Modularized landscape gallery frame
Through modular design and innovative connecting plate components, the problems of complex installation and difficult modification of existing landscape pergolas have been solved, achieving rapid assembly, waterproofing, stability, and adaptability to different terrains.
Patent Information
- Application Number
- CN202520545822.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-26
- Publication Date
- 2026-02-24
- Estimated Expiration
- 2035-03-26
AI Technical Summary
The existing landscape pergola is complex to install and difficult to adjust, difficult to modify later, has poor waterproofing, and is not easy to expand and maintain.
Featuring a modular design, including a base, telescopic rod, and top plate, it allows for quick assembly and disassembly via connecting plate assemblies. The addition of connecting slots, grooves, and protrusions enhances waterproofing. The telescopic rod is height-adjustable, and the mounting base can be fitted with a seat and planting box.
It enables rapid assembly and disassembly of the pergola structure, improves waterproofing and stability, facilitates expansion and maintenance, adapts to different terrains, and enhances practicality.
Smart Images

Figure CN223937316U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of landscape pergola technology, specifically relating to a modular landscape pergola. Background Technology
[0002] Landscape pergolas are architectural structures used for visitors to rest and for adding scenic beauty. With their natural and lifelike appearance, they add a rich humanistic touch to squares, parks, and residential areas.
[0003] Existing landscape pergolas are usually assembled into a whole by connecting and installing components such as columns, beams, slabs, web members, crossbeams, uprights, diagonal members, supports, pillars, and joints. Their size and scale need to be designed and planned in advance, and the on-site construction process is cumbersome and complicated. At the same time, it is difficult to adjust and modify the overall size of the pergolas later, which makes them unsuitable for practical use. Utility Model Content
[0004] The present invention aims to provide a modular landscape pergola to solve the problem mentioned above that existing landscape pergolas are not conducive to practical use.
[0005] To achieve the above objectives, this utility model provides the following technical solution: a modular landscape pergola, comprising...
[0006] The modular components are set in pairs in multiple sets. The modular components include a base, a telescopic rod, and a top plate. The telescopic rod is fixed to the base, and the top plate is fixed to the telescopic rod. The side wall of the top plate has a connecting groove.
[0007] The connecting plate assembly includes a connecting horizontal plate and a connecting vertical plate. The length direction of the connecting horizontal plate is perpendicular to the length direction of the connecting vertical plate, and the connecting horizontal plate and the connecting vertical plate are respectively adapted to the connecting groove. The bottom of the top plate is fitted with a connecting bolt, and the end of the connecting bolt can be threaded into the connecting horizontal plate and the connecting vertical plate.
[0008] The principle and effects of this technical solution:
[0009] 1. By designing the base, telescopic rod, and top plate as a single module, and then connecting multiple modules via connecting plates, a pergola structure can be quickly and easily constructed. Each module is a single unit, making it easy to identify and position during installation (avoiding the risk of mixing up components compared to numerous shafts and columns). Furthermore, the modular design allows for subsequent maintenance and replacement of the pergola structure, and it can also be expanded by adding components, resulting in greater practicality and simpler operation. Additionally, each top plate corresponds to one telescopic rod, meaning that removing only one module does not affect the stability of the others.
[0010] 2. By setting up connecting grooves, connecting horizontal plates, and connecting vertical plates, the complexity of the splicing joints between adjacent top plates can be increased by inserting connecting horizontal plates or connecting vertical plates. This prevents rainwater from directly penetrating through the splicing joints to the inner side of the pergola structure, thus improving the waterproofing effect. Furthermore, by connecting bolts to connect the top plates and connecting horizontal or vertical plates, adjacent top plates can form a whole, improving stability.
[0011] The present invention is further configured such that: the top surface of the middle part of the connecting longitudinal plate has a groove, and the two ends of the connecting horizontal plate have protrusions respectively. The protrusions slide in the groove. The length of the protrusion along the length direction of the connecting horizontal plate is half the length of the groove along the length direction of the connecting horizontal plate. The top surface of the protrusion is flush with the top surface of the connecting horizontal plate. The length of the connecting longitudinal plate is twice the length of the top plate along the length direction of the connecting longitudinal plate.
[0012] The principle and effect of this technical solution: By setting the grooves and protrusions, the splicing seams at the joints of multiple (four top plates splicing) top plates can be covered by the protrusions connecting the horizontal plates and the grooves connecting the vertical plates, thereby improving the waterproofing ability at the splicing seams. At the same time, by making the length of the connecting vertical plate twice the longitudinal length of the top plate, the amount of connecting vertical plates used can be reduced, that is, the installation is simplified and it is beneficial to practical use.
[0013] The present invention is further provided that: a mounting base is fixed on the outer wall of the telescopic rod.
[0014] The principle and effect of this technical solution: The installation base allows users to design and install structures that are compatible with the installation base according to actual conditions, such as seats, planting boxes, rain shields, etc.
[0015] The present invention is further configured to include a seat and a planting box that are detachably connected to the mounting base.
[0016] The principle and effect of this technical solution: By setting up seats and planting boxes, the landscape pergola can provide pedestrians with a place to rest and enjoy the greenery up close.
[0017] The present invention is further configured such that: the telescopic rod includes a lower telescopic rod, an upper telescopic rod, and a control component; the lower telescopic rod has a movable cavity on its inner side; the upper telescopic rod is slidably fitted with the movable cavity; the control component includes a control screw, a driving gear, a driven gear, and a connecting shaft; the control screw is rotatably installed in the movable cavity and threadedly inserted into the upper telescopic rod; the driven gear is fixedly mounted on the control screw; the connecting shaft is rotatably connected to the side wall of the movable cavity; the driving gear is fixedly mounted on one end of the connecting shaft, and the driving gear meshes with the driven gear; both the driving gear and the driven gear are helical gears; and the other end of the connecting shaft has an internal hexagonal hole.
[0018] The principle and effect of this technical solution: By setting the internal hexagonal hole, the modular components can be controlled by the external hexagonal rod during use. That is, by matching the external hexagonal rod with the internal hexagonal hole, the connecting shaft can be rotated. The rotation of the connecting shaft drives the drive gear, which in turn drives the driven gear, which in turn drives the control screw. The telescopic upper rod and the control screw are threaded together, and the cross-section of the movable cavity is not circular, meaning that the telescopic upper rod cannot rotate relative to the telescopic lower rod. Therefore, the rotation of the control screw can only drive the telescopic upper rod to slide up and down along the movable cavity, thereby changing the height of the top plate. In other words, the overall height of the pergola structure can be adjusted according to actual usage, and when the pergola structure is subsequently expanded, installation and use can be carried out regardless of the unevenness of the bottom surface.
[0019] The present invention is further configured such that: the drive gear and the connecting shaft are provided in two sets, and are symmetrical about the control screw.
[0020] The principle and effect of this technical solution: By setting up two driving gears and a connecting shaft, the force on the driven gear is more even, and the operator's control position is more flexible.
[0021] The present invention is further configured such that: the control component also includes a limiting block, the control screw is a bidirectional screw, the limiting block is threadedly fitted on the control screw, the limiting block is slidably engaged with the movable cavity, and the driven gear is located between the bottom edge of the telescopic upper rod and the top edge of the limiting block, and the distance between the bottom edge of the limiting block and the bottom surface of the movable cavity is less than the distance between the bottom edge of the telescopic upper rod and the top edge of the telescopic lower rod.
[0022] The principle and effect of this technical solution: By setting the limit block and making the control screw a bidirectional screw, the rotation of the control screw will synchronously drive the limit block to move. Through the cooperation between the limit block and the movable cavity, the stability of the control screw is improved. Furthermore, by limiting the stroke of the limit block, the stroke of the telescopic upper rod is restricted, preventing the telescopic upper rod from slipping out of the telescopic lower rod, thus improving the stability of the device. Attached Figure Description
[0023] Figure 1 This is the front view of the present invention;
[0024] Figure 2 for Figure 1 A partial exploded structure diagram;
[0025] Figure 3 for Figure 2 Enlarged view of the telescopic rod;
[0026] Figure 4 for Figure 1 Side view structural diagram;
[0027] Figure 5 for Figure 4 Enlarged view of point A in the image. Detailed Implementation
[0028] The present invention will now be described in further detail with reference to the accompanying drawings and embodiments:
[0029] The reference numerals in the accompanying drawings include
[0030] 110. Base; 120. Seat; 130. Planting box; 140. Mounting bracket;
[0031] 210. Telescopic rod; 220. Lower telescopic rod; 221. Movable cavity; 230. Upper telescopic rod; 240. Control screw; 250. Driven gear; 260. Driven gear; 270. Connecting shaft; 271. Socket hexagonal hole; 280. Limiting block;
[0032] 310. Top plate; 311. Connecting groove;
[0033] 410. Connecting horizontal plate; 411. Protrusion; 420. Connecting vertical plate; 421. Groove; 430. Connecting bolt.
[0034] Example:
[0035] As attached Figure 1-5 As shown, this utility model discloses a modular landscape pergola, including modular components and connecting plate assemblies. Multiple sets of modular components are arranged in pairs. Each set of modular components includes a base 110, a telescopic rod 210, and a top plate 310. The telescopic rod 210 is fixed to the base 110, and the top plate 310 is fixed to the telescopic rod 210. A connecting groove 311 is provided on the side wall of the top plate 310. The base 110 and telescopic rod 210 can be prefabricated as a whole in the factory or fixed on-site. Specific fixing methods include welding, bolt fixing, etc. The top plate 310 and telescopic rod 210 are assembled on-site. First, the top plate 310 and telescopic rod 210 are assembled, and then the modular components are connected to adjacent modular components through the connecting plate assemblies. The connecting groove 311 is located in the middle of the side wall of the top plate 310, and all four side walls of the top plate 310 have connecting grooves 311 that are interconnected.
[0036] Multiple evenly distributed mounting seats 140 are fixed on the outer wall of the telescopic rod 210. The mounting seats 140 are detachably connected to the seat 120 and the planting box 130. The mounting seats 140 can also be used for the installation and connection of rain shields, etc., specifically by plugging them in.
[0037] in, Figure 1 and Figure 2 The illustration shows various planting boxes 130 of different sizes, and there may also be other planting boxes 130 of different sizes that can be adapted to the mounting base 140.
[0038] The telescopic rod 210 includes a lower telescopic rod 220, an upper telescopic rod 230, and a control component. The lower telescopic rod 220 has a movable cavity 221 with a non-circular cross-section (square, irregular, triangular, etc.). The upper telescopic rod 230 is slidably engaged with the movable cavity 221. The control component includes a control screw 240, a drive gear 260, a driven gear 250, and a connecting shaft 270. The control screw 240 is rotatably installed in the movable cavity 221 and threadedly inserted into the upper telescopic rod 230. The driven gear 250 is fixedly mounted on the control screw 240. The connecting shaft 270 is rotatably connected to the side wall of the movable cavity 221. The drive gear 260 is fixedly mounted on one end of the connecting shaft 270 and meshes with the driven gear 250. Both the drive gear 260 and the driven gear 250 are helical gears. The other end of the connecting shaft 270 has an internal hexagonal hole 271. Two sets of drive gears 260 and connecting shafts 270 are provided together and are symmetrical about the control screw 240. The control component also includes a limit block 280. The control screw 240 is a bidirectional screw. The limit block 280 is threaded onto the control screw 240. The limit block 280 is slidably engaged with the movable cavity 221. The driven gear 250 is located between the bottom edge of the telescopic upper rod 230 and the top edge of the limit block 280. The distance between the bottom edge of the limit block 280 and the bottom surface of the movable cavity 221 is less than the distance between the bottom edge of the telescopic upper rod 230 and the top edge of the telescopic lower rod 220.
[0039] The connecting plate assembly includes a connecting horizontal plate 410 and a connecting vertical plate 420. The length direction of the connecting horizontal plate 410 is perpendicular to the length direction of the connecting vertical plate 420, and both the connecting horizontal plate 410 and the connecting vertical plate 420 are adapted to the connecting groove 311. Multiple connecting bolts 430 are inserted into the bottom of the top plate 310, and the ends of the multiple connecting bolts 430 can be threaded into the connecting horizontal plate 410 and the connecting vertical plate 420 respectively. The top surface of the middle part of the connecting vertical plate 420 has a groove 421, and both ends of the connecting horizontal plate 410 have protrusions 411. The protrusions 411 slide in the groove 421, and the length of the protrusions 411 along the length direction of the connecting horizontal plate 410 is half the length of the groove 421 along the length direction of the connecting horizontal plate 410 (i.e., the length of the protrusions 411 in the groove 421 is half the length of the groove 421 along the length direction of the connecting horizontal plate 410). Figure 1 The length of the horizontal plate 420 is half the length of the groove 421 in the horizontal direction. The top surface of the protrusion 411 is flush with the top surface of the connecting horizontal plate 410. The length of the connecting vertical plate 420 is twice the length of the top plate 310 along the length direction of the connecting vertical plate 420 (that is, the length of the connecting vertical plate 420 in the longitudinal direction is twice the length of the top plate 310 in the longitudinal direction, wherein the length of the connecting horizontal plate 410 plus the two protrusions 411 in the horizontal direction is the same as the length of the top plate 310 in the horizontal direction).
[0040] Among them, insert and sliding insert are mating bodies with holes, the cross section of the shaft or rod matches the hole, and the shaft or rod can slide relative to the hole. Threaded insert is a hole with threads, the shaft or rod is threaded, and the shaft or rod is connected to the mating body by screwing. Detachable installation can be by bolt thread connection or bolt and nut connection, etc., depending on what can be actually achieved.
[0041] The above descriptions are merely embodiments of this utility model. Commonly known technical solutions or characteristics are not described in detail here. It should be noted that those skilled in the art can make various modifications and improvements without departing from the technical solution of this utility model. These modifications and improvements should also be considered within the scope of protection of this utility model, and will not affect the effectiveness of the implementation of this utility model or the practicality of the patent. The scope of protection claimed in this application should be determined by the content of its claims, and the specific embodiments described in the specification can be used to interpret the content of the claims.
Claims
1. A modular landscape pergola, characterized in that: include The modular components are arranged in pairs in multiple sets. Each modular component includes a base, a telescopic rod, and a top plate. The telescopic rod is fixed to the base, and the top plate is fixed to the telescopic rod. The side wall of the top plate is provided with a connecting groove. The connecting plate assembly includes a connecting horizontal plate and a connecting vertical plate. The length direction of the connecting horizontal plate is perpendicular to the length direction of the connecting vertical plate, and the connecting horizontal plate and the connecting vertical plate are respectively adapted to the connecting groove. A connecting bolt is inserted into the bottom of the top plate, and the end of the connecting bolt can be threaded into the connecting horizontal plate and the connecting vertical plate.
2. A modular landscape pergola as described in claim 1, characterized in that: The top surface of the middle part of the connecting longitudinal plate has a groove, and the two ends of the connecting transverse plate have protrusions. The protrusions slide in the groove. The length of the protrusion along the length of the connecting transverse plate is half the length of the groove along the length of the connecting transverse plate. The top surface of the protrusion is flush with the top surface of the connecting transverse plate. The length of the connecting longitudinal plate is twice the length of the top plate along the length of the connecting longitudinal plate.
3. A modular landscape pergola as described in claim 1, characterized in that: A mounting base is fixed on the outer wall of the telescopic rod.
4. A modular landscape pergola as described in claim 3, characterized in that: It also includes a seat and a planting box that are detachably connected to the mounting base.
5. A modular landscape pergola as described in claim 1, characterized in that: The telescopic rod includes a lower telescopic rod, an upper telescopic rod, and a control component. The lower telescopic rod has a movable cavity on its inner side, and the upper telescopic rod slides into the movable cavity. The control component includes a control screw, a drive gear, a driven gear, and a connecting shaft. The control screw is rotatably installed in the movable cavity and threadedly inserted into the upper telescopic rod. The driven gear is fixedly mounted on the control screw. The connecting shaft is rotatably connected to the side wall of the movable cavity. The drive gear is fixedly mounted on one end of the connecting shaft, and the drive gear meshes with the driven gear. Both the drive gear and the driven gear are helical gears. The other end of the connecting shaft has an internal hexagonal hole.
6. A modular landscape pergola as described in claim 5, characterized in that: The drive gear and the connecting shaft are arranged in two sets, and are symmetrical about the control screw.
7. A modular landscape pergola as described in claim 5, characterized in that: The control component also includes a limiting block. The control screw is a bidirectional screw. The limiting block is threaded onto the control screw. The limiting block slides into the movable cavity. The driven gear is located between the bottom edge of the telescopic upper rod and the top edge of the limiting block. The distance between the bottom edge of the limiting block and the bottom surface of the movable cavity is less than the distance between the bottom edge of the telescopic upper rod and the top edge of the telescopic lower rod.