Corner column for sunlight room

By using the interlocking blocks and baffles in the corner columns, the problems of complex installation and numerous gaps in the corner beams of the sunroom are solved, effectively guiding and blocking rainwater, and improving the stability and waterproof performance of the structure.

CN224002096UActive Publication Date: 2026-03-17浙江雷润实业有限公司
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-10
Publication Date
2026-03-17

AI Technical Summary

Technical Problem

The existing corner beams of the sunroom are complicated to install and have many gaps, which allows rainwater to seep in, thus accelerating the aging and damage of the structure.

Method used

The corner column design includes plug-in blocks, plug-in plates, and baffles. Through the cooperation of grooves and channels, rainwater is concentrated, guided, and blocked. The slope and outer edge are used to increase the contact area of ​​rainwater, reducing splashing and seepage.

Benefits of technology

It simplifies the installation process, reduces rainwater splashing and seepage, improves structural stability and waterproofing, and extends the lifespan of the sunroom.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of spliced sunlight rooms, in particular to a corner column for a sunlight room. According to the technical scheme, the corner column for the sunlight room comprises a corner column body and a beam; an inserting block is arranged on the corner column body; the house beam is characterized in that the house beam is hollow, and the inserting block is inserted into an inner cavity of the house beam; spoilers are arranged on the corner column body and the beam; the spoiler on the corner column body is provided with an insertion plate, and the insertion plate is inserted into an inner cavity of the spoiler on the beam; a groove is formed in the corner column body; and a groove is formed in the house beam. Installation work of the corner column body and the beam is completed through the inserting block and the inserting plate, meanwhile, part of rainwater is blocked through the flow blocking plate, then the rainwater flows to the groove and the groove along the flow blocking plate, then the rainwater is guided in a centralized mode and treated in a unified mode, accumulated water residues caused by splashing and scattering of the rainwater are reduced, and the service life of the corner column is prolonged. And water seepage is caused for a long time.
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Description

Technical Field

[0001] This utility model relates to the field of splicing sunroom technology, and in particular to a corner column for sunrooms. Background Technology

[0002] A sunroom is a non-traditional building constructed with translucent panels and metal profiles for everyday use, such as enjoying sunlight or growing flowers and plants. To ensure its aesthetics and facilitate sunlight penetration, existing sunrooms typically employ a sloping roof structure, with corner beams between the sloping roof and the vertical side walls of the sunroom to guide rainwater to both ends of the sunroom.

[0003] When installing corner beams, existing technologies mostly use bolts, washers, and connectors for fixing. This requires repeated positioning and hole alignment between the various parts, making the installation process complex and cumbersome. In addition, the large number of parts will increase the gaps between them, making it easy for rainwater to seep in, which will accelerate the aging and damage of the structure over time. Utility Model Content

[0004] In order to overcome the shortcomings of existing technology, such as complicated installation procedures and numerous gaps between the corner beam installation points, which allow rainwater to easily seep in and thus accelerate structural aging and damage, this utility model provides a corner column for sunrooms.

[0005] The technical solution is as follows: a corner column for a sunroom, comprising a corner column body and a roof beam; a connecting block is provided on the corner column body; characterized in that the roof beam is hollow, and the connecting block is inserted into the inner cavity of the roof beam; both the corner column body and the roof beam are provided with baffles; the baffles on the corner column body are provided with connecting plates, and the connecting plates are inserted into the inner cavity of the baffles on the roof beam; the corner column body is provided with grooves; the roof beam is provided with channels, and both the grooves and channels are connected to the edge of the baffles near the corner column body.

[0006] As an improvement to the above solution, the groove and the trench are on the same horizontal line, and the groove and the trench have the same depth. When the plug block is inserted into the inner cavity of the beam and the plug plate is inserted into the inner cavity of the baffle plate on the beam, the groove and the trench are connected.

[0007] As an improvement to the above solution, the baffle plate is provided with three inclined surfaces with different included angles to the groove. The included angles are, in order from smallest to largest, the first inclined surface, the second inclined surface, and the outer edge. Furthermore, from the closest to the groove to the furthest from the groove, the first inclined surface, the second inclined surface, and the outer edge are, in order, the first inclined surface, the second inclined surface, and the outer edge. The included angle between the first inclined surface and the groove is set to an obtuse angle.

[0008] As an improvement to the above scheme, the depth of both the groove and the trench is greater than the height of the first inclined surface.

[0009] As an improvement to the above solution, the plug-in plate is set in two sections, and a gap is provided between the two sections; the baffle plate on the roof beam has a horizontal partition in its inner cavity, and the size of the horizontal partition is the same as that of the gap.

[0010] As an improvement to the above solution, the plug block is hollow; the inner cavity of the plug block is provided with reinforcing ribs, which divide the inner cavity of the plug block into two uniform spaces.

[0011] As an improvement to the above solution, side plates are provided on the sides of the beams.

[0012] As an improvement to the above scheme, the connection surfaces of the side panels and the roof beams are set at a perpendicular angle.

[0013] Beneficial effects: This utility model completes the installation of the corner column body and the roof beam through the plug-in block and plug-in plate. At the same time, the deflector plate blocks some rainwater, and then the rainwater flows along the deflector plate to the groove and ditch. Some of the rainwater falls directly into the groove and ditch, and then the rainwater is concentrated and directed for unified treatment, reducing the problem of water accumulation and seepage caused by rainwater splashing and spreading.

[0014] This invention uses a first inclined surface with an obtuse angle to the groove to block some of the rainwater with strong impact. Then, a second inclined surface with a larger angle increases the contact area with the rainwater, thereby solving the problem that some rainwater splashes further and cannot be blocked. Finally, by increasing the contact area with the rainwater at the outer edge, the invention prevents the rainwater from flowing away from the groove, thus improving the blocking effect. Attached Figure Description

[0015] Figure 1 This utility model discloses a structural development diagram of the corner column body and the roof beam of the corner column for a sunroom;

[0016] Figure 2 This is a schematic diagram of the structure of the corner column body of the corner column for sunrooms disclosed in this utility model;

[0017] Figure 3 This is a schematic diagram of the combined structure of the corner column body and the roof beam of the corner column for the sunroom disclosed in this utility model.

[0018] The labels in the diagram are as follows: 1-Corner column body, 2-Room beam, 1001-Plug-in block, 1002-Plug-in plate, 1003-Baffle plate, 1004-Groove, 2001-Trough, 2002-Diaphragm, 2003-Side plate, 100101-Reinforcing rib, 100201-Gap, 100301-First slope, 100302-Second slope, 100303-Outer edge. Detailed Implementation

[0019] The above-described solution will be further illustrated below with reference to specific embodiments. It should be understood that these embodiments are for illustrative purposes only and are not intended to limit the scope of this application. The implementation conditions used in the embodiments may be further adjusted according to the conditions of specific manufacturers, and the implementation conditions not specified are generally those in routine experiments.

[0020] Example 1

[0021] A type of corner column for a sunroom, such as Figures 1-3 As shown, the structure includes a corner column body 1 and a beam 2; a plug-in block 1001 is provided on the corner column body 1; characterized in that the beam 2 is hollow, and the plug-in block 1001 is inserted into the inner cavity of the beam 2; both the corner column body 1 and the beam 2 are provided with baffle plates 1003; the baffle plate 1003 on the corner column body 1 is provided with a plug-in plate 1002, and the plug-in plate 1002 is inserted into the inner cavity of the baffle plate 1003 on the beam 2; a groove 1004 is provided on the corner column body 1; a groove 2001 is provided on the beam 2, and both the groove 1004 and the groove 2001 are connected to the edge of the baffle plate 1003 near the corner column body 1.

[0022] The groove 1004 and the trench 2001 are on the same horizontal line, and the depth of the groove 1004 and the trench 2001 is the same. When the plug block 1001 is plugged into the inner cavity of the beam 2 and the plug plate 1002 is plugged into the inner cavity of the baffle plate 1003 on the beam 2, the groove 1004 and the trench 2001 are connected.

[0023] The baffle plate 1003 is provided with three inclined surfaces with different included angles to the groove 1004. The included angles are, in ascending order, the first inclined surface 100301, the second inclined surface 100302, and the outer edge 100303. Furthermore, from the closest to the groove 1004 to the furthest from the groove 1004, the first inclined surface 100301, the second inclined surface 100302, and the outer edge 100303 are arranged in that order. The included angle between the first inclined surface 100301 and the groove 1004 is set to an obtuse angle.

[0024] The depths of both the groove 1004 and the trench 2001 are greater than the height of the first inclined surface 100301, in order to ensure that rainwater does not splash to the outside.

[0025] The plug-in plate 1002 is arranged in two sections, and a gap 100201 is provided between the two sections of the plug-in plate 1002; the inner cavity of the baffle plate 1003 on the beam 2 is provided with a transverse partition 2002, and the transverse partition 2002 is the same size as the gap 100201. When the plug-in plate 1002 is inserted into the inner cavity of the baffle plate 1003 on the beam 2, the transverse partition 2002 is inserted into the gap 100201, forming an interleaved structure in the inner cavity of the baffle plate 1003 on the beam 2.

[0026] The plug block 1001 is hollow; the inner cavity of the plug block 1001 is provided with a reinforcing rib 100101, which divides the inner cavity of the plug block 1001 into two uniform spaces.

[0027] Side plates 2003 are provided on the side of beam 2 to increase structural stability.

[0028] The side plate 2003 and the roof beam 2 are connected at a perpendicular angle, which further increases the structural strength.

[0029] The specific workings of this utility model are as follows:

[0030] refer to Figure 1 and Figure 3 As shown, firstly, the plug-in block 1001 is inserted into the inner cavity of the beam 2. At the same time, the plug-in plate 1002 is inserted into the inner cavity of the baffle plate 1003 on the beam 2, so that the groove 1004 and the trench 2001 are connected. In this way, the installation of the corner column body 1 and the beam 2 is completed. It should be noted that the groove 1004 and the trench 2001 are on the same horizontal line, and the groove 1004 and the trench 2001 have the same depth. When rainwater falls from above the sunroom, the baffle plate 1003 blocks some of the rainwater. Then the rainwater flows along the baffle plate 1003 to the groove 1004 and the trench 2001. Some of the rainwater falls directly into the groove 1004 and the trench 2001. Then the rainwater is concentrated and directed and treated uniformly to reduce the problem of water accumulation caused by rainwater splashing and spreading, which can lead to water seepage over a long period of time.

[0031] Furthermore, when rainwater rushes down from above the sunroom, the acceleration causes splashing, meaning some rainwater has a strong impact and some splashes further. Thus, refer to... Figure 2 As shown, to enhance the rainwater blocking effect of the baffle plate 1003, a first inclined surface 100301 with an obtuse angle to the groove 1004 can block some of the rainwater with strong impact. Then, a second inclined surface 100302 with a larger angle can increase the contact area with the rainwater, thereby solving the problem that some rainwater splashes further and cannot be blocked. Finally, the outer edge 100303 increases the contact area with the rainwater while preventing the rainwater from flowing away from the groove 1004, thus improving the blocking effect.

[0032] It should be noted that when the plug plate 1002 is inserted into the inner cavity of the baffle plate 1003 on the beam 2, the plug plate 1002 is arranged in two sections, and a gap 100201 is provided between the two sections of the plug plate 1002; a transverse partition 2002 is provided in the inner cavity of the baffle plate 1003 on the beam 2, and the transverse partition 2002 is the same size as the gap 100201. The transverse partition 2002 is inserted into the gap 100201, forming an interlaced structure in the inner cavity of the baffle plate 1003 on the beam 2, thereby optimizing the overall structure and improving structural stability.

[0033] Furthermore, the plug-in block 1001 is hollow; the inner cavity of the plug-in block 1001 is provided with reinforcing ribs 100101, which divide the inner cavity of the plug-in block 1001 into two uniform spaces. These two spaces can support each other when subjected to force, so that the entire structure of the plug-in block 1001 can be more evenly distributed when bearing load, thereby improving the structural strength of the plug-in block 1001. At the same time, the reinforcing ribs 100101 can also effectively prevent the plug-in block 1001 from undergoing excessive deformation during the process of being subjected to force, further ensuring the safety and stability of the structure.

[0034] Furthermore, a side plate 2003 is provided on the side of the beam 2, which can increase the structural stability of the beam 2 and distribute the stress to the side plate 2003. At the same time, the side plate 2003 is set at a perpendicular angle to the surface connected to the beam 2, thereby increasing the load-bearing capacity of the side plate 2003 and improving the overall structural stability.

[0035] The above embodiments are merely preferred embodiments of the present utility model and are not intended to limit the scope of the present utility model. Therefore, all equivalent changes made based on the content described in the claims of the present utility model should be included within the scope of the claims of the present utility model.

Claims

1. A corner column for a sunroom, comprising a corner column body (1) and a roof beam (2); a connecting block (1001) is provided on the corner column body (1); the roof beam (2) is hollow, and the connecting block (1001) is inserted into the inner cavity of the roof beam (2); characterized in that, the corner... The column body (1) and the house beam (2) are provided with the flow resistance plate (1003); the flow resistance plate (1003) on the corner column body (1) is provided with the plug-in plate (1002), and the plug-in plate (1002) is plugged into the inner cavity of the flow resistance plate (1003) on the house beam (2); the corner column body (1) is provided with the recess (1004); the house beam (2) is provided with the groove (2001), and the recess (1004) and the groove (2001) are connected with the edge of the flow resistance plate (1003) close to the corner column body (1).

2. A corner column for a sunroom as defined in claim 1, wherein The recess (1004) and the groove (2001) are on the same horizontal line, and the depth of the recess (1004) and the groove (2001) is consistent.

3. A corner column for a sunroom as defined in claim 2, wherein: The flow resistance plate (1003) is provided with three inclined surfaces with different included angle degrees with the recess (1004), and the included angle degrees are sequentially the first inclined surface (100301), the second inclined surface (100302) and the outer edge (100303) from small to large, and sequentially the first inclined surface (100301), the second inclined surface (100302) and the outer edge (100303) from close to the recess (1004) to far away from the recess (1004).

4. A corner column for a sunroom as defined in claim 3, wherein The depth of the recess (1004) and the groove (2001) is greater than the height of the first inclined surface (100301).

5. A corner column for a sunroom as defined in claim 4, wherein: The plug-in plate (1002) is provided in two sections, and a gap (100201) is arranged between the two sections of the plug-in plate (1002); the inner cavity of the flow resistance plate (1003) on the house beam (2) is provided with a transverse partition plate (2002), and the transverse partition plate (2002) is consistent with the size of the gap (100201).

6. A corner column for a sunroom as defined in claim 5, wherein: The plug-in block (1001) is provided in a hollow manner; the inner cavity of the plug-in block (1001) is provided with a reinforcing rib (100101).

7. A corner column for a sunroom as defined in claim 6, wherein The house beam (2) is provided with a side plate (2003) on the side.

8. A corner column for a sunroom according to claim 7, wherein: The side plate (2003) is provided at a perpendicular included angle with the connected surface of the house beam (2).