Arc-shaped cornice canopy wall surface integrated structure

By integrating the curved eaves canopy wall structure, the problems of poor functionality and insufficient aesthetics in the existing technology are solved, achieving the effects of wind and rain protection, heat insulation, and improving the overall aesthetics and functionality of the building.

CN223753616UActive Publication Date: 2026-01-02HU BEI CHU TIAN GANG JIE GOU YOU XIAN GONG SI
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Patent Information

Application Number
CN202422096764.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-28
Publication Date
2026-01-02
Estimated Expiration
2034-08-28

AI Technical Summary

Technical Problem

The existing canopy structure has poor functionality, cannot effectively insulate heat, and affects the aesthetics of the building.

Method used

Design an integrated structure for an arched eaves canopy wall, including a frame structure and cavity design. Utilize columns and decorative keels to form an arched surface, and combine it with components such as metal plates and angle steel to form an aesthetically pleasing overall structure with thermal insulation effects.

Benefits of technology

While providing shelter from wind and rain, it also enhances the building's aesthetics and thermal insulation, thereby improving its overall functionality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an arc-shaped cornice canopy wall surface integrated structure which comprises a framework structure fixed on a wall surface, the framework structure comprises a stand column and a modeling keel, the modeling keel is fixed at the upper end of the stand column, the lower portion of the stand column is covered with a second outer wall surface structure, and the bottom of the modeling keel is connected with a canopy ceiling. The modeling keel opens the first outer wall surface structure covered by the arc-shaped section, so that the original vertical surface wall body at the corresponding position is transformed into an arc-shaped surface, the rain and wind shielding function of a traditional canopy structure is achieved, the modeling is more attractive, and the cavity structure is defined among the first outer wall surface structure, the canopy ceiling and the wall surface; and the building has better heat preservation and heat insulation effects.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of outer wall building structure design, more specifically, the utility model relates to an arc-shaped eave canopy wall surface integrated structure. BACKGROUND

[0002] Ordinary canopies are often cantilevered by steel beams, and the pull rod canopy design is adopted when the cantilever is long. The existing design canopy only plays a role of sheltering wind and rain, and cannot play a good heat insulation effect on the wall surface; without adding a bottom plate in appearance, the pull rod canopy bottom steel beam and other steel components are exposed, and the steel bottom plate covers the steel beam and other components, so that the overall canopy is thick and solid, giving people a depressing feeling, and the whole building beauty is lowered. SUMMARY

[0003] The utility model aims at providing an arc-shaped eave canopy wall surface integrated structure to solve the technical problem of poor functionality of the steel component canopy structure and the poor heat insulation effect on the wall surface in the prior art.

[0004] In order to realize the purposes and other advantages according to the utility model, an arc-shaped eave canopy wall surface integrated structure is provided, which comprises a framework structure, the framework structure comprises a stand column and a profiled keel, the stand column is fixed on the wall surface along the horizontal direction of the wall surface at intervals, the upper end of each stand column is connected to a group of profiled keels outward, the side of the profiled keel away from the wall surface is an arc-shaped section and the top thereof is smoothly connected to the top of the stand column, the bottom of the profiled keel is connected to a canopy ceiling toward the wall surface, the arc-shaped sections of all the profiled keels are jointly connected to a first outer wall surface structure, the parts of all the stand columns below the canopy ceiling are jointly connected to a second outer wall surface structure, and a cavity structure penetrating through the wall surface along the horizontal direction is formed between the wall surface, the first outer wall surface structure and the canopy ceiling.

[0005] Preferably, the vertical distance between the end of the canopy ceiling away from the inner wall surface and the wall surface is 4m-6m.

[0006] Preferably, the first outer wall surface structure comprises a main purlin, a secondary purlin and an outer wall plate, the main purlin is horizontally arranged, is connected to the outside and the bottom of the arc-shaped sections of all the profiled keels and is arranged at intervals along the outer surface of the profiled keel, the secondary purlin is an arc-shaped pipe structure arranged parallel to the arc-shaped section surface of the profiled keel, is arranged at intervals along the horizontal direction parallel to the wall surface, each secondary purlin is fixedly connected to the outside of all the main purlins, and the outer wall plate is jointly connected to the outside of all the secondary purlins.

[0007] Preferably, a window is formed in the outer wall plate, and a louver is mounted on the window.

[0008] Preferably, the outer wall plate is a corrugated metal plate.

[0009] Preferably, an angle steel is arranged between the bottom of the arc-shaped tube and the outer end of the canopy ceiling, a male corner piece is arranged on the outer side of the angle steel, the lower side wing plate of the angle steel is fixedly connected with the outer end of the canopy ceiling through a structural nail, the upper side of the male corner piece and the upper side wing plate of the angle steel are fixedly connected with the lower end of the arc-shaped tube through a structural nail, the lower side of the male corner piece is fixedly connected with the bottom of the outer end of the canopy ceiling through a pull rivet, and the lower end boundary of the outer wall plate is coated and connected with the equal-length polyurethane sealant in the gap of the male corner piece.

[0010] Preferably, a U-shaped groove is arranged between the inner end of the canopy ceiling and the top of the second outer wall plate structure to form a gutter, a drain pipe is arranged at the bottom of the U-shaped groove and is communicated downward to the wall surface, and the drain pipe is connected with the indoor main downpipe after penetrating through the second outer wall plate structure.

[0011] Preferably, a parapet plate is arranged at the upper end of the wall surface, the top of the column is arranged at the top of the parapet plate, the column and the parapet plate are fixedly connected through a wall surface purlin, a top plate is arranged on the column and covers the parapet plate, the outer end of the top plate is fixedly connected with the top of the main purlin located at the upper end edge of the arc-shaped tube, the inner end of the top plate is fixedly connected with the top of the uppermost wall surface purlin, the upper end of the outer wall plate extends towards the parapet plate and covers the top plate, and a coping male corner decoration edge is arranged between the upper end edge of the outer wall plate and the top of the parapet plate.

[0012] The arc-shaped eave canopy wall surface integrated structure has at least the following beneficial effects: the arc-shaped eave canopy wall surface integrated structure comprises a framework structure fixed on a wall surface, the framework structure comprises a column and a profiled keel, the profiled keel is fixed at the upper end of the column, a second outer wall surface structure is arranged on the lower part of the column, the profiled keel is connected with a canopy ceiling at the bottom, and the profiled keel is arranged on the first outer wall surface structure in the form of an arc-shaped section, so that the original vertical wall surface at the corresponding position is transformed into an arc-shaped surface, the traditional canopy structure has the functions of wind-shielding and rain-shielding, the profiled keel is more beautiful, and a cavity structure is formed between the first outer wall surface structure, the canopy ceiling and the wall surface, so that the building has better heat preservation and heat insulation effects.

[0013] Other advantages, objects and features of the present application will be apparent from the following description, and will be understood by those skilled in the art. BRIEF DESCRIPTION OF DRAWINGS

[0014] Figure 1 It is a front view structure of the present application;

[0015] Figure 2 It is an enlarged structure view of the top corner of the front side bottom of the profiled keel of the present application;

[0016] Figure 3An enlarged structural view of the U-shaped groove of an embodiment of the utility model;

[0017] Figure 4 An enlarged structural view of the top plate of an embodiment of the utility model.

[0018] The specification figure mark explanation: 1, stand, 2, modeling keel, 3, arc section, 4, horizontal section, 5, first outer wall surface structure, 6, second outer wall surface structure, 7, canopy ceiling, 8, cavity structure, 9, main purlin, 10, secondary purlin, 11, outer wall board, 12, angle steel, 13, external corner piece, 14, polyurethane sealant, 15, U-shaped groove, 16, drain pipe, 17, parapet wall board, 18, wall purlin, 19, top plate, 20, coping external corner decorative edge. DETAILED DESCRIPTION

[0019] The utility model will be further explained in detail in combination with the drawings, so that the person skilled in the art can implement according to the specification text.

[0020] In the description of the utility model, the orientation or positional relationship indicated by the terms "transverse", "longitudinal", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer" and the like is the orientation or positional relationship shown in the drawings, which is only for the convenience of describing the utility model and simplifying the description, and is not intended to indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the utility model.

[0021] As Figures 1-4 Indicated, the utility model discloses arc eave canopy wall integration structure, including framework structure, framework structure includes stand 1 and modeling keel 2, and stand 1 is fixed on the wall along the horizontal direction of wall and is spaced, and the upper end of each stand 1 is connected to a group of modeling keel 2 outward, and the side of modeling keel 2 away from the wall is arc section 3 and the top is smoothly connected with the top of stand 1, and the bottom of modeling keel 2 is connected with canopy ceiling 7 towards the wall, and the arc section 3 of all modeling keel 2 is connected with first outer wall surface structure 5 collectively, and the part of all stand 1 below connecting canopy ceiling 7 is connected with second outer wall surface structure 6 collectively, and the cavity structure 8 along the horizontal direction of wall is formed around between the wall and first outer wall surface structure 5, canopy ceiling 7.

[0022] For the convenience of explanation, the side direction away from the wall is outer side, and the side direction towards the wall is inner side, and the framework structure is arranged to form stable truss system, and modeling keel 2 is outward, i.e. Figure 1 As shown on the left side, each group of modeling keel 2 can be generally arranged according to Figure 1The arc-shaped section 3, the bottom horizontal section 4 and the three connecting rods connected with the stand column 1 are set, the canopy ceiling 7 is connected at the bottom of the modeling keel 2, the canopy ceiling 7 is generally set as a plate structure, the first outer wall surface structure 5 is connected on the upper side of the modeling keel 2, the overall outer wall includes the outer wall surface of the wall body, the first outer wall surface structure 5, the canopy ceiling 7 and the second outer wall surface structure 6 from top to bottom, the modeling keel 2 is arranged to form a cavity between the first outer wall surface structure 5 and the wall surface of the wall body in the same height range, which can effectively insulate and heat the indoor space, and the canopy has a beautiful arc shape, so that the building has a high and noble beauty, the height of the modeling keel 2 and the height of the second outer wall surface structure 6 can be adjusted according to design requirements, and the specific design idea of the canopy ceiling 7 of the inner wall surface system is the same as that of the traditional industrial building, which will not be repeated here.

[0023] In another technical solution, as shown in Figures 1-2 the vertical distance between the end of the canopy ceiling 7 away from the inner wall surface and the wall surface is 4-6 m. The modeling keel 2 is suspended as a space truss structure, and the suspension length is preferably controlled within 4-6 m. Reasonable rectangular pipe sections are selected according to stress calculation.

[0024] In another technical solution, as shown in Figures 1-4 the first outer wall surface structure 5 includes a main purlin 9, a secondary purlin 10 and an outer wall panel 11. The main purlin 9 is horizontally arranged and connected to the outer side of the arc-shaped section 3 and the bottom of all the modeling keels 2 and is arranged along the outer surface of the modeling keel 2 at intervals. The secondary purlin 10 is an arc-shaped pipe structure arranged parallel to the arc-shaped section 3 of the modeling keel 2. The secondary purlin 10 is arranged at intervals along the horizontal direction parallel to the wall surface. Each secondary purlin 10 is fixedly connected to the outer side of all the main purlins 9, and the outer side of all the secondary purlins 10 is jointly connected to the outer wall panel 11.

[0025] The modeling keel 2 has an arc-shaped section 3 at the outer end and a horizontal section 4 at the bottom. The top of the arc-shaped section 3 is curved toward one side of the stand column 1, and the bottom of the arc-shaped section 3 is downwardly and slightly inclinedly curved toward one side of the stand column 1. The modeling keel 2 as a whole forms a C-shaped structure. The main purlin 9 is arranged at intervals on the arc-shaped section 3 and the horizontal section 4. The secondary purlin 10 is arranged on the main purlin 9 of the arc-shaped section 3. The horizontal main purlin 9 has the same design idea as the traditional wall surface purlin 18. The secondary purlin 10 arranged in the vertical plane perpendicular to the wall surface is bent with a finished rectangular pipe according to the modeling arc, and the specification is determined according to calculation.

[0026] In another technical solution, as shown in Figure 1As shown, the outer wall plate 11 is provided with a window, and a shutter is installed on the window. The shutter system can use a product with easy operation in the prior art, and a wide width is arranged as needed, and a shutter system is added, so that the air flow of the cavity structure 8 is improved while the appearance of the building is ensured.

[0027] In another technical solution, as shown in Figure 1 , the outer wall plate 11 is a corrugated metal plate. The transverse corrugated plate is selected for the metal plate of the wall surface, which can be curved along the arc and is convenient for the arrangement of the shape, and the corrugated structure further improves the blocking effect on the inner cavity and improves the ventilation capacity.

[0028] In another technical solution, as shown in Figures 1-2 , an angle steel 12 is arranged between the bottom of the arc-shaped pipe and the outer end of the canopy ceiling 7, a male corner piece 13 is arranged on the outer side of the angle steel 12, the lower side wing plate of the angle steel 12 is fixedly connected with the outer end of the canopy ceiling 7 through a structural nail, the upper side of the male corner piece 13 and the upper side wing plate of the angle steel 12 are fixedly connected with the lower end of the arc-shaped pipe through a structural nail, the lower side of the male corner piece 13 is fixedly connected with the bottom of the outer end of the canopy ceiling 7 through a pull rivet, and the lower end boundary of the outer wall plate 11 is coated and connected with the polyurethane sealant 14 in the gap of the male corner piece 13.

[0029] The angle steel 12 is arranged at the lower top corner to connect the canopy ceiling 7 and the secondary purlin 10 of the shaped keel 2, the male corner piece 13 protects the top corner and beautifies the appearance, the polyurethane sealant 14 improves the waterproof capacity between the exposed outer wall plate 11 and the canopy ceiling 7, the outer wall plate 11 and each arc-shaped pipe are fixedly connected through the structural nail in the range of the arc-shaped section 3 covered by the outer wall plate 11, the corresponding structural screws and the like are arranged in the required way of exposed nails or concealed nails, butyl mastic and plugs are arranged, and the pull rivet is closed.

[0030] In another technical solution, as shown in Figure 1 , 3 , the inner end of the canopy ceiling 7 is connected with the top of the structure of the second outer wall plate 11 to form a gutter, a drain pipe 16 is arranged at the bottom of the U-shaped groove 15 and is connected with the wall surface, the drain pipe 16 passes through the second outer wall plate 11 structure and is connected with the indoor main downpipe.

[0031] From the front and rear directions as shown in Figure 1 , the rainwater falling or flowing into the cavity is collected at the bottom of the gutter and flows out from the drain pipe 16, and the drain pipe 16 is sprayed with the same color as the outer wall plate 11 of the second outer wall surface structure 6 in the nearby position.

[0032] In another technical solution, as shown in Figure 1 , 4As shown, the upper end of the wall surface is provided with a parapet 17, the top of the column 1 is arranged at the top of the parapet 17, the column 1 and the parapet 17 are fixedly connected through wall purlin 18, the top of the column 1 is covered with a top plate 19 towards the parapet 17, the outer end of the top plate 19 is fixedly connected with the top of the main purlin 9 at the upper end edge of the arc-shaped tube, the inner end of the top plate 19 is fixedly connected with the top of the uppermost layer of wall purlin 18, the upper end of the outer wall plate 11 extends towards the parapet 17 and covers the top plate 19, and the upper end edge of the outer wall plate 11 and the top of the parapet 17 are jointly covered and connected with a coping corner moulding 20.

[0033] The column 1 is mainly covered and connected at the top, the structural connection strength is strengthened, the coverage is complete, the independent blocking effect of the cavity space is maintained, and the same is true for the butyl mastic, plug structure arranged at the screw fastening connector close to the external environment, and the structural nails arranged between the outer wall plate 11 and the top plate 19 in the area range of the outer wall plate 11 covering the top plate 19.

[0034] Although the embodiments of the present application have been disclosed as above, it is not limited to the application listed in the specification and the embodiments, and can be fully applied to various fields suitable for the present application. For those skilled in the art, other modifications can be easily realized, and therefore the present application is not limited to specific details and the drawings shown and described herein.

Claims

1. A curved cornice canopy wall integration structure, characterized in that, The skeleton structure comprises columns and shaped keels, the columns are fixed on the wall surface in the horizontal direction of the wall surface, the upper end of each column is connected to a group of shaped keels, the side of the shaped keel away from the wall surface is an arc segment and the top of the shaped keel is smoothly connected to the top of the column, the bottom of the shaped keel is connected to a canopy ceiling, the arc segments of all the shaped keels are jointly connected to a first outer wall surface structure, and the portions of all the columns below the canopy ceiling are jointly connected to a second outer wall surface structure, and a cavity structure is formed between the wall surface and the first outer wall surface structure and the canopy ceiling.

2. The arc-shaped eave canopy wall integrated structure according to claim 1, characterized in that, The vertical distance between the end of the canopy ceiling away from the inner wall surface and the wall surface is 4-6 m.

3. The arc-shaped eave canopy wall integrated structure according to claim 1, characterized in that, The first outer wall surface structure comprises main purlins, secondary purlins and outer wall panels, the main purlins are horizontally arranged, are arranged on the outer side of the arc segments and the bottom of all the shaped keels and are arranged at intervals along the outer surface of the shaped keels, the secondary purlins are arc-shaped pipe structures arranged on the arc segments of the shaped keels, are arranged at intervals in the horizontal direction parallel to the wall surface, each secondary purlin is fixedly connected to the outer side of all the main purlins, and the outer wall panels are jointly connected to the outer side of all the secondary purlins.

4. The arc-shaped eave canopy wall integrated structure according to claim 3, characterized in that, Windows are arranged on the outer wall panels, and shutters are arranged on the windows.

5. The arc-shaped eave canopy wall integrated structure according to claim 3, characterized in that, The outer wall panels are corrugated metal panels.

6. The arc-shaped eave canopy wall integrated structure according to claim 5, characterized in that, An angle steel is arranged between the bottom of the arc-shaped pipe and the outer end of the canopy ceiling, a male corner piece is arranged on the outer side of the angle steel, the lower side wing plate of the angle steel is fixedly connected to the outer end of the canopy ceiling through a structural nail, the upper side of the male corner piece and the upper side wing plate of the angle steel are jointly fixedly connected to the lower end of the arc-shaped pipe through a structural nail, the lower side of the male corner piece is fixedly connected to the bottom of the outer end of the canopy ceiling through a rivet, and the lower end boundary of the outer wall panel and the gap of the male corner piece are coated with polyurethane sealant of the same length.

7. The arc-shaped eave canopy wall integrated structure according to claim 1, characterized in that, A U-shaped groove is arranged between the inner end of the canopy ceiling and the top of the second outer wall panel structure, forming a gutter, a drain pipe is arranged at the end of the bottom of the U-shaped groove close to the wall surface and is connected downward, and the drain pipe is connected to a main downpipe in a room after penetrating through the second outer wall panel structure.

8. The arc-shaped eave canopy wall integration structure according to claim 1, characterized in that, A parapet panel is arranged at the upper end of the wall surface, the top of the parapet panel is arranged at the height of the top of the column, the column and the parapet panel are fixedly connected through wall purlins, a top plate is arranged on the column and covers the parapet panel, the outer end of the top plate is fixedly connected to the top of the main purlin at the upper end edge of the arc-shaped pipe, the inner end of the top plate is fixedly connected to the top of the uppermost wall purlin, the upper end of the outer wall panel extends toward the parapet panel and covers the top plate, and a coping male corner decoration edge is jointly connected to the top of the parapet panel and the upper end edge of the outer wall panel.