A panoramic sunroom

The panoramic sunroom design utilizes telescopic components and hydraulic rods to enable rapid opening and closing of the frame panels, solving the problem of slow air exchange inside the sunroom, improving ventilation and safety, and enhancing the user experience.

CN117306682BActive Publication Date: 2026-06-12JIANGSU DAYANG DOOR & WINDOW CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
JIANGSU DAYANG DOOR & WINDOW CO LTD
Filing Date
2023-11-17
Publication Date
2026-06-12

AI Technical Summary

Technical Problem

The air inside existing sunrooms cannot be exchanged quickly, resulting in increased temperature and polluted air. In addition, the open-air floor area is limited, and the use of a double-door design poses a safety risk.

Method used

Featuring a panoramic sunroom design, the frame panels can be opened and closed quickly using telescopic components, hydraulic rods, and hinges. Combined with guides and oscillating fans, this allows for rapid air exchange, enhancing safety and ventilation.

Benefits of technology

It enables rapid air exchange inside the sunroom, improves ventilation and safety, reduces temperature rise and air pollution, and enhances the user experience.

✦ Generated by Eureka AI based on patent content.

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    Figure CN117306682B_ABST
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Abstract

The application discloses a panoramic sunlight room and belongs to the field of architectural design, comprising a house frame body, a frame plate telescopically installed on one side of the house frame body, and a guide part cooperatively installed between the house frame body and the frame plate; the frame plate has a first position abutting and closing the house frame body and a second position away from the house frame body, the house frame body is provided with a telescopic assembly on each vertical side wall, the telescopic assembly is movably connected with the frame plate, a driving body is fixed on the ground of the house main body, and the driving body acts on the telescopic assembly to switch the frame plate between the first position and the second position; during use, the driving rod is started to drive the telescopic rod to reciprocate, thereby controlling the opening and closing of the frame plate; the guide part between the frame plate and the house frame body can play a good limiting and guiding role, the frame plate moves stably, the whole frame plate is opened in use, at this time, one end surface of the house frame body is fully communicated with the outside world, and the air in the space can be quickly exchanged with the outside world, thereby realizing rapid air replacement.
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Description

Technical Field

[0001] This application relates to the field of architectural design technology, specifically to a panoramic sunroom. Background Technology

[0002] A sunroom, also known as a glass room or winter garden, is a fully transparent, non-traditional building constructed with glass and a metal frame to allow residents to enjoy sunlight and connect with nature. Sunrooms are popular among those who appreciate nature and style, both domestically and internationally. In North China and Shanghai, sunrooms are widely used. Design and construction are tailored to the specific needs of the space and individual preferences, and interior decoration can be customized to personal tastes. Since sunrooms are often integrated into the overall living space, visual continuity is crucial.

[0003] Normal sunrooms don't use curtains or other sun-shading materials. Due to direct sunlight, the temperature inside rises quickly, and the air becomes stale after prolonged use. Simply opening the windows isn't enough for quick ventilation. Furthermore, some rooftop spaces are limited, and homeowners often maximize their use. If a double-door design is used, opening the door poses a significant safety hazard. Therefore, how to refresh the air inside a sunroom quickly while ensuring safety is a challenge that technicians need to address. Summary of the Invention

[0004] The purpose of this application is to provide a panoramic sunroom to solve the problem that the air inside the sunroom cannot be quickly replaced in a short period of time in the prior art.

[0005] To achieve the above objectives, this application employs the following technical solution: a panoramic sunroom, comprising a frame, with a retractable frame panel installed on one side of the frame, and a guide portion fitted between the frame and the frame panel; the frame panel has a first position that fits and closes the frame, and a second position that is away from the frame; telescopic components are installed on the vertical sidewalls of the frame, the telescopic components being movably connected to the frame panel; a driving body is fixed on the ground of the main body of the house, the driving body acting on the telescopic components to switch the frame panel between the first and second positions.

[0006] In a further embodiment of this application, the telescopic component includes an installation groove plate fixed to the house frame, and the bottom wall of the first sliding groove of the installation groove plate is provided with a first positioning groove at an incline. A drive plate is slidably installed in the first sliding groove of the installation groove plate, and a drive rod is integrally installed on the side wall of the drive plate. The drive rod is rotatably connected to the frame plate. The side of the drive plate facing the installation groove plate is provided with a second positioning groove at an incline. The second positioning groove and the first positioning groove are arranged intersectingly. The drive body moves to drive the plate to reciprocate.

[0007] By adopting the above technical solution, the telescopic rod utilizes the first and second positioning slots arranged in a planar intersection, along with the mounting plate and the driving body, to realize the reciprocating movement of the driving plate. The design is ingenious, the moving distance is greater, and the two positioning slots have a mutual guiding effect, which makes the driving plate move stably.

[0008] In a further embodiment, the driving body includes a hydraulic rod fixed to the base plate of the house frame, and a power rod is rotatably connected to the hydraulic shaft end of the hydraulic rod. A convex shaft is fixed to the end of the power rod away from the hydraulic rod, and the two ends of the convex shaft are correspondingly slidably connected to a second positioning groove and a first positioning groove. The power rod body is placed in the movable groove on the side of the mounting plate near the hydraulic rod.

[0009] By adopting the above technical solution, the hydraulic rod has a large output power that can meet the movement of heavy frame plates. The hydraulic shaft of the hydraulic rod drives the movement of the power rod to drive the plate. During the process, the power rod swings adaptively to smoothly complete the driving operation.

[0010] In a further embodiment of this application, at least one first hinge body is installed between the house frame and the bottom of the frame plate, and multiple second hinge bodies are installed between the house frame and the side wall of the frame plate. The frame plate switches between a first position and a second position, and the first hinge body deforms and supports the frame plate.

[0011] By adopting the above technical solution, the house frame and frame panels are installed in the structure through two hinge bodies. On the one hand, it can stably protect the gap after the frame panels are opened, and has its own safety protection function. On the other hand, it can support and connect the frame panels, reduce the structural load of the guide part, increase the structural stability, and improve the service life of the device.

[0012] Optionally, the first hinge body includes a first rod and a second rod, one end of which is sequentially hinged to the bottom edge of the house frame. It also includes a third rod and a fourth rod, one end of which is sequentially hinged to the bottom of the frame plate. Two parallel fifth rods are hinged between the second rod and the fourth rod, and the first rod and the third rod are correspondingly hinged to the fifth rods.

[0013] The second hinge body includes multiple sets of interlocking bodies, which are linearly hinged together, and the interlocking bodies at the ends are hinged to the corresponding frame plates or house frames.

[0014] By adopting the above technical solution, the second hinge body and the first hinge body have a large range of extension and contraction. The extension range of the hinge body can be maximized by using the same amount of rod material, and the structural movement stability of the hinge body is high.

[0015] Preferably, the guide portion includes a first guide assembly and a second guide assembly; the second guide assembly includes a pair of I-beams extending parallel to the bottom of the house frame towards the frame plate, with rollers installed at the bottom of the frame plate and the rollers positioned between the flanges of the I-beams; the first guide assembly includes a pair of guide rods installed parallel to the house frame, with a guide tube matched and connected to the top of the frame plate, and the guide rods passing through the guide tube.

[0016] By adopting the above technical solution, using existing materials such as I-beams as "guide rails" facilitates material selection. The rollers work together to provide support, and the guide rods and conduits enable the directional movement of the frame panels and also provide some support for the frame panels. This dual design provides protection, making the use of the sunroom safer and more reliable.

[0017] In a further embodiment, the guide rod is rotatably mounted on the house frame, the guide tube is rotatably mounted on the top of the frame plate, and a base is mounted on the bottom of the frame plate via a pivot. The first hinge body is correspondingly and movably connected to the house frame and the base. The base is slidably mounted between the I-beam flanges via rollers. A trigger rod is movably mounted on the inner wall of the house frame and passes through the house frame. One end of the trigger rod is hinged to the guide tube, and the other end is slidably connected to the drive rod, with the height of the drive rod gradually changing.

[0018] By adopting the above technical solution, and with the height-gradient drive rod, the frame panels can be tilted, increasing the distance between the frame panels and the house frame, which is more conducive to indoor ventilation and heat dissipation. With the telescopic component triggering the trigger rod, the frame panels can also be tilted during the opening and movement. The device is simple to operate, has a high degree of compatibility, and achieves multiple effects by moving the telescopic rod component, with high operating efficiency.

[0019] A further improvement is that the beam plates of the house frame on both sides of the first hinge body and the second hinge body are provided with receiving grooves, and the two sides of the frame plate facing the house frame are provided with a first closing plate, and the bottom frame plate facing the house frame is provided with a second closing plate.

[0020] By adopting the above technical solution, the joint between the frame panel and the house frame is more stable and the joint strength is improved, reducing the occurrence of air leakage. At the same time, it also enhances sound insulation and improves the customer experience.

[0021] Optionally, the length of the second sealing plate is greater than the limit expansion distance of the frame plate, and the width of the first sealing plate is less than the limit expansion distance of the frame plate. In actual production, multiple ventilation holes can be evenly provided on the second sealing plate and the first sealing plate.

[0022] By adopting the above technical solution, the above size design can ensure that the second closing plate can contact the house frame after the frame is opened, and can be used as a protective plate to ensure the safety of the sunroom. At the same time, it also has a guiding function, achieving two goals at once.

[0023] Optionally, multiple oscillating fans are fixed to the inner wall of the house frame. The oscillating fans can accelerate the airflow in the space, and together with the openable frame door, the ventilation effect is better.

[0024] According to the above technical solution, this application has the following effects:

[0025] When this application is used, the starter rod drives the telescopic rod to move back and forth, thereby controlling the opening and closing of the frame plate. During the process, the guide part between the frame plate and the house frame can play a good role in limiting and guiding. The frame plate moves stably. When the entire frame plate is opened during use, one end face of the house frame is completely connected to the outside. The air in the space will be quickly exchanged with the outside, realizing rapid air replacement.

[0026] The guide rod is rotatably installed on the house frame, and the guide tube is rotatably installed on the frame plate. Together with the telescopic component and the trigger rod, due to the hinge between the frame plate and the base, the telescopic component raises the guide rod to match the arc diameter of the tilting movement of the frame plate, making the space between the frame plate and the house frame larger, thus improving the ventilation effect and speed.

[0027] In addition, the beams and slabs of the house frame are equipped with receiving grooves, and the frame plates are equipped with first and second sealing plates. When the frame plates and the opening ends of the house frame match, the two types of sealing plates are placed in the corresponding receiving grooves, which can achieve good sound insulation and sealing effects. Attached Figure Description

[0028] Figure 1 This is a schematic diagram of the overall structure of an embodiment of this application.

[0029] Figure 2 yes Figure 1 A cross-sectional view of an embodiment.

[0030] Figure 3 This is a schematic diagram illustrating the structure of the drive body, telescopic component, and first guide component after they are connected, according to an embodiment of this application.

[0031] Figure 4 yes Figure 3 Enlarged diagram of point A in the middle.

[0032] Figure 5 This is a structural schematic diagram illustrating the second hinge body in an embodiment of this application.

[0033] Figure 6 This is a structural schematic diagram illustrating the first hinge body in an embodiment of this application.

[0034] Figure 7 This is a schematic diagram of the structure after removing the frame plate in an embodiment of this application.

[0035] Figure 8 This is a schematic diagram of the application scenario structure of the embodiments of this application.

[0036] The components include: 1. House frame; 2. Frame plate; 3. Glass; 4. Guide section; 41. First guide assembly; 42. Second guide assembly; 5. Telescopic assembly; 6. Drive body; 8. Second hinge body; 9. First hinge body; 10. Building; 101. Receiving groove; 100. Receiving groove; 21. Base; 201. First sealing plate; 202. Second sealing plate; 411. Guide rod; 412. Guide tube; 421. I-beam; 422. Support rod; 423. Roller; 51. Mounting groove plate; 52. First sliding... 53. First positioning groove; 54. Slope plate; 55. Drive rod; 56. Movable groove; 57. Second positioning groove; 58. Drive plate; 551. Second sliding groove; 61. Hydraulic rod; 62. Power rod; 63. Convex shaft; 64. Mounting plate; 7. Limiting column cylinder; 71. Trigger rod; 72. Mounting block; 73. Short rod; 80. Cross body; 81. Sixth rod; 82. Seventh rod; 91. First rod; 92. Second rod; 93. Third rod; 94. Fourth rod; 95. Fifth rod; Detailed Implementation

[0037] To make the technical means, creative features, objectives and effects of this application easier to understand, the following describes this application in conjunction with specific implementation methods.

[0038] It should be noted that in the description of this application, the terms "front," "rear," "left," "right," "upper," "lower," "inner," and "outer," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are used only for the convenience of describing this application and do not require this application to be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this application. The terms "front," "rear," "left," "right," "upper," and "lower" used in the description of this application refer to the directions in the accompanying drawings, and the terms "inner" and "outer" refer to the directions toward or away from the geometric center of a specific component, respectively.

[0039] like Figure 1 , 2As shown in Figure 8, this application discloses a panoramic sunroom, which includes a frame 1 and a frame panel 2. Multiple colorless and transparent glass panels 3 are fixedly installed on the frame 1 and the frame panel 2. It is recommended to use double-glazed glass 3 to enhance the sound insulation and noise reduction effect of the sunroom. The frame 1 is fixed on the building terrace. In order to maximize the area of ​​the panoramic sunroom, the frame 1 covers the entire terrace surface. The frame 1 has openings on both sides. One side opening connects to the terrace door on the building 10, and the other side is telescopically installed with the frame panel 2. Guide parts 4 are installed between the top of the frame 1 and the top of the frame panel 2, and between the bottom of the frame 1 and the bottom of the frame panel 2. The frame panel 2 has a first position that fits and closes the frame 1, and a second position that is away from the frame 1. Telescopic components 5 are installed on the vertical side walls of the frame 1. The telescopic components 5 are movably connected to the frame panel 2. A drive body 6 is fixed on the bottom surface of the main body of the sunroom.

[0040] When in use, the drive unit 6 is activated to drive the telescopic component 5 to work, which extends and retracts the telescopic component 5 to move the frame plate 2. At the same time, the frame plate 2 moves back and forth stably through the guide part 4.

[0041] Reference Appendix Figure 2 In this embodiment, the telescopic component 5 includes a mounting slot plate 51 and a drive plate 58. The mounting slot plate 51 is fixed to the inner wall of the house frame 1, and the mounting slot plate 51 is provided with a first transverse sliding groove 52. The drive plate 58 is slidably installed in the first sliding groove 52, and the first sliding groove 52 is provided with a first positioning groove 53. The side of the drive plate 58 facing the mounting slot plate 51 is provided with a second positioning groove 57 (in the attached figure, the second positioning groove 57 penetrates the drive plate 58). The first positioning groove 53 and the second positioning groove 57 are arranged in a cross pattern. The drive plate 58 has a drive rod 55 integrally extended from the side facing the frame plate 2. The drive rod 55 and the frame plate 2 are connected together. The plate 2 is connected; the drive body 6 includes a hydraulic rod 61 and a power rod 62; the hydraulic rod 61 is fixed to the house frame 1 by the mounting plate 64 (or it can be fixed to the bottom plate of the house frame 1 by bolts). The mounting slot plate 51 has a movable slot 56 on one side near the hydraulic rod 61. The power rod 62 is placed in the movable slot 56, and both sides of the end of the power rod 62 in the area between the drive plate 58 and the mounting slot plate 51 are fixed with a convex shaft 63. The convex shaft 63 is correspondingly placed in the first positioning slot 53 and the second positioning slot 57. The other end of the power rod 62 is movably mounted on the hydraulic shaft of the hydraulic rod 61 through a rotating shaft.

[0042] In some optimized designs, a guide groove plate is welded and fixed on the mounting plate 64, and an adapter rod is slidably installed in the guide groove plate. One end of the adapter rod is fixedly connected to the hydraulic shaft of the hydraulic rod 61, and the other end of the adapter rod is rotatably connected to the end of the power rod 62 near the hydraulic rod 61. In this design, the adapter rod bears the torque generated when the power rod 62 moves irregularly. At this time, the hydraulic rod 61 bears almost only the vertical force, which greatly reduces the probability of hydraulic damage.

[0043] When the hydraulic shaft of the hydraulic rod 61 rises, the convex shaft 63 on the power rod 62 moves obliquely upward along the first positioning groove 53. At the same time, the convex shaft 63 squeezes and forces the second positioning groove 57 to move away from the frame plate 2. That is, the drive rod 55 drives the frame plate 2 to move away from the frame plate 2, so as to realize the retraction of the frame plate 2. When the hydraulic shaft of the hydraulic rod 61 descends, the frame plate 2 is pushed outward.

[0044] Reference Appendix Figure 2 and 3 In this embodiment, the guide part 4 includes two components: a first guide component 41 and a second guide component 42. The second guide component 42 includes a pair of I-beams 421 extending parallel to the bottom of the house frame 1 towards the frame plate 2. Rollers 423 are installed at the bottom of the frame plate 2 and are positioned between the flanges of the I-beams 421. The first guide component 41 includes a pair of guide rods 411 installed parallel to the house frame 1. A guide tube 412 is matched and connected to the top of the frame plate 2. The guide rods 411 pass through the guide tube 412. The guide tube 412 preferably uses a linear bearing, which has high guiding accuracy and strong stability. The arrangement of the first guide component 41 and the second guide component 42 also plays a certain role in supporting the frame plate 2 and can reduce the load on the drive rod 55.

[0045] Reference Appendix Figure 2 , 5 6. In this embodiment, a first hinge body 9 and four second hinge bodies 8 are also installed between the side surfaces of the house frame 1 and the frame plate 2. The first hinge body 9 is movably installed between the bottom of the house frame 1 and the frame plate 2, and the second hinge bodies 8 are installed between the side surfaces of the house frame 1 and the frame plate 2.

[0046] The first hinge body 9 includes a first member 91, a second member 92, a third member 93, a fourth member 94, and two fifth members 95. One end of the first member 91 is hinged to one side of the bottom edge of the house frame 1, one end of the second member 92 is hinged to the other side of the bottom edge of the house frame 1, one end of the third member 93 is hinged to one side of the bottom edge of the frame plate 2, and one end of the fourth member 94 is hinged to the other side of the bottom edge of the frame plate 2. The other ends of the first member 91 and the fourth member 94 are hinged together (this hinge point is the first hinge point); the other ends of the second member 92 and the third member 93 are hinged together (this hinge point is the second hinge point). One of the fifth members 95 is hinged to the first hinge point and the second member 92 at both ends, and the other fifth member 95 is hinged to the second hinge point and the fourth member at both ends.

[0047] The second hinge body 8 includes several sixth rods 81 and seventh rods 82. The sixth rods 81 and seventh rods 82 are hinged in the middle to form a cross body 80. The sixth rod 81 in the previous cross body 80 is hinged to the seventh rod 82 in the next cross body 80, and the seventh rod 82 in the previous cross body 80 is hinged to the sixth rod 81 in the next cross body 80. The sixth rods 81 and seventh rods 82 at both ends are hinged to the side edges of the frame plate 2 and the side edges of the house frame 1. The first hinge body 9 has the function of protecting and supporting the frame plate 2.

[0048] In some embodiments, the design has been optimized to increase the opening angle of the frame plate 2, as shown in the attached figure. Figures 2 to 4 As shown in the figure, guide rod 411 is rotatably mounted on the house frame 1 via hinge seat, guide tube 412 is rotatably mounted on the top of frame plate 2 via hinge seat, and base 21 is mounted on the bottom of frame plate 2 via pivot. At this time, drive rod 55 is movably connected to frame plate 2 via hinge seat. It should be noted that the mounting holes of drive rod 55 and hinge seat are reserved with a certain amount of space. If a large tilting of frame plate 2 is required, a dovetail groove can be set on frame plate 2, and a dovetail slider can be fixed on the hinge block. As the tilting angle of frame plate 2 increases, the hinge seat can move within the dovetail groove to complete the tilting action of frame plate 2. In addition, the first hinge body 9 is movably connected to the house frame. 1 and base 21, trigger rod 71 and limit column 7 are provided on the side wall of the house frame 1. In actual installation, the limit column 7 is connected to the upper part of the house frame 1. The trigger rod 71 passes through the cavity of the limit column 7 and through the house frame 1. In this scheme, the drive rod 55 is provided with a slope plate 54 with gradually decreasing height from the house frame 1 to the frame plate 2. The guide rod 411 is fixed with an installation block 72 at one end near the house frame 1. The slope plate 54, the drive rod 55 and the installation block 72 are all provided with a second sliding groove 551. Short rods 73 are radially fixed at both ends of the trigger rod 71. The short rods 73 are placed in the adjacent second sliding grooves 551.

[0049] Reference Appendix Figure 5 The house frame 1 and the base 21 are provided with receiving grooves 100 between the bottom edges and the side edges of the house frame 1 and the frame plate 2. After the house frame 1 and the frame plate 2 are combined, the second hinge body 8 and the second hinge body 9 can be well hidden.

[0050] In use, when the hydraulic rod 61 retracts, the drive rod 55 acts on the frame plate 2 and pushes the frame plate 2 outward. As the moving distance increases, when the trigger rod 71 moves to the slope plate 54 and is squeezed and raised by it, the trigger rod 71 raises the guide rod 411 to the side away from the frame plate 2. At this time, the guide tube 412 and the guide rod 411 have the function of oblique guidance. During this process, the drive rod 55 still applies force to the frame plate 2, so that the frame plate 2 tilts to increase the opening range between the frame plate 2 and the house frame 1.

[0051] Reference Appendix Figures 5 to 7 Considering the airtightness of the combined frame panel 2 and the house frame 1, a receiving groove 101 is provided on the beam plate of the house frame 1 on one side of the first hinge body 9 and the second hinge body 8. At the same time, a first sealing plate 201 is matched on the side of the frame edge on both sides of the plate facing the house frame 1, and a second sealing plate 202 is provided on the side of the bottom frame edge of the frame panel 2 facing the house frame 1. After the frame panel 2 and the house frame 1 are combined, the first sealing plate 201 and the second sealing plate 202 are placed in the corresponding receiving groove 101 to improve the sealing effect and improve the sound insulation and noise reduction capabilities to a certain extent. In actual installation, a ring of rubber strips can be matched on the opposite surfaces of the frame panel 2 and the house frame 1. The setting of the rubber strips further enhances the airtightness of the sunroom.

[0052] Further consideration is to design the width of the second sealing plate 202 to be greater than the maximum expansion and contraction distance of the frame plate 2, and the width of the first sealing plate 201 to be less than the maximum expansion and contraction distance of the frame plate 2. This ensures that when the frame plate 2 is opened, the second sealing plate 202 at the bottom of the frame plate 2 will not detach from the house frame 1, which can play a good protective role. At the same time, the sides of the frame plate 2 and the house frame 1 are kept open so as not to affect ventilation. If necessary, several ventilation holes can be evenly set on the second sealing plate 202 and the first sealing plate 201 to enhance the ventilation effect.

[0053] In some embodiments, a suitable number of oscillating fans can be installed on the inner wall of the house frame 1. Turning on the oscillating fans is beneficial for air exchange.

[0054] Specific usage: In the initial state, the frame 1 and the frame plate 2 of the sunroom fit together. When the air inside the room needs to be replaced, the hydraulic rod 61 drives the power rod 62 to cooperate with the first positioning groove 53 and the second positioning groove 57 arranged in a cross pattern to move the drive rod 55. At this time, the trigger rod 71 moves relative to the drive rod 55 along the horizontal end face of the drive rod 55. The drive rod 55 pushes the frame plate 2 outward. The guide tube 412 on the upper part of the frame plate 2 moves along the guide rod 411. The base 21 moves between the wing plates of the I-beam 421. The first hinge body 9 and the second hinge body 8 unfold synchronously. The drive rod 55 continues to push until the trigger rod 71 passes the slope plate 54. Under the pressure of the slope plate 54, the trigger rod 71 moves upward, causing the guide rod 411 to tilt. At the same time, the guide tube 412 tilts synchronously. As the drive rod 55 continues to push the frame plate 2, it finally presents an tilted state.

[0055] As is known from common technical knowledge, this application can be implemented through other embodiments that do not depart from its spirit or essential characteristics. Therefore, the disclosed embodiments described above are merely illustrative in all respects and are not the only ones. All modifications within the scope of this application or equivalent to this application are included in this application.

Claims

1. A panoramic sunroom, characterized in that, The system includes a house frame (1), and a frame plate (2) is telescopically installed on one side of the house frame (1). A guide part (4) is installed between the house frame (1) and the frame plate (2). The frame plate (2) can move along the guide part (4) to a first position that is in contact with and close to the house frame (1), and a second position that is far away from each other. A telescopic component (5) is installed on the side wall of the house frame (1) extending towards the frame plate (2). The telescopic component (5) is rotatably connected to the frame plate (2). A driving body (6) is fixed on the house frame (1). The driving body (6) can act on the telescopic component (5) and drive the frame plate (2) to switch between the first position and the second position through the telescopic component (5). The telescopic assembly (5) includes an installation slot plate (51) fixed to the house frame (1). The installation slot plate (51) is provided with a first sliding groove (52). The bottom of the first sliding groove (52) is provided with a first positioning groove (53). A drive plate (58) is slidably installed in the first sliding groove (52). A drive rod (55) is integrally installed on the side wall of the drive plate (58). The drive rod (55) is rotatably connected to the frame plate (2). A second positioning groove (57) is provided on the drive plate (58). The second positioning groove (57) and the first positioning groove (53) are arranged crosswise. The drive body (6) can act on the drive plate (58) so that the drive plate (58) moves back and forth in the first sliding groove (52).

2. A panoramic sunroom according to claim 1, characterized in that, The drive body (6) includes a hydraulic rod (61) fixed on the house frame (1). The piston rod end of the hydraulic rod (61) is rotatably connected to a power rod (62). A convex shaft (63) is fixed at one end of the power rod (62) away from the hydraulic rod (61). The two ends of the convex shaft (63) are slidably installed in the second positioning groove (57) and the first positioning groove (53). A movable groove (56) is provided on the side of the mounting plate (51) near the hydraulic rod (61). The power rod (62) enters the first sliding groove (52) through the movable groove (56).

3. A panoramic sunroom according to claim 1, characterized in that, At least one first hinge body (9) is installed between the bottom of the house frame (1) and the frame plate (2), and a plurality of second hinge bodies (8) are installed between the side walls of the house frame (1) and the frame plate (2). The first hinge body (9) can deform as the frame plate (2) switches between the first position and the second position, thus providing support for the frame plate (2).

4. A panoramic sunroom according to claim 3, characterized in that, The first hinge body (9) includes a first rod (91), a second rod (92), a third rod (93) and a fourth rod (94). The first rod (91) and the second rod (92) are hinged at one end to the bottom of the house frame (1) at a distance. The third rod (93) and the fourth rod (94) are hinged at one end to the bottom of the frame plate (2) at a distance. Two parallel fifth rods (95) are hinged between the second rod (92) and the fourth rod (94). The first rod (91) is hinged at the hinge end of one of the fifth rods (95) and the fourth rod (94). The third rod (93) is hinged at the hinge end of the other fifth rod (95) and the second rod (92). The second hinge body (8) includes multiple sets of cross bodies (80), which are hinged sequentially, and the cross body (80) at the end is hinged to the corresponding frame plate (2) or the house frame (1).

5. A panoramic sunroom according to claim 3, characterized in that, The guide part (4) includes a first guide component (41) and a second guide component (42); The second guide assembly (42) includes a pair of I-beams (421) extending parallel to the frame plate (2) from the bottom of the house frame (1), and rollers (423) are mounted on the bottom of the frame plate (2), the rollers (423) being disposed between the flanges of the I-beams (421); The first guide assembly (41) includes a pair of parallel guide rods (411), and a guide tube (412) is rotatably connected to the top of the frame plate (2). One end of the guide rod (411) passes through the guide tube (412) and is hinged to the house frame (1).

6. A panoramic sunroom according to claim 5, characterized in that, The bottom of the frame plate (2) is mounted on a base (21) via a pivot. The roller (423) is mounted on the base (21). The first hinge body (9) is connected between the house frame (1) and the base (21). A trigger rod (71) is movably mounted on the house frame (1). One end of the trigger rod (71) passes through the house frame (1) and is slidably connected to a guide rod (411). A slope plate (54) is provided at the connection between the drive rod (55) and the drive plate (58). The other end of the trigger rod (71) is slidably supported on the slope plate (54).

7. A panoramic sunroom according to claim 6, characterized in that, The slope plate (54) and the drive rod (55) are provided with a second slide groove (551), and a short rod (73) is rotatably installed at the bottom of the trigger rod (71), and the short rod (73) is installed in the second slide groove (551).

8. A panoramic sunroom according to claim 3, characterized in that, The first hinge body (9) and the second hinge body (8) are provided with a receiving groove (101) on the house frame (1), and the two sides of the frame plate (2) facing the house frame (1) are provided with a first closing plate (201), and the bottom of the frame plate (2) facing the house frame (1) is provided with a second closing plate (202).

9. A panoramic sunroom according to claim 8, characterized in that, The width of the second sealing plate (202) is greater than the limit extension distance of the frame plate (2), and the width of the first sealing plate (201) is less than the limit extension distance of the frame plate (2).

Citation Information

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