Spliced sunlight room and drainage structure
By designing the beam frame and flow diversion structure, the problem of rainwater accumulation and water leakage caused by the fixed structure of the sunroom glass is solved, the effective flow diversion and structural stability of rainwater is achieved, and the aesthetics and installation simplicity are improved.
Patent Information
- Application Number
- CN202510275353.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-10
- Publication Date
- 2025-05-13
AI Technical Summary
The glass fixed structure of the existing spliced sunroom blocks the roof water flow from top to bottom, causing water accumulation and seeping into the room, causing water leakage. At the same time, the complex structure increases the difficulty of installation and material usage, and may lead to structural stress concentration and bending deformation.
Using beam frames, corner columns, connectors and corner codes, multiple flat and downwardly inclined roof surfaces and flow guide areas are designed. Through structures such as troughs, drainage pipes, runners and grooves, effective rainwater diversion and discharge, and through structures such as extension plates and plug joints, stress and pressure are dispersed to enhance structural stability.
It effectively solves the problems of rainwater accumulation and leakage, improves the aesthetics and structural stability of the sunroom, simplifies the installation process, reduces the amount of material, and improves the rainwater diversion and discharge effect.
Smart Images

Figure CN119981351A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of spliced sunrooms, and in particular to a spliced sunroom and a drainage structure. Background Art
[0002] A sunroom is a building that uses a frame to support glass to achieve natural lighting effects. On sunny days, the sunroom can fully absorb natural light through the glass roof. On rainy days, rainwater flows down from the top and into the drainage system for discharge. The drainage system directly affects whether the sunroom is flooded and the safety of wading.
[0003] The glass above the beam is fixed with a pressure plate. This structure will block the water flow from the roof from top to bottom, causing water accumulation. The water accumulates on the roof and then seeps into the room, causing leakage.
[0004] In order to improve the aesthetics of the sun room roof, multiple beams at different angles are usually used for installation, which makes it difficult to choose the fixing position of the glass. At the same time, the complexity of the structure will inevitably increase the difficulty of installation, and the required materials of beams and glass will increase, and then the beams usually generate stress between each other, which will increase the structural strength requirements of each beam to avoid long-term structural bending and deformation, and in severe cases, cause the collapse of the sun room. Summary of the invention
[0005] In order to overcome the disadvantages of the problems mentioned in the background, the present invention provides a spliced sun room and a drainage structure.
[0006] The technical solution is: a spliced sun room and drainage structure, including a roof structure and a floor structure; the roof structure is connected to the top of the floor structure; its characteristic is that the roof structure includes a beam frame, a first corner column, a second corner column, a first corner connector and a first corner code; the floor structure is connected to the beam frame; the beam frame is connected to a plurality of first corner columns, and each first corner column is provided with a through groove, and a drainage pipe is provided at the bottom of each first corner column, and the drainage pipe is connected to the through groove; the beam frame is connected to a plurality of second corner columns, and each second corner column is provided with a second flow channel; the beam frame is connected to a plurality of first corner connectors, and each first corner connector is provided with a third groove; the beam frame is connected to a plurality of first corner codes, and each first corner code is provided with a first groove; The beam frame includes a first top beam, a first main beam, an eaves outer beam and an eaves inner beam; the floor structure is connected with a plurality of eaves inner beams, and every two eaves inner beams are connected to a first corner connector; the floor structure is connected with a plurality of eaves outer beams, and every two eaves outer beams are connected to a first corner column or a second corner column respectively, the first corner column is located at the outer corner of the eaves outer beam, the second corner column is located at the inner corner of the eaves outer beam, and each eaves outer beam is provided with a first corner connector. The first flow channel is connected with the second flow channel, and the first flow channel is connected with the edge of the through groove; each first corner connector is connected with one end of the first main beam, and the other end of the first main beam is connected with the first angle code, and each first main beam is provided with a second groove, and the second groove is connected with the first groove; one end of several first angle codes away from the first main beam is commonly connected with the first top beam, and support beams are provided on both sides of the middle of the first top beam, and the first top beam is connected with the first angle code through the support beams.
[0007] As an improvement of the above scheme, the roof structure also includes a second corner code, a third corner code, a second corner connector and a third corner connector; the beam frame is connected to a plurality of second corner codes, and a fifth extension plate is provided at the bottom of each second corner code, and the fifth extension plate is connected to the beam frame; both ends of the first top beam are connected to the third corner code, and three third plug connectors are provided on the third corner code, the third corner code is connected to the first top beam through the third plug connector in the middle, and the third plug connectors on both sides are connected to the beam frame; every two eaves inner beams are connected together A second corner connector is connected, and the second corner connector is arranged close to the first corner column, the first corner connector is arranged close to the second corner column, the second corner connector is provided with a seventh plug connector, and the seventh plug connector is connected to the beam frame; every two eaves inner beams are commonly connected with a third corner connector, and the third corner connector is located at the corner of the left and right parts of the beam frame, the second corner connector is located at the corner of the front and rear parts of the beam frame, the third corner connector is provided with an eighth plug connector, and the eighth plug connector is connected to the beam frame; The beam frame also includes a second top beam, a second main beam, a frame plate, a first beam and a second beam; the first angle code is connected to one end of the second top beam, and the other end of the second top beam is connected to the second angle code; the second angle code is connected to one end of a plurality of second main beams through a fifth extension plate, and the other end of the second main beam is connected to the third corner connector; each second angle code is connected to a plurality of first beams through a fifth extension plate, and the first beam is connected to the inner beam of the eaves close to the first corner connector; the third plug connectors on both sides of each third angle code are connected to one end of the second beam, and the other end of the second beam Connected to the second corner connector; each eaves outer beam is connected to a frame plate, and each frame plate is provided with a right-angle portion, the bottom surface of the right-angle portion located in the middle of the frame plate is attached to the side edge of the first flow channel, the bottom surfaces of the right-angle portions located on the left and right parts of the frame plate are respectively attached to the surfaces of the first corner column and the second corner column, each frame plate is provided with a curved portion, the bottom surface of the curved portion located in the middle of the frame plate is attached to the surface of the eaves inner beam, the bottom surfaces of the curved portions located on the left and right parts of the frame plate are respectively attached to the surfaces of the first corner connector, the second corner connector and the third corner connector.
[0008] As an improvement of the above scheme, the first top beam is provided with a first mounting groove; the second top beam is provided with a second mounting groove; the first main beam is provided with a third mounting groove; the second main beam is provided with a fourth mounting groove; the first first beam is provided with a fifth mounting groove; the second second beam is provided with a sixth mounting groove; the inner beam of the eaves is provided with a seventh mounting groove; the first corner code is provided with a first groove; the third corner code is provided with a second groove; the first corner connector is provided with a third groove; the second corner connector is provided with a fourth groove; the third corner connector is provided with a fifth groove; the depth of the first mounting groove, the second mounting groove, the third mounting groove, the fourth mounting groove, the fifth mounting groove, the sixth mounting groove, the seventh mounting groove, the first groove, the second groove, the third groove, the fourth groove and the fifth groove is consistent with the thickness of the sunroom glass to be installed.
[0009] As an improvement of the above scheme, the second top beam is provided with several first sub-beams; the second main beam is provided with several second sub-beams; the second sub-beam is provided with several third sub-beams, and the first sub-beam, the second sub-beam and the third sub-beam are respectively provided with empty grooves with the same depth as the second installation groove, the fourth installation groove and the sixth installation groove.
[0010] As an improvement of the above scheme, the outer beam of the eaves is provided with a first spoiler; the first corner column is provided with a second spoiler; the second corner column is provided with a third spoiler, and the lengths of the first spoiler, the second spoiler and the third spoiler extend in a direction away from the beam frame.
[0011] As an improvement of the above scheme, the first corner code is provided with a first plug connector, and the first plug connector is plugged into the second top beam and the inner cavity of the first main beam; the second corner code is provided with a second plug connector, and the second plug connector is plugged into the inner cavity of the second top beam; the third corner code is provided with a third plug connector, and the third plug connector is plugged into the inner cavity of the first top beam and the second secondary beam; the first corner column is provided with a fourth plug connector, the first corner column is provided with a first plug board, and the first plug board is segmented, and the first plug board and the fourth plug connector are jointly plugged into the inner cavity of the eaves outer beam; the second corner column is provided with a fifth plug connector, the second corner column is provided with a second plug board, and the second plug board It is in a segmented type, and the second plug plate and the fifth plug connector are jointly plugged into the inner cavity of the outer beam of the eaves; the first corner connector is provided with a sixth plug connector, and the sixth plug connector is plugged into the inner cavity of the first main beam and the inner beam of the eaves; the second corner connector is provided with a seventh plug connector, and the seventh plug connector is plugged into the inner cavity of the second beam and the inner beam of the eaves; the third corner connector is provided with an eighth plug connector, and the eighth plug connector is plugged into the inner cavity of the second main beam and the inner beam of the eaves; the first plug connector, the second plug connector, the third plug connector, the fourth plug connector, the fifth plug connector, the sixth plug connector, the seventh plug connector and the eighth plug connector are all hollow, and the inner cavity is provided with a cross partition.
[0012] As an improvement of the above solution, the first top beam is provided with a first extension plate; the first main beam is provided with a second extension plate; the second main beam is provided with a third extension plate; the second secondary beam is provided with a fourth extension plate; and the second corner code is provided with a sixth extension plate.
[0013] As an improvement of the above solution, a top cover is slidably connected to the top of the first top beam, and the top cover extends to the left and right parts of the first top beam.
[0014] As an improvement of the above scheme, the roof structure includes a first connecting block, a column, a door frame, a first mounting strip, a second connecting block and a second mounting strip; a plurality of first connecting blocks are arranged at the bottom of the roof structure, and the first connecting blocks are located at the corners of the roof structure; a first mounting strip is inserted on both sides of each first connecting block; a column is inserted on the top of each first connecting block; a door frame is installed between every two columns, and the door frame is slidably connected to the first mounting strip; a second connecting block is inserted on the top of each column; a second mounting strip is inserted on both sides of each second connecting block; the top of each second mounting strip is connected to an outer beam of the eaves and an inner beam of the eaves, and a plurality of seventh extension plates are arranged on the bottom of each second mounting strip.
[0015] As an improvement of the above solution, a sealing strip is provided between the column and the door frame, and the sealing strip is made of a sound-insulating sponge material.
[0016] Beneficial effects: 1. The present invention uses multiple flat and downward-inclined roof surfaces and diversion areas at the angles to divert all rainwater on the roof structure to the first flow channel and the second flow channel. This is different from the prior art sun room glass fixed by a pressure plate, which blocks the flow of rainwater and causes water to remain on the roof and seep into the room for a long time, causing leakage.
[0017] 2. The present invention can be used to disperse the stress and pressure on each beam, enhance the load-bearing capacity of the structure, and improve the structural stability by adding the first extension plate, the second extension plate, the third extension plate, the fourth extension plate and the sixth extension plate to the first main beam, the first main beam, the second main beam, the second secondary beam and the second angle code. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 The schematic diagram of the combined structure of the roof structure and the floor structure of the spliced sun room and the drainage structure disclosed in the present invention; Figure 2 The structural schematic diagram of the roof structure of the spliced sun room and the drainage structure disclosed in the present invention; Figure 3 The present invention discloses a spliced sun room and a drainage structure Figure 2 A magnified image of area A; Figure 4 The present invention discloses a spliced sun room and a drainage structure Figure 2 A magnified view of area B; Figure 5 The present invention discloses a spliced sun room and a drainage structure Figure 2 Magnified image of area C; Figure 6 The present invention discloses a spliced sun room and a drainage structure Figure 2 A magnified view of region D; Figure 7 The present invention discloses a spliced sun room and a drainage structure Figure 2 A magnified view of region E; Figure 8 The present invention discloses a spliced sun room and a drainage structure Figure 2 A magnified view of region F; Fig. 9 This is a structural schematic diagram of the first top beam of the spliced sun room and the drainage structure disclosed in the present invention; Fig.10 This is a structural schematic diagram of the first main beam of the spliced sun room and the drainage structure disclosed in the present invention; Fig.11 This is a structural schematic diagram of the second main beam of the spliced sun room and the drainage structure disclosed in the present invention; Fig.12 This is a structural schematic diagram of the second beam splicing the sun room and the drainage structure disclosed in the present invention; Fig.13 It is a structural schematic diagram of the first corner code for splicing a sun room and a drainage structure disclosed in the present invention; Fig.14 It is a structural schematic diagram of the second angle code connector for splicing a sun room and a drainage structure disclosed in the present invention; Fig.15 It is a structural schematic diagram of the third corner code for splicing a sun room and a drainage structure disclosed in the present invention; Fig.16 It is a structural schematic diagram of the first corner column of the spliced sun room and the drainage structure disclosed in the present invention; Fig.17 It is a structural schematic diagram of the second corner column of the spliced sun room and the drainage structure disclosed in the present invention; Fig.18 It is a structural schematic diagram of the first corner connector for splicing a sun room and a drainage structure disclosed in the present invention; Fig.19 It is a structural schematic diagram of the second corner connector for splicing a sun room and a drainage structure disclosed in the present invention; Fig. 20 It is a structural schematic diagram of the third corner connector for splicing a sun room and a drainage structure disclosed in the present invention; Fig.21 A side view of the combined structure of the sun room and the drainage structure disclosed in the present invention, including the outer beam of the eaves, the frame plate, the inner beam of the eaves and the second installation strip; Fig. 22 The structural schematic diagram of the floor structure of the spliced sun room and the drainage structure disclosed in the present invention; Fig.23 This is a schematic diagram of the combined structure of the first connecting block and the first mounting strip for splicing the sun room and the drainage structure disclosed in the present invention; Fig.24 This is a schematic diagram of the combined structure of the first connecting block, the column, the door frame and the first mounting strip of the spliced sun room and the drainage structure disclosed in the present invention; Fig.25 The present invention discloses a top view of the structure of a first connecting block, a column, a door frame and a first mounting strip for splicing a sun room and a drainage structure.
[0019] Numbers in the figure: 1-roof structure, 2-floor structure, 101-first top beam, 102-second top beam, 103-first main beam, 104-second main beam, 105-eaves outer beam, 106-frame, 107-first beam, 108-second beam, 109-eaves inner beam, 110-first corner code, 111-second corner code, 112-third corner code, 113-first corner column, 114-second corner column, 115-first corner connector, 116-second corner connector, 117-third corner connector, 201-first connecting block , 202-column, 203-door frame, 204-first mounting bar, 205-second connecting block, 206-second mounting bar, 10101-top cover, 10102-first mounting groove, 10103-first extension plate, 10104-support beam, 10201-first secondary beam, 10202-second mounting groove, 10301-second groove, 10302-third mounting groove, 10303-second extension plate, 10401-third extension plate, 10402-fourth mounting groove, 10403-second secondary beam, 10501-first spoiler, 1 0502-first flow channel, 10601-right angle portion, 10602-bending portion, 10701-fifth mounting groove, 10801-fourth extension plate, 10802-sixth mounting groove, 10803-third subbeam, 10901-extension portion, 10902-seventh mounting groove, 11001-first plug connector, 11002-first groove, 11003-first groove, 11101-second plug connector, 11102-fifth extension plate, 11103-sixth extension plate, 11201-third plug connector, 11202-second groove, 1 1301-the fourth plug connector, 11302-the first plug plate, 11303-the through groove, 11304-the second baffle, 11305-the drain pipe, 11401-the fifth plug connector, 11402-the second plug plate, 11403-the second flow channel, 11404-the third baffle, 11501-the sixth plug connector, 11502-the third groove, 11503-the third groove, 11601-the seventh plug connector, 11602-the fourth groove, 11701-the eighth plug connector, 11702-the fifth groove, 20601-the seventh extension plate. DETAILED DESCRIPTION
[0020] The above scheme is further described below in conjunction with specific examples. It should be understood that these examples are used to illustrate the present application and are not limited to the scope of the present application. The implementation conditions adopted in the examples can be further adjusted according to the conditions of the specific manufacturer, and the implementation conditions not specified are usually the conditions in conventional experiments.
[0021] Example 1 A spliced sun room and drainage structure, such as Figure 1-Figure 21As shown, it includes a roof structure 1 and a floor structure 2; the roof structure 2 is connected to the top of the roof structure 1; its characteristic is that the roof structure 1 includes a beam frame, a first corner column 113, a second corner column 114, a first corner connector 115 and a first corner code 110; the floor structure 2 is connected to the beam frame; the beam frame is connected to a plurality of first corner columns 113, and each first corner column 113 is provided with a through groove 11303, and each first corner column 113 is provided with a drainage pipe at the bottom 11305, the drainage pipe 11305 is connected to the through groove 11303; the beam frame is connected to a plurality of second corner columns 114, and each second corner column 114 is provided with a second flow channel 11403; the beam frame is connected to a plurality of first corner connectors 115, and each first corner connector 115 is provided with a third groove 11503; the beam frame is connected to a plurality of first corner brackets 110, and each first corner bracket 110 is provided with a first groove 11003; The beam frame includes a first top beam 101, a first main beam 103, an eaves outer beam 105 and an eaves inner beam 109; the floor structure 2 is connected to a plurality of eaves inner beams 109, and every two eaves inner beams 109 are connected to a first corner connector 115; the floor structure 2 is connected to a plurality of eaves outer beams 105, and every two eaves outer beams 105 are connected to a first corner column 113 or a second corner column 114, respectively, the first corner column 113 is located at the outer corner of the eaves outer beam 105, and the second corner column 114 is located at the inner corner of the eaves outer beam 105. A first flow channel 10502 is provided on each eaves outer beam 105; each first corner connector 115 is connected to one end of the first main beam 103, and the other end of the first main beam 103 is connected to the first angle code 110, and a second groove 10301 is provided on each first main beam 103; one end of several first angle codes 110 away from the first main beam 103 is commonly connected to the first top beam 101, and supporting beams 10104 are provided on both sides of the middle part of the first top beam 101, and the first top beam 101 is connected to the first angle code 110 through the supporting beams 10104.
[0022] The roof structure 1 also includes a second corner code 111, a third corner code 112, a second corner connector 116 and a third corner connector 117; the beam frame is connected to a plurality of second corner codes 111, and a fifth extension plate 11102 is provided at the bottom of each second corner code 111, and the fifth extension plate 11102 is connected to the beam frame; both ends of the first top beam 101 are connected to the third corner code 112; every two eaves inner beams 109 are connected to a second corner connector 116, and the second corner connector 116 is provided near the first corner column 113, and the first The corner connector 115 is arranged near the second corner column 114, and the second corner connector 116 is provided with a seventh plug connector 11601, and the seventh plug connector 11601 is connected to the beam frame; every two eaves inner beams 109 are commonly connected with a third corner connector 117, and the third corner connector 117 is located at the corners of the left and right parts of the beam frame, and the second corner connector 116 is located at the corners of the front and rear parts of the beam frame, and the third corner connector 117 is provided with an eighth plug connector 11701, and the eighth plug connector 11701 is connected to the beam frame; The beam frame also includes a second top beam 102, a second main beam 104, a frame plate 106, a first beam 107 and a second beam 108; the first angle code 110 is connected to one end of the second top beam 102, and the other end of the second top beam 102 is connected to the second angle code 111; the second angle code 111 is connected to one end of a plurality of second main beams 104 through the fifth extension plate 11102, and the other end of the second main beam 104 is connected to the third corner connector 117; each second angle code 111 is connected to a plurality of first beams 107 through the fifth extension plate 11102, and the first beam 107 is connected to the inner beam 109 of the eaves close to the first corner connector 115; the third plug connectors 11201 on both sides of each third angle code 112 are connected to one end of the second beam 108, and the other end of the second beam 108 is connected to the second corner connector 116; a frame plate 106 is connected to each outer beam 105 of the eaves.
[0023] The first top beam 101 is provided with a first mounting groove 10102; the second top beam 102 is provided with a second mounting groove 10202; the first main beam 103 is provided with a third mounting groove 10302; the second main beam 104 is provided with a fourth mounting groove 10402; the first primary beam 107 is provided with a fifth mounting groove 10701; the second secondary beam 108 is provided with a sixth mounting groove 10802; the eaves inner beam 109 is provided with a seventh mounting groove 10902; the first corner code 110 is provided with a first groove 11002; the third corner code 112 is provided with a second groove 11202; the first corner connector 115 is provided with a third groove 11502; the second corner connector 116 is provided with a fourth groove 11602; the third corner connector 117 is provided with a fifth groove 11702.
[0024] The second top beam 102 is provided with a plurality of first sub-beams 10201; the second main beam 104 is provided with a plurality of second sub-beams 10403; the second secondary beam 108 is provided with a plurality of third sub-beams 10803, and the first sub-beam 10201, the second sub-beam 10403 and the third sub-beam 10803 are respectively provided with empty grooves having the same depth as the second installation groove 10202, the fourth installation groove 10402 and the sixth installation groove 10802.
[0025] The eaves outer beam 105 is provided with a first spoiler 10501; the first corner column 113 is provided with a second spoiler 11304; the second corner column 114 is provided with a third spoiler 11404, and the lengths of the first spoiler 10501, the second spoiler 11304 and the third spoiler 11404 extend in a direction away from the beam frame.
[0026] The first corner code 110 is provided with a first plug connector 11001; the second corner code 111 is provided with a second plug connector 11101; the third corner code 112 is provided with a third plug connector 11201; the first corner column 113 is provided with a fourth plug connector 11301, the first corner column 113 is provided with a first plug board 11302, and the first plug board 11302 is segmented; the second corner column 114 is provided with a fifth plug connector 11401, the second corner column 114 is provided with a second plug board 11402, and the second plug board 11402 is segmented; the first corner connector 115 is provided with a sixth plug connector 11501; the second corner connector 116 is provided with a seventh plug connector 11601; the third corner connector 117 is provided with an eighth plug connector 11701; the first plug connector 11001, the second plug connector 11101, the third plug connector 11201, the fourth plug connector 11301, the fifth plug connector 11401, the sixth plug connector 11501, the seventh plug connector 11601 and the eighth plug connector 11701 are all hollow, and the inner cavity is provided with a transverse partition, which is used to enhance the structural stability while reducing the material used for the profile.
[0027] The present invention works specifically as follows: First, the first plug connector 11001, the second plug connector 11101, the third plug connector 11201, the fourth plug connector 11301, the fifth plug connector 11401, the sixth plug connector 11501, the seventh plug connector 11601 and the eighth plug connector 11701 are respectively plugged into the corresponding beam body frame, and connected to the beam body frame through the fifth extension plate 11102, so that the installation of the roof structure 1 can be completed. Except that the fifth extension plate 11102 is bolted to multiple beams at the same time, the installation of the rest of the roof structure 1 is spliced installation, without additional parts to assist installation, simple operation, and multi-angle installation is completed by plugging, so that the roof structure 1 is different from the traditional triangular structure of the prior art, thereby increasing the aesthetics of the sun room; Furthermore, refer to Figure 2-Figure 8 As shown, the rainwater flowing down from the roof can be discharged to the drain pipe 11305 for unified treatment through the through groove 11303 set on the first corner column 113. It should be noted that the rainwater cannot fall directly into the through groove 11303. The rainwater falling on the angle of the roof can be guided to the second flow channel 11403 through the cooperation of the first groove 11003, the second groove 10301 and the third groove 11503. Subsequently, the rainwater on the second flow channel 11403 will flow along the first flow channel 10502 to the through groove 11303 and be discharged through the drain pipe 11305, which can further improve the diversion and discharge effect of the rainwater. When the roof structure 1 is spliced, the sun room glass to be installed can be placed in the first installation groove 10102, the second installation groove 10202, the third installation groove 10302, the fourth installation groove 10402, the fifth installation groove 10701, the sixth installation groove 10802, the seventh installation groove 10902, the first groove 11002, the second groove 11202, the third groove 11502, the fourth groove 11602 and the fifth groove 11702, and waterproof glue is applied to the gap between the sun room glass and the sun room glass, and the depth is consistent with the thickness of the sun room glass. In this way, the sun room glass can be installed on the roof. The structure 1 forms a plurality of plane structures, thereby improving the aesthetics of the sun room roof while increasing the fluidity of rainwater, that is, the first groove 11003, the second groove 10301 and the third groove 11503 can form a plurality of flat and downwardly inclined roof surfaces and diversion areas at the angle, so that all rainwater on the roof structure 1 can be diverted to the first flow channel 10502 and the second flow channel 11403. Different from the prior art sun room glass fixing using a pressure plate type fixing, the structure will block the flow of rainwater, causing water to stay on the roof and penetrate into the room for a long time to cause leakage. It should be noted that, referring to Fig.21 As shown, the frame plate 106 forms a slope on the eaves outer beam 105 and the eaves inner beam 109 that can be used to divert rainwater, further enhancing the diversion effect; Further, a first sub-beam 10201, a second sub-beam 10403 and a third sub-beam 10803 may be provided, and an empty groove having the same depth as the second installation groove 10202, the fourth installation groove 10402 and the sixth installation groove 10802 is provided for installing sun room glass, thereby optimizing the structural distribution of the roof structure 1, reducing the area and weight of a single piece of sun room glass, dispersing the stress on the original beam frame, and increasing the structural stability. At the same time, by connecting the first plug connector 11001, the second plug connector 11101, the third plug connector 11201, the fourth plug connector 11301, the fifth plug connector 11401, the The sixth plug connector 11501, the seventh plug connector 11601 and the eighth plug connector 11701 are hollow, and the inner cavity is provided with a transverse partition, so as to reduce the profile material during plugging and enhance the structural stability. In addition, the first plug board 11302 and the second plug board 11402 are designed in sections, so that when the first plug board 11302 and the second plug board 11402 are inserted into the inner cavity of the eaves beam 105, that is, the inner cavity of the first spoiler 10501, a staggered distribution structure is formed therewith, which can reduce the gap in the inner cavity after plugging. At the same time, the staggered distribution structure can increase its stability and avoid shaking after plugging; When rainwater flows down from the multiple flat and downwardly inclined roof surfaces and the diversion areas at the angles, part of the rainwater is easily splashed to the outside due to the rapid rushing down, and thus cannot fall into the first flow channel 10502 and the second flow channel 11403, and then flows to the through groove 11303 and is discharged by the drain pipe 11305. In this way, the rainwater rushing down can be blocked by the first spoiler 10501, the second spoiler 11304 and the third spoiler 11404, so that the blocked rainwater flows along the first spoiler 10501, the second spoiler 11304 and the third spoiler 11404. 4 and the third spoiler 11404 flow back to the first flow channel 10502 and the second flow channel 11403, and are discharged through the through groove 11303 and the drain pipe 11305. At the same time, the lengths of the first spoiler 10501, the second spoiler 11304 and the third spoiler 11404 extend away from the beam frame, further increasing the length of their blocking path, improving the blocking effect, and reducing the problem of rain splashing. Finally, the above structure is connected to the roof structure 2 to form a complete spliced sun room and drainage structure.
[0028] Example 2 A spliced sun room and drainage structure, such as Figure 1-Figure 21As shown, the first top beam 101 is provided with a first extension plate 10103; the first main beam 103 is provided with a second extension plate 10303; the second main beam 104 is provided with a third extension plate 10401; the second secondary beam 108 is provided with a fourth extension plate 10801; the second corner code 111 is provided with a sixth extension plate 11103; the first extension plate 10103, the second extension plate 10303, the third extension plate 10401, the fourth extension plate 10801 and the sixth extension plate 11103 are used to disperse the stress, enhance the load-bearing capacity of the structure and improve the structural stability.
[0029] A top cover 10101 is slidably connected to the top of the first top beam 101, and the top cover 10101 extends to the left and right of the first top beam 101 to block part of the rainwater from directly contacting the sun room glass and to guide the blocked rainwater to flow from top to bottom.
[0030] The present invention works specifically as follows: Because the sunroom is built with multiple beams and in conjunction with the sunroom glass, each beam generates stress between each other and is also subjected to pressure from the sunroom glass, resulting in a large load on the beam frame, which is prone to bending and deformation over a long period of time, leading to gaps that cause water leakage, and even collapse in severe cases. In this way, a first extension plate 10103, a second extension plate 10303, a third extension plate 10401, a fourth extension plate 10801 and a sixth extension plate 11103 can be added to the first main beam 101, the first main beam 103, the second main beam 104, the secondary beam 108 and the second corner code 111, so as to disperse the stress and pressure on each beam, enhance the load-bearing capacity of the structure and improve the structural stability.
[0031] Example 3 A spliced sun room and drainage structure, such as Figure 21-Figure 25As shown, the floor structure 2 includes a first connection block 201, a column 202, a door frame 203, a first installation strip 204, a second connection block 205 and a second installation strip 206; a plurality of first connection blocks 201 are arranged at the bottom of the floor structure 2, and the first connection blocks 201 are located at the corners of the floor structure 2; a first installation strip 204 is inserted on both sides of each first connection block 201; a column 202 is inserted on the top of each first connection block 201; and a door frame 204 is installed between every two columns 202. 03, and the door frame 203 is slidably connected to the first mounting bar 204; a second connecting block 205 is inserted at the top of each column 202; a second mounting bar 206 is inserted at both sides of each second connecting block 205; the top of each second mounting bar 206 is connected to an outer beam 105 of the eaves and an inner beam 109 of the eaves, and a plurality of seventh extension plates 20601 are arranged at the bottom of each second mounting bar 206, which are used to limit the door frame 203 and disperse the stress borne on the second mounting bar 206.
[0032] A sealing strip is provided between the column 202 and the door frame 203, and the sealing strip is provided with a sound-proof sponge material, which is used to reduce the friction and collision between the column 202 and the door frame 203, and at the same time reduce the weight of the material and reduce the overall weight of the spliced sun room.
[0033] The present invention works specifically as follows: The splicing work of the floor structure 2 can be completed by plugging the column 202, the first installation strip 204 and the second installation strip 206 into the inner cavity of the first connection block 201 and the second connection block 205, and installing the door frame 203 between the plurality of seventh extension plates 20601. Subsequently, the roof structure 1 is placed on the top of the second installation strip 206. It should be noted that, referring to Fig.21 As shown, each frame plate 106 is provided with a right angle portion 10601, the bottom surface of the right angle portion 10601 located in the middle of the frame plate 106 is attached to the side edge of the first flow channel 10502, the bottom surfaces of the right angle portions 10601 located in the left and right parts of the frame plate 106 are attached to the surfaces of the first corner column 113 and the second corner column 114 respectively, and each frame plate 106 is provided with a curved portion 10602, the bottom surface of the curved portion 10602 located in the middle of the frame plate 106 is attached to the inner beam 114 of the eaves 09 surface setting, the bottom surfaces of the curved portions 10602 located at the left and right parts of the frame plate 106 are respectively fitted to the surface settings of the first corner connector 115, the second corner connector 116 and the third corner connector 117, so that the frame plate 106 forms a structure in which the eaves outer beam 105, the frame plate 106 and the eaves inner beam 109 are mutually restrained on the top of the second mounting strip 206, thereby ensuring the stability of the structure, that is, completing the splicing of the roof structure 1 and the floor structure 2 to form a complete spliced sun room.
[0034] The above embodiments are only preferred embodiments of the present invention and are not intended to limit the scope of implementation of the present invention. Therefore, all equivalent changes made to the contents described in the claims of the present invention should be included in the scope of the claims of the present invention.
Claims
1. A spliced sun room and drainage structure, comprising a roof structure (1) and a floor structure (2); the top of the floor structure (2) is connected to the roof structure (1); wherein: The roof structure (1) comprises a beam frame, a first corner column (113), a second corner column (114), a first corner connector (115) and a first corner bracket (110); the floor structure (2) is connected to the beam frame; the beam frame is connected to a plurality of first corner columns (113), and each first corner column (113) is provided with a through groove (11303); each first corner column (113) is provided with a drainage pipe (11305) at the bottom, and the drainage pipe (11305) is connected to the through groove ( 11303); the beam frame is connected to a plurality of second corner columns (114), and each second corner column (114) is provided with a second flow channel (11403); the beam frame is connected to a plurality of first corner connectors (115), and each first corner connector (115) is provided with a third groove (11503); the beam frame is connected to a plurality of first corner brackets (110), and each first corner bracket (110) is provided with a first groove (11003); The beam frame comprises a first top beam (101), a first main beam (103), an eaves outer beam (105) and an eaves inner beam (109); the roof structure (2) is connected to a plurality of eaves inner beams (109), and every two eaves inner beams (109) are connected to a first corner connector (115); the roof structure (2) is connected to a plurality of eaves outer beams (105), and every two eaves outer beams (105) are respectively connected to a first corner column (113) or a second corner column (114), the first corner column (113) is located at the outer corner of the eaves outer beam (105), and the second corner column (114) is located at the inner corner of the eaves outer beam (105). At the corner, each eaves outer beam (105) is provided with a first flow channel (10502); each first corner connector (115) is connected to one end of the first main beam (103), and the other end of the first main beam (103) is connected to the first corner bracket (110), and each first main beam (103) is provided with a second groove (10301); one end of a plurality of first corner brackets (110) away from the first main beam (103) is commonly connected to the first top beam (101), and supporting beams (10104) are provided on both sides of the middle of the first top beam (101), and the first top beam (101) is connected to the first corner bracket (110) through the supporting beams (10104).
2. A spliced sun room and drainage structure according to claim 1, characterized in that: The roof structure (1) also includes a second corner code (111), a third corner code (112), a second corner connector (116) and a third corner connector (117); the beam frame is connected to a plurality of second corner codes (111), and a fifth extension plate (11102) is provided at the bottom of each second corner code (111), and the fifth extension plate (11102) is connected to the beam frame; both ends of the first top beam (101) are connected to the third corner code (112); every two eaves inner beams (109) are connected to a second corner connector (116), and the second corner connector (116) is provided near the first corner column (113). The first corner connector (115) is arranged near the second corner column (114), the second corner connector (116) is provided with a seventh plug connector (11601), and the seventh plug connector (11601) is connected to the beam frame; every two eaves inner beams (109) are commonly connected to a third corner connector (117), and the third corner connector (117) is located at the corners of the left and right parts of the beam frame, the second corner connector (116) is located at the corners of the front and rear parts of the beam frame, the third corner connector (117) is provided with an eighth plug connector (11701), and the eighth plug connector (11701) is connected to the beam frame; The beam frame also includes a second top beam (102), a second main beam (104), a frame plate (106), a first beam (107) and a second beam (108); the first angle code (110) is connected to one end of the second top beam (102), and the other end of the second top beam (102) is connected to the second angle code (111); the second angle code (111) is connected to one end of a plurality of second main beams (104) through a fifth extension plate (11102), and the other end of the second main beam (104) is connected to a third corner connector (117). each second corner code (111) is connected to a plurality of first beams (107) via a fifth extension plate (11102), and the first beam (107) is connected to an inner beam (109) of the eaves close to the first corner connector (115); the third plug connectors (11201) on both sides of each third corner code (112) are connected to one end of a second beam (108), and the other end of the second beam (108) is connected to the second corner connector (116); each outer beam (105) of the eaves is connected to a frame plate (106).
3. A spliced sun room and drainage structure according to claim 2, characterized in that: The first top beam (101) is provided with a first mounting groove (10102); the second top beam (102) is provided with a second mounting groove (10202); the first main beam (103) is provided with a third mounting groove (10302); the second main beam (104) is provided with a fourth mounting groove (10402); the first secondary beam (107) is provided with a fifth mounting groove (10701); the second secondary beam (108) is provided with a sixth mounting groove (10802); the eaves inner beam (109) is provided with a seventh mounting groove (10902); the first corner bracket (110) is provided with a first groove (11002); the third corner bracket (112) is provided with a second groove (11202); the first corner connector (115) is provided with a third groove (11502); the second corner connector (116) is provided with a fourth groove (11602); and the third corner connector (117) is provided with a fifth groove (11702).
4. A spliced sun room and drainage structure according to claim 3, characterized in that: The second top beam (102) is provided with a plurality of first sub-beams (10201); the second main beam (104) is provided with a plurality of second sub-beams (10403); the second sub-beam (108) is provided with a plurality of third sub-beams (10803), and the first sub-beam (10201), the second sub-beam (10403) and the third sub-beam (10803) are respectively provided with empty grooves having the same depth as the second installation groove (10202), the fourth installation groove (10402) and the sixth installation groove (10802).
5. The spliced sun room and drainage structure according to claim 4 is characterized in that: The eaves outer beam (105) is provided with a first spoiler (10501); the first corner column (113) is provided with a second spoiler (11304); the second corner column (114) is provided with a third spoiler (11404), and the lengths of the first spoiler (10501), the second spoiler (11304) and the third spoiler (11404) extend in a direction away from the beam body frame.
6. The spliced sun room and drainage structure according to claim 5 is characterized in that: The first corner code (110) is provided with a first plug connector (11001); the second corner code (111) is provided with a second plug connector (11101); the third corner code (112) is provided with a third plug connector (11201); the first corner column (113) is provided with a fourth plug connector (11301), the first corner column (113) is provided with a first plug connector plate (11302), and the first plug connector plate (11302) is segmented; the second corner column (114) is provided with a fifth plug connector (11401), the second corner column (114) is provided with a second plug connector plate (11402), and the second plug connector plate (11402) is segmented. ) is segmented; the first corner connector (115) is provided with a sixth plug connector (11501); the second corner connector (116) is provided with a seventh plug connector (11601); the third corner connector (117) is provided with an eighth plug connector (11701); the first plug connector (11001), the second plug connector (11101), the third plug connector (11201), the fourth plug connector (11301), the fifth plug connector (11401), the sixth plug connector (11501), the seventh plug connector (11601) and the eighth plug connector (11701) are all hollow, and the inner cavities are all provided with transverse partitions.
7. The spliced sun room and drainage structure according to claim 6 is characterized in that: The first top beam (101) is provided with a first extension plate (10103); the first main beam (103) is provided with a second extension plate (10303); the second main beam (104) is provided with a third extension plate (10401); the second secondary beam (108) is provided with a fourth extension plate (10801); and the second corner bracket (111) is provided with a sixth extension plate (11103).
8. The spliced sun room and drainage structure according to claim 1 is characterized in that: A top cover (10101) is slidably connected to the top of the first top beam (101), and the top cover (10101) extends toward the left and right parts of the first top beam (101).
9. The spliced sun room and drainage structure according to claim 8 is characterized in that: The roof structure (2) comprises a first connection block (201), a column (202), a door frame (203), a first installation strip (204), a second connection block (205) and a second installation strip (206); a plurality of first connection blocks (201) are arranged at the bottom of the roof structure (2), and the first connection blocks (201) are located at the corners of the roof structure (2); a first installation strip (204) is plugged into both sides of each first connection block (201); and a column (202) is plugged into the top of each first connection block (201); A door frame (203) is installed between every two columns (202), and the door frame (203) is slidably connected to the first installation bar (204); a second connection block (205) is plugged into the top of each column (202); a second installation bar (206) is plugged into both sides of each second connection block (205); the top of each second installation bar (206) is connected to an eaves outer beam (105) and an eaves inner beam (109), and a plurality of seventh extension plates (20601) are arranged at the bottom of each second installation bar (206).
10. A spliced sun room and drainage structure according to claim 9, characterized in that: A sealing strip is provided between the upright column (202) and the door frame (203), and the sealing strip is made of a sound-insulating sponge material.