A sunlight room skeleton system convenient to adjust installation
By using cross-connected profile assemblies and movable beam structures, the problems of easy aging of sunroom glass seals and construction on non-standard right-angle walls are solved, achieving efficient sealing and drainage effects and reducing construction difficulty and cost.
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
The existing sealing structure between the glass and the frame of the sunroom is prone to aging and leakage. Moreover, it is difficult to construct on non-standard right-angle walls, which can easily lead to scrapping and increased costs.
The X-axis and Y-axis profile assemblies are cross-connected, including tiltable movable beams and front and rear beam structures, which are fixed by fasteners. The movable beam angle can be adjusted to adapt to non-standard right-angle walls. Combined with smooth water-retaining slopes and cover plates, it can achieve sealing and drainage.
It reduced the technical requirements for construction workers, improved the construction progress, avoided the occurrence of waste materials, reduced costs, and ensured sealing and drainage effects.
Smart Images

Figure CN117868373B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of sunroom technology, and in particular to a sunroom frame system that is easy to adjust and install. 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] For residential buildings such as villas, sunrooms need to be constructed against a wall. Due to the limitations of the construction environment, the two walls cannot be guaranteed to be a precise 90-degree right angle. Since the profiles are mostly of standard construction, accurately adjusting the angle to match the wall requires a high level of technical skill from the construction workers. This can easily lead to construction errors, resulting in the scrapping or rework of the profiles, which seriously affects the construction progress and cost, making it difficult to meet the requirements.
[0005] Patent document 1 CN201310756689.6. Summary of the Invention
[0006] The present invention aims to overcome the shortcomings of existing technologies by providing a sunroom frame system that is easy to adjust and install.
[0007] The present invention solves the technical problem by adopting the following technical solution: a sunroom frame system that is easy to adjust and install, comprising cross-connected X-direction profile groups and Y-direction profile groups, wherein the Y-direction profile groups are used to clamp glass, and the X-direction profile groups include:
[0008] A rear beam is fitted to the wall surface, and a column is provided below the rear beam;
[0009] A first movable beam that can be tilted and mounted on the rear beam;
[0010] A front beam is disposed opposite to the rear beam, and a column is disposed below the front beam;
[0011] A second movable beam that can be tilted and mounted on the front beam;
[0012] The Y-axis profile group is inclinedly disposed between the first movable beam and the second movable beam.
[0013] In several embodiments, the rear beam includes a first transverse cavity, a first vertical cavity, a lower cavity, and an upper cavity. The first vertical cavity is located to the right of the first transverse cavity. The lower cavity and the upper cavity are both located to the right of the first vertical cavity. The upper cavity and the lower cavity are located at the upper and lower ends of the first vertical cavity, respectively. The first vertical cavity is higher than the first transverse cavity. The first transverse cavity and the first vertical cavity form an open area for the first movable beam to be angled and installed. The first movable beam and the first transverse cavity are fixed together by fasteners.
[0014] In several embodiments, the top surfaces of the first vertical cavity and the upper cavity are connected to form a smooth water-retaining slope. The sides of the upper cavity and the lower cavity on the same side are in contact with the wall. The lower cavity is connected to the column by fasteners. A locking member passes through the first vertical cavity and enters the wall between the upper cavity and the lower cavity for fixation.
[0015] In several embodiments, the first transverse cavity extends upward on the side opposite to the first vertical cavity and forms a first retaining edge.
[0016] In several embodiments, the front beam includes a second transverse cavity and a second vertical cavity. The second vertical cavity is located to the left of the second transverse cavity and is higher than the second transverse cavity. The second transverse cavity and the second vertical cavity form an open area for the second movable beam to be angled and installed. The second movable beam and the second transverse cavity are fixed together by fasteners.
[0017] In several embodiments, the second transverse cavity extends upward on the side opposite to the second vertical cavity and forms a second retaining edge.
[0018] In several embodiments, the first movable beam includes a first main cavity and a first folding plate, the first folding plate being located on the bottom side of the first main cavity and being bent.
[0019] In several embodiments, the second movable beam includes a second main cavity and a second folding plate, the second folding plate being located on the bottom side of the second main cavity and being bent.
[0020] The present invention has the following beneficial effects:
[0021] This invention, through its structure of a rear beam, a front beam, a first movable beam, and a second movable beam, allows for adjustment of the position and connection angle of the first and second movable beams according to the actual site conditions. This enables the lower end faces of the rear and front beams to be installed horizontally to the ground, eliminating the need to cut different beveled surfaces based on the angle of the slope at the top glass position. Similarly, the end faces of the main beam, side beam, and second wall-mounted beam connected to the rear and front beams also do not require beveled surfaces; they can be directly overlapped. This reduces the technical requirements for construction workers, improves construction progress, avoids waste materials, and lowers costs. Attached Figure Description
[0022] 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.
[0023] Figure 1 The diagram schematically illustrates the integrated structure of the adjustable and installable sunroom frame system combined with the glass, as described in Embodiment 1.
[0024] Figure 2 schematically shown Figure 1 The cross-sectional structure along the Y direction;
[0025] Figure 3 schematically shown Figure 2 Enlarged structure of the front beam;
[0026] Figure 4 schematically shown Figure 2 Enlarged structure of the middle and rear beams;
[0027] Figure 5 schematically shown Figure 2 An enlarged structure of the first movable beam in the middle;
[0028] Figure 6 schematically shown Figure 2 An enlarged structure of the second movable beam in the middle. Detailed Implementation
[0029] 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.
[0030] 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.
[0031] The terminology used herein is intended to explain the embodiments and is not intended to limit and / or restrict the invention.
[0032] 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.
[0033] Example 1
[0034] The easily adjustable and installable sunroom frame system in this embodiment is used in architectural environments with two adjacent walls.
[0035] For ease of understanding, a coordinate system including the X, Y, and Z directions is established.
[0036] like Figures 1-6 As shown, the frame module is mainly composed of X-direction profile group 10 distributed along the X direction: rear beam 11 and front beam 13, and Y-direction profile group 20 distributed along the Y direction. The Y-direction profile group 20 can adopt conventional profile structure in the field. The Y-direction profile group 20 is inclined to form a sloping roof frame structure for installing glass 2. At the same time, the inclination angle facilitates drainage. The X-direction profile group 10 can be horizontal or inclined, which can be freely selected for the purpose of facilitating drainage.
[0037] Meanwhile, columns 1 are installed at corresponding positions below the rear beam 11 and the front beam 13 for support, raising the rear beam 11 and the front beam 13 to the specified height.
[0038] The front beam 13 is located on the side away from the wall. It is formed by two cavities connected vertically to form an L-shaped structure. Specifically, the front beam 13 includes a second transverse cavity 131 and a second vertical cavity 132. The second vertical cavity 132 is located to the left of the second transverse cavity 131 and is higher than the second transverse cavity 131. The second transverse cavity 131 extends upward on the side away from the second vertical cavity 132 and forms a second retaining edge 133.
[0039] The second transverse cavity 131 and the second vertical cavity 132 form an open area 101a for the second movable beam 14 to be angled and installed. The second movable beam 14 and the second transverse cavity 131 are fixed together by fasteners. The open area 101a has a large space, which makes it convenient for the second movable beam 14 to be fixedly connected after the angle and position are adjusted.
[0040] Here, the second movable beam 14 is adjustable because in most construction environments, the two right-angled walls are not necessarily exactly 90 degrees. 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.
[0041] Furthermore, the rear beam 11 is fitted to the wall surface. The rear beam 11 includes a first horizontal cavity 111, a first vertical cavity 112, a lower cavity 113, and an upper cavity 114. The first vertical cavity 112 is located to the right of the first horizontal cavity 111. The first horizontal cavity 111 and the first vertical cavity 112 form an L-shaped structure.
[0042] The lower cavity 113 and the upper cavity 114 are both located on the right side of the first vertical cavity 112. The upper cavity 114 and the lower cavity 113 are located at the upper and lower ends of the first vertical cavity 112, respectively. The first vertical cavity 112 is higher than the first horizontal cavity 111. The first horizontal cavity 111 and the first vertical cavity 112 form an open area 101b for the first movable beam 12 to be angled and installed. The first movable beam 12 and the first horizontal cavity 111 are fixed together by fasteners.
[0043] The installation relationship between the open area 101b and the first movable beam 12 is consistent with the relationship between the open area 101a and the second movable beam 14.
[0044] Meanwhile, the top surfaces of the first 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 and the lower cavity 113 on the same side are in contact with the wall. The lower cavity 113 is connected to the column 1 by fasteners. A locking member passes through the first vertical cavity 112 and enters the wall between the upper cavity 114 and the lower cavity 113 for fixation.
[0045] The first transverse cavity 111 extends upward from the side opposite to the first vertical cavity 112 and forms the first retaining edge 115.
[0046] Correspondingly, the first movable beam 12 includes a first main cavity 121 and a first folding plate 122. The first folding plate 122 is located on the bottom side of the first main cavity 121 and is bent.
[0047] The second movable beam 14 includes a second main cavity 141 and a second folding plate 142. The second folding plate 142 is located on the bottom side of the second main cavity 141 and is bent.
[0048] The corresponding side of the first folding plate 122 and the first main cavity 121, and the corresponding side of the second folding plate 142 and the second main cavity 141, constitute an area for the Y-direction profile assembly 20 to overlap on both sides. Since the first movable beam 12 and the second movable beam 14 can be inclined, the Y-direction profiles inside are also inclined.
[0049] It should be noted that the fasteners and locking components mentioned above are conventional bolts or screws.
[0050] In addition, steel pipes can be inserted into the larger cavities of the front beam 13 and the rear beam 11 to increase strength.
[0051] Furthermore, the front beam 13 and the rear 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 so that the accumulated water can be discharged through the drainage holes.
[0052] In addition, considering the strong winds, cover plates are installed at the exposed ends of the front beam 13, rear beam 11, first movable beam 12 and second movable beam 14. The cover plates can be made of magnetic material to seal all exposed profile ends. This prevents wind from blowing into the profile and disturbing the water flow without affecting the normal drainage process.
[0053] 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.
[0054] Column 1
[0055] Glass 2
[0056] Open areas 101a and 102b
[0057] 102 water-retaining slope
[0058] X-direction profile group 10
[0059] Rear beam 11
[0060] First transverse cavity 111
[0061] First vertical cavity 112
[0062] Lower cavity 113
[0063] Upper cavity 114
[0064] First edge guard 115
[0065] First movable beam 12
[0066] First main cavity 121
[0067] First folding plate 122
[0068] Front beam 13
[0069] Second transverse cavity 131
[0070] Second vertical cavity 132
[0071] Second side guard 133
[0072] Limit tube 131
[0073] Second movable beam 14
[0074] Second main cavity 141
[0075] Second folding plate 142
[0076] Y-direction profile group 20.
Claims
1. A sunroom frame system that is easy to adjust and install, comprising cross-connected X-direction profile assemblies and Y-direction profile assemblies, wherein the Y-direction profile assemblies are used to clamp glass, characterized in that, The X-direction profile assembly includes: A rear beam is fitted to the wall surface, and a column is provided below the rear beam; A first movable beam inclinedly mounted on the rear beam; A front beam is disposed opposite to the rear beam, and a column is disposed below the front beam; A second movable beam, tilted and mounted on the front beam; The Y-axis profile group is inclinedly arranged between the first movable beam and the second movable beam; The first movable beam includes a first main cavity and a first folding plate. The first folding plate is located on the bottom side of the first main cavity and is bent.
2. The sunroom frame system for easy adjustment and installation according to claim 1, characterized in that, The rear beam includes a first transverse cavity, a first vertical cavity, a lower cavity, and an upper cavity. The first vertical cavity is located to the right of the first transverse cavity. The lower cavity and the upper cavity are both located to the right of the first vertical cavity. The upper cavity and the lower cavity are located at the upper and lower ends of the first vertical cavity, respectively. The first vertical cavity is higher than the first transverse cavity. The first transverse cavity and the first vertical cavity form an open area for the first movable beam to be angled and installed. The first movable beam and the first transverse cavity are fixed together by fasteners.
3. The sunroom frame system for easy adjustment and installation according to claim 2, characterized in that, The top surfaces of the first vertical cavity and the upper cavity are connected to form a smooth water-retaining slope. The sides of the upper cavity and the lower cavity on the same side are in contact with the wall. The lower cavity is connected to the column by fasteners. A locking member passes through the first vertical cavity and enters the wall between the upper cavity and the lower cavity for fixation.
4. A sunroom frame system that is easy to adjust and install according to claim 3, characterized in that, The first transverse cavity extends upward from the side opposite to the first vertical cavity and forms the first retaining edge.
5. A sunroom frame system that is easy to adjust and install according to claim 4, characterized in that, The front beam includes a second transverse cavity and a second vertical cavity. The second vertical cavity is located to the left of the second transverse cavity and is higher than the second transverse cavity. The second transverse cavity and the second vertical cavity form an open area for the second movable beam to be angled and installed. The second movable beam and the second transverse cavity are fixed together by fasteners.
6. A sunroom frame system that is easy to adjust and install according to claim 5, characterized in that, The second transverse cavity extends upward from the side opposite to the second vertical cavity and forms the second retaining edge.
7. A sunroom frame system that is easy to adjust and install according to claim 6, characterized in that, The second movable beam includes a second main cavity and a second folding plate. The second folding plate is located on the bottom side of the second main cavity and is bent.