Folding tent with photovoltaic panel

By adjusting the knob and the displacement plate drive plate, the problem of synchronous adjustment and stability of the photovoltaic panel folding tent after its weight increases has been solved, realizing convenient operation by a single person and space optimization.

CN224032316UActive Publication Date: 2026-03-24ENG UNIV OF THE CHINESE PEOPLES ARMED POLICE FORCE
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-17
Publication Date
2026-03-24

AI Technical Summary

Technical Problem

After adding photovoltaic panels, the weight of the canopy of a traditional folding tent increases. Asynchronous adjustment can lead to damage to the support structure or breakage of the photovoltaic modules. Furthermore, it is difficult for a single person to disassemble and install the four nuts.

Method used

The system uses an adjustment knob and a displacement plate in conjunction with a drive plate, and achieves synchronous lifting and lowering of multiple support points through bevel gears and a two-way threaded rod, simplifying the adjustment process. It is also secured with mounting bolts and nuts to ensure stability after folding.

Benefits of technology

It enables a single person to conveniently and synchronously adjust the height of the photovoltaic panel folding tent, improving stability and space utilization while reducing the space occupied after folding.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a folding tent with a photovoltaic panel, which relates to the technical field of folding tents and comprises a first ceiling and a second ceiling, solar panels are arranged on the upper side surfaces of the first ceiling and the second ceiling, and the solar panels are arranged on the upper side surfaces of the first ceiling and the second ceiling. First supporting rods are rotationally connected to the lower side surfaces of the first ceiling and the second ceiling correspondingly, the outer surfaces of the first supporting rods are slidably sleeved with adjusting sleeves, stabilizing plates are fixedly connected to the lower ends of the adjusting sleeves, and L-shaped mounting rods are fixedly connected to the surfaces of the adjusting sleeves; the lower side surface of the first ceiling and the lower side surface of the second ceiling are fixedly connected with the two mounting blocks correspondingly, the four corners of the first ceiling and the four corners of the second ceiling can be synchronously driven to move synchronously through rotation of the adjusting knobs, and therefore the height adjusting process is simplified to a great extent, and the heights of the four corners are consistent after adjustment while one person can conduct convenient operation.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of folding tent, especially relates to a folding tent with photovoltaic board. BACKGROUND

[0002] The tent is supported on the ground and shelters from the wind and rain, sunlight and temporary residence. The tent is made of canvas, and the supporting things can be removed and moved at any time. The tent is carried in the form of components, and is assembled on the site, so various components and tools are needed. In order to quickly and conveniently set up the tent, the names and use methods of the components should be understood, and the structure of the tent should be familiar.

[0003] The traditional folding tent is designed for light canvas roof, and the height is adjusted by discrete pins or knob locking, and the support legs are adjusted one by one by manual. In the special tent with photovoltaic board and matching energy storage components, the self-weight of the roof is significantly increased, and the non-synchronous adjustment will cause the roof to tilt sharply, and the lateral shear force will easily damage the support structure or cause the photovoltaic components to break. Therefore, how to realize the mechanical forced synchronous lifting of multiple support points by a single driving source is a stability control problem to be solved in the field. SUMMARY

[0004] The utility model discloses a folding tent with photovoltaic board, which solves the problem that four nuts need to be removed and installed separately, which is difficult for a single person to complete.

[0005] To achieve the above object, the utility model provides the following technical scheme: a folding tent with photovoltaic board, comprising a first roof and a second roof, the upper surface of the first roof and the second roof is provided with a solar panel, the lower surface of the first roof and the second roof is rotatably connected with a first support rod, the outer surface of the first support rod is slidably sleeved with an adjusting sleeve, the lower end of the adjusting sleeve is fixedly connected with a stabilizing plate, the surface of the adjusting sleeve is fixedly connected with an L-shaped mounting rod, the lower surface of the first roof and the second roof is respectively fixedly connected with two mounting blocks, the side surface of the two mounting blocks close to each other is respectively provided with a sliding groove, the two mounting blocks are slidably connected with a driving plate, the driving plate is slidably connected in the sliding groove, the mounting block is provided with a fixing bolt, the lower surface of the driving plate is rotatably connected with an adjusting knob, the left and right side surfaces of the driving plate is respectively fixedly connected with a displacement plate, the displacement plate is provided with an adjusting assembly, the adjusting assembly comprises two connecting rods, the two connecting rods are rotatably connected to the lower surface of the two displacement plates, the L-shaped mounting rod is provided with a cross bar, the lower end of the connecting rod away from the displacement plate is rotatably connected with the cross bar, the upper surface of the adjusting knob is fixedly connected with a rotating shaft, and the driving plate is provided with a driving cavity.

[0006] By adopting the above technical scheme, the movement of the cross rods can be pushed by the movement of the adjusting knob and the displacement plate, so that the height of the first roof and the second roof can be adjusted simultaneously by the two cross rods, the overall operation is relatively convenient, and the stability during the adjustment process can be ensured.

[0007] Preferably, the upper end of the rotating shaft penetrates into the interior of the driving cavity, the upper end of the rotating shaft is fixedly connected with a first bevel gear, the left and right surfaces of the driving plate are respectively provided with telescopic grooves, two displacement plates are respectively and slidably connected in the interiors of the two telescopic grooves, the inner wall of the driving cavity is rotatably connected with a bidirectional threaded rod, the outer surface of the bidirectional threaded rod is sleeved with a second bevel gear, the second bevel gear is meshedly connected with the first bevel gear, and the left and right ends of the bidirectional threaded rod rotatably penetrate into the interiors of the two telescopic grooves.

[0008] By adopting the above technical scheme, the two displacement plates can be moved simultaneously, the adjustment is convenient, and the adjusting knob is located directly below the first roof and the second roof, so that the adjustment can be completed without leaving the lower side of the first roof and the second roof, and the problem that the height is difficult to adjust in rainy days is avoided.

[0009] Preferably, the two displacement plates are respectively and threadedly sleeved at the opposite threads of the two sections of the bidirectional threaded rod, the upper surface of the first roof is fixedly connected with two mounting plates, a connecting plate is rotatably connected between the two mounting plates, the connecting plate is fixedly connected with the upper surface of the second roof, the right surface of the second roof is fixedly connected with a buckle, the left surface of the first roof is fixedly connected with a mounting bolt, and the outer surface of the mounting bolt is sleeved with a nut.

[0010] By adopting the above technical scheme, the mounting bolt and the nut can be used for fixing after folding, so that the problem of loosening after folding is avoided.

[0011] Compared with the prior art, the utility model has the advantages that:

[0012] 1. The folding tent with a photovoltaic panel can drive the four corners of the first roof and the second roof to move synchronously by the rotation of the adjusting knob, thereby greatly simplifying the height adjustment process, enabling a single person to conveniently operate, and ensuring that the heights of the four corners are consistent after adjustment.

[0013] 2. The folding tent with a photovoltaic panel can set the rotating connection points of the first roof and the second roof on the upper side, so that the first roof and the second roof can be folded together when folding, thereby greatly reducing the space occupied after folding. BRIEF DESCRIPTION OF DRAWINGS

[0014] The utility model further illustrates below combining with the drawings and examples:

[0015] Figure 1 It is the structure schematic drawing of a folding tent with photovoltaic panel of the utility model;

[0016] Figure 2 It is the driving board schematic drawing of the utility model;

[0017] Figure 3 It is the section view schematic drawing of the adjusting sleeve of the utility model;

[0018] Figure 4 It is the section view schematic drawing of the driving board of the utility model;

[0019] Figure 5 It is the first folding schematic drawing of the utility model;

[0020] Figure 6 It is the second folding schematic drawing of the utility model;

[0021] Figure 7 It is Figure 4 The enlarged view of A in the middle.

[0022] Reference signs: 1, first roof; 2, second roof; 3, first support rod; 4, adjusting sleeve; 5, stabilizing plate; 6, L-shaped mounting rod; 7, mounting block; 8, sliding groove; 9, driving board; 10, fixed bolt;

[0023] 11, displacement plate; 12, connecting rod; 13, cross rod; 14, rotating shaft; 15, driving cavity; 16, first bevel gear; 17, telescopic groove; 18, bidirectional screw rod; 19, second bevel gear; 20, mounting plate;

[0024] 21, connecting plate; 22, buckle; 23, mounting bolt; 24, nut; 25, adjusting knob. DETAILED DESCRIPTION

[0025] This part will describe the specific embodiment of the utility model in detail, and the preferred embodiment of the utility model is shown in the drawings, and the role of the drawings is to supplement the description of the text part with graphics, so that people can intuitively and visually understand each technical feature and overall technical scheme of the utility model, but it cannot be understood as the limitation of the protection scope of the utility model.

[0026] Please refer to Figures 1-7The utility model provides a technical scheme: a folding tent with photovoltaic board, including first roof 1 and second roof 2, the upper side surface of first roof 1 and second roof 2 all is provided with the solar panel for generating electricity, the lower side surface of first roof 1 and second roof 2 all rotationally connects with first support rod 3, the outer surface of first support rod 3 is slidably provided with the adjusting sleeve 4 for supporting, the lower end of adjusting sleeve 4 is fixedly connected with the stability plate 5 of lifting stability, the surface of adjusting sleeve 4 is fixedly connected with the L-shaped mounting rod 6 for supporting, the lower side surface of first roof 1 and second roof 2 is fixedly connected with two mounting blocks 7 for structure installation respectively, the side surface of two mounting blocks 7 close is set up with the sliding slot 8 respectively, the sliding connection for driving mechanism installation of driving plate 9 is set up between two mounting blocks 7, driving plate 9 is slidably connected in the inside of sliding slot 8, mounting block 7 is provided with the fixed bolt 10 for fixing driving plate 9, when installing driving plate 9, can slide into the inside of sliding slot 8 by driving plate 9, and is fixed by fixed bolt 10, the lower side surface of driving plate 9 is rotationally connected with the adjusting knob 25 for user control, the left and right side surfaces of driving plate 9 are fixedly connected with displacement plate 11 respectively, and displacement plate 11 is provided with adjusting assembly, single person can conveniently operate simultaneously, and the height of four corners is consistent after adjusting.

[0027] Adjusting assembly includes two connecting rods 12 for power transmission, two connecting rods 12 are rotationally connected on the lower side surface of two displacement plates 11, L-shaped mounting rod 6 is provided with cross bar 13, displacement plate 11 movement will drive connecting rod 12 movement simultaneously, because cross bar 13 is limited the movement track by L-shaped mounting rod 6, so that connecting rod 12 movement lifts first roof 1 and second roof 2, the lower end of connecting rod 12 away from displacement plate 11 is rotationally connected with cross bar 13, the upper side surface of adjusting knob 25 is fixedly connected with rotating shaft 14, the inside of driving plate 9 is set up with drive cavity 15, the upper end of rotating shaft 14 rotationally penetrates into the inside of drive cavity 15, the upper end of rotating shaft 14 is fixedly connected with the first bevel gear 16 for power transmission, when adjusting the height of first roof 1 and second roof 2, can rotate adjusting knob 25 manually or rotate adjusting knob 25 by hexagonal tool, adjusting knob 25 will drive first bevel gear 16 rotation when rotating with rotating shaft 14, the left and right side surfaces of driving plate 9 are set up with telescopic groove 17 for displacement plate 11 movement.

[0028] Two displacement plates 11 are respectively slidably connected inside two telescopic grooves 17, the inner wall of the driving cavity 15 is rotationally connected with a bidirectional threaded rod 18 for power transmission, when the first bevel gear 16 rotates, it will synchronously cooperate with the second bevel gear 19 to drive the bidirectional threaded rod 18 to rotate, since the movement trajectories of the two displacement plates 11 are limited by the telescopic grooves 17, when the bidirectional threaded rod 18 rotates, it will synchronously drive the two displacement plates 11 to move horizontally in opposite directions, the outer surface of the bidirectional threaded rod 18 is sleeved with a second bevel gear 19 for power transmission, the second bevel gear 19 is meshingly connected with the first bevel gear 16, the left and right ends of the bidirectional threaded rod 18 are respectively rotationally penetrated into the interiors of the two telescopic grooves 17, the two displacement plates 11 are respectively threadedly sleeved at the opposite threads of the two sections of the bidirectional threaded rod 18, the upper side surface of the first ceiling 1 is fixedly connected with two mounting plates 20, the two mounting plates 20 are rotationally connected with a connecting plate 21, the connecting plate 21 is fixedly connected with the upper side surface of the second ceiling 2, the right side surface of the second ceiling 2 is fixedly connected with a buckle 22 for folding connection, the left side surface of the first ceiling 1 is fixedly connected with a mounting bolt 23, the outer surface of the mounting bolt 23 is sleeved with a nut 24, after folding, the mounting bolt 23 enters the interior of the buckle 22, at this time, it can be fixed through the nut 24, which greatly reduces the space occupied after folding.

[0029] The solar panel described in the paper is also provided with an inverter, an energy storage system, electrical accessories (a circuit breaker, a distribution box, a connecting wire), and a meter, etc. Since they are mature structures in the prior art, they will not be described in detail here.

[0030] Working principle: when adjusting the height of the first ceiling 1 and the second ceiling 2, the adjusting knob 25 can be manually rotated or rotated by a hexagonal tool, the rotating power brought by the adjusting knob 25 is transmitted to the first bevel gear 16 through the rotating shaft 14, and then transmitted to the bidirectional threaded rod 18 through the meshing of the first bevel gear 16 and the second bevel gear 19. Since the two displacement plates 11 are respectively threadedly sleeved at the opposite threads of the two sections of the bidirectional threaded rod 18, and are radially constrained by the telescopic grooves 17, the rotation of the bidirectional threaded rod 18 forces the two displacement plates 11 to produce mirror-synchronous linear displacement in the horizontal direction. The horizontal displacement is converted into a vertical pushing force or pulling force on the cross rod 13 through the rotating support action of the connecting rod 12, thereby driving the adjusting sleeve 4 to produce precise synchronous vertical lifting action on the first support rod 3. When installing the driving plate 9, the driving plate 9 can be slid into the interior of the sliding groove 8 and fixed by the fixing bolt 10, at the same time, the cross rod 13 is placed on the L-shaped mounting rod 6, after folding, the mounting bolt 23 enters the interior of the buckle 22, at this time, it can be fixed through the nut 24.

[0031] The utility model embodiment makes the detailed explanation in combination with the drawing, but the utility model is not limited to the above -mentioned embodiment, still can make various changes in the knowledge range of ordinary skill in the art person who has possessed under the premise of not departing from the utility model tenet.

Claims

1. A folding tent with photovoltaic panels, comprising a first canopy (1) and a second canopy (2), characterized in that: Solar panels are provided on the upper surfaces of both the first canopy (1) and the second canopy (2). A first support rod (3) is rotatably connected to the lower surfaces of both the first canopy (1) and the second canopy (2). An adjusting sleeve (4) is slidably fitted on the outer surface of the first support rod (3). A stabilizing plate (5) is fixedly connected to the lower end of the adjusting sleeve (4). An L-shaped mounting rod (6) is fixedly connected to the surface of the adjusting sleeve (4). Two mounting blocks are fixedly connected to the lower surfaces of the first canopy (1) and the second canopy (2) respectively. (7) Slide grooves (8) are respectively provided on the adjacent side surfaces of the two mounting blocks (7). A drive plate (9) is slidably connected between the two mounting blocks (7). The drive plate (9) is slidably connected inside the slide groove (8). A fixing bolt (10) is provided on the mounting block (7). An adjustment knob (25) is rotatably connected to the lower surface of the drive plate (9). Displacement plates (11) are respectively fixedly connected to the left and right sides of the drive plate (9). An adjustment component is provided on the displacement plate (11). The adjustment assembly includes two connecting rods (12), which are rotatably connected to the lower surfaces of two displacement plates (11). A crossbar (13) is provided on the L-shaped mounting rod (6). The lower end of the connecting rod (12) away from the displacement plate (11) is rotatably connected to the crossbar (13). A rotating shaft (14) is fixedly connected to the upper surface of the adjustment knob (25). A driving cavity (15) is provided inside the drive plate (9). The upper end of the rotating shaft (14) rotates through into the interior of the drive cavity (15). The upper end of the rotating shaft (14) is fixedly connected to the first bevel gear (16). The left and right sides of the drive plate (9) are respectively provided with telescopic grooves (17). The two displacement plates (11) are respectively slidably connected inside the two telescopic grooves (17). The inner wall of the drive cavity (15) is rotatably connected to a bidirectional threaded rod (18), and a second bevel gear (19) is sleeved on the outer surface of the bidirectional threaded rod (18). The second bevel gear (19) meshes with the first bevel gear (16), and the left and right ends of the bidirectional threaded rod (18) rotate through the interior of the two telescopic grooves (17).

2. A folding tent with a photovoltaic panel according to claim 1, characterized in that: The two displacement plates (11) are respectively threaded onto the two opposite threads of the bidirectional threaded rod (18), and two mounting plates (20) are fixedly connected to the upper surface of the first canopy (1).

3. A folding tent with a photovoltaic panel according to claim 2, characterized in that: A connecting plate (21) is rotatably connected between the two mounting plates (20), and the connecting plate (21) is fixedly connected to the upper surface of the second canopy (2).

4. A folding tent with a photovoltaic panel according to claim 3, characterized in that: The right side surface of the second canopy (2) is fixedly connected with a buckle (22), and the left side surface of the first canopy (1) is fixedly connected with a mounting bolt (23), and the outer surface of the mounting bolt (23) is fitted with a nut (24).