Energy-saving modularized building outer wall structure
By setting rotating plates, telescopic plates, and positioning rods on the left, right, top, and bottom sides of the exterior wall module, the problem of unstable connection of exterior wall modules in the prior art is solved, and stable splicing and alignment of exterior wall modules are achieved, thus improving the stability of the connection.
Patent Information
- Application Number
- CN202423136667.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-19
- Publication Date
- 2025-11-11
- Estimated Expiration
- 2034-12-19
AI Technical Summary
The existing modular building exterior wall structure lacks a connection structure between adjacent wall panels, which makes it impossible to guarantee the stability of the connection when subjected to pressure.
By setting connection structures on the left and right sides and the top and bottom sides of the exterior wall modules, including left and right rotating plates, telescopic plates, rotating shafts and positioning rods, stable splicing of the exterior wall modules is achieved, ensuring the alignment and connection stability of adjacent modules.
It effectively prevents misalignment and disconnection of exterior wall modules, ensures horizontal and vertical alignment of exterior wall modules in energy-saving modular buildings, and improves the stability of connections and the overall structural robustness.
Smart Images

Figure CN223535912U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of energy-saving modularization, and in particular to an energy-saving modular building exterior wall structure. Background Technology
[0002] An existing patent (publication number: CN217759572U) proposes a modular building green energy-saving exterior wall structure. Five exterior wall panels are evenly spaced on one side of the installation frame. Each of the five exterior wall panels is connected to the installation frame by two identical easy-to-disassemble and fix mechanisms. The easy-to-disassemble and fix mechanisms include two locking blocks fixed to one side of the installation frame and a connecting plate fixed to one side of the exterior wall panel. However, this device does not have a connecting structure between two adjacent exterior wall panels when in use, and the integrity of the upper and lower spliced wall panels cannot be guaranteed when subjected to pressure. Summary of the Invention
[0003] This utility model addresses the aforementioned shortcomings of the existing technology by providing an energy-saving modular building exterior wall structure that allows multiple exterior wall modules to be spliced together through connection structures on the left, right, top, and bottom sides of the exterior wall modules, thereby ensuring the connection stability between adjacent exterior wall modules.
[0004] The objective of this utility model is achieved through the following technical solution:
[0005] An energy-saving modular building exterior wall structure includes an exterior wall module, a left-rotating locking plate, a left telescopic plate, a right-rotating locking plate, a right telescopic plate, a movable plate, a first rotating shaft, a second rotating shaft, a third rotating shaft, and positioning rods. The exterior wall module has a set of left positioning slots on its left side and a set of right positioning blocks on its right side. The right positioning blocks are adapted to the left positioning slots and are inserted into them. The upper part of the exterior wall module has an upper mounting groove with mounting groove side grooves at both ends. The left-rotating locking plate is placed in the upper mounting groove, and the side plates of the left-rotating locking plate are placed in the mounting groove. Inside the side groove, the outer wall module has a left rotating shaft hole. The second rotating shaft passes through the left rotating plate and is connected to the left rotating plate. The second rotating shaft is adapted to the left rotating shaft hole. The second rotating shaft is inserted into the right telescopic plate side sleeve and rotates within the right telescopic plate side sleeve. The right rotating plate is placed in the upper mounting groove, and the right rotating plate side plate is placed in the side groove of the mounting groove. The outer wall module has a right rotating shaft hole. The third rotating shaft passes through the right rotating plate and is connected to the right rotating plate. The third rotating shaft is adapted to the right rotating shaft hole and is inserted into the first rotating shaft. The third rotating shaft rotates within the first rotating shaft.
[0006] The left telescopic plate has a left telescopic plate side plate on its left side, which is adapted to the right hole of the left rotating plate. The left telescopic plate side plate is inserted into the left rotating plate and slides within the left rotating plate. The right telescopic plate has a right telescopic plate side plate on its right side, which is adapted to the left hole of the right rotating plate. The right telescopic plate side plate is inserted into the right rotating plate and slides within the right rotating plate.
[0007] The left telescopic plate has a left telescopic plate side sleeve on the right side, and the right telescopic plate has a right telescopic plate side sleeve on the left side. The left telescopic plate side sleeve and the right telescopic plate side sleeve are attached to each other. The upper sides of the movable plate are attached to the symmetrical right telescopic plate side sleeves. The upper part of the movable plate is connected to the left telescopic plate side sleeve and the right telescopic plate side sleeve through a No. 1 rotating shaft. Beneficial effects
[0008] 1. In this utility model, the right positioning block is inserted into the left positioning slot to align the adjacent exterior wall modules front to back and vertically. This prevents misalignment between the two modules during the use of energy-saving modular building exterior walls and ensures horizontal distribution. The left rotating plate is connected to the left rotating shaft hole through the second rotating shaft, allowing the left rotating plate to be installed in the upper mounting slot and rotate. The right rotating plate is connected to the right rotating shaft hole through the third rotating shaft, allowing the right rotating plate to be installed in the upper mounting slot and rotate. The left telescopic plate side plate is inserted into the left rotating plate, allowing the left telescopic plate to move relative to the left rotating plate. The right telescopic plate side plate is inserted into the right rotating plate, allowing the right telescopic plate to move relative to the right rotating plate.
[0009] 2. The upper part of the movable plate of this utility model is connected to the left telescopic plate side sleeve and the right telescopic plate side sleeve through a No. 1 rotating shaft, so that the upper part of the movable plate is connected in series with the left telescopic plate and the right telescopic plate, and the lower part of the left rotating plate and the right rotating plate are connected by shaft. By moving the movable plate up and down, the right rotating plate and the left rotating plate can be controlled to rotate relative to each other at the same time. This allows the upper part of the left rotating plate and the right rotating plate side plate to be inserted into a set of lower positioning slots respectively, ensuring the front-to-back and horizontal alignment of the adjacent exterior wall modules. This prevents the connection between the two from being disconnected in the use of energy-saving modular building exterior walls. The movable plate is positioned by the positioning rod to ensure the rotation angle of the left rotating plate and the right rotating plate. This device, through the connection structure on the left and right sides and the upper and lower sides of the exterior wall module, allows multiple exterior wall modules to be spliced together, ensuring the connection stability between adjacent exterior wall modules. Attached Figure Description
[0010] Figure 1 This is a bottom-view axonometric drawing of an energy-saving modular building exterior wall structure according to the present invention.
[0011] Figure 2 This is a cross-sectional axonometric view of an energy-saving modular building exterior wall structure according to the present invention.
[0012] Figure 3 This is a cross-sectional axonometric view of the exterior wall module described in this utility model.
[0013] Figure 4 This is a schematic diagram of the left-rotating plate and the left telescopic plate of the present invention.
[0014] Figure 5 This is a schematic diagram of the right-rotating plate and the right telescopic plate structure described in this utility model.
[0015] Figure 6 This is a schematic diagram of the movable plate structure described in this utility model. Detailed Implementation
[0016] The present invention will be further described in detail below with reference to the accompanying drawings and embodiments:
[0017] Example 1:
[0018] An energy-saving modular building exterior wall structure includes an exterior wall module 01, a left rotating plate 09, a left telescopic plate 10, a right rotating plate 13, a right telescopic plate 14, a movable plate 17, a first rotating shaft 18, a second rotating shaft 19, a third rotating shaft 20, and a positioning rod 21. The exterior wall module 01 has a set of left positioning slots 24 on its left side and a set of right positioning blocks 23 on its right side. The right positioning blocks 23 are adapted to the left positioning slots 24 and are inserted into the left positioning slots 24, aligning adjacent exterior wall modules 01 front-to-back and vertically. This prevents misalignment during use and ensures horizontal distribution. The exterior wall module 01 has an upper mounting groove 03 at its upper part, with mounting groove side grooves 04 at both ends. The left rotating plate 09 is placed in the upper mounting groove 03, and its side plates are placed in the mounting groove side grooves 04. The exterior wall module 01 has a left rotating shaft hole 06 and a second rotating shaft 19. 9. Passing through the left rotating plate 09, the second rotating shaft 19 is connected to the left rotating plate 09. The second rotating shaft 19 is adapted to the left rotating shaft hole 06. The second rotating shaft 19 is inserted into the right telescopic plate side sleeve 16 and rotates within the right telescopic plate side sleeve 16. The left rotating plate 09 is connected to the left rotating shaft hole 06 through the second rotating shaft 19, so that the left rotating plate 09 is installed in the upper mounting groove 03 and can rotate. The right rotating plate 13 is placed in the upper mounting groove 03, and the side plate of the right rotating plate 13 is placed... Within the side groove 04 of the mounting slot, the outer wall module 01 has a right-hand rotating shaft hole 08. The third rotating shaft 20 passes through the right-hand rotating plate 13 and is connected to the right-hand rotating plate 13. The third rotating shaft 20 is adapted to the right-hand rotating shaft hole 08. The third rotating shaft 20 is inserted into the first rotating shaft 18 and rotates within the first rotating shaft 18. The right-hand rotating plate 13 is connected to the right-hand rotating shaft hole 08 through the third rotating shaft 20, so that the right-hand rotating plate 13 is installed in the upper mounting slot 03 and can rotate.
[0019] Example 2:
[0020] The left telescopic plate 10 of this utility model has a left telescopic plate side plate 12 on its left side. The left telescopic plate side plate 12 is adapted to the right hole of the left rotating plate 09. The left telescopic plate side plate 12 is inserted into the left rotating plate 09, so that the left telescopic plate 10 can move relative to the left rotating plate 09. The left telescopic plate side plate 12 slides within the left rotating plate 09. The right telescopic plate 14 has a right telescopic plate side plate 15 on its right side. The right telescopic plate side plate 15 is adapted to the left hole of the right rotating plate 13. The right telescopic plate side plate 15 is inserted into the right rotating plate 13, so that the right telescopic plate 14 can move relative to the right rotating plate 13. The right telescopic plate side plate 15 slides within the right rotating plate 13.
[0021] Example 3:
[0022] The left telescopic plate 10 of this invention has a left telescopic plate side sleeve 11 on its right side, and a right telescopic plate side sleeve 16 on its left side. The left telescopic plate side sleeve 11 and the right telescopic plate side sleeve 16 are fitted together. The upper two sides of the movable plate 17 are fitted together with the symmetrical right telescopic plate side sleeves 16. The upper part of the movable plate 17 is connected to the left telescopic plate side sleeve 11 and the right telescopic plate side sleeve 16 through a first rotating shaft 18. The upper part of the movable plate 17 is connected to the left telescopic plate side sleeve 11 and the right telescopic plate side sleeve 16 through a first rotating shaft 18, so that the movable plate 17... The upper part of the movable plate 17 is connected in series with the left telescopic plate 10 and the right telescopic plate 14, so that the lower part of the left rotating plate 09 and the right rotating plate 13 are connected by a shaft. By moving the movable plate 17 up and down, the right rotating plate 13 and the left rotating plate 09 can be controlled to rotate relative to each other at the same time. This allows the upper plates of the left rotating plate 09 and the right rotating plate 13 to be inserted into a set of lower positioning slots 02 respectively, ensuring the front-to-back and horizontal alignment of the adjacent exterior wall modules 01, and preventing the two from being disconnected during the use of energy-saving modular building exterior walls.
[0023] Example 4:
[0024] The upper mounting groove 03 of this utility model has a left-turning shaft hole 06 at its bottom. The moving plate 17 is adapted to the left-turning shaft hole 06. The lower part of the moving plate 17 is inserted into the left-turning shaft hole 06 and slides within it. The left-turning shaft hole 06 has a positioning rod insertion hole 22. The positioning rod 21 passes through the lower hole of the moving plate 17 and is inserted into the positioning rod insertion hole 22. The positioning rod 21 positions the moving plate 17, ensuring the rotation angle of the left-turning plate 09 and the right-turning plate 13. The side of the outer wall module 01 has a wall side hole 07 that communicates with the left-turning shaft hole 06. The lower part of the outer wall module 01 has a set of lower positioning slots 02. The side plates of the left-turning plate 09 and the right-turning plate 13 are respectively inserted into the set of lower positioning slots 02. This device, through the connection structure of the left and right sides and the upper and lower sides of the outer wall module 01, allows multiple outer wall modules 01 to be spliced together, ensuring the connection stability between adjacent outer wall modules 01.
[0025] Example 5:
[0026] The installation steps of this utility model are as follows: First, insert the left rotating plate 09 and the right rotating plate 13 into the upper mounting groove 03 respectively, so that the side plate of the left rotating plate 09 is placed in the side groove 04 of the mounting groove, and the side plate of the right rotating plate 13 is placed in the side groove 04 of the mounting groove. Connect the upper part of the moving plate 17 to the left telescopic plate side sleeve 11 and the right telescopic plate side sleeve 16 through the first rotating shaft 18. Insert the left telescopic plate side plate 12 into the left rotating plate 09, and insert the right telescopic plate side plate 15 into the right rotating plate 13. Connect the left rotating plate 09 to the left rotating shaft hole 06 through the second rotating shaft 19, and connect the right rotating plate 13 to the right rotating shaft hole 08 through the third rotating shaft 20. Insert the positioning rod 21 through the moving plate 17 into the positioning rod insertion hole 22.
[0027] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the technical principles of the present utility model, and these improvements and modifications should also be considered within the protection scope of the present utility model.
Claims
1. An energy-saving modular building exterior wall structure, characterized in that: The wall module (01) includes an exterior wall module (01), a left rotating plate (09), a left telescopic plate (10), a right rotating plate (13), a right telescopic plate (14), a moving plate (17), a first rotating shaft (18), a second rotating shaft (19), a third rotating shaft (20), and a positioning rod (21). The exterior wall module (01) has a set of left positioning slots (24) on its left side and a set of right positioning blocks (23) on its right side. The right positioning blocks (23) are adapted to the left positioning slots (24) and are inserted into the left positioning slots (24). The exterior wall module (01) has an upper mounting groove (03) at its upper part and mounting groove side grooves (04) at both ends. The left rotating plate (09) is placed in the upper mounting groove (03), and the side plate of the left rotating plate (09) is placed in the mounting groove side groove (04). 1) It has a left rotating shaft hole (06), and a second rotating shaft (19) passes through a left rotating clamping plate (09). The second rotating shaft (19) is connected to the left rotating clamping plate (09). The second rotating shaft (19) is adapted to the left rotating shaft hole (06). The second rotating shaft (19) is inserted into the right telescopic plate side sleeve (16). The second rotating shaft (19) rotates in the right telescopic plate side sleeve (16). The right rotating clamping plate (13) is placed in the upper mounting groove (03). Right rotation The side plate of the card plate (13) is placed in the side groove (04) of the mounting slot. The outer wall module (01) has a right rotating shaft hole (08). The third rotating shaft (20) passes through the right rotating card plate (13). The third rotating shaft (20) is connected to the right rotating card plate (13). The third rotating shaft (20) is adapted to the right rotating shaft hole (08). The third rotating shaft (20) is inserted into the first rotating shaft (18). The third rotating shaft (20) rotates in the first rotating shaft (18).
2. The energy-saving modular building exterior wall structure according to claim 1, characterized in that: The left telescopic plate (10) has a left telescopic plate side plate (12) on the left side, which is adapted to the right hole of the left rotating plate (09). The left telescopic plate side plate (12) is inserted into the left rotating plate (09) and slides inside the left rotating plate (09). The right telescopic plate (14) has a right telescopic plate side plate (15) on the right side, which is adapted to the left hole of the right rotating plate (13). The right telescopic plate side plate (15) is inserted into the right rotating plate (13) and slides inside the right rotating plate (13).
3. The energy-saving modular building exterior wall structure according to claim 2, characterized in that: The left telescopic plate (10) has a left telescopic plate side sleeve (11) on the right side and a right telescopic plate side sleeve (16) on the left side of the right telescopic plate (14). The left telescopic plate side sleeve (11) and the right telescopic plate side sleeve (16) are attached to each other. The upper two sides of the moving plate (17) are attached to the symmetrical right telescopic plate side sleeve (16). The upper part of the moving plate (17) is connected to the left telescopic plate side sleeve (11) and the right telescopic plate side sleeve (16) through a first rotating shaft (18).
4. The energy-saving modular building exterior wall structure according to claim 3, characterized in that: The bottom of the upper mounting groove (03) has a left rotating shaft hole (06). The moving plate (17) is adapted to the left rotating shaft hole (06). The lower part of the moving plate (17) is inserted into the left rotating shaft hole (06). The lower part of the moving plate (17) slides in the left rotating shaft hole (06). The left rotating shaft hole (06) has a positioning rod insertion hole (22). The positioning rod (21) passes through the lower hole of the moving plate (17) and is inserted into the positioning rod insertion hole (22).
5. The energy-saving modular building exterior wall structure according to claim 1, characterized in that: The exterior wall module (01) has a wall side hole (07) on its side, which is connected to the left rotating shaft hole (06). The exterior wall module (01) has a set of lower positioning slots (02) at its lower part. The left rotating plate (09) and the right rotating plate (13) side plates are respectively inserted into a set of lower positioning slots (02).
Citation Information
Patent Citations
Modularized building green energy-saving outer wall structure
CN217759572U