Assembled landscape gallery frame
Through the design of assembled landscape pergolas, using hyperbolic rotating support columns and detachable connection structures, the problems of complex construction and difficulty in moving traditional pergolas are solved, and rapid installation, disassembly and appearance changes are achieved, thereby improving construction efficiency and landscape effects.
Patent Information
- Application Number
- CN202422993327.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-04
- Publication Date
- 2025-10-24
- Estimated Expiration
- 2034-12-04
AI Technical Summary
Traditional pergolas are complex to construct, take a long time to build, and are difficult to move or change in appearance, resulting in material waste and a significant impact on the landscape.
The assembled landscape pergola adopts hyperbolic rotating support columns and detachable connection structure, combined with stainless steel covering plates and ceiling modules, to achieve rapid assembly and disassembly, reducing the impact of construction on the landscape.
It improves the supporting strength and structural stability of the pergola, reduces the construction workload, lowers costs, facilitates reconstruction and demolition, and enhances the flexibility and aesthetics of the landscape.
Smart Images

Figure CN223468855U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the field of landscape architecture, and in particular to an assembled landscape gallery. Background Art
[0002] With the development of social economy, people enjoy the higher living standards brought by economic development, but also bear greater life pressure. Ecological landscape has become a good place to relieve the psychological pressure brought by the fast-paced modern life.
[0003] A pergola is an open garden building with a roof above the columns. It provides shade and rain protection for pedestrians, allows for a rest, guides the flow of people and sight, and connects main buildings or landscape nodes. It can be combined with pavilions, corridors, waterside pavilions, etc. to form a beautiful garden building complex, which can add a strong humanistic atmosphere to the landscape area and give people a beautiful enjoyment.
[0004] Traditional landscape pergolas are often constructed on-site using materials such as wood, metal, and concrete. This requires complex on-site construction processes, long construction periods, and significant impacts on the landscape. Once completed, landscape pergolas can only maintain a fixed structural format in a fixed location. Changing their appearance or moving them requires destroying the original structure and rebuilding it, resulting in a large workload and significant waste of building materials. Utility Model Content
[0005] In order to improve the convenience of pergola construction and reconstruction, the present application provides an assembled landscape pergola.
[0006] The assembled landscape gallery provided in this application adopts the following technical solutions:
[0007] A assembled landscape gallery comprises a support column and a ceiling module, wherein the support column comprises a column body, a foundation mounting structure and a ceiling connection structure, the column body is arranged in a hyperbolic rotation shape, the foundation mounting structure is arranged at the bottom of the column body, and the ceiling connection structure is arranged at the top of the column body, the ceiling module comprises a column ceiling and a connection ceiling, the bottom of the column ceiling is provided with a support column connection structure adapted to the ceiling connection structure, the side edge is provided with a side connection structure, the connection ceiling is provided with a splicing edge adapted to the column ceiling, the splicing edge is provided with a column ceiling connection structure adapted to the side connection structure, the connection ceiling is spliced between the column ceilings, and the column ceiling is spliced at the top of the support column.
[0008] By adopting the technical scheme, the supporting column in hyperbolic rotary body shape can form more stable support to the ceiling with smaller weight, and the supporting strength and structural stability of the gallery frame are improved; the ceiling connecting structure and the supporting column connecting structure which are matched with each other, and the side joint structure and the column-ceiling connecting structure which are matched with each other can realize quick assembly and disassembly between the ceiling, the column-ceiling and the supporting column, facilitate the construction, reconstruction and disassembly of the gallery frame, reduce the influence of construction on the landscape, and reduce the construction cost.
[0009] In one specific implementation, the column body includes a vertical column, a supporting rod, a circular rail, a longitudinal rail, a square steel rail and a stainless steel cladding, the vertical column is arranged in the middle of the column body, one end of the supporting rod is connected with the vertical column, and the other end is connected with the circular rail, the longitudinal rail is fixed on the outer sidewall of the circular rail at intervals, and the stainless steel cladding is fixed on the longitudinal rail; the foundation mounting structure includes a vertical column embedded part, a vertical column mounting bottom plate, a rail embedded part and a rail mounting bottom plate, the vertical column embedded part and the rail embedded part are respectively cast at the set positions on the ground, the vertical column mounting bottom plate is fixed at the lower end of the vertical column and detachably connected with the vertical column embedded part, the rail mounting bottom plate is fixedly connected with the longitudinal rail and detachably connected with the rail embedded part, and the ceiling connecting structure is fixed at the top end of the vertical column.
[0010] By adopting the technical scheme, the supporting column in hyperbolic rotary body shape can form more stable support to the ceiling with smaller weight, and the supporting strength and structural stability of the gallery frame are improved; the ceiling connecting structure and the supporting column connecting structure which are matched with each other, and the side joint structure and the column-ceiling connecting structure which are matched with each other can realize quick assembly and disassembly between the ceiling, the column-ceiling and the supporting column, facilitate the construction, reconstruction and disassembly of the gallery frame, reduce the influence of construction on the landscape, and reduce the construction cost.
[0011] In one specific implementation, the support rods are divided into groups, the support rods of different groups are connected to different axial positions of the column, the support rods of the same group are connected to different circumferential positions of the column, each group of the support rods is connected to the same circular keel, and the diameters of the circular keels connected to different positions of the column gradually increase from the middle to the ends of the column; the stainless steel cover plate is spliced from multiple plates, and a fluorocarbon paint coating layer is coated on the outer side of the stainless steel cover plate.
[0012] By using the above technical solution, the support rods arranged at different circumferential positions of the column can support different positions on the inner side of the circular keel, improving the position stability of the circular keel; the circular keels with diameters gradually increasing from the middle to the ends of the column can be supported inside the stainless steel cover plate, which is conducive to forming a hyperboloid structure of the support column, improving the stress stability and appearance of the support column; the stainless steel cover plate spliced from multiple plates can make the forming of the stainless steel cover plate more convenient and reduce the material requirements for the stainless steel plate; the fluorocarbon paint coating layer coated on the outer side of the stainless steel cover plate can further improve the weather resistance of the support column, ensuring the appearance and support strength of the support column during long-term use.
[0013] In one specific implementation, the ceiling connection structure includes a spliced top plate, a top plate insertion column, a keel top support, and a keel insertion column. The spliced top plate is fixed to the top of the column, the top plate insertion column is fixed to the top surface of the spliced top plate, one end of the keel top support is fixed to the peripheral sidewall of the spliced top plate, and the other end is fixed to the top of the longitudinal keel, and the keel insertion column is fixed to the outer end of the keel top support.
[0014] By using the above technical solution, the top plate insertion column fixed to the top surface of the spliced top plate can form a splicing connection with the column ceiling, and the column can provide sufficient support force to the column ceiling to form a reliable connection; the keel insertion column arranged above the top of the longitudinal keel can be connected to the column ceiling in a larger range around the column, improving the stability of the support of the column ceiling.
[0015] In one specific implementation, the support column connection structure includes a ceiling splicing plate, a column insertion port, and a keel insertion port. The ceiling splicing plate is arranged in the middle of the bottom surface of the column ceiling, the column insertion port is arranged on the ceiling splicing plate opposite to the top plate insertion column, and the keel insertion port is arranged on the column ceiling around the ceiling splicing plate and corresponds to the keel insertion column.
[0016] By adopting the technical scheme, the support force of the stand column can be dispersed to the column ceiling by the ceiling splicing plate arranged at the middle of the bottom surface of the column ceiling, and the force bearing capacity of the column ceiling is enhanced; the stand column insertion interface arranged on the ceiling splicing plate and the keel insertion interface arranged on the column ceiling around the ceiling splicing plate can be conveniently inserted and installed with the top plate insertion column and the keel insertion column, and the column ceiling is spliced at the top of the stand column.
[0017] In a specific embodiment, the top plate insertion column and the keel insertion column are both provided with an insertion column clamping groove, the ceiling splicing plate is provided with a top plate clamping mechanism, the top plate clamping mechanism comprises a top plate clamping disc and a clamping disc driving motor, the top plate clamping disc is rotationally connected with the ceiling splicing plate, the clamping disc driving motor is drivingly connected with the top plate clamping disc, the top plate clamping disc is provided with a plurality of top plate clamping holes matched with the insertion column clamping groove, the column ceiling corresponding to the keel insertion interface is provided with a keel clamping mechanism, the keel clamping mechanism comprises a clamping strip and an inclined top rod, the clamping strip is provided with a top rod push hole and a keel clamping hole corresponding to the keel insertion interface, the clamping strip is slidingly connected on the column ceiling and can slide under the traction of a spring, the inclined top rod is slidingly arranged on the column ceiling and the top inclined surface is inserted into the top rod push hole, and the inclined top rod is provided with a reset spring.
[0018] By adopting the technical scheme, the stand column clamping groove on the top plate insertion column and the keel insertion column can be clamped in the top plate clamping hole and the keel clamping hole on the top plate clamping disc and the clamping strip respectively, and stable connection between the column ceiling and the main body is formed; the clamping disc driving motor drivingly connected with the top plate clamping disc can drive the top clamping disc to rotate, so that the top plate clamping hole is opposite to the stand column insertion interface, and the top plate insertion column and the stand column insertion interface are separated; the inclined top rod slidingly arranged on the column ceiling can slide by pushing the inclined top rod, and the clamping strip is pushed to slide, so that the keel clamping hole is opposite to the keel insertion interface, and the keel insertion column and the keel insertion interface are separated.
[0019] In a specific embodiment, the top surface of the spliced top plate is further provided with a power supply insertion column, a corresponding position on the ceiling splicing plate is further provided with a power supply insertion interface, the column ceiling is further provided with an illuminating hole, and light-transmitting lampshades are arranged at both ends of the illuminating hole.
[0020] By using the above technical scheme, the power supply is transmitted into the column canopy by plugging between the power supply plug-in column on the spliced roof and the power supply plug-in interface on the spliced roof plate, and is used for driving motor and lighting lamp and other facilities of the clamping disc; by using the lighting hole arranged on the column canopy and the light-transmitting lampshade arranged at both ends of the lighting hole, not only the lighting lamp can be used for lighting at night, but also the sunlight irradiated on the column canopy can be guided into the lower part of the canopy in the daytime, so that the lighting condition inside the gallery frame is improved.
[0021] In a specific embodiment, the column canopy and the connecting canopy each include a canopy upper plate, a canopy inner support and a canopy lower plate, the canopy upper plate and the canopy lower plate are respectively fixed on the upper and lower sides of the canopy inner support; the canopy inner support includes a strip-shaped support, an inner support and an edge support, the edge support is arranged along the edge part of the column canopy and the connecting canopy, the strip-shaped support is connected between the inner support and / or the edge support, a side lampshade is arranged between the canopy upper plate and the canopy lower plate outside the edge support, and a contour lamp is arranged between the side lampshade and the edge support.
[0022] By using the above technical scheme, the mechanical strength of the canopy is improved with smaller quality by using the canopy upper plate and the canopy lower plate arranged on the upper and lower sides of the canopy inner support, and the heat insulation performance of the canopy is improved; the lighting contour is formed around the canopy at night by using the contour lamp arranged between the side lampshade and the edge support, so that the landscape effect of the gallery frame is improved.
[0023] In a specific embodiment, the side joint structure includes a column top upper reinforcing plate, a column top side joint square steel and a column top lower reinforcing plate, the column top upper reinforcing plate, the column top side joint square steel and the column top lower reinforcing plate are all fixed on the side edge of the column canopy, a side joint slot is arranged between the column top upper reinforcing plate and the column top lower reinforcing plate and the column top side joint square steel, and a side joint power supply seat is arranged on the column top side joint square steel; the column canopy connecting structure includes a connecting upper reinforcing plate, a connecting side joint square steel, a connecting lower reinforcing plate and a connecting plug-in plate, the connecting upper reinforcing plate, the connecting side joint square steel and the connecting lower reinforcing plate are all fixed at the spliced edge, the connecting plug-in plate is respectively fixed between the connecting upper reinforcing plate and the connecting lower reinforcing plate and the connecting side joint square steel, and a side joint power supply plug is arranged on the connecting side joint square steel.
[0024] By adopting the above technical scheme, the side joint slot between the upper and lower reinforcing plates of the column top and the side joint square steel and the connecting plug plate between the upper and lower connecting reinforcing plates and the connecting side joint square steel can be inserted into the side joint slot to form splicing and installation between the connecting ceiling and the column ceiling, improve the mechanical strength of the splicing part, and ensure the structural stability of the ceiling module.
[0025] In one specific implementation, the connecting ceiling is further provided with lighting holes arranged at corresponding positions on the upper and lower ceiling cover plates, both ends of the lighting holes are provided with light-transmitting lampshades fixed on the upper and lower ceiling cover plates respectively, and the light-transmitting lampshades are provided with lighting lamps therebetween.
[0026] By adopting the above technical scheme, the lighting holes arranged at corresponding positions on the upper and lower ceiling cover plates and the light-transmitting lampshades arranged in the lighting holes can not only provide illumination at night, but also guide sunlight on the ceiling to the lower part of the ceiling during the day to ensure the illumination intensity inside the gallery frame.
[0027] In summary, the present application has at least one of the following beneficial technical effects:
[0028] By arranging the foundation installation structure at the bottom of the column and the ceiling connecting structure at the top of the column, the column can be conveniently installed on the ground by the foundation installation structure and quickly assembled with the ceiling module by the ceiling connecting structure, thereby improving the convenience of gallery building and reconstruction.
[0029] By the ceiling module composed of the column ceiling and the connecting ceiling, a plurality of smaller column ceilings and connecting ceilings can be prefabricated at a prefabrication site, and the column ceilings and the connecting ceilings can be assembled to form a larger ceiling module at a construction site, thereby reducing the construction amount of the on-site building, reducing the influence of construction on the landscape site, and conveniently disassembling the ceiling module for gallery removal and reconstruction.
[0030] By the hyperboloid-shaped support column formed by the vertical column, the support rod, the circular keel, the longitudinal keel, the square steel keel, and the outer stainless steel cover plate, a higher support strength for the ceiling module can be formed with a smaller self-weight, the stability of the ceiling module can be improved by a larger support diameter, and a better gallery visual effect can be formed.
[0031] The ceiling module can be supported by the ceiling cover plates fixed on both sides of the ceiling, so that the support strength of the ceiling module is improved, the self-weight of the ceiling module is reduced, and the lighting condition in the corridor under the ceiling module is improved through the lighting holes arranged on the ceiling cover plates. BRIEF DESCRIPTION OF DRAWINGS
[0032] Figure 1 A plan view of an embodiment of the present application.
[0033] Figure 2 A front view of an embodiment of the present application.
[0034] Figure 3 A schematic view of a support column structure in an embodiment of the present application.
[0035] Figure 4 A schematic view of a column ceiling bottom surface in an embodiment of the present application.
[0036] Figure 5 A schematic view of a column ceiling cross-sectional structure in an embodiment of the present application.
[0037] Figure 6 A schematic view of a column ceiling bottom surface in another embodiment of the present application. Figure 5 A partial enlarged view of part A.
[0038] Figure 7 A schematic view of a column ceiling bottom surface in another embodiment of the present application. Figure 5 A partial enlarged view of part B.
[0039] Figure 8 A schematic view of a column ceiling bottom surface in another embodiment of the present application. Figure 5 A partial enlarged view of part C.
[0040] Figure 9 A schematic view of a column ceiling bottom surface in another embodiment of the present application. Figure 5 A partial enlarged view of part D.
[0041] Figure 10 A schematic view of a column ceiling bottom surface in another embodiment of the present application.
[0042] Figure 11 A schematic view of a connection ceiling in an embodiment of the present application.
[0043] Figure 12 A schematic view of a connection ceiling in an embodiment of the present application. Figure 11 A schematic view of a cross section formed by cutting along the fold line L-L.
[0044] Figure 13 A schematic view of a connection ceiling in an embodiment of the present application. Figure 12 A partial enlarged view of part E.
[0045] Figure 14 A partial enlarged view of part F. Figure 12 A partial enlarged view of part F.
[0046] Explanation of reference signs: 1, support column; 11, column body; 111, vertical column; 112, support rod; 113, round keel; 114, longitudinal keel; 115, stainless steel cover plate; 12, foundation mounting structure; 121, vertical column embedded part; 122, vertical column mounting bottom plate; 123, keel embedded part; 124, keel mounting bottom plate; 13, ceiling connecting structure; 131, spliced ceiling plate; 132, ceiling insertion column; 133, keel top support; 134, keel insertion column; 135, power supply insertion column; 2, column ceiling; 21, support column connecting structure; 211, ceiling splicing plate; 212, vertical column insertion port; 213, keel insertion port; 214, ceiling clamping disc; 215, clamping disc driving motor; 216, clamping strip; 217, inclined top rod; 218, power supply insertion port; 22, side connection structure; 221, column top upper reinforcing plate; 222, column top side connection square steel; 223, column top lower reinforcing plate; 224, side connection insertion slot; 225, side connection power supply seat; 23, lighting hole; 231, light-transmitting lampshade; 232, illuminating lamp; 24, ceiling upper cover plate; 25, ceiling inner support; 251, strip-shaped support; 252, inner support; 253, edge support; 26, ceiling lower cover plate; 27, side lampshade; 28, contour lamp; 29, landscape pool hole; 3, connecting ceiling; 31, splicing edge; 32, column ceiling connecting structure; 321, connecting upper reinforcing plate; 322, connecting side connection square steel; 323, connecting lower reinforcing plate; 324, connecting insertion plate; 325, side connection power supply plug; 4, ecological tree pool; 41, bench tree pool; 411, pool wall bench; 412, ecological planting area; 42, landscape tree pool. DETAILED DESCRIPTION
[0047] The specific embodiments of the present application will be described in detail below with reference to the accompanying drawings. It should be understood that the specific embodiments described herein are merely intended to illustrate and explain the present application, and are not intended to limit the present application.
[0048] In the description of the present application, it should be noted that, unless otherwise explicitly specified and limited, the terms "arranged", "connected" should be understood broadly, for example, can be fixedly connected, or can be detachably connected, or integrally connected; can be directly connected, or indirectly connected through an intermediate medium, or can be the internal communication or interaction relationship of two elements. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.
[0049] One embodiment of the assembled landscape gallery of the present application is shown in Figures 1 to 3As shown, including support column 1, ceiling and ceiling module. Support column 1 is used to support the ceiling module at a certain height in the air, forming a sunshade and rainproof space below the ceiling module, providing a less affected by the external climate walking, resting place. Support column 1 includes column body 11, foundation installation structure 12 and ceiling connection structure 13, foundation installation structure 12 is arranged at the bottom of column body 11, and ceiling connection structure 13 is arranged at the top of column body 11. Column body 11 is a double curved body with a concave middle part, the side wall generatrix of column body 11 is a hyperbola, the cross section on the horizontal plane is a circle, and the diameter of the cross section circle at the top of column body 11 is smaller than that at the bottom. Column body 11 is installed and fixed on the ground by using foundation installation structure 12, which improves the convenience of installation and fixation on the ground; ceiling connection structure 13 is connected with the ceiling module, which facilitates the installation and disassembly of the ceiling module on the column body 11, so that the ceiling module can be assembled and disassembled with the support column 1, and the convenience of landscape site construction and reconstruction of the gallery is improved.
[0050] According to the different shapes of the gallery, a plurality of support columns 1 are arranged at different positions on the ground according to the design requirements, and the lower ends are fixed on the ground. The outer periphery of support column 1 is covered with a layer of corrosion-resistant material, which can prevent the corrosion of support column 1 caused by external climate environment, and the structure with larger diameter of the bottom cross section circle of support column 1 can improve the structural stability of support column 1 on the ground.
[0051] The ceiling module includes column ceiling 2 and connecting ceiling 3, and the column ceiling 2 is arranged in a circular or polygonal shape. A support column connection structure 21 adapted to the ceiling connection structure 13 is arranged at the middle part of the bottom surface of the column ceiling 2. The support column connection structure 21 can be inserted into the ceiling connection structure 13 to assemble the column ceiling 2 on the top of the column body 11, and the column body 11 can stably support the column ceiling 2, improving the convenience of installation of the column ceiling 2. A side connection structure 22 is arranged at the side edge of the column ceiling 2, which is used to connect the connecting ceiling 3, so as to splice the connecting ceiling 3 between two adjacent column ceilings 2, forming a roof of the gallery between the support columns 1.
[0052] A splicing edge 31 adapted to the edge shape of the column ceiling 2 is arranged at the end of the connecting ceiling 3, so that after the connecting ceiling 3 and the column ceiling 2 are spliced with each other, they can be mutually fitted, reducing the connection gap therebetween. A sealing rubber strip can be arranged between the connecting ceiling 3 and the column ceiling 2, or a sealing glue can be coated to close the connection gap, preventing water leakage at the connection gap of the ceiling module.
[0053] The column ceiling connecting structure 32 is arranged on the splicing edge 31 and is matched with the side connecting structure 22. Through the cooperation between the column ceiling connecting structure 32 and the side connecting structure 22, the connecting ceiling 3 can be spliced on the column ceiling 2, and the convenient assembly and disassembly of the ceiling module are completed. A plurality of side connecting structures 22 can be arranged at different positions of the side edge of the column ceiling 2. In this way, the connecting ceiling 3 can be spliced at different positions of the side edge of the column ceiling 2, different landscape gallery walks are formed, and the appearance form of the landscape gallery is conveniently changed, so that the landscape gallery is conveniently reconstructed, and the convenience of the landscape gallery in the landscape site construction and reconstruction is improved.
[0054] A corrosion-resistant material layer can also be arranged on the top surface of the ceiling module. The corrosion-resistant material layer is used to prevent corrosion of the ceiling module in a humid environment, improve the weather resistance of the landscape gallery, and maintain the appearance of the landscape gallery for a long time. The ceiling module is fixed at different positions of the top of different support columns 1. The ceiling module is stably supported in the air above the height of a person by the plurality of support columns 1. A good leisure environment is formed at the lower part of the ceiling module.
[0055] A plurality of ecological tree pools 4 can also be arranged on the side of the support column 1. Various ecological plants are planted in the ecological tree pool 4. The photosynthesis of the ecological plants is used to increase the oxygen content in the environment and adsorb dust and waste gas in the air. The air quality of the environment is optimized, and the ecological environment of the surrounding area is improved. The ecological tree pool 4 is usually arranged on the outside of the ceiling module, which reduces the shading of sunlight and rain by the ceiling module on the ecological plants, and ensures the good growth of the ecological plants.
[0056] In some embodiments of the assembled landscape gallery of the present application, as shown in FIG. 1, Figure 3 As shown in FIG. 1, the column body 11 includes a stand column 111, a support rod 112, a circular keel 113, a longitudinal keel 114, and a stainless steel cladding 115. The stand column 111 is usually made of a circular steel pipe with a relatively thick wall, which is used to ensure the support strength of the support column 1 on the ceiling module.
[0057] The support rod 112 is made of a round steel. One end of the support rod 112 is welded and fixed on the side wall of the stand column 111, and the other end extends horizontally along the radius direction of the stand column 111. The circular keel 113 is formed by bending a round steel. The circular keel 113 is welded outside the end of the support rod 112, so that the stand column 111 is located at the center of the circular keel 113. A plurality of different support rods 112 are connected at different positions in the length direction of the stand column 111. One circular keel 113 is connected to the outside end of each group of support rods 112. Different lengths of support rods 112 and different diameters of circular keels 113 are used to form the structural support of the hyperboloid column body 11.
[0058] The longitudinal keel 114 is bent into a hyperbolic shape using a round steel, and is welded to the outer circumferential surface of the different circular keels 113 at different positions in the length direction of the longitudinal keel 114, so that each longitudinal keel 114 is in the same vertical plane as the column 111. According to the size of the column 11, 9-12 longitudinal keels 114 are provided, and the longitudinal keels 114 are evenly arranged around the column 111.
[0059] The stainless steel cover plate 115 is welded to cover the plurality of longitudinal keels 114 and is in close contact with the longitudinal keels 114, forming a hyperbolic appearance. The surface covered by the stainless steel cover plate 115 not only has a beautiful and shiny appearance, but also has strong corrosion resistance, which can ensure the surface appearance of the column 11 for a long time, and also protects the internal structure, thereby improving the service life of the support column 1.
[0060] The foundation mounting structure 12 includes a column embedded part 121, a column mounting bottom plate 122, a keel embedded part 123, and a keel mounting bottom plate 124. The column embedded part 121 generally includes a column embedded steel plate and a plurality of column anchor bolts, and the plurality of column anchor bolts are respectively welded to the column embedded steel plate and protrude from the top of the column embedded steel plate. The column embedded part 121 is precast on the ground using concrete, and the column anchor bolts are deeply embedded in the ground, thereby improving the anchoring ability of the column embedded part 121 on the ground. The column mounting bottom plate 122 is welded and fixed to the bottom end of the column 111, and the column mounting bottom plate 122 is provided with a plurality of mounting screw holes corresponding to the top of the column anchor bolts. The top of the column anchor bolts is provided with a connecting thread, so that the column mounting bottom plate 122 can be conveniently fixed to the column anchor bolts by using a nut, thereby achieving detachable connection between the column 111 and the column embedded part 121.
[0061] The keel embedded part 123 includes a keel embedded plate and a plurality of keel anchor bolts, and the plurality of keel anchor bolts are respectively welded and fixed to the keel embedded plate, and the end portions of some of the keel anchor bolts protrude from the top surface of the keel embedded plate. The keel embedded part 123 is precast on the ground using concrete, and the keel anchor bolts are deeply embedded in the ground, thereby improving the anchoring ability of the keel embedded part 123 on the ground. The keel mounting bottom plate 124 is welded and fixed to the bottom end of the longitudinal keel 114, and the keel mounting bottom plate 124 is provided with mounting screw holes corresponding to the keel anchor bolts. The top of the keel anchor bolts located above the keel embedded plate is provided with a connecting thread, so that the keel mounting bottom plate 124 can be conveniently fixed to the keel anchor bolts by using a nut, thereby achieving detachable connection between the longitudinal keel 114 and the keel embedded part 123.
[0062] The size of the column pre-embedded plate is much larger than that of the keel pre-embedded plate, and the length of the column foot bolt is much larger than that of the keel foot bolt, so that the keel pre-embedded part 123 precast on the ground has greater structural strength, ensuring that the support column 1 can have greater bearing capacity. It is ensured that a layer of concrete can be further covered on the lower part of the column 111, further increasing the fixing strength of the column 111 on the ground. A plurality of keel pre-embedded parts 123 are precast on the ground around the keel pre-embedded part 123, forming fixation and support for a plurality of longitudinal keels 114 around the column 111, further improving the structural stability of the support column 1. In this way, the column body 11 can be detachably installed on the ground through the foundation installation structure 12, facilitating the construction, demolition and reconstruction of the support column 1 on the ground.
[0063] The ceiling connecting structure 13 is fixed at the top of the column 111, and the detachable connection between the column body 11 and the column ceiling 2 can be formed by using the ceiling connecting structure 13. The column ceiling 2 is supported by the column 111 in the air far above the height of the human body, such as 3.1 meters high, to provide a comfortable human activity space.
[0064] In a preferred embodiment of the assembled landscape gallery frame of the present application, as shown in Figure 3 The support rods 112 are divided into a plurality of groups, preferably five groups, and the five groups of support rods 112 are uniformly arranged in the axial direction of the column 111. According to the size of the column body 11, each group of support rods 112 is provided with 6-8 support rods 112, and the 6-8 support rods 112 are uniformly distributed on the circumference at the same axial position of the column 111.
[0065] The number of circular keels 113 is the same as the number of groups of support rods 112, each group of support rods 112 is welded on the same circular keel 113, and each support rod 112 is arranged along the radial direction of the circular keel 113 and uniformly fixed on the circumference of the circular keel 113.
[0066] The diameters of the circular keels 113 fixed at different axial positions of the column 111 are different, the diameter of the circular keel 113 fixed near the middle position of the column 111 is smaller than that of the circular keel 113 fixed near the two ends, so that the plurality of circular keels 113 are arranged in a hyperbolic shape in the vertical cross section.
[0067] The stainless steel cladding 115 is spliced from four stainless steel plates, and the four stainless steel plates are respectively attached and welded on the corresponding longitudinal keels 114. The adjacent stainless steel plates are fully welded, forming the appearance of the double hyperboloid of the column body 11. After the outer surface of the stainless steel plate is polished, white matte fluorocarbon paint is sprayed on the outer surface of the entire stainless steel cladding 115 to further protect the stainless steel cladding 115.
[0068] In some embodiments of the assembled landscape gallery frame of the present application, as shown inFigure 3 As shown in the drawings, the roof connecting structure 13 includes a roof splice plate 131, a roof splice column 132, a roof keel support 133 and a roof keel splice column 134. The roof splice plate 131 is usually a round steel plate with a certain thickness, which is welded and fixed on the top of the column 111 to disperse the support force on the top of the column 111. The roof splice column 132 is dispersedly fixed on the top surface of the roof splice plate 131, which is used to form a splice connection with the column roof 2, fix the connection position of the column roof 2 on the top of the support column 1, and facilitate the installation and disassembly of the column roof 2 on the column 111. The roof keel support 133 is usually a square steel with the same length as the thickness of the roof splice plate 131, and the number of roof keel supports 133 is the same as the number of longitudinal keels 114. One end of the roof keel support 133 is welded on the peripheral side wall of the roof splice plate 131, and the other end is welded and fixed on the top of the corresponding longitudinal keel 114. The roof keel splice column 134 is fixed on the outer side end of the roof keel support 133, located above the top end of the longitudinal keel 114, and forms a fixed support for the column roof 2 from the periphery of the roof splice plate 131, thereby improving the stability of the fixed structure of the column roof 2 on the top of the support column 1.
[0069] In a preferred embodiment of the assembled landscape gallery of the present application, as shown in Figure 4 and Figure 5 The support column connecting structure 21 on the column roof 2 includes a roof splice plate 211, a column splice port 212 and a keel splice port 213. The roof splice plate 211 is usually a steel plate similar to the roof splice plate 131, which is used to bear and disperse the support force of the column 111, and is fixed on the bottom surface of the column roof 2, usually welded on the support structure of the column roof 2. The column splice port 212 is provided on the roof splice plate 211, which is usually a splice port arranged opposite to the roof splice column 132. When the column roof 2 is spliced with the support column 1, each roof splice column 132 is inserted into one column splice port 212 to define the connection position of the column roof 2 on the support column 1.
[0070] The keel splice port 213 is provided on the column roof 2 at the periphery of the roof splice plate 211, and a plurality of keel splice ports 213 are provided on the bottom surface of the column roof 2. The number of keel splice ports 213 is the same as the number of roof keel splice columns 134 on the column 111, and the positions are arranged opposite to the roof keel splice columns 134.
[0071] As a specific embodiment of the assembled landscape gallery of the present application, as shown in Figures 3 to 7As shown, the outer circumferential surface of the roof plug-in column 132 and the keel plug-in column 134 in the roof connecting structure 13 is provided with a plug-in column clamping groove, and the roof splicing plate 211 is provided with a roof clamping mechanism. The roof clamping mechanism includes a roof clamping disc 214 and a clamping disc driving motor 215, wherein the roof clamping disc 214 is rotationally connected to the roof splicing plate 211 through a rotating shaft, and a hole clamping hole corresponding to the stand column plug-in port 212 is arranged on the roof clamping disc 214. When the roof plug-in column 132 is inserted into the stand column plug-in port 212, the end of the roof plug-in column 132 passes through the stand column plug-in port 212 into the roof clamping hole, and through the rotation of the roof clamping disc 214, the wall part of the roof clamping hole can be clamped in the plug-in column clamping groove, so that the roof plug-in column 132 is locked in the stand column plug-in port 212, and the fixation between the roof splicing plate 211 and the splicing roof plate 131 is realized; through the reverse rotation of the roof clamping disc 214, the roof clamping hole can be opposite to the stand column plug-in port 212, and the roof plug-in column 132 can smoothly leave the stand column plug-in port 212, so that the separation between the roof splicing plate 211 and the splicing roof plate 131 is realized.
[0072] The clamping disc driving motor 215 is drivingly connected with the roof clamping disc 214. Usually, a driving gear with a small diameter is arranged on the output shaft of the clamping disc driving motor 215, and driving teeth that are mutually meshed are arranged on the peripheral side wall of the roof clamping disc 214. Through the control of the rotation of the clamping disc driving motor 215, the rotation state of the roof clamping disc 214 can be controlled, so that the locking and unlocking state of the roof plug-in column 132 in the stand column plug-in port 212 is controlled.
[0073] A keel clamping mechanism is arranged on the bottom surface of the column ceiling 2 corresponding to the position of the keel insertion interface 213 around the top ceiling plate 211. The keel clamping mechanism includes a clamping strip 216 and an inclined jacking rod 217. The clamping strip 216 is provided with a keel clamping hole corresponding in size and position to the keel insertion interface 213. A sliding groove is arranged on one side of the keel clamping hole, and a screw is used to connect the column ceiling 2 through the sliding groove to form a sliding connection of the clamping strip 216 on the column ceiling 2. A tension spring is arranged between one end of the clamping strip 216 and the column ceiling 2. When the keel insertion column 134 is inserted into the keel insertion interface 213, the top of the keel insertion column 134 pushes the clamping strip 216 to slide, so that the keel clamping hole is aligned with the keel insertion interface 213. After the end of the keel insertion column 134 enters the keel clamping hole, the clamping strip 216 slides under the traction of the tension spring, so that the wall part of the keel clamping hole is clamped in the insertion column clamping groove, locking the keel insertion column 134 in the keel insertion interface 213, and realizing the fixed connection between the column ceiling 2 and the top of the longitudinal keel 114. A jacking rod push hole is also arranged on the clamping strip 216, and the inclined jacking rod 217 is vertically arranged on the column ceiling 2 and is in sliding connection with the column ceiling 2. An inclined top surface is arranged on the end of the inclined jacking rod 217 adjacent to the clamping strip 216. The inclined top surface of the inclined jacking rod 217 is inserted into the jacking rod push hole to push the inclined jacking rod 217 to slide to the inside of the column ceiling 2. The inclined top surface can push the clamping strip 216 to slide, so that the keel clamping hole is aligned with the keel insertion interface 213, so that the keel insertion column 134 can be smoothly pulled out of the keel insertion interface 213, realizing the separation between the column ceiling 2 and the top of the longitudinal keel 114. A reset spring is arranged on the inclined jacking rod 217 to pull the inclined jacking rod 217 to slide downward, and the clamping strip 216 can also be reset under the traction of the tension spring.
[0074] In some embodiments of the assembled landscape gallery frame of the present application, as shown in Figure 3 、 Figure 5 and Figure 6 , a power insertion column 135 is also arranged on the top surface of the spliced top plate 131, and a corresponding power insertion interface 218 is also arranged on the top ceiling plate 211. When the column ceiling 2 is assembled on the support column 1, the power insertion column 135 is inserted into the power insertion interface 218 to transport the power introduced from the bottom surface into the column body 11 to the column ceiling 2, for the power needs of the electric appliances such as the clamping disc driving motor 215 in the column ceiling 2.
[0075] A lighting hole 23 can also be arranged on the column ceiling 2, as shown in Figure 14 . Light-transmitting lampshades 231 are arranged at both ends of the lighting hole 23. The light-transmitting lampshades 231 are usually made of light-transmitting materials such as glass and plastic. Lighting lamps 232 are arranged in the lighting hole 23 between the light-transmitting lampshades 231 at both ends. The lighting lamps 232 can be used to illuminate the gallery under the column ceiling.
[0076] In some embodiments of the assembled landscape gallery of the present application, as shown in Figure 5 and Figure 12 The column ceiling 2 and the connecting ceiling 3 each comprise a ceiling upper plate 24, a ceiling inner support 25 and a ceiling lower plate 26. The ceiling inner support 25 generally comprises a strip-shaped support 251, an inner support 252 and an edge support 253, the strip-shaped support 251 being a straight steel or a steel plate, and the inner support 252 and the edge support 253 being shaped from square steel. The edge support 253 is arranged along the edge portion of the column ceiling 2 or the connecting ceiling 3, forming the outer contour of the column ceiling 2 and the connecting ceiling 3. The inner support 252 is arranged inside the edge support 253, forming reinforcement to the structure of the column ceiling 2 and the connecting ceiling 3. The strip-shaped support 251 is connected between the inner support 252 and / or the edge support 253, connecting the inner support 252 and the edge support 253 into an entirety, together forming a support frame and a bearing structure of the column ceiling 2 and the connecting ceiling 3.
[0077] The ceiling upper plate 24 and the ceiling lower plate 26 are shaped from aluminum plates, each being formed by splicing a plurality of aluminum plates. A U-shaped aluminum corner is fixedly connected to the ceiling inner support 25, the edge of the aluminum plate is bent and fixed to the inner side of the U-shaped aluminum corner, and the inner side of the U-shaped aluminum corner and the adjacent aluminum plates are sealed by using silicone weatherproof sealant. The ceiling upper plate 24 and the ceiling lower plate 26 are respectively fixed to the upper and lower sides of the ceiling inner support 25, so that the ceiling inner support 25 is located in the sealed space between the ceiling upper plate 24 and the ceiling lower plate 26, preventing external weather factors from eroding the ceiling inner support 25.
[0078] Referring to Figure 9 The outer edge of the edge support 253 is located inside the edge of the ceiling upper plate 24 and the ceiling lower plate 26, and a U-shaped channel steel is fixedly connected to the upper and lower sides of the edge support 253. The edge of the ceiling upper plate 24 and the ceiling lower plate 26 is bent and fixed to the U-shaped channel steel, and a side lamp cover 27 is fixedly connected to the outer side of the U-shaped channel steel. The side lamp cover 27 is made of frosted acrylic light-transmitting plate and extends along the side edge of the column ceiling 2 and the connecting ceiling 3, and the space between the side lamp cover 27 and the ceiling upper plate 24 and the ceiling lower plate 26 is sealed by using silicone weatherproof sealant. A contour lamp 28 is installed in the space between the side lamp cover 27 and the edge support 253, and the contour lamp 28 can form a light-emitting contour at the edge of the ceiling module, improving the landscape effect of the gallery.
[0079] In a preferred embodiment of the assembled landscape gallery of the present application, as shown in Figure 5 and Figure 8As shown, the side connecting structure 22 includes a column top upper reinforcing plate 221, a column top side connecting steel plate 222, and a column top lower reinforcing plate 223, all of which are fixed to the side edge of the column top ceiling 2. The column top upper reinforcing plate 221 and the column top lower reinforcing plate 223 are both made of steel plates with a certain thickness, and the inner side edges thereof are welded to the upper and lower sides of the edge support 253, and the upper and lower side surfaces thereof are fixedly connected to the ceiling upper cover plate 24 and the ceiling lower cover plate 26, respectively. The column top side connecting steel plate 222 is welded to the middle part of the edge support 253 between the column top upper reinforcing plate 221 and the column top lower reinforcing plate 223, and a side connecting slot 224 is formed between the column top side connecting steel plate 222 and the column top upper reinforcing plate 221 and the column top lower reinforcing plate 223 on both sides.
[0080] As shown, Figures 11 to 13 The column top ceiling connecting structure 32 includes a connecting upper reinforcing plate 321, a connecting side connecting steel plate 322, a connecting lower reinforcing plate 323, and a connecting plug-in plate 324, all of which are fixed to the spliced edge 31. The connecting upper reinforcing plate 321 and the connecting lower reinforcing plate 323 are both made of steel plates with a certain thickness, and the inner side edges thereof are welded to the upper and lower sides of the edge support 253, and the upper and lower side surfaces thereof are fixedly connected to the ceiling upper cover plate 24 and the ceiling lower cover plate 26, respectively. The connecting side connecting steel plate 322 is welded to the middle part of the edge support 253 between the connecting upper reinforcing plate 321 and the connecting lower reinforcing plate 323. The connecting plug-in plate 324 is fixed between the connecting side connecting steel plate 322 and the connecting upper reinforcing plate 321 and the connecting lower reinforcing plate 323 on both sides, and the connecting upper reinforcing plate 321, the connecting side connecting steel plate 322, and the connecting lower reinforcing plate 323 form a structure that strengthens the connecting plug-in plate 324.
[0081] When the connecting ceiling 3 and the column top ceiling 2 are spliced with each other, the connecting plug-in plate 324 is inserted into the side connecting slot 224, and the connecting ceiling 3 is connected between adjacent connecting column top ceilings 2 by the support of the side connecting slot 224 to the connecting plug-in plate 324, and the two ends of the connecting ceiling 3 are limited by the two column top ceilings 2, thereby forming a reliable connection between the connecting ceiling 3 and the column top ceiling 2. The column top upper reinforcing plate 221, the column top side connecting steel plate 222, and the column top lower reinforcing plate 223 effectively strengthen the support structure of the upper and lower sides of the side connecting slot 224.
[0082] In the positions where the side connecting structure 22 and the column top ceiling connecting structure 32 are located, the side connecting structure 22 and the column top ceiling connecting structure 32 replace the side lamp cover 27 and the contour lamp 28, and after the connecting ceiling 3 and the column top ceiling 2 are spliced with each other, the side connecting structure 22 and the column top ceiling connecting structure 32 are located at the connection position of the two, not at the edge of the ceiling module, and do not affect the light emitting landscape effect of the edge of the ceiling module.
[0083] A side power socket 225 is also provided on the side square steel 222 at the top of the column, and a side power plug 325 is also provided at the corresponding position on the connecting side square steel 322. When the connecting ceiling 3 and the column ceiling 2 are spliced together, the side power plug 325 is plugged into the side power socket 225 to transmit the power in the column ceiling 2 to the connecting ceiling 3 to meet the power needs of the outline lights 28 and other structures in the connecting ceiling 3.
[0084] As a specific embodiment of the assembled landscape gallery of the present application, Figures 10 to 12 and Figure 14 As shown, lighting holes 23 are provided at corresponding positions on the upper ceiling cover plate 24 and the lower ceiling cover plate 26 connected to the ceiling 3. The lighting holes 23 are provided in the gap between the internal support 252 and the edge support 253 in the connected ceiling 3. Translucent lampshades 231 made of frosted acrylic are provided at both ends of the lighting hole 23. The translucent lampshades 231 are respectively fixed to the upper ceiling cover plate 24 and the lower ceiling cover plate 26. Silicone weather-resistant sealant is used to seal the translucent lampshades 231 and the upper ceiling cover plate 24 or the lower ceiling cover plate 26 around the lighting hole 23. A lighting lamp 232 is provided between the upper and lower layers of the translucent lampshades 231. The lighting lamp 232 can be turned on at night to illuminate the pergola environment below the connected ceiling 3.
[0085] The double-layer light-transmitting lampshade 231 arranged at corresponding positions on the column ceiling 2 and the connecting ceiling 3 can also allow sunlight to pass through during the day to improve the lighting conditions under the gallery.
[0086] In some embodiments of the assembled landscape gallery of the present application, such as Figure 10 As shown, a landscape pool hole 29 can also be provided in the middle of the column roof 2 with a larger diameter, and a support column connecting structure 21 can be provided on each side of the landscape pool hole 29, as shown in FIG. Figure 1 As shown, the column roof 2 is assembled and connected to two support columns 1, and the two support columns 1 are used to jointly support the column roof 2.
[0087] The ecological tree pool 4 includes a bench pool 41 and a landscape tree pool 42. The bench pool 41 is circular, and the pool wall surrounding the bench pool 41 is provided with a pool wall bench 411. The pool wall bench 411 is constructed of bricks, and the side walls of the pool wall bench 411 are provided with a waterproof mortar layer to prevent irrigation water from the pool pool 41 from seeping through the pool wall. Customized stone is applied to the top and outer sides of the pool wall bench 411, enhancing its aesthetic appearance and sanitation, and making it convenient for people to sit and rest on the pool wall bench 411. The pool wall bench 411 is set at a height suitable for people to sit, such as 50 cm. The lower portion of the outer wall of the pool wall bench 411 is tilted inward, forming an inwardly recessed space at the bottom of the pool wall bench 411, which facilitates the placement of the legs and feet of people sitting on the pool wall bench 411, facilitating a more comfortable sitting posture.
[0088] The inside of the pool wall bench 411 is filled with planting soil to form an ecological planting area 412. A plurality of suitable ecological plants are planted in the ecological planting area 412 to improve the air quality and ecological conditions of the gallery area, and to improve the landscape effect of the gallery. The bench tree pool 41 is arranged outside the contour of the ceiling module to avoid the ceiling module affecting the acquisition of sunlight and rain by the ecological plants planted in the bench tree pool 41.
[0089] The outer periphery of the landscape tree pool 42 is provided with a vertical landscape pool wall, the inside of the landscape pool wall is filled with planting soil, and landscape plants are planted in the planting soil. The height of the landscape pool wall is relatively low, usually 15 cm, which is conducive to the planting and maintenance of ecological plants. The landscape tree pool 42 is arranged below the landscape pool hole 29 inside the column ceiling 2, and the landscape pool hole 29 provides sunlight and natural rain for the ecological plants planted in the landscape tree pool 42.
[0090] In the description of the present application, the description of the terms "one embodiment", "specific embodiment", "preferred embodiment" and the like means that the specific features, structures, materials or characteristics described in connection with the embodiment or example are contained in at least one embodiment or example of the present application. In the present application, the illustrative description of the above terms does not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner.
[0091] The above are the preferred embodiments of the present application, which do not limit the protection scope of the present application, therefore: any equivalent changes made on the structure, shape, principle of the present application should be covered within the protection scope of the present application.
Claims
1. A modular landscape canopy, characterized by, The support column (1) comprises a column body (11), a foundation mounting structure (12) and a ceiling connecting structure (13), the column body (11) is provided as a double-curved rotary body, the foundation mounting structure (12) is arranged at the bottom of the column body (11), and the ceiling connecting structure (13) is arranged at the top of the column body (11); the ceiling module comprises a column ceiling (2) and a connecting ceiling (3), the bottom of the column ceiling (2) is provided with a support column connecting structure (21) matched with the ceiling connecting structure (13), and the side edge is provided with a side connecting structure (22); the connecting ceiling (3) is provided with a splicing edge (31) matched with the column ceiling (2), and the splicing edge (31) is provided with a column ceiling connecting structure (32) matched with the side connecting structure (22); the connecting ceiling (3) is spliced between the column ceilings (2), and the column ceilings (2) are spliced at the top of the support column (1).
2. The modular landscape gallery of claim 1, wherein, The column body (11) comprises a stand column (111), a support rod (112), a circular keel (113), a longitudinal keel (114) and a stainless steel cladding plate (115), the stand column (111) is arranged at the middle of the column body (11), one end of the support rod (112) is connected with the stand column (111), the other end is connected with the circular keel (113), the longitudinal keel (114) is fixed on the outer side wall of the circular keel (113) at intervals, and the stainless steel cladding plate (115) is fixed on the longitudinal keel (114); the foundation mounting structure (12) comprises a stand column embedded part (121), a stand column mounting bottom plate (122), a keel embedded part (123) and a keel mounting bottom plate (124), the stand column embedded part (121) and the keel embedded part (123) are respectively cast on the ground at the set positions, the stand column mounting bottom plate (122) is fixed at the lower end of the stand column (111) and detachably connected with the stand column embedded part (121), the keel mounting bottom plate (124) is fixedly connected with the longitudinal keel (114) and detachably connected with the keel embedded part (123), and the ceiling connecting structure (13) is fixed at the top end of the stand column (111).
3. The modular landscape gallery of claim 2, wherein, The support rod (112) is divided into multiple groups, the support rods (112) in different groups are connected at different axial positions of the stand column (111), the support rods (112) in the same group are connected at different circumferential positions of the stand column (111), each group of the support rods (112) is connected with a same circular keel (113), and the diameters of the circular keels (113) connected at different positions of the stand column (111) gradually increase from the middle to the two ends of the stand column (111); the stainless steel cladding plate (115) is spliced by multiple plates, and a fluorocarbon paint coating layer is coated on the outer side of the stainless steel cladding plate (115).
4. The modular landscape gallery of claim 2, wherein, The ceiling connecting structure (13) comprises a spliced roof (131), a roof plug-in column (132), a keel roof support (133) and a keel plug-in column (134), the spliced roof (131) is fixed at the top of the stand column (111), the roof plug-in column (132) is dispersedly fixed on the top surface of the spliced roof (131), one end of the keel roof support (133) is fixed on the peripheral side wall of the spliced roof (131), and the other end is fixed at the top of the longitudinal keel (114), and the keel plug-in column (134) is fixed at the outer side end of the keel roof support (133).
5. The modular landscape gallery of claim 4, wherein, The support column connecting structure (21) comprises a ceiling spliced plate (211), a stand column plug-in port (212) and a keel plug-in port (213), the ceiling spliced plate (211) is arranged in the middle of the bottom surface of the column ceiling (2), the stand column plug-in port (212) is arranged on the ceiling spliced plate (211) and is arranged opposite to the roof plug-in column (132), and the keel plug-in port (213) is arranged on the column ceiling (2) at the periphery of the ceiling spliced plate (211) and is arranged in correspondence with the keel plug-in column (134).
6. The modular landscape gallery of claim 5, wherein, The roof plug-in column (132) and the keel plug-in column (134) are both provided with plug-in column clamping grooves, the ceiling spliced plate (211) is provided with a roof clamping mechanism, the roof clamping mechanism comprises a roof clamping disc (214) and a clamping disc driving motor (215), the roof clamping disc (214) is rotationally connected with the ceiling spliced plate (211), the clamping disc driving motor (215) is drivingly connected with the roof clamping disc (214), the roof clamping disc (214) is provided with a plurality of roof clamping holes matched with the plug-in column clamping grooves, the column ceiling (2) corresponding to the keel plug-in port (213) is provided with a keel clamping mechanism, the keel clamping mechanism comprises a clamping strip (216) and an inclined roof rod (217), the clamping strip (216) is provided with a roof rod push hole and a keel clamping hole corresponding to the keel plug-in port (213), the clamping strip (216) is slidingly connected on the column ceiling (2) and can slide under the traction of a spring, the inclined roof rod (217) is slidingly arranged on the column ceiling (2) and is inserted into the roof rod push hole at the top inclined surface, and the inclined roof rod (217) is provided with a reset spring.
7. The modular landscape gallery of claim 5, wherein, The top surface of the spliced roof (131) is further provided with a power plug-in column (135), and the corresponding position on the ceiling spliced plate (211) is further provided with a power plug-in port (218), the column ceiling (2) is further provided with an illuminating hole (23), both ends of the illuminating hole (23) are provided with light-transmitting lampshades (231), and the light-transmitting lampshades (231) are provided with illuminating lamps (232) therebetween.
8. The modular landscape gallery of any one of claims 1-7, wherein, The column ceiling (2) and the connecting ceiling (3) each comprise a ceiling upper cover plate (24), a ceiling inner support (25) and a ceiling lower cover plate (26), the ceiling upper cover plate (24) and the ceiling lower cover plate (26) are respectively fixed on the upper and lower sides of the ceiling inner support (25); the ceiling inner support (25) comprises a strip-shaped support (251), an inner support (252) and an edge support (253), the edge support (253) is arranged along the edge part of the column ceiling (2) and the connecting ceiling (3), the strip-shaped support (251) is connected between the inner support (252) and / or the edge support (253), and the ceiling upper cover plate (24) and the ceiling lower cover plate (26) outside the edge support (253) are provided with a side lampshade (27), and a contour lamp (28) is arranged between the side lampshade (27) and the edge support (253).
9. The modular landscape gallery of claim 8, wherein, The side joint structure (22) comprises a column top upper reinforcing plate (221), a column top side joint square steel (222) and a column top lower reinforcing plate (223), the column top upper reinforcing plate (221), the column top side joint square steel (222) and the column top lower reinforcing plate (223) are all fixed on the side edge of the column ceiling (2), the column top upper reinforcing plate (221) and the column top lower reinforcing plate (223) are provided with a side joint slot (224) between the column top side joint square steel (222), and the column top side joint square steel (222) is provided with a side joint power supply seat (225); the column ceiling connecting structure (32) comprises a connecting upper reinforcing plate (321), a connecting side joint square steel (322), a connecting lower reinforcing plate (323) and a connecting plug-in plate (324), the connecting upper reinforcing plate (321), the connecting side joint square steel (322) and the connecting lower reinforcing plate (323) are all fixed at the splicing edge (31), the connecting plug-in plate (324) is respectively fixed between the connecting upper reinforcing plate (321) and the connecting lower reinforcing plate (323) and the connecting side joint square steel (322), and the connecting side joint square steel (322) is provided with a side joint power supply plug (325).
10. The modular landscape gallery of claim 9, wherein, The connecting ceiling (3) is further provided with an illumination hole (23), the illumination hole (23) is arranged at a corresponding position on the ceiling upper cover plate (24) and the ceiling lower cover plate (26), both ends of the illumination hole (23) are provided with light-transmitting lampshades (231), the light-transmitting lampshades (231) are respectively fixed on the ceiling upper cover plate (24) and the ceiling lower cover plate (26), and the light-transmitting lampshades (231) are provided with an illuminating lamp (232) therebetween.
Citation Information
Patent Citations
A handheld electrostatic sprayer
CN116196454B