Aluminum veneer curtain wall
The detachable connection between the support and the back connector of the aluminum panel solves the problem of complicated installation of aluminum panel curtain walls, enabling installation without drilling or tools, simplifying the process and improving the convenience and reliability of installation.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- JIANGXI FUBAO BUILDING MATERIALS IND CO LTD
- Filing Date
- 2023-10-08
- Publication Date
- 2026-05-05
AI Technical Summary
The installation process of existing aluminum single-panel curtain walls is cumbersome, requiring drilling holes in the frame and fixing with screws, and usually requires the cooperation of multiple people, making the installation complicated.
The support section has multiple grooves that correspond one-to-one with the connectors on the back of the aluminum panel. The grooves and connectors work together to achieve installation without drilling or tools. The installation process is simplified by using elastic components, limiting components, and adsorption components.
It simplifies the installation process of aluminum single-panel curtain walls, reduces the risk of damage to the surface of aluminum single panels, improves the convenience and reliability of installation, and reduces labor and time costs.
Smart Images

Figure CN117418631B_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of building curtain wall technology, and more particularly to an aluminum single-panel curtain wall. Background Technology
[0002] Aluminum single-panel curtain walls are a material and process commonly used for the decoration of building facades. They typically consist of aluminum panels and a frame, often made of aluminum alloy sheets, which are lightweight, corrosion-resistant, and fire-resistant. They are commonly used for the exterior wall decoration of commercial buildings, office buildings, residential buildings, and public facilities.
[0003] The installation method of aluminum single-panel curtain walls in related technologies usually requires drilling holes in the frame and then fixing the aluminum single panels to the frame with mounting screws, which makes the installation process cumbersome. At the same time, the installation process often requires the cooperation of multiple people, which further complicates the installation work. Summary of the Invention
[0004] This application provides an aluminum single-panel curtain wall, which can improve the technical problem of difficult installation process of aluminum single-panel curtain walls in related technologies.
[0005] This application provides an aluminum single-panel curtain wall, including:
[0006] The support portion has multiple evenly distributed grooves; and
[0007] The aluminum panel has multiple connectors on its back; the multiple connectors are detachably connected to the multiple grooves in a one-to-one correspondence.
[0008] The technical solutions described in this application embodiment have at least the following technical effects:
[0009] The aluminum single-panel curtain wall provided in this application embodiment can be detachably connected to multiple connectors on the back of the aluminum single panel through multiple grooves on the support part. This eliminates the need for operators to drill holes in the frame and install screws, simplifying the installation process. Traditional aluminum single-panel curtain walls require measuring the installation position of the aluminum single panel on the frame before drilling holes and installing screws. However, with the detachable connection of multiple grooves on the support part to multiple connectors on the back of the aluminum single panel, the installation position of the aluminum single panel does not need to be considered, further simplifying the installation process. At the same time, the detachable connection of multiple grooves on the support part to multiple connectors on the back of the aluminum single panel eliminates the need for installation tools, further simplifying the installation process and reducing the complexity of the work.
[0010] In some embodiments, the connector includes a connecting post, and the support includes:
[0011] The support frame has multiple of the aforementioned grooves;
[0012] Multiple limiting members are provided, each corresponding to one of the multiple grooves. One end of each limiting member has a slot, and the limiting member is movably disposed within the groove.
[0013] Multiple elastic elements, one end of each elastic element being connected to the inner wall of the groove, and the other end of each elastic element being connected to the end of the limiting element away from the slot; each elastic element has a compressed state and a restoring state;
[0014] The connector can extend into the groove and abut against the limiting member, so that the elastic member is in the compressed state; when the connector continues to extend into the groove, the slot of the limiting member can engage with the connecting post, so that the elastic member is in the restored state.
[0015] In some embodiments, the connector further includes a connecting portion connected to the end of the connecting post away from the aluminum single panel; the connecting portion is provided with a first inclined surface; the limiting member is provided with a second inclined surface at the end away from the elastic member, the second inclined surface being used to slide and engage with the first inclined surface when the connector extends into the groove.
[0016] In some embodiments, the end of the connecting portion connected to the connecting post has a protrusion, which is used to restrict the connector from exiting the groove when the slot is engaged with the connecting post.
[0017] In some embodiments, the support portion further includes:
[0018] Multiple support rods are mounted on the support frame; and
[0019] Multiple adsorption elements are arranged one-to-one on the multiple support rods; each adsorption element has an adsorption cavity, and the adsorption element is used to expel air from the adsorption cavity by the aluminum single panel when the aluminum single panel is installed on the support part, thereby allowing the adsorption element to adsorb the aluminum single panel.
[0020] In some embodiments, the support portion includes a plurality of piston portions disposed within the groove, the piston portions comprising:
[0021] A housing is disposed within the groove, the housing having a piston chamber and an opening;
[0022] A piston component is movably disposed within the piston chamber;
[0023] A push-pull rod, one end of which is connected to the piston member and located within the piston chamber, and the other end of which passes through the opening and extends outside the housing; and
[0024] The first air tube has one end connected to the portion of the piston chamber where the push-pull rod is located, and the other end connected to the adsorption chamber.
[0025] The connector can extend into the groove and abut against the limiting member, and push the piston to move through the push-pull rod to draw air from the adsorption chamber into the piston chamber, thereby creating a negative pressure in the adsorption chamber.
[0026] In some embodiments, the support frame has a plurality of through holes communicating with the inner space of the support frame, and the support portion further includes:
[0027] A plurality of rotating rods, one end of which is rotatably disposed within the inner space of the support frame and located between two adjacent limiting members; the other ends of the plurality of rotating rods are correspondingly inserted through the through holes and extend to the outside of the inner space of the support frame; and
[0028] Multiple connecting ropes are provided, with their opposite ends connected to two adjacent limiting members, and their middle portions connected to multiple rotating rods in a one-to-one correspondence.
[0029] In some embodiments, the push-pull rod has a first magnetic part at one end extending to the outside of the housing; the connector further includes a second magnetic part disposed on the connector, the second magnetic part being used to attract the first magnetic part when the slot of the limiting member is far from the connecting post, so as to drive the piston member to move, so that the air in the piston chamber is transported to the adsorption chamber, thereby creating a positive pressure in the adsorption chamber.
[0030] In some embodiments, the support portion further includes a plurality of support plates, which are evenly distributed on the support frame. Each support plate has a connecting hole for inserting a nut or a support rod to fix the support portion to the wall.
[0031] In some embodiments, the piston portion includes a second air pipe, one end of which is connected to the portion of the piston chamber away from the push-pull rod, and the other end of which passes through the support portion and is located above the support frame. Attached Figure Description
[0032] To more clearly illustrate the technical solutions in the embodiments of this application, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0033] Figure 1 This is a front view structural diagram of the support portion provided in an embodiment of this application;
[0034] Figure 2 This is a rear view structural diagram of the support portion provided in an embodiment of this application;
[0035] Figure 3 A schematic diagram of the structure in which the support and aluminum panel cooperate, provided in an embodiment of this application;
[0036] Figure 4 This is a schematic diagram of the structure of the aluminum single panel provided in the embodiments of this application;
[0037] Figure 5 This is a schematic diagram of the structure of the limiting member and the connecting member in the embodiment of this application;
[0038] Figure 6 This is a schematic diagram of the structure of the support and aluminum panel in cooperation, provided for another embodiment of this application.
[0039] The following are the labeling elements in the figure:
[0040] 100. Support part; 101. Groove; 110. Support frame; 111. Through hole; 120. Limiting element; 1201. Slot; 121. Second inclined surface; 130. Elastic element; 140. Support rod; 150. Adsorption element; 1501. Adsorption chamber; 160. Piston part; 161. Housing; 1601. Piston cavity; 1602. Opening; 162. Piston component; 163. Push-pull rod; 1631. First magnetic part; 164. First gas Pipe; 165, Second gas pipe; 1651, First gas-driven pipe; 1652, Second gas-driven pipe; 170, Rotating rod; 171, Transmission rod; 172, Impeller; 173, Transmission belt; 180, Connecting rope; 190, Support plate; 191, Connecting hole; 200, Aluminum single plate; 210, Connecting piece; 211, Connecting column; 212, Connecting part; 2121, First inclined surface; 2122, Protrusion; 213, Second magnetic part. Detailed Implementation
[0041] To make the technical problems, technical solutions, and beneficial effects to be solved by this application clearer, the following detailed description is provided in conjunction with the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative and are not intended to limit the scope of this application.
[0042] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this application belongs; the terminology used herein is for the purpose of describing particular embodiments only and is not intended to limit the application. The terms “comprising” and “having”, and any variations thereof, in the specification, claims, and foregoing description of the drawings are intended to cover non-exclusive inclusion.
[0043] It should be noted that when a component is referred to as being "fixed to" or "set on" another component, it can be directly on or indirectly on that other component. When a component is referred to as being "connected to" another component, it can be directly connected to or indirectly connected to that other component.
[0044] It should be understood that the terms "length", "width", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this application.
[0045] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of this application, "multiple" means two or more, unless otherwise explicitly specified.
[0046] In this application, "and / or" is merely a way of describing the relationship between related objects, indicating that three relationships can exist; for example, A and / or B can represent three cases: A existing alone, A and B existing simultaneously, and B existing alone. Additionally, the character " / " in this document generally indicates that the preceding and following related objects have an "or" relationship.
[0047] It should be noted that in this application, the words "in some embodiments," "exemplarily," and "for example" are used to indicate examples, illustrations, or descriptions. Any embodiment or design described in this application as "in some embodiments," "exemplarily," or "for example" should not be construed as being more preferred or advantageous than other embodiments or design solutions. Specifically, the use of words such as "in some embodiments," "exemplarily," and "for example" is intended to present related concepts in a specific manner, meaning that a particular feature, structure, or characteristic described in connection with the embodiment may be included in at least one embodiment of this application. The appearance of the above words in various places in the specification does not necessarily refer to the same embodiment, nor is it a separate or alternative embodiment that is mutually exclusive with other embodiments. Those skilled in the art will explicitly and implicitly understand that the embodiments described herein can be combined with other embodiments.
[0048] Aluminum single-panel curtain walls are a material and process commonly used for the decoration of building facades. They typically consist of aluminum panels and a frame, often made of aluminum alloy sheets, which are lightweight, corrosion-resistant, and fire-resistant. They are commonly used for the exterior wall decoration of commercial buildings, office buildings, residential buildings, and public facilities.
[0049] The installation method of aluminum single-panel curtain walls in related technologies usually requires drilling holes in the frame and then fixing the aluminum single panels to the frame with mounting screws, which makes the installation process cumbersome. At the same time, the installation process often requires the cooperation of multiple people, which further complicates the installation work.
[0050] Based on this, in order to improve the difficulty of installing aluminum single-panel curtain walls in related technologies, the embodiments of this application provide the following solutions.
[0051] Please see Figure 1 , Figure 2 and Figure 4 This application provides an aluminum single-panel curtain wall, including a support 100 and an aluminum single panel 200, wherein:
[0052] The support portion 100 has a plurality of evenly distributed grooves 101.
[0053] The back of the aluminum panel 200 is provided with multiple connectors 210. The multiple connectors 210 are detachably connected to the multiple grooves 101 in a one-to-one correspondence.
[0054] It is understood that the support portion 100 is used to provide support for the aluminum panel 200. For example, the support portion 100 can be an aluminum alloy frame, metal keel, etc., but is not limited to these. The groove 101 is used to accommodate the connector 210. The aluminum panel 200 is used to combine with the support portion 100 to form an aluminum panel 200 curtain wall. For example, the aluminum panel 200 can be a thin sheet material made of aluminum alloy. The connector 210 is used to fix the aluminum panel 200 to the support portion 100. For example, the connector 210 can be a connecting buckle, etc., but is not limited to these.
[0055] As can be seen from the above, the aluminum single-panel 200 curtain wall provided in this application embodiment, by using multiple connectors 210 to be detachably connected to multiple grooves 101 in a one-to-one correspondence, allows the aluminum single-panel 200 to be installed and removed relatively easily on the support 100. This is very convenient for maintenance, installation and dismantling, or for inspecting and maintaining internal facilities. Since the connectors 210 correspond one-to-one with the grooves 101, the installation position of the aluminum single-panel 200 or the alignment of the aluminum single-panel 200 with the support 100 during installation becomes more flexible and precise. The even distribution of multiple grooves 101 and connectors 210 allows the support 100 to apply a uniform force to the aluminum panel 200. When external force acts on the aluminum panel 200, the even distribution of multiple connectors 210 and grooves 101 ensures that the external force is evenly transmitted to the support 100, reducing the possibility of local stress concentration and providing better support and stability for the aluminum panel 200. This reduces the deformation and vibration of the aluminum panel 200 under wind or other external forces, increasing the overall structural stability. Furthermore, using multiple connectors 210 for fixing increases the reliability of the connection between the aluminum panel 200 and the support 100. Even if one connector 210 malfunctions or becomes loose, the other connectors 210 can still maintain a stable connection of the aluminum panel 200, reducing safety risks.
[0056] In some embodiments, please refer to Figures 1 to 5 The connector 210 includes a connecting post 211, and the support 100 includes a support frame 110, multiple limiting members 120, and multiple elastic members 130, wherein:
[0057] The support frame 110 has multiple grooves 101.
[0058] Multiple limiting members 120 are correspondingly disposed in multiple grooves 101. One end of each limiting member 120 has a slot 1201, and the limiting member 120 is movably disposed in the groove 101.
[0059] One end of each of the multiple elastic elements 130 is connected to the inner wall of the groove 101, and the other end of each elastic element 130 is connected to the other end of the limiting member 120 away from the slot 1201. The elastic element 130 has a compressed state and a restored state.
[0060] The connector 210 can extend into the groove 101 and abut against the limiting member 120, so that the elastic member 130 is in a compressed state. When the connector 210 continues to extend into the groove 101, the slot 1201 of the limiting member 120 can engage with the connecting post 211, so that the elastic member 130 is in a restored state.
[0061] It is understood that the support frame 110 is used to provide support for the aluminum panel 200. For example, the support frame 110 can be an aluminum alloy frame, a metal keel, etc., but is not limited to these. The limiting member 120 is used to restrict the movement of the connecting member 210 so that the aluminum panel 200 receives support force. For example, the limiting member 120 can be a card-type limiting member, a spring-type limiting member, and a spherical limiting member, etc., but is not limited to these. The slot 1201 can be a groove 101 of various shapes that is adapted to the shape of the connecting post 211. The elastic member 130 is used to provide a driving force for the limiting member 120 to engage with the connecting post 211. For example, the elastic member 130 can be a spring, a rubber ring, etc., but is not limited to these.
[0062] This configuration, with multiple grooves 101 and corresponding limiting members 120, provides multiple support positions and adjustable support heights, making the support frame 110 flexible and adaptable. Different groove 101 and limiting member 120 positions can be selected as needed to meet the specific support requirements of the aluminum panel 200. The connector 210 extends into the groove 101 and abuts against the limiting member 120, compressing the elastic member 130. As the connector 210 continues to extend into the groove 101, the slot 1201 of the limiting member 120 engages with the connecting post 211, restoring the elastic member 130 to its restoring state. Compared to traditional installation methods such as screw fixing or welding, this automated installation process of the aluminum panel 200 is more convenient, as the slot 1201 of the limiting member 120 engages with the connecting post 211, eliminating the need for special tools or complex operations and reducing installation time and labor costs. Furthermore, damage to the surface of the aluminum panel 200, such as scratches or deformation, can be avoided during installation. Since no hammer or other sharp tools are needed for fixing, the potential risk of damage to the surface of the aluminum panel 200 is reduced.
[0063] In some embodiments, please refer to Figures 3 to 5 The connector 210 also includes a connecting portion 212, which is connected to the end of the connecting post 211 away from the aluminum single panel 200. The connecting portion 212 is provided with a first inclined surface 2121. The end of the limiting member 120 away from the elastic member 130 is provided with a second inclined surface 121, which is used for sliding engagement with the first inclined surface 2121 when the connector 210 extends into the groove 101.
[0064] It is understood that the connecting part 212 is used to provide support for the aluminum single panel 200 when the slot 1201 of the limiting member 120 is engaged with the connecting post 211. For example, the connecting part 212 can be a pin connection, a pin shaft connection, etc., but is not limited to these. The first inclined surface 2121 is used to slide and engage with the second inclined surface 121 when the connecting member 210 extends into the groove 101.
[0065] This configuration, through the sliding engagement of the first inclined surface 2121 and the second inclined surface 121, allows the connector 210 to smoothly extend into the groove 101 and be fixed in the required position. This ensures the correct alignment and stability between the connector 210 and the groove 101, avoiding potential problems and hidden dangers caused by incorrect installation. The resistance and friction provided by the sliding engagement of the first inclined surface 2121 and the second inclined surface 121 ensure a stable contact between the connector 210 and the limiting member 120. This prevents the connector 210 from deviating from the position of the limiting member 120 due to vibrations during installation, thus preventing it from extending into the groove 101 and enhancing the reliability of the aluminum panel 200 installation.
[0066] In some embodiments, please refer to Figures 3 to 5 The connecting part 212 is connected to one end of the connecting post 211 and has a protrusion 2122. The protrusion 2122 is used to restrict the connecting part 210 from exiting the groove 101 when the slot 1201 and the connecting post 211 are engaged.
[0067] It is understood that the protrusion 2122 is used to restrict the connector 210 from exiting the groove 101 when the slot 1201 and the connecting post 211 are engaged. For example, the shape of the protrusion 2122 can be a protrusion, a boss or other suitable structure to ensure close contact between the slot 1201 and the connecting post 211 after the connector 210 extends into the groove 101.
[0068] This design effectively limits the possibility of the connector 2122 disengaging from the groove 101 when the slot 1201 engages with the connecting post 211. Through the engagement of the slot 1201 and the connecting post 211, the protrusion 2122 provides additional physical restraint, preventing the connector 210 from accidentally disengaging from the groove 101 under vibration, impact, or other stress conditions. The shape and size of the protrusion 2122 match the slot 1201, allowing for a tight fit when the connector 210 extends into the groove 101. This tight fit increases the stability of the connection, preventing loosening or displacement of the connector 210 during use. The protrusion 2122 also increases the friction and resistance between the connector 210 and the groove 101, improving the reliability of the connection. The friction and resistance prevent the connector 210 from accidentally disengaging from the groove 101 under external forces, ensuring the durability and reliability of the connection.
[0069] In some embodiments, please refer to Figures 1 to 3 The support portion 100 also includes a plurality of support rods 140 and a plurality of suction elements 150, wherein:
[0070] Multiple support rods 140 are mounted on the support frame 110.
[0071] Multiple adsorption elements 150 are arranged one-to-one on multiple support rods 140. Each adsorption element 150 has an adsorption cavity 1501. When the aluminum panel 200 is installed on the support part 100, the aluminum panel 200 squeezes the adsorption element 150 to expel the air in the adsorption cavity 1501, thereby allowing the adsorption element 150 to adsorb the aluminum panel 200.
[0072] It is understood that the support rod 140 is used to provide support for the adsorption component 150. The adsorption component 150 is used to adsorb the aluminum panel 200 so that the aluminum panel 200 can obtain additional support. The back of the aluminum panel 200 has an adsorption surface that can be adsorbed by the adsorption component 150.
[0073] This configuration, with multiple support rods 140, allows the aluminum panel 200 to be evenly distributed to the support rods 140 via the adsorption element 150 when subjected to external forces such as wind or gravity, and then further to the support frame 110. This reduces the pressure on the support rods 140, and this load-distribution design reduces deformation and vibration of the aluminum panel 200, maintaining its shape and stability. Simultaneously, multiple support rods 140 increase the number of support points for the aluminum panel 200, resulting in a more even distribution of support force. This provides more support contact surface, further enhancing the stability and robustness of the connection between the aluminum panel 200 and the support frame.
[0074] Furthermore, when the aluminum panel 200 is installed on the support 100, the aluminum panel 200 applies pressure to the adsorption member 150, causing the air inside the adsorption member 150 to be expelled, thereby creating the adsorption conditions for the aluminum panel 200 to be adsorbed by the adsorption member 150. This design, on the one hand, allows the aluminum panel 200 to be adsorbed by the adsorption member 150 while the connector 210 of the aluminum panel 200 extends into the groove 101 to complete the installation, simplifying the operation process. On the other hand, it also ensures a firm connection between the aluminum panel 200 and the support 100, providing better wind resistance and stability.
[0075] In some embodiments, please refer to Figure 3 The support portion 100 includes a plurality of piston portions 160, which are disposed within the groove 101. Each piston portion 160 includes:
[0076] The housing 161 is disposed in the groove 101, and the housing 161 has a piston chamber 1601 and an opening 1602.
[0077] The piston 162 is movably disposed within the piston chamber 1601.
[0078] Push-pull rod 163 One end of push-pull rod 163 is connected to piston 162 and located in piston chamber 1601, and the other end of push-pull rod 163 passes through opening 1602 and extends to the outside of housing 161.
[0079] One end of the first air tube 164 is connected to the piston chamber 1601 where the push-pull rod 163 is located, and the other end of the first air tube 164 is connected to the adsorption chamber 1501.
[0080] The connector 210 can extend into the groove 101 and abut against the limiting member 120, and push the piston member 162 to move through the push-pull rod 163, so as to draw the air in the adsorption chamber 1501 into the piston chamber 1601, so as to form a negative pressure in the adsorption chamber 1501.
[0081] It is understood that the piston chamber 1601 provides a movable space for the piston member 162, and the piston chamber 1601 can be of various shapes adapted to the shape of the piston member 162. The opening 1602 can be of various shapes adapted to the shape of one end of the push-pull rod 163. The piston member 162 is used to move by the push-pull rod 163 when the connecting member 210 extends into the groove 101 and abuts against the limiting member 120, so as to draw air from the adsorption chamber 1501 into the piston chamber 1601. The push-pull rod 163 is used to transmit the driving force generated when the connecting member 210 extends into the groove 101 and abuts against the limiting member 120 to the piston member 162, so as to drive the piston member 162 to move within the piston chamber 1601. The first air pipe 164 is used to transmit air between the piston chamber 1601 and the adsorption chamber 1501.
[0082] This configuration, with the connector 210 abutting against the push-pull rod 163, allows the piston 162 to move simultaneously as the connector 210 of the aluminum panel 200 extends into the groove 101 for installation. This draws air from the adsorption chamber 1501 into the piston chamber 1601, creating a negative pressure within the adsorption chamber 1501. This helps to adsorb the aluminum panel 200 onto the adsorption member 150, providing additional support for the aluminum panel 200. This is highly beneficial for ensuring the aluminum panel 200 is firmly fixed to the connector 210, enhancing the stability and reliability of the connection. The cooperation between the connector 210 and the push-pull rod 163 enables the piston 162 to move, thereby drawing air and creating negative pressure during installation. This simplifies the installation process, improves efficiency, and saves time and labor costs.
[0083] In some embodiments, please refer to Figures 1 to 3 The support frame 110 has multiple through holes 111, which communicate with the inner space of the support frame 110. The support part 100 also includes multiple rotating rods 170 and multiple connecting ropes 180, wherein:
[0084] One end of each of the multiple rotating rods 170 is rotatably disposed within the inner space of the support frame 110 and located between two adjacent limiting members 120. The other ends of the multiple rotating rods 170 are respectively inserted through the through holes 111 and extend to the outside of the inner space of the support frame 110.
[0085] The two ends of the connecting rope 180 are respectively connected to two adjacent limiting members 120, and the middle of the multiple connecting ropes 180 are respectively connected to multiple rotating rods 170.
[0086] It is understood that the rotating rod 170 is used to rotate the rotating rod 170 when disassembling the support part 100 and the aluminum single panel 200, so that the connecting rope 180 between the two adjacent limiting members 120 is wrapped around the rotating rod 170, and the elastic member 130 is in the first state, so as to drive the slot 1201 of the limiting member 120 away from the connecting post 211.
[0087] This configuration allows the connecting rope 180 between two adjacent limiting members 120 to be wound around the rotating rod 170 by rotating the rotating rod 170. This moves the slot 1201 of the limiting member 120 away from the connecting post 211, thereby enabling the disassembly of the support 100 and the aluminum panel 200. Compared to the traditional method of loosening bolts or repeatedly turning the nut with a wrench, this facilitates the disassembly process of the aluminum panel 200 and reduces the time required for disassembly. Furthermore, after the aluminum panel 200 is disassembled, the elastic member 130 can return to its original state, re-driving the limiting member 120 back to its initial position to await the next contact with the connecting member 210 of the aluminum panel 200. This elastic recovery and self-adaptive mechanism allows the support frame 110 to be reused multiple times during assembly and disassembly while maintaining good connection performance. No additional adjustments or replacements are needed. The support frame 110 can continuously provide reliable support for the aluminum panel 200 and simplifies subsequent installation and disassembly work.
[0088] In some embodiments, please refer to Figures 1 to 3 The push-pull rod 163 extends to the outside of the housing 161 and has a first magnetic part 1631 at one end. The connector 210 also includes a second magnetic part 213, which is disposed on the connector 212. The second magnetic part 213 is used to attract the first magnetic part 1631 when the slot 1201 of the limiting member 120 is far away from the connecting post 211, so as to drive the piston member 162 to move, so that the air in the piston chamber 1601 is transported to the adsorption chamber 1501, so that positive pressure is formed in the adsorption chamber 1501.
[0089] It is understood that the material of the first magnetic part 1631 can be iron, cobalt, nickel, or their alloys, but is not limited to these. The second magnetic part 213 can be a magnetic material such as a magnet or a cobalt magnet, but is not limited to these.
[0090] With this configuration, during the disassembly of the aluminum panel 200, when the connecting post 211 exits from the groove 101, the second magnetic part 213 of the connector 210 attracts the first magnetic part 1631, thereby driving the piston 162 to move. This allows air in the piston chamber 1601 to be transported to the adsorption chamber 1501, creating positive pressure within the adsorption chamber 1501. Consequently, the aluminum panel 200 loses the adsorption force of the adsorption member 150, facilitating the disassembly of the aluminum panel 200. Compared to traditional disassembly methods, using the second magnetic part 213 to magnetically drive the first magnetic part 1631 reduces labor time and costs during disassembly. It eliminates the need for tools or screw removal; simply removing the connecting post 211 from the groove 101 (while the adsorption member 150 loses its adsorption force on the aluminum panel 200) enables rapid disassembly of the aluminum panel 200, improving work efficiency and reducing labor intensity.
[0091] In some embodiments, please refer to Figure 1 and Figure 2 The support part 100 also includes a plurality of support plates 190, which are evenly distributed on the support frame 110. Each support plate 190 has a connecting hole 191 for inserting a nut or a support rod 140 to fix the support part 100 to the wall.
[0092] This configuration, by fixing the support 100 to the wall, provides a stable support structure for the aluminum panel 200. The evenly distributed support plates 190, secured with nuts or support rods 140, ensure a secure and reliable connection between the support 100 and the wall, preventing wobbling or loosening. Because the support plates 190 are evenly distributed on the support frame 110, the load is evenly distributed, reducing excessive load on individual support plates 190 and improving the overall load-bearing capacity and stability of the support 100, thus better supporting the aluminum panel 200 or other structures requiring support. The connection holes 191 allow for the selection of either nuts or support rods 140 for fixation, providing flexible installation options to suit specific needs. For example, nuts are suitable for flat supports fixed to the wall, while support rods 140 are suitable for supports requiring height or angle adjustments.
[0093] In some embodiments, please refer to Figures 1 to 3The piston part 160 includes a second air pipe 165. One end of the second air pipe 165 is connected to the part of the piston chamber 1601 away from the push rod 163, and the other end of the second air pipe 165 passes through the support part 100 and is located on the support frame 110.
[0094] With this configuration, during the installation of the aluminum panel 200, when the connecting post 211 extends into the groove 101, the connecting piece 210 pushes the push-pull rod 163, which in turn moves the piston piece 162, so that the air in the piston chamber 1601 is transported to the support frame 110. This achieves the effect of blowing away the dust between the aluminum panel 200 and the support frame 110 while the aluminum panel 200 is being installed. The accumulation of dust may affect the quality of the installation (for example, dust accumulation may affect the tight contact between the aluminum panel 200 and the support frame 110). Therefore, blowing away the dust with air can ensure the cleanliness between the aluminum panel 200 and the support frame 110, and ensure the tight connection between the installed aluminum panel 200 and the support frame 110, thereby improving the overall structural stability.
[0095] Optionally, please refer to Figure 3 and Figure 6 The rotating rod 170 also includes a transmission rod 171, an impeller 172, and a transmission belt 173. One end of the transmission rod 171 is rotatably disposed within the groove 101, and the other end of the transmission rod 171 extends into the second air pipe 165. The impeller 172 is fixedly disposed on the transmission rod 171 and located within the second air pipe 165. One end of the transmission belt 173 is connected to the rotating rod 170, and the other end of the transmission belt 173 is connected to the transmission rod 171.
[0096] The second gas pipe 165 includes a first gas drive pipe 1651 and a second gas drive pipe 1652. One end of the first gas drive pipe 1651 is connected to the piston chamber 1601 of the piston section 160, and the other end of the first gas drive pipe 1651 is connected to the second gas pipe 165 and is located above the impeller 172. One end of the second gas drive pipe 1652 is connected to the piston chamber 1601 of the adjacent piston section 160 connected to the first gas drive pipe 1651, and the other end of the first gas drive pipe 1651 is connected to the second gas pipe 165 and is located above the impeller 172.
[0097] When the connecting post 211 extends into the groove 101, the connecting member 210 pushes the push-pull rod 163, thereby driving the piston member 162 to move. This allows the air in the piston chamber 1601 of the adjacent piston part 160 to be transported to both sides of the impeller 172 through the first gas drive pipe 1651 and the second gas drive pipe 1652, driving the impeller 172 to rotate and driving the transmission rod 171 to rotate. This, in turn, drives the rotating rod 170 to rotate through the transmission belt 173, so that the connecting rope 180 between the two adjacent limiting members 120 is wrapped around the rotating rod 170. This helps to keep the slot 1201 of the limiting member 120 away from the connecting post 211, reducing the resistance of the connecting member 210 against the limiting member 120, thus making it easier for the connecting member 210 to enter the groove.
[0098] By transmitting gas to both sides of the impeller 172 through the first gas drive pipe 1651 and the second gas drive pipe 1652, balanced airflow can be achieved to ensure that the impeller 172 is evenly subjected to airflow, resulting in a relatively balanced load on the impeller 172. This helps reduce vibration and instability of the impeller 172 caused by load imbalance, thereby improving the rotation efficiency and lifespan of the impeller 172. By outputting gas to both sides of the impeller 172, stable power can be provided to the impeller 172. After the gas is transmitted to both sides of the impeller 172 through the first gas drive pipe 1651 and the second gas drive pipe 1652 respectively, the generated airflow can drive the impeller 172 to rotate, improving its rotation efficiency and reliability.
[0099] The above description is merely a preferred embodiment of this application and is not intended to limit this application. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of this application should be included within the protection scope of this application.
Claims
1. An aluminum single-panel curtain wall, characterized in that, include: The support section has multiple evenly distributed grooves; as well as Aluminum single panel with multiple connectors on the back; The plurality of connectors are detachably connected to the plurality of grooves in a one-to-one correspondence; The connector includes a connecting post, and the support includes: The support frame has multiple of the aforementioned grooves; Multiple limiting members are provided, each corresponding to one of the multiple grooves. One end of each limiting member has a slot, and the limiting member is movably disposed within the groove. Multiple elastic elements, one end of each elastic element being connected to the inner wall of the groove, and the other end of each elastic element being connected to the end of the limiting element away from the slot; each elastic element has a compressed state and a restoring state; The connector can extend into the groove and abut against the limiting member, so that the elastic member is in the compressed state; when the connector continues to extend into the groove, the slot of the limiting member can engage with the connecting post, so that the elastic member is in the restored state.
2. The aluminum single-panel curtain wall as described in claim 1, characterized in that, The connector further includes a connecting portion connected to the end of the connecting post away from the aluminum single plate; the connecting portion is provided with a first inclined surface; the limiting member is provided with a second inclined surface at the end away from the elastic member, the second inclined surface being used to slide and engage with the first inclined surface when the connector extends into the groove.
3. The aluminum single-panel curtain wall as described in claim 2, characterized in that, The connecting part is provided with a protrusion at one end of the connecting post. The protrusion is used to prevent the connecting part from exiting the groove when the slot is engaged with the connecting post.
4. The aluminum single-panel curtain wall as described in claim 3, characterized in that, The support portion also includes: Multiple support rods are mounted on the support frame; and Multiple adsorption elements are arranged one-to-one on the multiple support rods; each adsorption element has an adsorption cavity, and the adsorption element is used to expel air from the adsorption cavity by the aluminum single panel when the aluminum single panel is installed on the support part, thereby allowing the adsorption element to adsorb the aluminum single panel.
5. The aluminum single-panel curtain wall as described in claim 4, characterized in that, The support portion includes multiple piston portions, each piston portion being disposed within the groove, and each piston portion comprising: A housing is disposed within the groove, the housing having a piston chamber and an opening; A piston component is movably disposed within the piston chamber; A push-pull rod, one end of which is connected to the piston member and located within the piston chamber, and the other end of which passes through the opening and extends outside the housing; and The first air tube has one end connected to the portion of the piston chamber where the push-pull rod is located, and the other end connected to the adsorption chamber. The connector can extend into the groove and abut against the limiting member, and push the piston to move through the push-pull rod to draw air from the adsorption chamber into the piston chamber, thereby creating a negative pressure in the adsorption chamber.
6. The aluminum single-panel curtain wall as described in claim 5, characterized in that, The support frame has multiple through holes that communicate with the inner space of the support frame, and the support portion further includes: A plurality of rotating rods, one end of which is rotatably disposed within the inner space of the support frame and located between two adjacent limiting members; the other ends of the plurality of rotating rods are correspondingly inserted through the through holes and extend to the outside of the inner space of the support frame; and Multiple connecting ropes are provided, with their opposite ends connected to two adjacent limiting members, and their middle portions connected to multiple rotating rods in a one-to-one correspondence.
7. The aluminum single-panel curtain wall as described in claim 5, characterized in that, The push-pull rod has a first magnetic part at one end extending to the outside of the housing; the connector also includes a second magnetic part, which is disposed on the connector. The second magnetic part is used to attract the first magnetic part when the slot of the limiting member is far away from the connecting post, so as to drive the piston to move, so that the air in the piston chamber is transported to the adsorption chamber, thereby creating a positive pressure in the adsorption chamber.
8. The aluminum single-panel curtain wall as described in claim 5, characterized in that, The support part also includes multiple support plates, which are evenly distributed on the support frame. Each support plate has a connecting hole for inserting a nut or support rod to fix the support part to the wall.
9. The aluminum single-panel curtain wall as described in claim 5, characterized in that, The piston portion includes a second air pipe, one end of which is connected to the portion of the piston chamber away from the push-pull rod, and the other end of which passes through the support portion and is located above the support frame.
Citation Information
Patent Citations
Aluminum veneer curtain wall convenient to install
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Fabricated aluminum veneer capable of being detached and replaced independently
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