sliding sleeve of the adjacent telescopic support leg, the upper end of the starting end of the middle scissor lift mechanism is hinged to the upper end of the middle of the side scissor lift mechanism, the lower end of the starting end of the middle scissor lift mechanism is hinged to the lower end of the middle of the side scissor lift mechanism, the upper end of the ending end of the middle scissor lift mechanism is hinged to the upper hinge member, and the lower end of the ending end of the middle scissor lift mechanism is hinged to the lower hinge member.

[0007] Furthermore, a top beam is installed on the inner side of the main beam.

[0008] Furthermore, the side scissor lift mechanism includes four consecutive side scissor lift assemblies, the middle scissor lift mechanism includes two consecutive middle scissor lift assemblies, and the corner scissor lift mechanism includes one corner scissor lift assembly.

[0009] Furthermore, the side scissor lift assembly includes a first side scissor lift rod and a second side scissor lift rod, with the middle portion of the first side scissor lift rod hinged to the middle portion of the second side scissor lift rod.

[0010] Furthermore, the middle scissor lift mechanism includes a first middle scissor lift assembly and a second middle scissor lift assembly. The first middle scissor lift assembly includes a first middle scissor lift rod and a second middle scissor lift rod. The second middle scissor lift assembly includes a third middle scissor lift rod and a fourth middle scissor lift rod. The starting end of the first middle scissor lift rod is hinged to the upper end of the middle of the side scissor lift mechanism. The starting end of the second middle scissor lift rod is hinged to the lower end of the middle of the side scissor lift mechanism. The middle part of the second middle scissor lift rod is hinged to the middle part of the first middle scissor lift rod. The ending end of the first middle scissor lift rod is hinged to the starting end of the fourth middle scissor lift rod. The ending end of the fourth middle scissor lift rod is hinged to the upper hinge member. The ending end of the third middle scissor lift rod is hinged to the lower hinge member. The middle part of the fourth middle scissor lift rod is hinged to the middle part of the third middle scissor lift rod.

[0011] Furthermore, the scissor lift mechanism includes a set of scissor lift assemblies, the scissor lift assembly including a first scissor lift rod and a second scissor lift rod, the beginning end of the first scissor lift rod is hinged to the fixed sleeve, the beginning end of the second scissor lift rod is hinged to the sliding sleeve, the end of the second scissor lift rod is hinged to the middle part of the first scissor lift rod, and the end of the first scissor lift rod is connected to the wire rope.

[0012] Furthermore, the upper hinge member is provided with a lug for mounting the wire rope, the lower hinge member is provided with a first hole for the wire rope to pass through, and the base is provided with a second hole for the wire rope to pass through.

[0013] Furthermore, the upper end of the scissor mechanism is provided with a hanging hole for connecting the wire rope.

[0014] Furthermore, the upper and lower ends of the side scissor mechanism are respectively provided with three-pronged lugs for hinged connection between the upper and lower ends of the starting end of the middle scissor mechanism.

[0015] Compared to existing technologies, this utility model features a spring between the base and the lower hinge, with several steel wire ropes mounted on the upper hinge. The upper end of the scissor mechanism's starting end is hinged to a fixed sleeve, and the lower end of the scissor mechanism's starting end is hinged to a sliding sleeve. The steel wire ropes pass through the lower hinge and the base and connect to the upper end of the scissor mechanism's ending end. During the stretching process, the steel wire ropes achieve force balance, remaining taut with high strength, facilitating connection and retraction. The central spring allows for fine-tuning of the lower hinge, buffering the force during opening and closing. During closing, the spring is compressed, and the steel wire ropes are taut. As the scissor mechanism moves downwards, one end of the steel wire rope moves downwards, while the other end moves upwards relative to the base. The two ends of the steel wire rope move accordingly, ensuring the steel wire rope remains in a taut position. In a taut state, to prevent interference with folding, when the tent frame is opened, the spring is compressed and the steel cable is taut. The scissor mechanism moves upward, one end of the steel cable moves upward, and the other end moves downward relative to the base. The two ends of the steel cable move accordingly, ensuring that the steel cable is always taut and preventing interference with opening. After the tent frame is opened, the sliding sleeve locks in place. When the tent frame is pressed down by external force, the spring experiences vertical force, which is evenly distributed between the tent frame and the steel cable. The tent frame is evenly stressed and stably supported. The tent frame is compact when folded, with a folded length of less than 1 meter, making it easy to carry in a car. The tent frame provides stable support in the middle, has good windproof performance, is not easily deformed by strong winds, and has good water drainage performance, preventing water accumulation and providing a good consumer experience. Attached Figure Description

[0016] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0017] Figure 1 This is a schematic diagram of the structure of the folding tent frame of this utility model, which exhibits uniform stress distribution and high stability.

[0018] Figure 2 This is an exploded view of the structure connecting the main beam to the base, upper hinge, and lower hinge of this utility model.

[0019] Figure 3 A schematic diagram of the structure of the scissor lift mechanism of this utility model when four scissor lift components are provided;

[0020] Figure 4 A schematic diagram of the structure of the scissor lift mechanism of this utility model when two scissor lift components are provided;

[0021] Figure 5 A schematic diagram of the structure of the scissor lift mechanism of this utility model when a scissor lift assembly is provided.

[0022] In the diagram: 1-Telescopic support leg; 2-Side scissor mechanism; 3-Middle scissor mechanism; 4-Corner scissor mechanism; 5-Main beam rod; 6-Base; 7-Upper hinge; 8-Lower hinge; 9-Spring; 10-Wire rope; 11-Fixing sleeve; 12-Sliding sleeve; 13-Top beam rod; 14-First side scissor rod; 15-Second side scissor rod; 16-First middle scissor rod; 17-Second middle scissor rod; 18-Third middle scissor rod; 19-Fourth middle scissor rod; 20-First corner scissor rod; 21-Second corner scissor rod; 22-Hanging lug; 23-First sleeve hole; 24-Second sleeve hole; 25-Hanging hole; 26-Three-pronged lug. Detailed Implementation

[0023] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0024] like Figures 1 to 5The present invention discloses a folding tent frame with uniform force distribution and high stability, comprising telescopic support legs 1, side scissor mechanisms 2, center scissor mechanisms 3, corner scissor mechanisms 4, and a main beam 5. A base 6 is installed at the bottom of the main beam 5. An upper hinge 7 and a lower hinge 8 are sleeved on the outer side of the main beam 5. A spring 9 is provided between the base 6 and the lower hinge 8. Several steel wire ropes 10 are installed on the upper hinge 7. A fixing sleeve 11 is installed at the top of the telescopic support legs 12. A sliding sleeve 12 is slidably connected to the upper part of the telescopic support legs 12. The beginning and end of the side scissor lift mechanism are respectively hinged to the fixed sleeve 11 and sliding sleeve 12 of the adjacent telescopic support foot 1. The beginning of the middle scissor lift mechanism 3 is hinged to the middle of the side scissor lift mechanism 2. The upper end of the end of the middle scissor lift mechanism 3 is hinged to the upper hinge member 7. The lower end of the end of the middle scissor lift mechanism 3 is hinged to the lower hinge member 8. The upper end of the beginning of the corner scissor lift mechanism 4 is hinged to the fixed sleeve 11. The lower end of the beginning of the corner scissor lift mechanism 4 is hinged to the sliding sleeve 12. The wire rope 10 passes through the lower hinge member 8 and the base 6 and is connected to the upper end of the end of the corner scissor lift mechanism 4. This utility model's scissor mechanism 4 connects to a steel wire rope 10. During the stretching process, the steel wire rope 10 achieves force balance, remaining taut and strong, facilitating connection and retraction. The central spring 9 allows for fine-tuning of the lower hinge 8, buffering the force during opening and closing. During folding, the spring 9 is compressed, and the steel wire rope 10 is taut. The scissor mechanism 4 moves downwards, with one end of the steel wire rope 10 moving downwards and the other end moving upwards relative to the base. These corresponding movements ensure the steel wire rope remains taut, preventing interference with folding. When the tent frame is opened, the spring 9 is compressed, and the steel wire rope 10 remains taut. When the fork mechanism 4 moves upward, one end of the steel wire rope 10 moves upward, while the other end of the steel wire rope 10 moves downward relative to the base. Both ends of the steel wire rope 10 move accordingly, ensuring that the steel wire rope 10 is always taut to prevent interference with opening. After the tent frame is opened, the sliding sleeve 12 locks in place. When the tent frame is pressed down by external force, the spring 9 experiences vertical force, which is evenly distributed between the tent frame and the steel wire rope 10. The tent frame is evenly stressed and stably supported. The tent frame is compact when folded, with a folded length of less than 1 meter, making it easy to carry in a car. The tent frame provides stable support in the middle, has good windproof performance, is not easily deformed by strong winds, and has good water drainage performance, preventing water accumulation and providing a good consumer experience.

[0025] In specific implementation, the side scissor lift mechanism 2 includes four or more connected side scissor lift assemblies, the number of which is an even number; the middle scissor lift mechanism 3 includes two or more connected middle scissor lift assemblies; the corner scissor lift mechanism 4 includes a corner scissor lift assembly; the upper end of the beginning of the side scissor lift mechanism 2 is hinged to the fixed sleeve 11; the lower end of the beginning of the side scissor lift mechanism 2 is hinged to the sliding sleeve 12; the upper end of the end of the side scissor lift mechanism 2 is hinged to the fixed sleeve 11 of the adjacent telescopic support leg 1; the lower end of the end of the side scissor lift mechanism 2 is hinged to the sliding sleeve 12 of the adjacent telescopic support leg 1; the upper end of the beginning of the middle scissor lift mechanism 3 is hinged to the upper end of the middle of the side scissor lift mechanism 2; the lower end of the beginning of the middle scissor lift mechanism 3 is hinged to the lower end of the middle of the side scissor lift mechanism 2; the upper end of the end of the middle scissor lift mechanism 3 is hinged to the upper hinge member 7; and the lower end of the end of the middle scissor lift mechanism 3 is hinged to the lower hinge member 8. The tent frame is compact when folded, with a length of less than 1 meter, making it easy to carry in a car. The frame provides stable support in the middle, offering good wind protection and resistance to deformation from strong winds. It also has excellent water drainage to prevent water accumulation, resulting in a positive user experience.

[0026] A top beam 13 is installed on the inner side of the main beam 5 to facilitate the support of the tarpaulin.

[0027] In one specific implementation, the side scissor mechanism 2 includes four connected side scissor assemblies, the center scissor mechanism 3 includes two connected center scissor assemblies, and the tent frame includes four telescopic support legs 1, four side scissor mechanisms 2, four center scissor mechanisms 3, and four corner scissor mechanisms 4. The tent frame has a small folded size and relatively low manufacturing cost. A tent frame of approximately 3m x 3m has a folded height of approximately 80cm.

[0028] The side scissor lift assembly 2 includes a first side scissor lift 14 and a second side scissor lift 15. The middle part of the first side scissor lift 14 and the middle part of the second side scissor lift 15 are hinged together. The first side scissor lift 14 at the beginning of the side scissor lift mechanism 2 is hinged together with a fixed sleeve 11. The second side scissor lift 15 at the beginning of the side scissor lift mechanism 2 is hinged together with a sliding sleeve 12. The second side scissor lift 15 at the end of the side scissor lift mechanism 2 is hinged together with the fixed sleeve 11 of the adjacent telescopic support foot 1. The first side scissor lift 14 at the end of the side scissor lift mechanism 2 is hinged together with the sliding sleeve 12 of the adjacent telescopic support foot 1.

[0029] The middle scissor lift mechanism 3 includes a first middle scissor lift assembly and a second middle scissor lift assembly. The first middle scissor lift assembly includes a first middle scissor lift rod 16 and a second middle scissor lift rod 17. The second middle scissor lift assembly includes a third middle scissor lift rod 18 and a fourth middle scissor lift rod 19. The beginning of the first middle scissor lift rod 16 is hinged to the upper end of the middle of the side scissor lift mechanism 2. The beginning of the second middle scissor lift rod 17 is hinged to the lower end of the middle of the side scissor lift mechanism 2. The middle part of the second middle scissor lift rod 17 is hinged to the middle part of the first middle scissor lift rod 16. The end of the first middle scissor lift rod 16 is hinged to the beginning of the fourth middle scissor lift rod 19. The end of the fourth middle scissor lift rod 19 is hinged to the upper hinge member 7. The end of the third middle scissor lift rod 18 is hinged to the lower hinge member 8. The middle part of the fourth middle scissor lift rod 19 is hinged to the middle part of the third middle scissor lift rod 18.

[0030] The scissor lift mechanism 4 includes a set of scissor lift assemblies, each comprising a first scissor lift rod 20 and a second scissor lift rod 21. The beginning of the first scissor lift rod 20 is hinged to a fixed sleeve 11, and the beginning of the second scissor lift rod 21 is hinged to a sliding sleeve 12. The end of the second scissor lift rod 21 is hinged to the middle of the first scissor lift rod 11. The end of the first scissor lift rod 20 is connected to a wire rope 10. The upper hinge member 7 is provided with a lug 22 for mounting the wire rope 10, facilitating its installation. The number of scissor lift assemblies can be increased according to needs and size.

[0031] The lower hinge 8 is provided with a first hole 23 for the steel wire rope 10 to pass through, and the base 6 is provided with a second hole 24 for the steel wire rope 10 to pass through, so that the guidance of the steel wire rope 10 is more stable.

[0032] The upper end of the scissor mechanism 4 is provided with a hanging hole 25 for connecting the wire rope 10, which facilitates the connection of the wire rope 10.

[0033] The upper and lower ends of the side scissor mechanism 2 are respectively provided with three-pronged lugs 26 for hinged connection between the upper and lower ends of the starting end of the middle scissor mechanism 3, so as to facilitate the hinged installation of the starting end of the middle scissor mechanism 3.

[0034] Working Principle: When the tent frame is opened, it is simultaneously pulled by the steel wire ropes 10 at the four corners and the central scissor mechanism 3, resulting in smooth opening and even force distribution. The extended corner scissor mechanism 4 reduces the length of the steel wire ropes 10, making the connection of the steel wire ropes 10 more stable. After the tent frame is opened and the sliding sleeve 12 is locked, during use, the central scissor mechanism 3 and the steel wire ropes 10 are tightened, and the spring 9 is in a stretched state. When the tent frame is pressed down by external forces, the spring experiences vertical force, which is evenly distributed to the tent frame and the steel wire ropes. The tent frame is evenly stressed and stably supported, while also buffering external forces, facilitating water drainage and preventing water accumulation. During the opening and folding of the tent frame, the spring 9 is in a compressed state, and the two ends of the steel wire rope 10 are relatively tightened, resulting in more even force distribution. During the opening and folding of the tent frame, the spring 9 plays a role in allowing the lower hinge 8 to make slight adjustments up and down, buffering the force during opening and folding, ensuring smooth opening and folding, and facilitating positioning after opening and folding. When the tent frame is folded, spring 9 is compressed, and steel cable 10 is taut. The scissor mechanism 4 moves downward, one end of steel cable 10 moves downward, and the other end moves upward relative to the base. The two ends of steel cable 10 move accordingly, ensuring the steel cable remains taut to prevent interference with folding and avoid jamming or tangling during the folding process. When the tent frame is opened, spring 9 is compressed, and steel cable 10 is taut. The scissor mechanism 4 moves upward, one end of steel cable 10 moves upward, and the other end moves downward relative to the base. The two ends of steel cable 10 move accordingly, ensuring the steel cable 10 remains taut to prevent interference with opening and avoid jamming or tangling during the opening process. After the tent frame is folded, spring 9 is extended to prevent the tent frame from opening completely, facilitating storage and transport.

[0035] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. A folding tent frame with uniform stress distribution and high stability, characterized in that: The device includes telescopic support legs, side scissor lift mechanisms, middle scissor lift mechanisms, corner scissor lift mechanisms, and a main beam. A base is mounted on the bottom of the main beam. An upper hinge and a lower hinge are fitted onto the outer side of the main beam. A spring is located between the base and the lower hinge. Several steel wire ropes are mounted on the upper hinge. A fixed sleeve is mounted on the top of the telescopic support leg. A sliding sleeve is slidably connected to the upper part of the telescopic support leg. The beginning and end of the side scissor lift mechanism are respectively hinged to the fixed sleeve and sliding sleeve of the adjacent telescopic support leg. The beginning of the middle scissor lift mechanism is hinged to the middle of the side scissor lift mechanism. The upper end of the end of the middle scissor lift mechanism is hinged to the upper hinge, and the lower end of the end of the middle scissor lift mechanism is hinged to the lower hinge. The upper end of the beginning of the corner scissor lift mechanism is hinged to the fixed sleeve, and the lower end of the beginning of the corner scissor lift mechanism is hinged to the sliding sleeve. The steel wire ropes pass through the lower hinge and the base and are connected to the upper end of the end of the corner scissor lift mechanism.

2. The uniform force and high stability folding tent support according to claim 1, characterized in that: The side scissor lift mechanism includes four or more consecutive side scissor lift assemblies, the number of which is an even number. The middle scissor lift mechanism includes two or more consecutive middle scissor lift assemblies. The upper end of the starting end of the side scissor lift mechanism is hinged to the fixed sleeve, and the lower end of the starting end of the side scissor lift mechanism is hinged to the sliding sleeve. The upper end of the ending end of the side scissor lift mechanism is hinged to the fixed sleeve of the adjacent telescopic support leg, and the lower end of the ending end of the side scissor lift mechanism is hinged to the sliding sleeve of the adjacent telescopic support leg. The upper end of the starting end of the middle scissor lift mechanism is hinged to the upper end of the middle of the side scissor lift mechanism, and the lower end of the starting end of the middle scissor lift mechanism is hinged to the lower end of the middle of the side scissor lift mechanism. The upper end of the ending end of the middle scissor lift mechanism is hinged to the upper hinge member, and the lower end of the ending end of the middle scissor lift mechanism is hinged to the lower hinge member.

3. The uniform force and high stability folding tent support of claim 1, wherein: A top beam is installed on the inner side of the main beam.

4. The folding tent frame with uniform force distribution and high stability according to claim 1, characterized in that: The side scissor lift mechanism includes four consecutive side scissor lift assemblies, and the center scissor lift mechanism includes two consecutive center scissor lift assemblies.

5. The uniform force and high stability folding tent support of claim 2, wherein: The side scissor lift assembly includes a first side scissor lift and a second side scissor lift, with the middle portion of the first side scissor lift hinged to the middle portion of the second side scissor lift.

6. The uniform force and high stability folding tent support of claim 1, wherein: The central scissor lift mechanism includes a first central scissor lift assembly and a second central scissor lift assembly. The first central scissor lift assembly includes a first central scissor lift rod and a second central scissor lift rod. The second central scissor lift assembly includes a third central scissor lift rod and a fourth central scissor lift rod. The starting end of the first central scissor lift rod is hinged to the upper end of the middle of the side scissor lift mechanism. The starting end of the second central scissor lift rod is hinged to the lower end of the middle of the side scissor lift mechanism. The middle part of the second central scissor lift rod is hinged to the middle part of the first central scissor lift rod. The ending end of the first central scissor lift rod is hinged to the starting end of the fourth central scissor lift rod. The ending end of the fourth central scissor lift rod is hinged to the upper hinge member. The ending end of the third central scissor lift rod is hinged to the lower hinge member. The middle part of the fourth central scissor lift rod is hinged to the middle part of the third central scissor lift rod.

7. The uniform force and high stability folding tent support of claim 1, wherein: The scissor lift mechanism includes a set of scissor lift assemblies, each including a first scissor lift rod and a second scissor lift rod. The beginning of the first scissor lift rod is hinged to the fixed sleeve, the beginning of the second scissor lift rod is hinged to the sliding sleeve, the end of the second scissor lift rod is hinged to the middle of the first scissor lift rod, and the end of the first scissor lift rod is connected to the wire rope.

8. The uniform force and high stability folding tent support of claim 1, wherein: The upper hinge member is provided with a lug for mounting the wire rope, the lower hinge member is provided with a first hole for the wire rope to pass through, and the base is provided with a second hole for the wire rope to pass through.

9. The uniform force and high stability folding tent support of claim 1, wherein: The upper end of the scissor mechanism is provided with a hanging hole for connecting the wire rope.

10. The uniform force and high stability folding tent support of claim 1, wherein: The upper and lower ends of the side scissor mechanism are respectively provided with three-pronged lugs for hinged connection between the upper and lower ends of the starting end of the middle scissor mechanism.

Citation Information

Patent Citations

  • Stabilizing device of tent frame

    CN120007012A