A long waterproof life of the sun room system

By combining frame modules and sealing modules, along with multi-level sealing and drainage design, the problems of short lifespan and high construction difficulty of sunroom sealing structures are solved, achieving a long-lasting, seamless waterproof effect and reducing construction difficulty and cost.

CN117905214BActive Publication Date: 2026-08-04陈勇 +1
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
陈勇
Filing Date
2023-05-08
Publication Date
2026-08-04

AI Technical Summary

Technical Problem

The existing sealing structure of sunrooms has a short service life in outdoor environments, is prone to leakage, and is difficult to construct, especially in environments with non-standard right-angle walls, where it is difficult to effectively seal the gaps between the glass, affecting the user experience and construction progress.

Method used

It adopts a combined structure of frame modules, sealing modules and glass modules, and through a multi-level sealing and drainage design, including a first wall-mounted beam, movable beam, main beam, side beam and second wall-mounted beam, combined with sealing strips and sealing components, it achieves multiple waterproof effects and allows the movable beam angle to be adjusted to adapt to non-standard wall surfaces.

Benefits of technology

It achieves a long-lasting, all-around waterproof effect, reduces construction difficulty and cost, ensures no water leakage at glass joints, and improves the user experience of the sunroom.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application provides a long waterproof life sunlight room system, which is used in a building environment with two adjacent wall surfaces and is mainly composed of a frame module, a sealing and pressing module and a glass module. The frame module is used as a whole skeleton and the sealing and pressing module is used to press and fix the glass module from the upper and lower sides. The frame module is mainly composed of an X-direction beam group, a first wall-adjacent beam, a front beam, a Y-direction beam group, a main beam, a side beam, a second wall-adjacent beam and a first movable beam and a second movable beam between the X-direction beam group and the Y-direction beam group. The application has multiple waterproof functions, realizes the waterproof and leakage-proof effect through water diversion and drainage structures, reduces the dependence on glue and adhesive tape, prolongs the waterproof life, has a simple assembly process, reduces the technical requirements for construction personnel, improves the construction efficiency and reduces the cost, and effectively deals with large-area installation environments.
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Description

Technical Field

[0001] This invention relates to the field of building technology, and in particular to a sunroom system with a long waterproof lifespan. Background Technology

[0002] A sunroom is a non-traditional, transparent structure made of various materials such as steel and aluminum, with glass attached to the frame. It can be used in residential, plant cultivation, and other environments. Currently, the sealing between the glass and the frame of a sunroom is usually achieved by sealing strips or glue. Although this structure is easy to implement, it has a short service life. After a few years of use in an outdoor environment, the glue is prone to aging, leading to leaks in the seal. For sunrooms used in residential environments, leaks can have a significant negative impact on the user experience.

[0003] Patent document 1 discloses a sunroom with a waterproof structure, which includes a roof, columns and walls, and is constructed by the roof, columns and walls. The roof includes a main beam, a secondary beam, a roof glass block and a roof cover. The main beam and the secondary beam are spaced apart. The main beam and the secondary beam are provided with a main drainage channel and a wire channel. On the outer side of the two sides of the channel wall of each main drainage channel, there are supporting bosses and sealing strips are installed on the bosses.

[0004] This sunroom structure achieves a double-layer waterproofing through drainage channels and sealing strips. However, it still struggles to meet long-term waterproofing requirements in harsh outdoor environments. Furthermore, for residential sunrooms like those in villas, which require installation against a wall, no specific structural design for waterproofing the wall-adjacent area is provided. Additionally, due to construction limitations, the two walls cannot be guaranteed to be perfectly 90-degree right angles. Since the profiles are mostly standard construction materials, accurately adjusting the angle to fit the wall requires highly skilled installers under these conditions, increasing the risk of errors, material scrap, or rework, severely impacting construction progress and costs, and ultimately failing to meet the required standards.

[0005] At the same time, there are situations where multiple glass panels need to be spliced ​​together along the length, and the gaps between the glass panels are difficult to seal effectively with materials such as glue, which affects the user experience.

[0006] Patent document 1 CN201310756689.6. Summary of the Invention

[0007] To overcome the shortcomings of existing technologies, this invention provides a sunroom system with a long waterproof lifespan, achieving a long-lasting and comprehensive waterproof effect.

[0008] The present invention solves the technical problem by adopting the following technical solution: a long-lasting waterproof sunroom system, comprising a frame module, a sealing module, and a glass module. The frame module is used to connect to the wall of a building, and the sealing module is attached to the top of the frame module and confines the glass module between the sealing module and the frame module. The frame module includes:

[0009] A first wall-mounted beam is fitted against the wall surface, and a column is installed below the first wall-mounted beam;

[0010] A first movable beam that can be tilted and set on the first wall-mounted beam;

[0011] A front beam is provided opposite to the first wall-mounted beam, and a column is provided below the front beam;

[0012] A second movable beam that can be tilted and mounted on the front beam;

[0013] An inclined main beam is provided between a first movable beam and a second movable beam. The upper end of the main beam is provided with at least two first main slots and two second main slots. The first main slots and the second main slots have a height difference and are used to fill the sealing strip.

[0014] A side beam is provided between the first movable beam and the second movable beam. The upper end of the side beam is provided with at least one first side groove and one second side groove. The first side groove and one second side groove have a height difference and are used to fill the sealing strip.

[0015] A second wall-mounted beam is provided between the first movable beam and the second movable beam. The upper end of the second wall-mounted beam is provided with at least one first side groove and one second side groove. The first side groove and one second side groove have a height difference and are used to fill the sealing strip.

[0016] The second wall-mounted beam is fitted against the wall surface, and the first wall-mounted beam and the second wall-mounted beam are respectively set on two adjacent wall surfaces;

[0017] The main beam, side beam, and second wall-mounted beam are arranged in parallel. The main beam is located between the side beam and the second wall-mounted beam. Glass modules are assembled between the main beam and the side beam, and between the main beam and the second wall-mounted beam, and the connection positions are sealed with sealing strips.

[0018] At least one waterproof component is provided at the upper end of the first wall-mounted beam, and the right end of the waterproof component abuts against the wall and is fixed with adhesive.

[0019] In several embodiments, the first wall-mounted beam includes a horizontal cavity, a vertical cavity, a lower cavity, a middle cavity, and an upper cavity. The vertical cavity is located to the right of the horizontal cavity. The lower cavity and the upper cavity are both located to the right of the vertical cavity. The upper cavity and the lower cavity are located at the upper and lower ends of the vertical cavity, respectively. The middle cavity is located between the upper cavity and the lower cavity. The vertical cavity is higher than the horizontal cavity. The horizontal cavity and the vertical cavity form a first open area for the first movable beam to be angled and installed. The first movable beam is fixed to the horizontal cavity by fasteners.

[0020] In several embodiments, the top surfaces of the vertical cavity and the upper cavity are connected to form a smooth water-retaining slope. The sides of the upper cavity, the middle cavity, and the lower cavity on the same side are all in contact with the wall. The lower cavity is connected to the column by fasteners. A locking member passes through the vertical cavity and enters the wall between the middle cavity and the lower cavity for fixation.

[0021] In several embodiments, the waterproof component includes a vertical plate, two water-blocking plates, and two water-guiding plates. The water-guiding plates are located on the left side of the vertical plate and at the upper and lower ends of the vertical plate, respectively. The two water-blocking plates are located on the right side of the vertical plate. The waterproof component is located above the vertical cavity. The water-guiding plates located below are connected to the vertical cavity by fasteners. The water-guiding plates have a curved and concave arc shape. The water-blocking plates are inclined and parallel to the water-blocking slope.

[0022] In several embodiments, the sealing module includes a bidirectional sealing component and a unidirectional sealing component. The unidirectional sealing component corresponds to the position of the second wall-mounted beam, and the two bidirectional sealing components correspond to the positions of the main beam and the side beam, respectively.

[0023] The bidirectional sealing component includes a bidirectional frame and an end cap. The opening of the bidirectional frame faces downward. A first sealing groove is provided on each side of the opening of the bidirectional frame. The first sealing groove is used to set a sealing strip pressed on the glass module. An installation groove is provided at the upper end of the bidirectional frame. The end cap is used to close the installation groove.

[0024] The one-way sealing component includes a one-way frame with an upward-facing opening and a cover. The cover is used to close the opening. A second sealing groove is provided on the left side of the one-way frame, and a third sealing groove is provided on the bottom right side of the one-way frame. The second sealing groove is used to set a sealing strip pressed against the wall, and the third sealing groove is used to set a sealing strip pressed against the glass module.

[0025] In several embodiments, the second wall-mounted beam includes a bottom frame, a middle frame, an upper frame, a top frame, and a corner frame arranged sequentially from bottom to top. The middle frame is connected to the wall by a locking device. The middle frame has an opening on the side facing away from the wall, and the opening is closed by a removable cover plate. The first side slot is located at the top edge of the upper frame, the second side slot is located at the top edge of the top frame, and the corner frame is located at the other edge of the top of the top frame.

[0026] A first water-blocking arm is provided on one side of the middle frame facing the wall, and a second water-blocking arm is provided on one side of the upper frame facing the wall.

[0027] A positioning plate is provided on one side of the upper frame away from the wall;

[0028] The second side slot and the third sealing slot are located on the upper and lower sides of the glass module, respectively.

[0029] In several embodiments, the main beam includes a first main cavity, a second main cavity, and side cavities. The second main cavity and the side cavities are both located above the first main cavity. The two side cavities are located on both sides of the second main cavity. The first main slot is located on the side cavity, and the second main slot is located on both sides of the top of the second main cavity.

[0030] The first main cavity has main baffles extending upward on both sides of the top, and there is a gap between the main baffles and the side cavities. One of the bidirectional frames is connected to the second main cavity by fasteners. The second main slot and the first sealing slot in the bidirectional sealing member are located on the upper and lower sides of the glass module, respectively.

[0031] The side beam includes a side cavity, a balancing cavity, and a connecting frame. A side baffle is provided on one side of the top of the side cavity. The balancing cavity is located above the side cavity, and the connecting frame is located above the side cavity. The first side groove is located on the side cavity, and the second side groove is located on the balancing cavity.

[0032] In one of the bidirectional sealing components, a first sealing groove and a second side groove are located on the upper and lower sides of the glass module, respectively, and a sealing strip is filled between the other first sealing groove and the balance tube.

[0033] In several embodiments, at least two glass modules are connected in the longitudinal direction by a sub-beam, and there is a height difference between the two glass modules on the sub-beam. The sub-beam is snapped between the second wall beam and the main beam and / or the main beam and the side beam. A sealing strip is filled between the sub-beam and the glass module. A drainage groove is provided on the sub-beam, and the drainage groove is connected to the second wall beam and the main beam and / or the main beam and the side beam.

[0034] In several embodiments, the sub-beam includes a base plate, a first side plate, and a second side plate. The first side plate and the second side plate are both vertically disposed on the same side of the base plate. The first side plate is provided with at least one first insertion groove, and the second side plate is provided with at least two second insertion grooves. Both the first insertion groove and the second insertion groove are used to fill the sealing strip. One glass module is disposed between the first side plate and the second side plate, and the other glass module is disposed above the second side plate.

[0035] In several embodiments, the front beam includes a vertical cavity and a horizontal cavity, the vertical cavity being higher than the horizontal cavity and forming a second open area between them, the second open area being used to accommodate a second movable beam; the outer side of the vertical cavity is connected to a water collection component.

[0036] The present invention has the following beneficial effects:

[0037] 1. The present invention uses a structure combining a first wall-mounted beam and a second wall-mounted beam with a waterproof component to achieve a stable connection with the wall while providing a multi-level waterproof effect. Through a blocking + connecting + guiding scheme, water is first blocked at the sealing colloid position, and a small portion of the water that breaks through the blocking position is discharged into the groove through the water receiving and guiding to the outside of the sunroom, achieving a near-complete waterproof and leak-proof effect.

[0038] 2. This invention uses the structure of the main beam, side beam and second wall beam, combined with the sealing module, to waterproof, divert and drain the connection point with the glass. Similarly, through the blocking + connecting + diverting scheme, the water is first blocked by the sealing colloid, and a small amount of water that breaks through the water blocking position is discharged into the groove through the water receiving and diverting to the outside of the sunroom, achieving a near-complete waterproof and leak-proof effect.

[0039] 3. The present invention, through the structure of the first wall-mounted beam, the front beam, the first movable beam, and the second movable beam, allows for adjustment of the position and connection angle of the first movable beam and the second movable beam according to the actual site conditions. This enables the lower end face of the first wall-mounted beam and the front beam to be horizontally installed with respect to the ground, eliminating the need to cut different beveled surfaces according to the angle of the slope of the top glass. Similarly, the end faces of the main beam, side beam, and the second wall-mounted beam connected to the first wall-mounted beam and the front beam also do not need to be cut with beveled surfaces; they can be directly overlapped. This reduces the technical requirements for construction personnel, improves construction progress, avoids the occurrence of scrap materials, and reduces costs.

[0040] 4. This invention uses a sub-beam structure to connect the two layers of glass along the length, and adopts a tile-like structure to provide multiple waterproof seals at the glass joints. At the same time, it guides and drains water that breaks through the seals, ensuring that no water accumulates at the glass joints and falls into the interior of the room. Attached Figure Description

[0041] The accompanying drawings described herein are for illustrative purposes only and do not represent all possible implementations, nor should they be considered as limiting the scope of the invention.

[0042] Figure 1 The overall structure of a long-waterproof sunroom system in one embodiment is schematically shown;

[0043] Figure 2 schematically shown Figure 1 The cross-sectional structure in the XX direction;

[0044] Figure 3 schematically shown Figure 1 The cross-sectional structure in the YY direction;

[0045] Figure 4 schematically shown Figure 2 The enlarged structure at the position of the second beam against the wall;

[0046] Figure 5 schematically shown Figure 2 Enlarged structure of the unidirectional sealing component;

[0047] Figure 6 schematically shown Figure 2 Enlarged structure of the central main beam;

[0048] Figure 7 schematically shown Figure 2 Enlarged structure of the middle and side beams;

[0049] Figure 8 schematically shown Figure 2 Enlarged structure of bidirectional sealing component;

[0050] Figure 9 schematically shown Figure 3 An enlarged structure at the position of the first beam against the wall;

[0051] Figure 10 schematically shown Figure 9 Enlarged structure of waterproof components;

[0052] Figure 11 schematically shown Figure 3 An enlarged structure of the secondary beam in the middle;

[0053] Figure 12 schematically shown Figure 1 Drainage principle structure at the location of the secondary beam;

[0054] Figure 13 schematically shown Figure 1 A partial upward-view structure;

[0055] Figure 14 schematically shown Figure 13 The enlarged structure of part A in the text. Detailed Implementation

[0056] The embodiments of the present invention will be described in detail below. In order to make the objectives, technical solutions and advantages of the embodiments of the present invention clearer, the technical solutions of the embodiments of the present invention will be clearly and completely described below in conjunction with the embodiments of the present invention. Obviously, the described embodiments are some embodiments of the present invention, but not all embodiments.

[0057] Therefore, the detailed description of the embodiments of the present invention provided below is not intended to limit the scope of the claimed invention, but merely to illustrate selected embodiments of the invention. All other embodiments obtained by those skilled in the art based on the embodiments of the present invention without inventive effort are within the scope of protection of the present invention.

[0058] The terminology used herein is intended to explain the embodiments and is not intended to limit and / or restrict the invention.

[0059] For example, expressions such as "in a certain direction", "along a certain direction", "relative", "upper or lower", "front", "back", "left", "right", "top", and "bottom" indicate relative or absolute configuration. They not only indicate such a configuration in a strict sense, but also indicate a state of relative displacement with tolerance or with an angle or distance that can achieve the same level of functionality.

[0060] Example 1

[0061] The long-life waterproof sunroom system in this embodiment is used in a building environment with two adjacent walls 3a and 3b. It is mainly composed of a frame module, a sealing module, and a glass module 20. The frame module is used as the overall skeleton, and the sealing module presses and fixes the glass module 20 on the top from the top and bottom.

[0062] For ease of understanding, a coordinate system including the X, Y, and Z directions is established.

[0063] like Figures 1-3 As shown, the frame module is mainly composed of X-direction beam groups distributed along the X direction: the first wall-mounted beam 11 and the front beam 13, and Y-direction beam groups distributed along the Y direction: the main beam 15, the side beam 16, and the second wall-mounted beam 17, as well as the first movable beam 12 and the second movable beam 13 connected between the X-direction beam groups and the Y-direction beam groups. The Y-direction beam groups are inclined to form a sloping roof frame structure for easy drainage. The X-direction beam groups can be horizontal or inclined, which can be freely selected for easy drainage.

[0064] Meanwhile, columns 1 are installed at corresponding positions below the first wall-mounted beam 11 and the front beam 13 for support.

[0065] The front beam 13 is located on the side away from the wall 3b. It is composed of a vertical cavity 132 and a horizontal cavity 133 connected vertically, forming an L-shaped structure. The vertical cavity 132 is higher than the horizontal cavity 133 and forms a second open area 101b between them. The second open area 101b is used to accommodate the second movable beam 14. This area has a large space, which facilitates the second movable beam 14 to be fixedly connected after the angle and position are adjusted here. The outside of the vertical cavity 132 is connected to the water collection component 5.

[0066] Here, the second movable beam 14 is adjustable because in most construction environments, the walls 3a and 3b are not necessarily at a precise 90-degree right angle. When the second movable beam 14 is independent or connected in the open area 101, it can have a few centimeters of adjustment space, which greatly reduces the difficulty of accurate measurement and processing, avoids changing the shape of the second movable beam 14, and avoids re-molding and subsequent processing operations.

[0067] Correspondingly, the position of the first movable beam 12 is the same.

[0068] Combination Figure 4 The second wall-mounted beam 17 is inclinedly arranged between the first movable beam 12 and the second movable beam 14. The second wall-mounted beam 17 includes a bottom frame 172, a middle frame 173, an upper frame 174, a top frame 175, and a corner frame 176 arranged sequentially from bottom to top. The middle frame 173 is connected to the wall surface by a locking member. The middle frame 173 has an opening on the side away from the wall surface 3a. The opening is closed by a detachable cover plate 179. The first side slot 171a is located at the top edge of the upper frame 174, the second side slot 171b is located at the top edge of the top frame 175, and the corner frame 176 is located at the other edge of the top of the top frame 175. The structure of the opening combined with the cover plate 179 makes it convenient to lock the locking member here, and then cover it with the cover plate 179 to maintain aesthetics.

[0069] A first water-blocking arm 177 is provided on one side of the middle frame 173 facing the wall, and a second water-blocking arm 178 is provided on one side of the upper frame 174 facing the wall. Both the first water-blocking arm 177 and the second water-blocking arm 178 abut against the wall 3a.

[0070] A positioning plate 1741 is provided on one side of the upper frame 174 away from the wall, while the second side slot 171b and the third sealing slot 423 are located on the upper and lower sides of the glass module 20, respectively.

[0071] Combination Figure 5The one-way sealing component 42 in the sealing module includes a one-way frame 421 with the opening facing upward and a cover 422. The cover 422 is used to close the opening. Similarly, this structure is designed to facilitate the connection between the folding arm 176 and the one-way frame 421 by fasteners, and to provide shielding.

[0072] A second sealing groove 423 is provided on the left side of the one-way frame 421, and a third sealing groove 424 is provided on the bottom right side of the one-way frame 421. The second sealing groove 423 is used to set the sealing strip 2 pressed on the wall surface 3a, and the third sealing groove 424 is used to set the sealing strip 2 pressed on the glass module 20. Thus, the side groove 171 and the third sealing groove 424 are located on the upper and lower sides of the glass module 20, respectively, to press and seal the glass.

[0073] Therefore, sealant 6 is applied at the contact points between the wall surface 3a and the sealing strip 2, and at the contact points between the corner frame 176 and the wall surface 3a, thus blocking water at both locations. Even if water flows through these blocking points, it will flow along the corner frame 176 into the groove formed by the upper end of the top frame 175 and the second side groove 171b for drainage. Furthermore, through the setting of the second water-blocking arm 178 and the first water-blocking arm 177, even if some water flows through the sealant 6, it will be blocked by the second water-blocking arm 178 and the first water-blocking arm 177 in sequence and discharged to the outside.

[0074] Combination Figure 6 As shown, the main beam 15 is also inclinedly arranged between the first movable beam 12 and the second movable beam 14. The main beam 15 includes a first main cavity 152, a second main cavity 153 and a side cavity 154. The second main cavity 153 and the side cavity 154 are both arranged above the first main cavity 152. The two side cavities 154 are respectively located on both sides of the second main cavity 153. The first main slot 151a is arranged on the side cavity 154, and the second main slot 152a is arranged on both sides of the top of the second main cavity 153.

[0075] Main baffles 1521 are provided on both sides of the top of the first main cavity 152, forming a drainage groove between the main baffles 1521 and the side cavity 154. There is a gap between the main baffles 1521 and the side cavity 154. One of the bidirectional frames 411 is connected to the second main cavity 153 by fasteners. The second main groove 152a and the first sealing groove 413 in the bidirectional sealing member 41 are located on the upper and lower sides of the glass module 20, respectively.

[0076] Combination Figure 7As shown, the side beam 16 is also inclinedly arranged between the first movable beam 12 and the second movable beam 14. The side beam 16 includes a side cavity 161, a balancing cavity 162 and a connecting frame 163. A side baffle 1611 is provided on one side of the top of the side cavity 161. The balancing cavity 162 is located above the side cavity 161. The connecting frame 163 is located above the side cavity 161. The first side groove 160a is located on the side cavity 161 and the second side groove 160b is located on the balancing cavity 162.

[0077] The main beam 15, the side beam 16 and the second wall-mounted beam 17 are arranged in parallel. The main beam 15 is located between the side beam 16 and the second wall-mounted beam 17. The glass module 20 is assembled between the main beam 15 and the side beam 16, and between the main beam 15 and the second wall-mounted beam 17, and the connection position is sealed by the sealing strip 2.

[0078] Combination Figure 8 As shown, the bidirectional sealing component 41 includes a bidirectional frame 411 and an end cap 412. The opening of the bidirectional frame 411 faces downward. A first sealing groove 413 is provided on each side of the opening of the bidirectional frame 411. The first sealing groove 413 is used to set the sealing strip 2 pressed on the glass module 20. The upper end of the bidirectional frame 411 is provided with an installation groove 414. The end cap 412 is used to close the installation groove 414.

[0079] One of the bidirectional frame bodies 411 is connected to the second main cavity 153 by fasteners. The second main slot 152a and the first sealing slot 413 in the bidirectional sealing member 41 are located on the upper and lower sides of the glass module 20, respectively, and are combined with the sealing strip 2 to press and seal the glass.

[0080] In another bidirectional sealing member 41, a first sealing groove 413 and a second side groove 160b are located on the upper and lower sides of the glass module 20, respectively. The other sealing groove and the balance cavity 162 are filled with a sealing strip 2, and the balance cavity 162 plays a supporting role here.

[0081] Combination Figure 9 As shown, the first wall-mounted beam 11 is attached to the wall surface 3b. The first wall-mounted beam 11 includes a horizontal cavity 111, a vertical cavity 112, a lower cavity 113, an upper cavity 114, and a middle cavity 115. The vertical cavity 112 is located to the right of the horizontal cavity 111. The horizontal cavity 111 and the vertical cavity 112 form an L-shaped structure.

[0082] The lower cavity 113 and the upper cavity 114 are both located on the right side of the vertical cavity 112. The upper cavity 114 and the lower cavity 113 are located at the upper and lower ends of the vertical cavity 112, respectively. The middle cavity 115 is located between the upper cavity 114 and the lower cavity 113. The vertical cavity 112 is higher than the horizontal cavity 111. The horizontal cavity 111 and the vertical cavity 112 form an open area 101 for the first movable beam 12 to be angled and installed. The first movable beam 12 and the horizontal cavity 111 are fixed together by fasteners.

[0083] Meanwhile, the top surfaces of the vertical cavity 112 and the upper cavity 114 are connected to form a smooth water-retaining slope 102. The sides of the upper cavity 114, the lower cavity 113, and the middle cavity 115 on the same side are all in contact with the wall surface 3b. The lower cavity 113 is connected to the column 1 by fasteners. A locking piece passes through the vertical cavity 112 and enters the wall surface 3b between the upper cavity 114 and the lower cavity 113 for fixation.

[0084] Combination Figure 10 As shown, a waterproof component 30 is provided at the upper end of the first wall-mounted beam 11. The waterproof component 30 includes a vertical plate 31, two water-blocking plates 32 and two water-guiding plates 33. The water-guiding plates 33 are located on the left side of the vertical plate 31 and at the upper and lower ends of the vertical plate 31 respectively. The two water-blocking plates 32 are located on the right side of the vertical plate 31. The right end of the water-blocking plate 32 abuts against the wall surface 3b and is fixed with adhesive.

[0085] The waterproof component 30 is positioned above the vertical cavity 112. The water-guiding plate 33 located below is connected to the vertical cavity 112 by fasteners. The water-guiding plate 33 has a curved and concave arc shape. The water-blocking plate 32 is inclined and parallel to the water-blocking slope 102. The area below the water-guiding plate 33 is an open area forming a groove.

[0086] Among them, at the position of wall 3b, the connection between glass module 20 and wall 3b, the connection between water baffle 32 above waterproof component 30 and wall 3b, and the connection between upper cavity 114 and wall 3b are all coated with sealant 6, thus forming four waterproof sealing lines.

[0087] After the waterproof component 30 is installed on the top of the wall 3b, glue is applied to the upper surface to force waterproofing. Even if an accident occurs, because of the slope and glue application design, the amount of water that leaks down is not large and the force is not strong. Therefore, the water will basically be diagonally guided to the groove along the bottom of the water guide plate 33 and eventually directed to the outside to avoid flowing into the room.

[0088] Even if the water flow breaks through the waterproof component 30, it will flow to the groove opening under the restriction of the water-retaining slope 102. Furthermore, even if the water flow breaks through the water-retaining slope 102, it will be blocked again at the inclined upper end face of the middle cavity 115 and the lower cavity 113, completely preventing the water flow from entering the room.

[0089] like Figures 11-12 As shown, considering that if the length value in the Y direction is too large, it will result in an excessively long glass panel that is difficult to handle and assemble, a secondary beam 50 is added to connect the two shorter glass modules 20 in the length direction. The two glass modules 20 have a height difference on the secondary beam 50. The secondary beam 50 is snapped between the second wall beam 17 and the main beam 15 and / or the main beam 15 and the side beam 16. A drainage groove is provided on the secondary beam 50, which is connected to the second wall beam 17 and the main beam 15 and / or the main beam 15 and the side beam 16.

[0090] The sub-beam 50 includes a base plate 51, a first side plate 52, and a second side plate 53. The first side plate 52 and the second side plate 53 are both vertically arranged on the same side of the base plate 51. The first side plate 52 is provided with at least one first insertion groove 521, and the second side plate 53 is provided with at least two second insertion grooves 531. The first insertion groove 521 and the second insertion groove 531 are both used to fill the sealing strip 2. One glass module 20 is disposed between the first side plate 52 and the second side plate 53, and the other glass module 20 is disposed above the second side plate 53.

[0091] The first side plate 52 and the first insertion groove 521 form two first grooves 5201, and the second side plate 53 and the second insertion groove 531 form two second grooves 5301. The first grooves 5201 and the second grooves 5301 are used to drain water to the second wall beam 17 and the main beam 15 and / or the main beam 15 and the side beam 16.

[0092] The X-direction length of the base plate 51 is less than the X-direction length of the second side plate 53. Taking the sub-beam 50 set between the main beam 15 and the side beam 16 as an example, the two ends of the first side plate 52 in the X-direction are respectively mounted above the main baffle 1521 and the side baffle 1611, and the two ends of the second side plate 53 in the X-direction are respectively mounted above the first main slot 151a and the first side slot 160a. Of course, there are gaps between the first side plate 52 and the second side plate 53 and the main beam 15 and the side beam 16. These gaps correspond to the slots at their respective positions. Thus, the water accumulated in the first side plate 52 and the second side plate 53 will flow into the slots in the main beam 15 and the side beam 16 for discharge.

[0093] Meanwhile, a strip 54 can be installed between the glass and the second side panel 53, squeezing into the gap between them. Since the glass is installed at an angle, rainwater normally flows down along its angle and will not flow into the sub-beam. That is, rainwater flows down to the lower left along the upper surface of the glass. Even if a small amount of water tries to flow from left to right due to strong winds, it will be blocked by the strip at the circle. In extreme cases, a small amount of water may cross the strip at the circle and flow into the sub-beam. Then, it will be diverted through the first channel 5201 and the second channel 5301 to the second wall beam 17 and the main beam 15 and / or the main beam 15 and the side beam 16, thereby preventing water from flowing into the sunroom.

[0094] like Figures 12-14 As shown, rainwater slides down the inclined glass surface in the Y direction, and rainwater in the second wall beam 17, main beam 15, and side beam 16 distributed in the Y direction also flows into the water collection tank 5 through their respective internal grooves. The first wall beam 11, front beam 13, and water collection tank 5 distributed in the X direction respectively discharge rainwater in the X direction. Figure 12 The arrows in the diagram indicate the possible direction of rainwater flow.

[0095] Meanwhile, water outlets 100 are provided at the ends of the second wall beam 17, the main beam 15 and the side beam 16. The water outlets 100 are located beyond the front beam 13 and above the water collection trough 5, which facilitates drainage.

[0096] It should be noted that the fasteners and locking components mentioned above are conventional bolts or screws.

[0097] In addition, steel pipes can be inserted into the larger cavities of the front beam 13 and the first wall-mounted beam 11 to increase strength.

[0098] Furthermore, the front beam 13 and the first wall-mounted beam 11 extend beyond the column 1 by a certain length in the X direction, such as 20-30mm. Drainage holes are opened at the extended positions, and the accumulated water is discharged through the drainage holes.

[0099] Furthermore, the first main cavity 152, the side cavity 161 in the main beam 15, the second wall-mounted beam 17, and the same side position below the top frame 175 are recessed in the Y direction by a certain distance. This recessed position forms a stepped surface structure to cooperate with the limiting tube 131 fixed at the upper end of the front beam 13 for locking. The corresponding first main cavity 152 and side cavity 161 extend beyond the front beam 13 in the Y direction. In this way, the water in the main beam 15, the side beam 16, and the second wall-mounted beam 17 can be discharged to the outside of the front beam 13.

[0100] In addition, considering the strong winds, cover plates 4a, 4b, 4c, 4d, and 4e are installed at the exposed positions of the front beam 13, the first wall-mounted beam 11, the main beam 15, the side beam 16, and the second wall-mounted beam 17. Magnetic materials are used to seal all exposed profile ends, thus preventing wind from blowing into the profiles and disturbing the water flow without affecting the normal drainage process.

[0101] The examples, embodiments, and particular forms of the invention illustrated have been shown and described in detail in the accompanying drawings and foregoing description, and should also be considered illustrative rather than restrictive. The description of a particular feature in one embodiment does not imply that those particular features must be limited to that one embodiment. Features of one embodiment can be used in combination with features of other embodiments, as will be understood by those skilled in the art, whether or not explicitly stated. Exemplary embodiments have been shown and described, and all variations and modifications fall within the spirit of the invention and are intended to be protected.

[0102] Column 1

[0103] Sealing strip 2

[0104] Walls 3a and 3b

[0105] Cover plates 4a, 4b, 4c, 4d, 4e

[0106] Water collection component 5

[0107] Sealant 6

[0108] Glass Module 20

[0109] First open area 101a

[0110] Second open area 101b

[0111] 102 water-retaining slope

[0112] First beam against the wall 11

[0113] Horizontal cavity 111

[0114] Vertical cavity 112

[0115] Lower cavity 113

[0116] Upper cavity 114

[0117] Medium cavity 115

[0118] First movable beam 12

[0119] Front beam 13

[0120] Limit tube 131

[0121] Vertical cavity 132

[0122] Horizontal cavity 133

[0123] Second movable beam 14

[0124] Main beam 15

[0125] First main slot 151a

[0126] Second main slot 152a, first main cavity 152, main baffle 1521, second main cavity 153, side cavity 154, side beam 16

[0127] First side slot 160a

[0128] Second side slot 160b side cavity 161 side baffle 1611 balancing cavity 162 connecting frame 163 second wall beam 17 first side slot 171a second side slot 171b bottom frame 172 middle frame 173 upper frame 174 positioning plate 1741 top frame 175 corner frame 176 first water-blocking arm 177 second water-blocking arm 178 cover plate 179 waterproof component 30 vertical plate 31 water-blocking plate 32

[0129] 33 Water intake plate, 41 Bidirectional sealing component, 411 Bidirectional frame, 412 End cap

[0130] First sealing groove 413 Installation groove 414 One-way sealing component 42 One-way frame 421 Cover 422

[0131] Second sealing groove 423

[0132] Third sealing groove 424 sub-beam 50

[0133] base body 51

[0134] First side plate 52, first insertion slot 521

[0135] Second side plate 53, second insertion groove 531, leather strip 54.

Claims

1. A long waterproof life-span sunroom system comprising a frame module to be connected to a wall surface of a building, a sealing module to be combined at the top of the frame module and to restrict a glass module between the sealing module and the frame module, and the glass module, characterized in that, The frame module includes: a first wall-mounted beam fitted against the wall surface, with a column below the first wall-mounted beam; a first movable beam tiltably mounted on the first wall-mounted beam; a front beam opposite to the first wall-mounted beam, with a column below the front beam; a second movable beam tiltably mounted on the front beam; a main beam tilted between the first and second movable beams, the upper end of the main beam having at least two first main slots and two second main slots, the first and second main slots having a height difference and used to fill a sealing strip; and a side beam positioned between the first and second movable beams, the upper end of the side beam having at least one first side slot and one second side slot, the first side slot and one second side slot having a height difference and used to fill a sealing strip. A sealing strip is provided; a second wall-mounted beam is disposed between the first movable beam and the second movable beam, the upper end of the second wall-mounted beam is provided with at least one first side groove and one second side groove, the first side groove and one second side groove have a height difference and are used to fill the sealing strip; the second wall-mounted beam is disposed against the wall surface, and the first wall-mounted beam and the second wall-mounted beam are respectively disposed on two adjacent wall surfaces; wherein, the main beam, the side beam and the second wall-mounted beam are disposed in parallel, the main beam is located between the side beam and the second wall-mounted beam, the glass modules are assembled between the main beam and the side beam, and between the main beam and the second wall-mounted beam, and the connection position is sealed by the sealing strip; at least one waterproof component is provided at the upper end of the first wall-mounted beam, the right end of the waterproof component abuts against the wall surface and is fixed with adhesive.

2. The long-waterproof sunroom system according to claim 1, characterized in that, The first wall-mounted beam includes a horizontal cavity, a vertical cavity, a lower cavity, a middle cavity, and an upper cavity. The vertical cavity is located to the right of the horizontal cavity. The lower cavity and the upper cavity are both located to the right of the vertical cavity. The upper cavity and the lower cavity are located at the upper and lower ends of the vertical cavity, respectively. The middle cavity is located between the upper cavity and the lower cavity. The vertical cavity is higher than the horizontal cavity. The horizontal cavity and the vertical cavity form a first open area for the first movable beam to be angled and installed. The first movable beam is fixed to the horizontal cavity by fasteners.

3. The long-waterproof sunroom system according to claim 2, characterized in that, The top surface of the vertical cavity and the upper cavity are connected to form a smooth water-retaining slope. The sides of the upper cavity, middle cavity and lower cavity on the same side are all in contact with the wall. The lower cavity is connected to the column by fasteners. A locking piece passes through the vertical cavity and enters the wall between the middle cavity and the lower cavity for fixation.

4. A long-waterproof sunroom system according to claim 3, characterized in that, The waterproof component includes a vertical plate, two water-blocking plates, and two water-draining plates. The water-draining plates are located on the left side of the vertical plate and at the upper and lower ends of the vertical plate, respectively. The two water-blocking plates are located on the right side of the vertical plate. The waterproof component is located above the vertical cavity. The water-draining plates located below are connected to the vertical cavity by fasteners. The water-draining plates have a curved and concave arc shape. The water-blocking plates are inclined and parallel to the water-blocking slope.

5. A long-waterproof sunroom system according to claim 1, characterized in that, The sealing module includes a bidirectional sealing component and a unidirectional sealing component. The unidirectional sealing component corresponds to the position of the second wall-adjacent beam, and the two bidirectional sealing components correspond to the positions of the main beam and the side beam, respectively. The bidirectional sealing component includes a bidirectional frame and an end cap. The opening of the bidirectional frame faces downward. A first sealing groove is provided on each side of the opening of the bidirectional frame. The first sealing groove is used to set a sealing strip pressed on the glass module. An installation groove is provided at the upper end of the bidirectional frame. The end cap is used to close the installation groove. The one-way sealing component includes a one-way frame with an upward-facing opening and a cover. The cover is used to close the opening. A second sealing groove is provided on the left side of the one-way frame, and a third sealing groove is provided on the bottom right side of the one-way frame. The second sealing groove is used to set a sealing strip pressed against the wall, and the third sealing groove is used to set a sealing strip pressed against the glass module.

6. A long-waterproof sunroom system according to claim 5, characterized in that, The second wall-mounted beam includes a bottom frame, a middle frame, an upper frame, a top frame, and a corner frame arranged sequentially from bottom to top. The middle frame is connected to the wall by a locking device. The middle frame has an opening on the side facing away from the wall, and the opening is closed by a removable cover plate. The first side slot is located at the top edge of the upper frame, the second side slot is located at the top edge of the top frame, and the corner frame is located at the other edge of the top of the top frame. A first water-blocking arm is provided on the side of the middle frame facing the wall, and a second water-blocking arm is provided on the side of the upper frame facing the wall; a positioning plate is provided on the side of the upper frame away from the wall; the second side slot and the third sealing slot are located on the upper and lower sides of the glass module, respectively.

7. A long-waterproof sunroom system according to claim 6, characterized in that, The main beam includes a first main cavity, a second main cavity, and side cavities. The second main cavity and the side cavities are both located above the first main cavity. The two side cavities are located on both sides of the second main cavity. The first main slot is located on the side cavity, and the second main slot is located on both sides of the top of the second main cavity. The first main cavity has upward-extending main baffles on both sides of its top, and there is a gap between the main baffles and the side cavities. One of the bidirectional frames is connected to the second main cavity by fasteners. The second main slot and the first sealing slot in the bidirectional sealing member are located on the upper and lower sides of the glass module, respectively. The side beam includes a side cavity, a balancing cavity, and a connecting frame. A side baffle is provided on one side of the top of the side cavity. The balancing cavity is located above the side cavity. The connecting frame is located above the side cavity. The first side groove is located on the side cavity. The second side groove is located on the balancing cavity. In one of the bidirectional sealing components, the first sealing groove and the second side groove are located on the upper and lower sides of the glass module, respectively. The other first sealing groove is filled with a sealing strip between itself and the balancing tube.

8. A long-waterproof sunroom system according to claim 7, characterized in that, At least two glass modules are connected in the longitudinal direction by a sub-beam, and there is a height difference between the two glass modules on the sub-beam. The sub-beam is snapped between the second wall beam and the main beam and / or the main beam and the edge beam. A sealing strip is filled between the sub-beam and the glass module. A drainage groove is provided on the sub-beam, and the drainage groove is connected to the second wall beam and the main beam and / or the main beam and the edge beam.

9. A long-waterproof sunroom system according to claim 8, characterized in that, The sub-beam includes a base plate, a first side plate, and a second side plate. The first side plate and the second side plate are both vertically disposed on the same side of the base plate. The first side plate is provided with at least one first insertion groove, and the second side plate is provided with at least two second insertion grooves. Both the first insertion groove and the second insertion groove are used to fill the sealing strip. One glass module is disposed between the first side plate and the second side plate, and the other glass module is disposed above the second side plate.

10. A long-waterproof sunroom system according to claim 1, characterized in that, The front beam includes a vertical cavity and a horizontal cavity. The vertical cavity is higher than the horizontal cavity and forms a second open area between them. The second open area is used to accommodate the second movable beam. The outside of the vertical cavity is connected to the water collection component.