Full-broken-bridge viewing shed

By setting up connections and thermal insulation fillers with low thermal conductivity between the metal frame profiles of the viewing shed, a broken bridge structure is formed, and a continuous thermal insulation layer is set on key components, the problem of thermal conductivity of the metal frame affecting user comfort is solved, and a better thermal insulation effect is achieved.

CN223215017UActive Publication Date: 2025-08-12ZHEJIANG GRAND LEISURE OUTDOOR PROD CO LTD
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Patent Information

Application Number
CN202422545571.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-21
Publication Date
2025-08-12
Estimated Expiration
2034-10-21

AI Technical Summary

Technical Problem

The metal frame of the viewing shed is easy to conduct heat, resulting in the temperature inside the shed being affected by the temperature outside the shed, affecting the user's comfort.

Method used

A connection piece with low thermal conductivity is provided between the profiles on the edge of the metal frame, and a thermal insulation filler with low thermal conductivity is filled in the cavity to form a broken bridge structure, increase the insulation area, and a broken bridge structure is provided on cross beams, columns, rails and louvers to form a continuous thermal insulation layer.

Benefits of technology

Effectively reduce heat transfer, improve the thermal insulation effect of the viewing shed, and enhance user comfort.

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Abstract

The embodiment of the utility model provides a full-broken-bridge viewing shed, and relates to the field of viewing sheds. The full-broken-bridge viewing shed comprises a frame formed by connecting a plurality of metal frame edges, each metal frame edge comprises two profiles arranged side by side in the length direction, the two profiles are connected through at least two connecting pieces arranged in the length direction so that a cavity can be formed between the two profiles, and the connecting pieces and the cavity form a broken-bridge structure; the broken bridge structures of every two adjacent metal frame edges are in butt joint. According to the full-broken-bridge viewing shed, the heat insulation broken bridge structures are arranged on the metal frame edges, and the heat insulation effect is good.
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Description

Technical Field

[0001] The present application relates to the field of viewing sheds, and in particular to a viewing shed for a fully broken bridge. Background Art

[0002] Observation booths are typically constructed with glass and metal frames, allowing visitors to enjoy the sun and connect with nature. They are highly sought after by those pursuing nature and fashion, both domestically and internationally. However, because metal easily conducts heat, the temperature outside the booth can easily affect the temperature inside, impacting the comfort of users. Utility Model Content

[0003] The purpose of the embodiment of the present application is to provide a fully broken bridge viewing shed, in which the metal frame edges are all provided with a heat-insulating broken bridge structure, which has a good heat-insulating effect.

[0004] In the first aspect, an embodiment of the present application provides a fully insulated bridge viewing shed, which includes a frame formed by connecting a plurality of metal frame edges, each of the metal frame edges including two profiles arranged in parallel along the length direction, the two profiles being connected by at least two connecting pieces arranged in the length direction to form a cavity therebetween, the connecting pieces and the cavity forming a insulated bridge structure, and the insulated bridge structures of two adjacent metal frame edges being butt-jointed together.

[0005] In the above implementation process, a cavity is formed between the profiles of the metal frame edges through the connecting parts, and the thermal break structure can reduce the transfer of heat through the metal frame edges; and the thermal break structures of two adjacent metal frame edges are butt-jointed to form a continuous thermal break insulation layer, thereby increasing the thermal insulation area and achieving a good thermal insulation effect.

[0006] In a possible implementation, the thermal conductivity of the connecting member is lower than the thermal conductivity of the profile;

[0007] And / or, the cavity is filled with a heat-insulating filler, and the heat-insulating filler has a lower thermal conductivity than air.

[0008] In the above implementation process, the thermal conductivity of the connector is low, which helps to further reduce heat transfer and achieve better thermal insulation effect.

[0009] Filling with thermal insulation filler with a thermal conductivity lower than that of air has a better thermal insulation effect than insulation through air.

[0010] In a possible implementation, the metal frame edge includes a beam connected end to end and a column supporting the beam, the beam and the column are both provided with the thermal break structure, and the thermal break structures of the two connected beams are butt-jointed end to end.

[0011] In the above implementation process, by providing a thermal break structure through beams and columns, the transfer of heat through the area can be reduced.

[0012] In a possible implementation, the column includes a main pipe and an auxiliary pipe, the main pipe and the auxiliary pipe are connected to form a square pipe by two connecting pieces and a cavity is formed between the main pipe and the auxiliary pipe, and the two connecting pieces are respectively located on two adjacent sides of the square pipe.

[0013] In the above implementation process, the structure of the column is stable, and the two connecting parts are located on opposite sides of the square tube, which facilitates the connection between the column and the thermal break structure of other metal frame edges arranged in parallel on both sides thereof.

[0014] In a possible implementation, the crossbeam includes an inner tube and an outer tube, the inner tube and the outer tube are connected into a square tube by two connecting pieces and a cavity is formed between the inner tube and the outer tube, and the two connecting pieces are respectively located on opposite sides of the square tube.

[0015] In the above implementation process, the structure of the crossbeam is stable, and the two connecting pieces are located on two adjacent sides of the square tube, which facilitates the docking of the broken bridge structures of the crossbeams in different directions.

[0016] In a possible implementation, it further includes a sliding door installed on a side surface consisting of one of the crossbeams and the two vertical columns connected thereto, and the sliding door includes a plurality of independently movable insulating glass pieces.

[0017] In one possible implementation, the metal frame edge also includes a track for installing the sliding door, the track includes a top rail arranged in parallel below the beam, a bottom rail arranged opposite to the top rail, and side rails arranged in parallel on the inner sides of the two columns, respectively. The top rail, the bottom rail and the two side rails are arranged to form a sliding door installation area, and the top rail, the bottom rail and the side rails are all provided with the thermal break structure, the top rail and the thermal break structure of the beam are parallel to each other, and the side rails are parallel to each other with the thermal break structure of the corresponding column.

[0018] In the above implementation process, the track can realize the installation and use of the sliding door, and the track is also provided with a thermal break structure, and is connected with the thermal break structure of other metal frame edges arranged in parallel, thereby increasing the insulation area and improving the insulation effect.

[0019] In a possible implementation, a glass frame is provided at the edge of each piece of the insulating glass, and the glass frame is provided with the thermally broken bridge structure.

[0020] In a possible implementation, it also includes a louver roof installed on the top surface of the frame, the louver roof includes a plurality of louvers arranged in parallel, both ends of the louvers are respectively rotatably connected to the top surface of the frame, and the louvers are provided with the broken bridge structure.

[0021] In one possible implementation, the louver includes an upper shell and a lower shell that are stacked, and the upper shell and the lower shell are connected by the connecting piece to form a cavity therebetween; a drainage groove with an upward opening is provided on one side edge of the upper shell, and the drainage groove is located above the lower shell.

[0022] In the above implementation process, the thermal break structure of the louver can reduce the transfer of heat through it, and adjust the position of the drainage groove that is easy to dissipate heat so that it is located in the upper half of the main body. When multiple louvers are arranged in parallel and the edges are overlapped in sequence to be in a closed state, the lower half of each main body can be connected to form a thermal break insulation layer, which greatly improves the overall insulation effect, thereby improving the user's comfort. BRIEF DESCRIPTION OF THE DRAWINGS

[0023] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the following is a brief introduction to the drawings required for use in the embodiments of the present application. It should be understood that the following drawings only show certain embodiments of the present application and therefore should not be regarded as limiting the scope. For ordinary technicians in this field, other relevant drawings can be obtained based on these drawings without creative work.

[0024] Figure 1 A schematic structural diagram of a fully broken bridge viewing shed provided in an embodiment of the present application;

[0025] Figure 2 for Figure 1 Schematic diagram of the cross-section structure of the center column;

[0026] Figure 3 for Figure 1 Schematic diagram of the cross-section structure of the middle beam;

[0027] Figure 4 for Figure 1 Schematic diagram of thermal insulation of the center column and insulating glass;

[0028] Figure 5 for Figure 4 Schematic diagram of the local structure;

[0029] Figure 6 for Figure 1 Schematic diagram of thermal insulation of the middle crossbeam and insulating glass;

[0030] Figure 7 for Figure 1Schematic diagram of the cross-sectional structure of the middle louver blade.

[0031] Icons: 111-connector; 112-cavity; 113-insulating filler; 120-column; 121-main pipe; 122-auxiliary pipe; 123-reinforcement strip; 124-side guard; 130-crossbeam; 131-inner pipe; 132-outer pipe; 133-cover plate; 134-roller shutter; 140-insulating glass; 150-glass frame; 160-top rail; 170-bottom rail; 180-side rail; 181-inner fixings; 182-outer fixings; 183-fixing rubber strip; 190-louver; 191-upper shell; 192-drainage trough; 193-lower shell. DETAILED DESCRIPTION

[0032] The technical solutions in the embodiments of the present application will be described below in conjunction with the drawings in the embodiments of the present application.

[0033] To make the objectives, technical solutions, and advantages of the embodiments of the present application more clear, the technical solutions in the embodiments of the present application will be clearly and completely described below in conjunction with the accompanying drawings of the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, not all of the embodiments. Generally, the components of the embodiments of the present application described and shown in the drawings herein can be arranged and designed in various different configurations.

[0034] Therefore, the following detailed description of the embodiments of the present application provided in the accompanying drawings is not intended to limit the scope of the present application for protection, but merely represents selected embodiments of the present application. All other embodiments derived by persons of ordinary skill in the art based on the embodiments in this application without creative effort are also within the scope of protection of this application.

[0035] It should be noted that similar reference numerals and letters denote similar items in the following drawings, and therefore, once an item is defined in one drawing, it does not need to be further defined or explained in subsequent drawings.

[0036] In the description of this application, it should be noted that the terms "center," "upper," "lower," "left," "right," "vertical," "horizontal," "inner," "outer," etc., indicating orientations or positional relationships, are based on the orientations or positional relationships shown in the accompanying drawings, or are the orientations or positional relationships in which the product of this application is typically placed when in use. These terms are intended solely to facilitate the description of this application and to simplify the description, and are not intended to indicate or imply that the device or element referred to must have a specific orientation, be constructed, or operate in a specific orientation. Therefore, they should not be construed as limitations on this application. Furthermore, the terms "first," "second," etc., etc., are used solely to distinguish descriptions and should not be construed as indicating or implying relative importance.

[0037] Furthermore, terms such as "horizontal" and "vertical" do not necessarily mean that a component must be absolutely horizontal or overhanging, but rather that it can be slightly tilted. For example, "horizontal" simply means that its direction is more horizontal than "vertical," and does not mean that the structure must be completely horizontal, but rather that it can be slightly tilted.

[0038] It should also be noted that, in the description of this application, unless otherwise expressly specified or limited, the terms "disposed," "installed," and "connected" should be understood broadly. For example, they can refer to fixed connections, detachable connections, or integral connections; mechanical connections or electrical connections; direct connections or indirect connections through an intermediate medium; and internal connections between two components. Those skilled in the art will understand the specific meanings of the above terms in this application based on the specific circumstances.

[0039] Please see Figures 1 to 3 The present embodiment provides a fully insulated bridge viewing shed, which includes a frame formed by connecting a plurality of metal frame edges. Each metal frame edge includes two profiles arranged in parallel along the length direction. The two profiles are connected by at least two connecting pieces 111 arranged in the length direction to form a cavity 112 therebetween. The connecting piece 111 and the cavity 112 constitute a insulated bridge structure. The insulated bridge structures of two adjacent metal frame edges are butt-jointed together.

[0040] In some embodiments of the present application, the thermal conductivity of the connector 111 is lower than that of the profile. It should be noted that the present application does not limit the specific type of connector 111, and other plastic materials with suitable structural strength and high heat resistance, such as PC or PVC, may be used. In this embodiment, the connector 111 is made of plastic.

[0041] In some embodiments of the present application, the cavity 112 is filled with a thermally insulating filler 113, which has a lower thermal conductivity than air. It should be noted that the present application does not limit the specific type of thermally insulating filler 113. In this embodiment, the cavity 112 between the profiles is filled with foam, specifically polyurethane foam, to increase overall strength and reduce noise and vibration.

[0042] In some embodiments of the present application, the metal frame edge includes a beam 130 connected end to end and a column 120 supporting the beam 130. The beam 130 and the column 120 are both provided with a thermal break structure, and the thermal break structures of the two connected beams 130 (specifically manifested in the cavity 112) are butt-jointed end to end.

[0043] Please see the details Figure 2In this embodiment, the column 120 is also provided with a broken bridge structure. The column 120 includes a main pipe 121 and an auxiliary pipe 122. The main pipe 121 and the auxiliary pipe 122 are connected into a square tube by two connecting pieces 111 and a cavity 112 is formed between the main pipe 121 and the auxiliary pipe 122 (the cavity 112 is not marked). The two connecting pieces 111 are respectively located on two adjacent sides of the square tube. In this embodiment, the main pipe 121 is a pipe body with a rectangular cross-section and a missing corner, and the auxiliary pipe 122 is a pipe body with a rectangular cross-section. The auxiliary pipe 122 is arranged in parallel at the position where the main pipe 121 is missing a corner. The two adjacent sides of the auxiliary pipe 122 and the two sides in the same direction of the main pipe 121 are connected to form a square tube with a rectangular cross-section through a connecting piece 111. The cavity 112 between the main pipe 121 and the auxiliary pipe 122 can also be filled with an insulating filler 113 (specifically foam glue) to increase the overall strength and reduce noise and vibration; a reinforcing strip 123 is provided in the main pipe 121 to increase the strength; the two sides of the main pipe 121 where the connecting piece 111 is not provided are provided with retaining edges 124 extending in opposite directions, which are used for positioning and connecting the main pipe 121 with other metal frame edges.

[0044] Please refer to Figure 3 In this embodiment, crossbeam 130 also features a thermally-instantaneous structure. Crossbeam 130 includes an inner tube 131 and an outer tube 132. The inner tube 131 faces the interior of the shed, while the outer tube 132 faces the exterior. The inner and outer tubes 131, 132 are connected by two connectors 111 to form a square tube, forming a cavity 112 between the inner and outer tubes 131, 132. The two connectors 111 are located on opposite sides of the square tube. In this embodiment, the inner tube 131 is a long, rectangular tube, while the outer tube 132 is grooved with the notch facing the exterior of the shed. The groove in outer tube 132 is designed to accommodate a roller blind 134. A cover plate 133 is located on the outer groove of outer tube 132 to cover and protect roller blind 134. A passageway is reserved between cover plate 133 and outer tube 132 for winding and unwinding roller blind 134. Connectors 111 can be made of plastic.

[0045] In some embodiments of the present application, it further includes a sliding door installed on a side consisting of a crossbeam 130 and two columns 120 connected thereto, and the sliding door includes a plurality of independently movable insulating glass pieces 140.

[0046] In some embodiments of the present application, the metal frame edge also includes a track for installing a sliding door, and the track includes a top rail 160 arranged in parallel below the beam 130, a bottom rail 170 arranged opposite to the top rail 160, and side rails 180 arranged in parallel on the inner sides of the two columns 120. The top rail 160, the bottom rail 170 and the two side rails 180 are arranged to form a sliding door installation area. The top rail 160, the bottom rail 170 and the side rails 180 are all provided with a broken bridge structure, and the position of the broken bridge structure matches the position of the broken bridge structure of the column 120 and the beam 130.

[0047] Please refer to Figure 4 and Figure 5 The side rails 180 and the corresponding broken bridge structures of the columns 120 are connected in parallel.

[0048] In this embodiment, the side rail 180 includes an inner fixing member 181 and an outer fixing member 182. The inner fixing member 181 is arranged toward the inside of the shed, and the outer fixing member 182 is arranged toward the outside of the shed. The inner fixing member 181 and the outer fixing member 182 are connected together on the same side by two connecting members and a cavity 112 is formed between the inner fixing member 181 and the outer fixing member 182. A groove for clamping and fixing the insulating glass 140 is formed between the other sides of the inner fixing member 181 and the outer fixing member 182. The side of the insulating glass 140 is arranged in the groove and the insulating glass 140 and the side rail 180 are fixed by multiple fixing strips 183.

[0049] In this embodiment, the two sides of the column 120 provided with the connecting piece 111 are respectively connected to the side rail 180, and the connecting piece 111 on each side of the column 120 is arranged opposite to the adjacent connecting piece 111 of the side rail 180 connected thereto, so that the broken bridge structure of the column 120 and the broken bridge structure of the side rail 180 connected thereto on both sides are connected together and connected to the insulation structure of the insulating glass 140, forming a continuous broken bridge insulation layer (such as Figure 4 (the dotted line group with a bend in the middle).

[0050] Please refer to Figure 6 The top rail 160 and the broken bridge structure of the crossbeam 130 are connected together in parallel. The specific connection structure is similar to the connection structure of the side rail 180 and the corresponding column 120. The structure of the top rail 160 and the bottom rail 170 is similar to the side rail 180. They are fixed to the corresponding side of the insulating glass 140. The broken bridge structure of the crossbeam 130 is connected to the broken bridge structure of the corresponding top rail 160 and connected to the insulation structure of the insulating glass 140. Then, it is connected to the broken bridge structure of the bottom rail 170 to form a continuous broken bridge insulation layer (such as Figure 6 ).

[0051] In some embodiments of the present application, a glass frame 150 is provided at the edge of each insulating glass 140 . The glass frame 150 is provided with a thermal break structure. The structure of the glass frame 150 may refer to the structure of the side rail 180 .

[0052] In some embodiments of the present application, it also includes a louver roof installed on the top surface of the frame, the louver roof includes a plurality of louver blades 190 arranged in parallel, the two ends of the louver blades 190 are respectively rotatably connected to the top surface of the frame, and the louver blades 190 are provided with a broken bridge structure.

[0053] Please see Figure 7In some embodiments of the present application, the louver 190 includes an upper shell 191 and a lower shell 193 arranged in a stacked manner. The upper shell 191 and the lower shell 193 are connected by a connecting piece 111 to form a cavity 112 (not marked) therebetween, and the cavity 112 is filled with a heat-insulating filler 113; a drainage groove 192 with an upward opening is provided on one side edge of the upper shell 191, and the drainage groove 192 is located above the lower shell 193.

[0054] In summary, the metal frame edges in the fully insulated bridge viewing shed in the embodiment of the present application are all provided with an insulating insulated bridge structure, which has a good thermal insulation effect.

[0055] The above description is merely an embodiment of the present application and is not intended to limit the scope of protection of the present application. For those skilled in the art, various modifications and variations of the present application are possible. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present application shall be included in the scope of protection of the present application.

Claims

1. A fully broken bridge viewing shed, characterized in that: It includes a frame formed by connecting several metal frame edges, each of which includes two profiles arranged in parallel along the length direction. The two profiles are connected by at least two connecting pieces arranged in the length direction to form a cavity between the two. The connecting pieces and the cavity form a thermal bridge structure, and the thermal bridge structures of two adjacent metal frame edges are butt-jointed together.

2. The fully broken bridge viewing shed according to claim 1, characterized in that: The thermal conductivity of the connecting member is lower than the thermal conductivity of the profile; And / or, the cavity is filled with a heat-insulating filler, and the heat-insulating filler has a lower thermal conductivity than air.

3. The fully broken bridge viewing shed according to claim 1, characterized in that: The metal frame edge includes a beam connected end to end in sequence and a column supporting the beam. Both the beam and the column are provided with the broken bridge structure. The broken bridge structures of the two connected beams are butted together end to end.

4. The fully broken bridge viewing shed according to claim 3, characterized in that: The column includes a main pipe and an auxiliary pipe, which are connected to form a square pipe by two connecting pieces and form a cavity between the main pipe and the auxiliary pipe. The two connecting pieces are respectively located on two adjacent sides of the square pipe.

5. The fully broken bridge viewing shed according to claim 3, characterized in that: The crossbeam includes an inner tube and an outer tube, the inner tube and the outer tube are connected to form a square tube by two connecting pieces and a cavity is formed between the inner tube and the outer tube, and the two connecting pieces are respectively located on two opposite sides of the square tube.

6. The fully broken bridge viewing shed according to claim 3, characterized in that: It also includes a sliding door installed on a side surface composed of a crossbeam and two vertical columns connected to it, and the sliding door includes a plurality of insulating glasses that can be moved independently.

7. The fully broken bridge viewing shed according to claim 6, characterized in that: The metal frame edge also includes a track for installing the sliding door, and the track includes a top rail arranged in parallel below the beam, a bottom rail arranged opposite to the top rail, and side rails arranged in parallel on the inner sides of the two columns. The top rail, the bottom rail and the two side rails are arranged to form a sliding door installation area. The top rail, the bottom rail and the side rails are all provided with the thermal break structure. The top rail and the thermal break structure of the beam are parallel to each other, and the side rails are parallel to each other with the thermal break structure of the corresponding column.

8. The fully broken bridge viewing shed according to claim 6, characterized in that: A glass frame is provided at the edge of each piece of insulating glass, and the glass frame is provided with the broken bridge structure.

9. The fully broken bridge viewing shed according to claim 1, characterized in that: It also includes a louver roof installed on the top surface of the frame, the louver roof includes a plurality of louvers arranged in parallel, both ends of the louvers are rotatably connected to the top surface of the frame, and the louvers are provided with the broken bridge structure.

10. The fully broken bridge viewing shed according to claim 9, characterized in that: The louver includes an upper shell and a lower shell that are stacked together, and the upper shell and the lower shell are connected by the connecting piece to form a cavity therebetween; a drainage groove with an upward opening is provided on one side edge of the upper shell, and the drainage groove is located above the lower shell.