Wind-vibration-resistant building exterior wall suitable for green buildings and assembly method thereof
Through the combined design of prefabricated walls, wind-resistant vibration units, combined units, auxiliary units and anti-detachment units, the problems of spring compression and inconvenient installation during transportation of wind-resistant vibration building exterior walls are solved, and automatic straightening and rapid installation are achieved.
Patent Information
- Application Number
- CN202510654871.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-21
- Publication Date
- 2025-09-12
- Estimated Expiration
- 2045-05-21
AI Technical Summary
The internal springs of existing wind-vibration-resistant building exterior walls are easily compressed significantly for a long time during transportation, making installation inconvenient and unable to be automatically straightened. In addition, the lifting method is not conducive to quick installation.
It adopts a combination design of prefabricated walls, anti-wind vibration units, combined units, auxiliary units and anti-slip units, including arc-shaped protrusions, circular guide rods, buffer springs, synchronous gears and other structures to achieve automatic straightening and quick installation.
It avoids long-term compression of the spring, ensures the buffering effect, improves the installation efficiency, and realizes the rapid installation and automatic straightening of the wind-resistant vibration wall panels.
Smart Images

Figure CN120175033B_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the technical field of building exterior walls, and more specifically, relates to a wind-vibration-resistant building exterior wall suitable for green buildings and an assembly method thereof. Background Art
[0002] Green building wind-resistant vibration exterior walls refer to building exterior enclosure systems that combine ecological and environmental protection concepts with wind-resistant vibration technologies. Green building exterior walls can also extend the life of buildings, reduce noise, comply with the concept of sustainable development, and are an important trend in future buildings.
[0003] The wind-vibration-resistant building exterior walls currently in use still have the following problems: 1. They generally lack supporting and protective structures, which causes the internal springs to be in a state of significant compression for a long time during transportation, affecting the subsequent use effect; 2. When the external wall panels are slightly deformed due to wind vibration forces, they cannot be automatically straightened; 3. The wind-vibration-resistant building exterior walls are usually moved to different locations for installation by lifting, which makes it inconvenient for workers to quickly install the wind-vibration-resistant building exterior walls. Summary of the Invention
[0004] The disclosed embodiments relate to a wind-vibration-resistant building exterior wall suitable for green buildings and an assembly method thereof, which comprises a prefabricated wall, an anti-wind-vibration unit, a combination unit, an auxiliary unit and an anti-detachment unit; the four buffer springs are prevented from being in a state of large compression for a long time during transportation, and a normal buffer protection effect is ensured during subsequent use; when the wind-vibration-resistant wall panels are slightly deformed after being subjected to wind vibration force, the two circular auxiliary rods can play an auxiliary straightening role when moving outward or inward; the arrangement of two rows of arc-shaped protrusions reduces the resistance of the prefabricated wall during movement, making it convenient for staff to quickly install multiple prefabricated walls; the problems of internal springs being easily in a state of large compression during transportation, the inability to automatically straighten the external wall panels, and the inconvenience for staff to quickly install the wind-vibration-resistant building exterior wall are solved.
[0005] In a first aspect of the present disclosure, a wind-vibration-resistant building exterior wall suitable for green buildings is provided, comprising: a prefabricated wall, an anti-wind-vibration unit, a combination unit, an auxiliary unit and an anti-detachment unit; two rows of arc-shaped protrusions are fixedly installed on the bottom of the prefabricated wall; the anti-wind-vibration unit is installed on the prefabricated wall; the combination unit is installed on the prefabricated wall, and the combination unit is used to improve the installation accuracy of the prefabricated wall; the auxiliary unit is installed on the prefabricated wall and the anti-wind-vibration unit, and the auxiliary unit is used to auxiliary support the anti-wind-vibration unit; the anti-detachment unit is provided in two groups, and the two groups of anti-detachment units are installed on the rear side of the prefabricated wall, and the two groups of anti-detachment units are used to limit the prefabricated wall.
[0006] In at least some embodiments, the anti-wind vibration unit includes: a circular guide rod and an anti-wind vibration wall panel; there are four circular guide rods in total, and the four circular guide rods are slidably installed on the prefabricated wall; the anti-wind vibration wall panel is fixedly installed on the front side of the four circular guide rods.
[0007] In at least some embodiments, the anti-wind-vibration unit further includes: a supporting triangular block and a buffer spring; there are two supporting triangular blocks, and the two supporting triangular blocks are fixedly installed on the rear side of the anti-wind-vibration wall panel; there are four buffer springs, and the four buffer springs are sleeved on the outside of four circular guide rods, and the four buffer springs are located between the prefabricated wall and the anti-wind-vibration wall panel.
[0008] In at least some embodiments, the combination unit includes: a movable combination panel and a support plate; there are two movable combination panels, and the two movable combination panels are slidably installed inside the prefabricated wall; there are two support plates, and the two support plates are fixedly installed on the front sides of the two movable combination panels; the two support plates and the two supporting triangle blocks are located in the same central plane, and the two support plates are also in contact with the two supporting triangle blocks.
[0009] In at least some embodiments, two positioning grooves are respectively provided on the rear sides of the two movable combination panels; two positioning screws are threadedly connected to the prefabricated wall, and the front ends of the two positioning screws are inserted into the two positioning grooves on the left side.
[0010] In at least some embodiments, the auxiliary unit includes: an L-shaped guide frame, a U-shaped mounting seat and a circular connecting rod; there are two L-shaped guide frames, and the two L-shaped guide frames are fixedly mounted on the rear side of the wind-resistant vibration wall panel; the U-shaped mounting seat is fixedly mounted on the front side of the prefabricated wall; there are two circular connecting rods, and the two circular connecting rods are rotatably mounted on the U-shaped mounting seat.
[0011] In at least some embodiments, the auxiliary unit also includes: a synchronous gear, a rectangular connecting plate and a circular auxiliary rod; there are four synchronous gears in total, and the four synchronous gears are fixedly installed at the upper and lower ends of the two circular connecting rods, and the two upper synchronous gears are meshed and connected, and the two lower synchronous gears are meshed and connected; there are two rectangular connecting plates in total, and the two rectangular connecting plates are fixedly installed on the outside of the two circular connecting rods; there are two circular auxiliary rods in total, and the two circular auxiliary rods are fixedly installed at the outer ends of the two rectangular connecting plates, and the two circular auxiliary rods are also slidably connected to the two L-shaped guide frames.
[0012] In at least some embodiments, the anti-slip unit includes: an anti-slip bracket and a movable anti-slip rod; the anti-slip bracket is fixedly installed on the rear side of the prefabricated wall; and the movable anti-slip rod is slidably installed on the anti-slip bracket and the prefabricated wall.
[0013] In at least some embodiments, the anti-slip unit further includes: an anti-movement ring and a support spring; the anti-slip ring is fixedly mounted on the outside of the movable anti-slip rod, and the front side of the anti-slip ring contacts the prefabricated wall; the support spring is sleeved on the outside of the movable anti-slip rod, and the support spring is located between the anti-slip bracket and the anti-slip ring.
[0014] In another aspect, the present disclosure provides a method for assembling wind-vibration-resistant building exterior walls suitable for green buildings, comprising the following steps:
[0015] 1) Pull the two movable anti-slip rods outward, then place the prefabricated wall on the external embedded mounting frame, then loosen the two movable anti-slip rods so that the tops of the two movable anti-slip rods contact the bottom of the external embedded mounting frame;
[0016] 2) Push the prefabricated wall to move to a suitable position to ensure that two adjacent prefabricated walls are in contact;
[0017] 3) Use a wrench to loosen the two positioning screws, then slide the two movable combination plates to the left so that the left ends of the two movable combination plates are inserted into the other prefabricated wall. Then tighten the two positioning screws with a wrench so that the two positioning screws are inserted into the two positioning grooves on the right.
[0018] Compared with the prior art, the present invention has the following beneficial effects:
[0019] 1. When the wind-vibration-resistant wall panels of the present invention are subjected to wind vibration force, they can automatically move backward; when the wind vibration force is eliminated, the wind-vibration-resistant wall panels can automatically return forward under the action of four buffer springs, so as to facilitate buffering the next wind vibration force.
[0020] 2. The arrangement of the two supporting triangles and the two supporting flat plates of the present invention plays a limiting role in the wind-vibration-resistant wall panel, ensuring that the four buffer springs of the present invention will not be compressed during transportation, avoiding the four buffer springs from being in a state of large compression for a long time during transportation, and ensuring normal buffering protection effect during subsequent use; when the staff inserts the front ends of the two positioning screws into the two positioning grooves on the right, on the one hand, the left ends of the two movable combination panels can slide out, making it convenient for the staff to connect the two movable combination panels with another prefabricated wall, thereby improving the installation progress; on the other hand, the automatic separation of the two supporting flat plates and the two supporting triangles is realized, so that the wind-vibration-resistant wall panel can restore the wind-vibration-resistant effect after installation.
[0021] 3. According to the present invention, when the wind-vibration-resistant wall panel moves backward, the two circular auxiliary rods can move outward; when the wind-vibration-resistant wall panel is reset forward, the two circular auxiliary rods can move inward. On the one hand, they play an auxiliary supporting role for the center of the wind-vibration-resistant wall panel. On the other hand, when the wind-vibration-resistant wall panel is slightly deformed by wind vibration force, the two circular auxiliary rods can play an auxiliary straightening role when moving outward or inward. The setting of four synchronous gears enables the two circular connecting rods to rotate simultaneously, ensuring that the rotation angles of the two rectangular connecting plates are always the same.
[0022] 4. In the present invention, when the staff pulls the movable anti-detachment rod outward, the external embedded mounting frame can be inserted into the groove at the bottom of the prefabricated wall. When the staff releases the movable anti-detachment rod, the movable anti-detachment rod automatically resets under the action of the supporting spring, so that the outer wall of the movable anti-detachment rod contacts the bottom of the external embedded mounting frame, which limits the prefabricated wall and ensures that the prefabricated wall will not be separated from the external embedded mounting frame. The setting of the two rows of arc-shaped protrusions reduces the resistance of the prefabricated wall during movement, making it convenient for the staff to quickly install multiple prefabricated walls. BRIEF DESCRIPTION OF THE DRAWINGS
[0023] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings of the embodiments are briefly introduced below.
[0024] The drawings described below only relate to some embodiments of the present invention, rather than limiting the present invention.
[0025] In the attached figure:
[0026] Figure 1 Shows a schematic diagram of the three-dimensional structure of the present invention;
[0027] Figure 2 The present invention is shown Figure 1 Schematic diagram of the rear side perspective structure;
[0028] Figure 3 The present invention is shown Figure 1 Schematic diagram of the right side perspective structure;
[0029] Figure 4 The present invention is shown Figure 2 Schematic diagram of the cross-section structure in the AA direction;
[0030] Figure 5 The present invention is shown Figure 2 Schematic diagram of the cross-section structure in the middle BB direction;
[0031] Figure 6 shows a schematic structural diagram of the auxiliary unit of the present invention;
[0032] Figure 7 The present invention is shown Figure 5Schematic diagram of the local enlarged structure of the middle C area;
[0033] Figure 8 The present invention is shown Figure 5 Schematic diagram of the local enlarged structure of the D area in the middle;
[0034] Figure 9 The present invention is shown Figure 3 Schematic diagram of the local enlarged structure of the E area in the middle;
[0035] Figure 10 The figure shows the structural diagram of the present invention after installation.
[0036] List of reference numerals:
[0037] 100. Prefabricated wall; 101. Arc-shaped protrusion; 102. Positioning screw;
[0038] 200, anti-wind vibration unit; 201, circular guide rod; 202, anti-wind vibration wall panel; 203, supporting triangle block; 204, buffer spring;
[0039] 300, combination unit; 301, movable combination plate; 3011, positioning groove; 302, supporting plate;
[0040] 400, auxiliary unit; 401, L-shaped guide frame; 402, U-shaped mounting base; 403, circular connecting rod; 404, synchronous gear; 405, rectangular connecting plate; 406, circular auxiliary rod;
[0041] 500, anti-slip unit; 501, anti-slip bracket; 502, movable anti-slip rod; 503, anti-movement ring; 504, support spring. DETAILED DESCRIPTION
[0042] In order to make the purpose, scheme and advantages of the technical solution of the present invention more clear, the technical solution of the embodiment of the present invention will be clearly and completely described below in conjunction with the drawings of specific embodiments of the present invention. Unless otherwise specified, the terms used herein have the common meanings in the art. The same reference numerals in the drawings represent the same components.
[0043] Example: Please refer to Figures 1 to 10As shown: The present invention provides a wind-vibration-resistant building exterior wall suitable for green buildings, comprising: a prefabricated wall 100, an anti-wind-vibration unit 200, a combination unit 300, an auxiliary unit 400 and an anti-detachment unit 500; two rows of arc-shaped protrusions 101 are fixedly installed on the bottom of the prefabricated wall 100; the anti-wind-vibration unit 200 is installed on the prefabricated wall 100; the combination unit 300 is installed on the prefabricated wall 100, and the combination unit 300 is used to improve the installation accuracy of the prefabricated wall 100; the auxiliary unit 400 is installed on the prefabricated wall 100 and the anti-wind-vibration unit 200, and the auxiliary unit 400 is used to auxiliary support the anti-wind-vibration unit 200; there are two groups of anti-detachment units 500, and the two groups of anti-detachment units 500 are installed on the rear side of the prefabricated wall 100, and the two groups of anti-detachment units 500 are used to limit the prefabricated wall 100.
[0044] In the embodiment of the present disclosure, Figure 3 and Figure 5 As shown, the anti-wind vibration unit 200 includes: a circular guide rod 201 and an anti-wind vibration wall plate 202; there are four circular guide rods 201, and the four circular guide rods 201 are slidably mounted on the prefabricated wall 100; the anti-wind vibration wall plate 202 is fixedly mounted on the front side of the four circular guide rods 201; the anti-wind vibration unit 200 also includes: a supporting triangular block 203 and a buffer spring 204; there are two supporting triangular blocks 203, and the two supporting triangular blocks 203 are fixedly mounted on the rear side of the anti-wind vibration wall plate 202; there are four buffer springs 204, and the four buffer springs 204 are sleeved on the outside of the four circular guide rods 201, and the four buffer springs 204 are located between the prefabricated wall 100 and the anti-wind vibration wall plate 202;
[0045] Its specific function is: because the four circular guide rods 201 are slidably installed on the prefabricated wall 100, and the anti-wind vibration wall panels 202 are fixedly installed on the front side of the four circular guide rods 201, when the anti-wind vibration wall panels 202 are subjected to wind vibration force, the anti-wind vibration wall panels 202 can automatically move backward; and because the four buffer springs 204 are sleeved on the outside of the four circular guide rods 201, and the four buffer springs 204 are located between the prefabricated wall 100 and the anti-wind vibration wall panels 202, when the wind vibration force is eliminated, the anti-wind vibration wall panels 202 can automatically reset forward under the action of the four buffer springs 204, so as to facilitate buffering the next wind vibration force.
[0046] In the embodiment of the present disclosure, Figure 1 and Figure 7As shown, the assembly unit 300 includes: a movable assembly panel 301 and a supporting plate 302; there are two movable assembly panels 301, and the two movable assembly panels 301 are slidably installed inside the prefabricated wall 100; there are two supporting plates 302, and the two supporting plates 302 are fixedly installed on the front sides of the two movable assembly panels 301; the two supporting plates 302 and the two supporting triangle blocks 203 are located in the same central plane, and the two supporting plates 302 are also in contact with the two supporting triangle blocks 203; the rear sides of the two movable assembly panels 301 are respectively provided with two positioning grooves 3011; two positioning screws 102 are threadedly connected to the prefabricated wall 100, and the front ends of the two positioning screws 102 are inserted into the two positioning grooves 3011 on the left side;
[0047] Its specific function is as follows: because the two supporting triangle blocks 203 are fixedly mounted on the rear side of the anti-wind vibration wall panel 202, and the two supporting flat plates 302 and the two supporting triangle blocks 203 are located in the same central plane, and the two supporting flat plates 302 are also in contact with the two supporting triangle blocks 203, the anti-wind vibration wall panel 202 plays a limiting role, ensuring that the four buffer springs 204 of the present invention will not be compressed during transportation, avoiding the four buffer springs 204 from being in a state of large compression for a long time during transportation, and ensuring normal buffer protection effect during subsequent use; and because the two movable combination plates 301 are slidably mounted on Inside the prefabricated wall 100, two positioning grooves 3011 are respectively provided on the rear sides of the two movable combination panels 301. When the staff inserts the front ends of the two positioning screws 102 into the two positioning grooves 3011 on the right side, on the one hand, the left ends of the two movable combination panels 301 can slide out, making it convenient for the staff to connect the two movable combination panels 301 with another prefabricated wall 100, thereby improving the installation progress; on the other hand, the automatic separation of the two supporting flat plates 302 and the two supporting triangle blocks 203 is realized, so that the wind-vibration-resistant wall panels 202 can restore the wind-vibration-resistant effect after installation.
[0048] In the embodiment of the present disclosure, Figure 6 and Figure 7As shown, the auxiliary unit 400 includes: an L-shaped guide frame 401, a U-shaped mounting seat 402 and a circular connecting rod 403; there are two L-shaped guide frames 401, and the two L-shaped guide frames 401 are fixedly mounted on the rear side of the wind-resistant vibration wall panel 202; the U-shaped mounting seat 402 is fixedly mounted on the front side of the prefabricated wall 100; there are two circular connecting rods 403, and the two circular connecting rods 403 are rotatably mounted on the U-shaped mounting seat 402; the auxiliary unit 400 also includes: a synchronous gear 404, a rectangular connecting plate 405 and a circular auxiliary rod 406; the synchronous gear 404 There are four synchronous gears 404 fixedly mounted on the upper and lower ends of the two circular connecting rods 403, and the two upper synchronous gears 404 are meshed and connected, and the two lower synchronous gears 404 are meshed and connected; there are two rectangular connecting plates 405 fixedly mounted on the outside of the two circular connecting rods 403; there are two circular auxiliary rods 406 fixedly mounted on the outer ends of the two rectangular connecting plates 405, and the two circular auxiliary rods 406 are also slidably connected to the two L-shaped guide frames 401;
[0049] Its specific function is as follows: because the two L-shaped guide frames 401 are fixedly mounted on the rear side of the anti-wind vibration wall panel 202, and the U-shaped mounting seat 402 is fixedly mounted on the front side of the prefabricated wall 100, and the two circular auxiliary rods 406 are also slidably connected to the two L-shaped guide frames 401, when the anti-wind vibration wall panel 202 moves backward, the two circular auxiliary rods 406 can move outward; when the anti-wind vibration wall panel 202 is reset forward, the two circular auxiliary rods 406 can move inward, on the one hand, playing a role in the center of the anti-wind vibration wall panel 202 Auxiliary supporting effect. On the other hand, when the wind-resistant vibration wall panel 202 is slightly deformed after being subjected to wind vibration force, the two circular auxiliary rods 406 can play an auxiliary straightening role when moving outward or inward; and because the four synchronous gears 404 are fixedly installed at the upper and lower ends of the two circular connecting rods 403, and the two upper synchronous gears 404 are meshed and connected, and the two lower synchronous gears 404 are meshed and connected, the two circular connecting rods 403 can rotate at the same time, ensuring that the rotation angles of the two rectangular connecting plates 405 are always the same.
[0050] In the embodiment of the present disclosure, Figure 8 、 Figure 9 and Figure 10As shown, the anti-slip unit 500 includes: an anti-slip bracket 501 and a movable anti-slip rod 502; the anti-slip bracket 501 is fixedly mounted on the rear side of the prefabricated wall 100; the movable anti-slip rod 502 is slidably mounted on the anti-slip bracket 501 and the prefabricated wall 100; the anti-slip unit 500 also includes: an anti-movement ring 503 and a support spring 504; the anti-movement ring 503 is fixedly mounted on the outside of the movable anti-slip rod 502, and the front side of the anti-movement ring 503 is in contact with the prefabricated wall 100; the support spring 504 is sleeved on the outside of the movable anti-slip rod 502, and the support spring 504 is located between the anti-slip bracket 501 and the anti-movement ring 503;
[0051] Its specific function is: because the movable anti-slip rod 502 is slidably installed on the anti-slip bracket 501 and the prefabricated wall 100, when the staff pulls the movable anti-slip rod 502 outward, the external embedded mounting frame can be inserted into the groove at the bottom of the prefabricated wall 100, and when the staff loosens the movable anti-slip rod 502, the movable anti-slip rod 502 automatically resets under the action of the supporting spring 504, so that the outer wall of the movable anti-slip rod 502 contacts the bottom of the external embedded mounting frame, which plays a limiting role on the prefabricated wall 100 and ensures that the prefabricated wall 100 will not separate from the external embedded mounting frame; and because two rows of arc-shaped protrusions 101 are fixedly installed at the bottom of the prefabricated wall 100, the resistance of the prefabricated wall 100 when moving is reduced, which facilitates the staff to quickly install multiple prefabricated walls 100.
[0052] The present invention provides a method for assembling wind-vibration-resistant building exterior walls suitable for green buildings, comprising the following steps:
[0053] 1) Pull the two movable anti-slip rods 502 outward, then place the prefabricated wall 100 on the external embedded mounting frame, and then loosen the two movable anti-slip rods 502 so that the tops of the two movable anti-slip rods 502 contact the bottom of the external embedded mounting frame;
[0054] 2) Push the prefabricated wall 100 to move to a suitable position to ensure that two adjacent prefabricated walls 100 are in contact;
[0055] 3) Loosen the two positioning screws 102 with a wrench, then slide the two movable combination plates 301 to the left so that the left ends of the two movable combination plates 301 are inserted into the other prefabricated wall 100, and then tighten the two positioning screws 102 with a wrench so that the two positioning screws 102 are inserted into the two positioning grooves 3011 on the right.
[0056] The specific usage and function of this embodiment are as follows:
[0057] When the present invention is used, the external embedded mounting frame is first embedded in the concrete foundation to ensure that the height of the external embedded mounting frame after embedding meets the installation requirements of the subsequent prefabricated wall 100; the arrangement of the two supporting triangle blocks 203 and the two supporting flat plates 302 plays a limiting role in the wind-resistant wall plate 202, ensuring that the four buffer springs 204 of the present invention will not be compressed during transportation, avoiding the four buffer springs 204 from being in a long-term and greatly compressed state during transportation, and ensuring normal buffering protection effect during subsequent use; during installation, the two movable anti-slip rods 502 are pulled outward, and then the prefabricated wall 100 is placed on the external embedded mounting frame, and then the two movable anti-slip rods 502 are loosened to make the two The top of each movable anti-slip rod 502 contacts the bottom of the external embedded installation frame; the two movable anti-slip rods 502 play a limiting role on the prefabricated wall 100, ensuring that the prefabricated wall 100 will not be separated from the external embedded installation frame, which is convenient for the staff to quickly install multiple prefabricated walls 100; then push the prefabricated wall 100 to move it to a suitable position to ensure that the two adjacent prefabricated walls 100 are in contact; then loosen the two positioning screw nails 102 with a wrench, and then slide the two movable combination plates 301 to the left, so that the left ends of the two movable combination plates 301 are inserted into the other prefabricated wall 100, and then tighten the two positioning screw nails 102 with a wrench to make the two positioning screw nails 102 The screw nails 102 are inserted into the two positioning grooves 3011 on the right side; when the staff inserts the front ends of the two positioning screw nails 102 into the two positioning grooves 3011 on the right side, on the one hand, the left ends of the two movable combination panels 301 can slide out, making it convenient for the staff to connect the two movable combination panels 301 to another prefabricated wall 100, thereby improving the installation progress; on the other hand, the two supporting plates 302 and the two supporting triangle blocks 203 are automatically separated, so that the wind-resistant vibration wall panel 202 can restore the wind-resistant vibration effect after installation; when the wind-resistant vibration wall panel 202 is subjected to wind vibration force, the wind-resistant vibration wall panel 202 can automatically move backward; when the wind vibration force is eliminated, the wind-resistant vibration wall panel 202 is in the four directions. Under the action of the buffer spring 204, it can automatically reset forward to facilitate buffering the next wind vibration force; when the anti-wind vibration wall panel 202 moves backward, the two circular auxiliary rods 406 can move outward; when the anti-wind vibration wall panel 202 resets forward, the two circular auxiliary rods 406 can move inward. On the one hand, it plays an auxiliary supporting role in the center of the anti-wind vibration wall panel 202. On the other hand, when the anti-wind vibration wall panel 202 is slightly deformed after being subjected to wind vibration force, the two circular auxiliary rods 406 can play an auxiliary straightening role when moving outward or inward; the setting of the four synchronous gears 404 enables the two circular connecting rods 403 to rotate at the same time, ensuring that the rotation angles of the two rectangular connecting plates 405 are always the same.
[0058] In this article, there are several points to note:
[0059] 1. The drawings of the embodiments of the present disclosure only relate to the structures related to the embodiments of the present disclosure. Other structures may refer to conventional designs.
[0060] 2. In the absence of conflict, the embodiments of the present disclosure and the features therein may be combined with each other to form new embodiments.
[0061] The above are only specific embodiments of the present disclosure, but the scope of protection of the present disclosure is not limited thereto. Any changes or substitutions that can be easily conceived by a person skilled in the art within the technical scope disclosed in this disclosure should be included in the scope of protection of the present disclosure. Therefore, the scope of protection of the present disclosure should be based on the scope of protection of the claims.
Claims
1. A wind-vibration-resistant building exterior wall suitable for green buildings, comprising: A prefabricated wall (100), an anti-wind vibration unit (200), a combination unit (300), an auxiliary unit (400) and an anti-slip unit (500); characterized in that two rows of arc-shaped protrusions (101) are fixedly installed on the bottom of the prefabricated wall (100); the anti-wind vibration unit (200) is installed on the prefabricated wall (100); the combination unit (300) is installed on the prefabricated wall (100), and the combination unit (300) is used to The installation accuracy of the prefabricated wall (100) is improved; the auxiliary unit (400) is installed on the prefabricated wall (100) and the anti-wind vibration unit (200), and the auxiliary unit (400) is used to auxiliary support the anti-wind vibration unit (200); the anti-slip units (500) are provided in two groups, and the two groups of anti-slip units (500) are installed on the rear side of the prefabricated wall (100), and the two groups of anti-slip units (500) are used to limit the prefabricated wall (100); The anti-wind vibration unit (200) comprises: a circular guide rod (201) and an anti-wind vibration wall plate (202); the circular guide rods (201) are provided in four, and the four circular guide rods (201) are slidably mounted on the prefabricated wall (100); the anti-wind vibration wall plate (202) is fixedly mounted on the front side of the four circular guide rods (201); the anti-wind vibration unit (200) further comprises: a supporting triangular block (203) and a buffer spring (204); the supporting triangular blocks (203) are provided in two, and the two supporting triangular blocks (203) are fixedly mounted on the rear side of the anti-wind vibration wall plate (202); the buffer springs (204) are provided in four, and the four buffer springs (204) are sleeved on the outside of the four circular guide rods (201), and the four buffer springs (204) are located between the prefabricated wall (100) and the anti-wind vibration wall plate (202); The combination unit (300) comprises: a movable combination plate (301) and a supporting plate (302); there are two movable combination plates (301) in total, and the two movable combination plates (301) are slidably installed inside the prefabricated wall (100); there are two supporting plates (302) in total, and the two supporting plates (302) are fixedly installed on the front sides of the two movable combination plates (301); the two supporting plates (302) and the two supporting triangular blocks (203) are located in the same central plane, and the two supporting plates (302) are also in contact with the two supporting triangular blocks (203); two positioning grooves (3011) are respectively provided on the rear sides of the two movable combination plates (301); two positioning screws (102) are threadedly connected to the prefabricated wall (100), and the front ends of the two positioning screws (102) are inserted into the two positioning grooves (3011) on the left side.
2. The wind-vibration-resistant building exterior wall suitable for green buildings according to claim 1, characterized in that: The auxiliary unit (400) comprises: an L-shaped guide frame (401), a U-shaped mounting seat (402), and a circular connecting rod (403); two L-shaped guide frames (401) are provided, and the two L-shaped guide frames (401) are fixedly installed on the rear side of the wind-resistant vibration wall panel (202); the U-shaped mounting seat (402) is fixedly installed on the front side of the prefabricated wall (100); and two circular connecting rods (403) are provided, and the two circular connecting rods (403) are rotatably installed on the U-shaped mounting seat (402).
3. The wind-vibration-resistant building exterior wall suitable for green buildings according to claim 2, characterized in that: The auxiliary unit (400) further comprises: a synchronous gear (404), a rectangular connecting plate (405) and a circular auxiliary rod (406); the synchronous gears (404) are provided in total four, and the four synchronous gears (404) are fixedly mounted on the upper and lower ends of the two circular connecting rods (403), and the two upper synchronous gears (404) are meshed and connected, and the two lower synchronous gears (404) are meshed and connected; the rectangular connecting plates (405) are provided in total two, and the two rectangular connecting plates (405) are fixedly mounted on the outside of the two circular connecting rods (403); the circular auxiliary rods (406) are provided in total two, and the two circular auxiliary rods (406) are fixedly mounted on the outer ends of the two rectangular connecting plates (405), and the two circular auxiliary rods (406) are also slidably connected to the two L-shaped guide frames (401).
4. The wind-vibration-resistant building exterior wall suitable for green buildings according to claim 1, characterized in that: The anti-slip unit (500) comprises: an anti-slip bracket (501) and a movable anti-slip rod (502); the anti-slip bracket (501) is fixedly mounted on the rear side of the prefabricated wall (100); and the movable anti-slip rod (502) is slidably mounted on the anti-slip bracket (501) and the prefabricated wall (100).
5. The wind-vibration-resistant building exterior wall suitable for green buildings according to claim 4, characterized in that: The anti-slip unit (500) further comprises: an anti-movement ring (503) and a support spring (504); the anti-movement ring (503) is fixedly mounted on the outside of the movable anti-slip rod (502), and the front side of the anti-movement ring (503) contacts the prefabricated wall (100); the support spring (504) is sleeved on the outside of the movable anti-slip rod (502), and the support spring (504) is located between the anti-slip bracket (501) and the anti-movement ring (503).
6. A method for assembling a wind-vibration-resistant building exterior wall suitable for a green building, applied to the wind-vibration-resistant building exterior wall suitable for a green building as claimed in claim 4, characterized in that: The steps are as follows: 1) Pull the two movable anti-slip rods (502) outward, then place the prefabricated wall (100) on the external embedded mounting frame, and then loosen the two movable anti-slip rods (502) so that the tops of the two movable anti-slip rods (502) contact the bottom of the external embedded mounting frame; 2) pushing the prefabricated wall (100) to move to a suitable position, ensuring that two adjacent prefabricated walls (100) are in contact; 3) Loosen the two positioning screws (102) with a wrench, and then slide the two movable combination plates (301) to the left, so that the left ends of the two movable combination plates (301) are inserted into another prefabricated wall (100), and then tighten the two positioning screws (102) with a wrench, so that the two positioning screws (102) are inserted into the two positioning grooves (3011) on the right side.
Citation Information
Patent Citations
Inclined building outer wall capable of recovering function after wind vibration, system and installation method of inclined building outer wall
CN114150786A
Wind-vibration-resistant building outer wall suitable for green building
CN219138039U