Construction device for quickly installing arc-shaped aluminum plate curtain wall of high-rise building
By using an aluminum panel curtain wall installation frame and suction cup fixing device in the installation of curved aluminum panel curtain walls in high-rise buildings, the problems of warping and assembly deviation of aluminum panels during installation are solved, and fast and precise aluminum panel installation is achieved.
Patent Information
- Application Number
- CN202511344834.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-19
- Publication Date
- 2025-11-18
AI Technical Summary
During the installation of curved aluminum panel curtain walls for high-rise buildings, the aluminum panels are prone to bending downwards in the middle and warping at both ends during installation, leading to assembly deviations. Furthermore, multiple people are required to work together, which reduces the installation speed and accuracy.
The construction device includes an aluminum panel curtain wall installation frame, ring beam, central frame, loading rack, diagonal frame rods and fasteners. The aluminum panels are fixed by suction cups and kept flat during the flipping process. The use of elastic tie rods and top rods enables the rapid installation and fixation of the aluminum panels.
It enables rapid and precise installation of aluminum panels, reduces manpower requirements, avoids warping and bending of aluminum panels during the flipping process, and improves construction efficiency and precision.
Smart Images

Figure CN120968263A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application belongs to the technical field of curtain wall aluminum plate assembly, and particularly relates to a construction device for rapid installation of an arc-shaped aluminum plate curtain wall of a high-rise building. BACKGROUND
[0002] The installation of an arc-shaped aluminum plate curtain wall of a building is different from the installation of a general outer facade aluminum plate, and is generally used in a building with commercial properties such as a shopping mall. The shape of the building is more beautiful and practical than a monotonous vertical outer facade, but the installation of the building is relatively more troublesome. In particular, the installation of the aluminum plate of the arc-shaped curtain wall roof requires a circle of operation tables to be hung below the roof, and workers lay the aluminum plate on the operation tables and fix the aluminum plate to the roof. The thickness of a single aluminum plate is about 2.5 mm, but the area of a single laying unit is generally greater than two square meters. The large laying area causes the aluminum single plate to bend in the middle and warp at both ends when initially erected due to gravity, and at least two workers are required to cooperate to level and fix the aluminum plate. This process is prone to assembly deviation, and it is difficult for workers to keep the aluminum plate in a good flat state before fixing, which brings great pressure to the workers and reduces the laying speed and accuracy. Even some assembly units need multiple aluminum plates to be spliced, which further increases the operation difficulty.
[0003] Based on the defects in the above construction conditions, the construction device is provided to overcome the defects. SUMMARY
[0004] To solve the problems in the background art, the application provides a construction device for rapid installation of an arc-shaped aluminum plate curtain wall of a high-rise building.
[0005] To achieve the above object, the application provides the following technical scheme: a construction device for rapid installation of an arc-shaped aluminum plate curtain wall of a high-rise building, comprising an aluminum plate curtain wall installation framework and a ring beam arranged on the framework. A single assembly unit of the installation framework is fixed with an aluminum plate by means of an aluminum pull nail. The construction device further comprises a middle frame which is located on the ring beam and can move along the ring beam. A loading rack is hinged to both sides of the middle frame. An inclined rack rod is installed on the loading rack and can vertically ascend and descend on the loading rack. A fixer is arranged on the inclined rack rod to carry and adsorb and fix the aluminum plate. The loading rack comprises a fixed plate fixed to a main body square frame, and the main body square frame is hinged to both sides of the middle frame. A group of the loading racks have the same shape as a single assembly unit of the installation framework. After the loading rack is turned over on the middle frame, the aluminum plate installed on the inclined rack rod coincides with the vertical projection of the assembly unit. The inclined rack rod places the aluminum plate into the assembly unit after descending.
[0006] Preferably, the middle frame comprises a pair of L-shaped frames and a horizontal rod welded to the L-shaped frames, a marker rod is connected between the ends of the L-shaped frames and the horizontal rod, and the two L-shaped frames and the horizontal rod are fixedly connected through a connecting steel frame cooperating with bolts and are adjustable in spacing.
[0007] Preferably, the marker rod is hinged to the end of the L-shaped frame, a strip-shaped through groove is formed in the horizontal rod, a bolt movably arranged in the groove of the marker rod is arranged on the marker rod, and the bolt passes through the strip-shaped through groove and is fixedly connected through a nut.
[0008] Preferably, the middle frame further comprises a hinge module arranged at both ends thereof, the hinge module is provided with a sliding block and a sliding rail, a fixed hinge point is arranged on the sliding block, and the fixed plate is movably connected with the fixed hinge point through a straight pin.
[0009] Preferably, the holder comprises a mounting plate mounted on the inclined frame rod, a suction disc is slidingly mounted on the mounting plate, and four groups of aluminum plate loading modules composed of the mounting plate and the suction disc are symmetrically arranged on the inclined frame rod.
[0010] Preferably, a transverse groove is formed in the mounting plate, a tail end air release valve and a tail handle of the suction disc extend to the back side through the transverse groove, and a resilient pull rod is hingedly mounted on the mounting plate, and a pull rod end of the resilient pull rod is connected to the tail handle of the suction disc.
[0011] Preferably, cantilevers are fixedly arranged at both sides of the middle frame, and a top rod and a resilient hinge corresponding to the holder are arranged on the cantilevers, respectively. The top rod is elastically hinged to the cantilever through the resilient hinge, and the top rod is used for sliding the suction disc tail handle along the transverse groove to the center line of the loading frame in the process of overturning the loading frame to both sides of the middle frame.
[0012] Preferably, the top rod is elastically driven by the resilient hinge to be initially upwardly tilted when the loading frame is not pressed downwardly.
[0013] Preferably, a guide column is welded to the middle of the inclined frame rod, the guide column extends to the back through the fixed plate, and a lock arranged concentrically with the fixed plate is arranged on the back of the fixed plate and is used for locking the fixed plate.
[0014] Preferably, guide rods are arranged at both ends of the inclined frame rod, strip-shaped grooves are formed at both ends of the two fixed plates arranged above and below the loading frame, sleeves are mounted in the strip-shaped grooves, and the guide rods of the inclined frame rod are sleeved in the sleeves.
[0015] Compared with the prior art, the present application has the following beneficial effects: The present application pre-installs the aluminum plate on the inclined frame rod, the suction cup on the inclined frame rod extends to the middle part and has a larger supporting surface, so that the aluminum plate is less warped on it, and will not be warped after being pressed and adsorbed. After the aluminum plate is adsorbed and fixed by the suction cup, the whole loading frame is lifted and turned to the middle frame, and then the aluminum plate is unloaded from the upper part to the assembly unit. In this process, the aluminum plate will not be bent and warped after being covered on the keel due to the fixation of the suction cup. The loading frame and the inclined frame rod are respectively arranged on both sides of the middle frame, when one of the loading frames carrying the aluminum plate is turned to the middle frame for aluminum plate installation, the pre-installation of the aluminum plate of the other half can be synchronized, so that after entering the next station for calibration, it can be directly operated, thereby realizing rapid installation, and a single worker can operate the turning of the loading frame and the lower fixation of the aluminum plate, etc., and other workers can perform the pre-installation of the aluminum plate on the inclined frame rod, without putting manpower into a single work.
[0016] The tail handle of the suction cup is exposed at the rear through the horizontal slot, and the elastic pull rod installed at the rear is convenient for pulling the installation plate in the horizontal slot direction to apply a pulling force, so that the aluminum plate is kept in a taut and straight state, and the sliding and curling phenomenon caused by shaking, accidental touch, etc. during turning is avoided.
[0017] The cantilever is arranged below the loading frame and is used for resetting and adjusting the suction cup. When the suction cup returns, the top rod is raised at a certain angle and can support the tail handle of the suction cup during turning back. With the continuation of the turning, the top rod slowly descends, the extension of the top rod in the horizontal direction pushes the tail handle of the suction cup close to the center line of the loading frame, and the elastic pull rod is pulled up to extend and form a pulling tendency again, for tensioning the next aluminum plate. This process only needs to put down the loading frame to complete itself without manual operation. BRIEF DESCRIPTION OF DRAWINGS
[0018] Figure 1 It is a cooperation schematic view of the construction device and the keel frame of the present application. Figure 2 It is a whole structure schematic view of the construction device of the present application. Figure 3 It is a top view schematic view of the construction device of the present application. Figure 4 It is a front view of the construction device of the present application. Figure 5 It is an enlarged view of part A of the present application. Figure 4 Figure 6 It is a turning schematic view of the loading frame of the present application. Figure 7 It is an enlarged view of part B of the present application. Figure 6 Figure 8 It is an assembly schematic view of the aluminum plate of the present application.
[0019] Fig. 100, beam; 200, middle frame; 201, L-shaped frame; 202, crossbar; 2021, strip-shaped through slot; 2022, bolt; 203, connecting steel frame; 204, marker; 205, hinged module; 300, loading frame; 301, fixed plate; 302, guide column; 303, locker; 400, inclined frame rod; 500, fixer; 501, mounting plate; 502, suction cup; 503, elastic pull rod; 504, tail handle; 600, cantilever; 601, top rod; 602, elastic hinge; 700, aluminum plate. DETAILED DESCRIPTION
[0020] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.
[0021] The first embodiment, as shown in Figures 1 to 3 and Figure 8 , the present application provides a construction device for rapid installation of arc-shaped aluminum plate curtain wall of high-rise building, comprising an aluminum plate curtain wall installation framework and a beam 100 arranged on the framework. An aluminum plate 700 is fixedly arranged in a single assembly unit of the installation framework by an aluminum pull nail. The construction device further comprises a middle frame 200, which is arranged on the beam 100 and can move along the beam 100; a loading frame 300, which is hinged to both sides of the middle frame 200; an inclined frame rod 400, which is installed on the loading frame 300 and can vertically ascend and descend on the loading frame 300; and a fixer 500, which is arranged on the inclined frame rod 400 and used for carrying and adsorbing the aluminum plate. The loading frame 300 comprises a fixed plate 301 fixed to a main body frame, the main body frame is hinged to both sides of the middle frame 200, and a set of loading frames 300 have the same shape as a single assembly unit of the installation framework. After the loading frame 300 is turned over on the middle frame 200, the aluminum plate installed on the inclined frame rod 400 coincides with the vertical projection of the assembly unit, and the aluminum plate is placed into the assembly unit after the inclined frame rod 400 is lowered.
[0022] As shown in Figure 2 and Figure 3 , the middle frame 200 comprises a pair of L-shaped frames 201 and a crossbar 202 welded on the L-shaped frames 201. The marker 204 is connected between the ends of the L-shaped frames 201 and the crossbar 202. The two L-shaped frames 201 and the crossbar 202 are fixedly connected by the connecting steel frame 203 and the cooperation of bolts, and the distance between the two L-shaped frames 201 and the crossbar 202 is adjustable.
[0023] As shown in Figure 3As shown, the marker 204 is hinged to the end of the L-shaped frame 201, and the horizontal rod 202 is provided with a strip-shaped through slot 2021, and the marker 204 is provided with a bolt 2022 which can move in the recess of the marker 204, the bolt 2022 passes through the strip-shaped through slot 2021 and is fixedly connected by a nut.
[0024] As shown in Figure 3 As shown, the middle frame 200 further comprises a hinged module 205 arranged at both ends thereof, the hinged module 205 is provided with a sliding block and a sliding rail, and the sliding block is provided with a fixed hinge point, and the fixed plate 301 is movably connected with the fixed hinge point by a straight pin.
[0025] As shown in Figure 2 、 Figure 3 and Figure 8 As shown, the fixing device 500 comprises a mounting plate 501 mounted on the inclined frame rod 400, and a suction cup 502 is slidably mounted on the mounting plate 501, and the aluminum plate loading module composed of the mounting plate 501 and the suction cup 502 is symmetrically arranged on the inclined frame rod 400.
[0026] In this embodiment, the aluminum plate mounting construction device is arranged on the ring beam 100 and can adjust its position along the ring beam 100. The ring beam 100 and the lower framework have an overhead height of about 15-20 cm, which is generally used to assist in loading a working platform, a lock catch for connecting a worker's safety belt, etc. The construction device is erected thereon and can travel along the ring beam 100 by means of self-propelled wheels, and after reaching the installation position, it is clamped on the ring beam 100 by manual hoop locking.
[0027] The middle frame 200 is the main structure of the construction device, which is located between the two loading frames 300, used to align and adjust the relative position of the lower mounting unit, and assist in adjusting the opening and closing size of the inclined frame rod 400 on the two loading frames 300, so that it can finally adapt to aluminum plates of different specifications. The inclined frame rod 400 is installed on the loading frame 300, and a pair of inclined frame rods 400 are arranged on each loading frame 300, and the position of the inclined frame rod 400 and the included angle between them are adjustable, so as to adapt to the size of the installed aluminum plate. The aluminum plate is installed on the inclined frame rod 400 in advance and is clamped in the planar space formed by the inclined frame rod 400, and is fixed by the suction cup 502. After completion, the entire loading frame 300 is lifted and turned over to the middle frame 200, and then the aluminum plate is unloaded from the upper assembly unit and is pressed onto the keel, and is fixed in the direction of the keel by using aluminum pull nails, and then after the construction device is removed from the next assembly unit, glue is applied between the adjacent two aluminum plate joints to achieve the waterproof effect.
[0028] The central frame 200 consists of two adjustable trapezoidal frames, each composed of an L-shaped frame 201, a crossbar 202, and a guide bar 204. These two trapezoidal frames are connected by a connecting steel frame 203, which has horizontal slots. The L-shaped frame 201 and the crossbar 202 are bolted together through these slots, allowing the spacing between the two trapezoidal frames to be adjusted. The guide bar 204 is hinged to the L-shaped frame 201, and its other end is also connected to the crossbar 202 via a through slot and bolts. Therefore, the angle between the guide bar 204 and the L-shaped frame 201 and crossbar 202 is also adjustable to accommodate the assembly units of curved aluminum panel curtain walls in different buildings. The guide bar 204 acts as a standard measuring rod; since it is not covered by an aluminum panel, workers can clearly determine its size and alignment with the assembly units below. This allows for adjustments, and the diagonal support rods 400 on both sides are simultaneously corrected to adapt their shape. This adjustment usually only needs to be done once within a large range of assembly units of the same specification.
[0029] The diagonal support rods 400 on both sides ensure that the aluminum plate can pass between the support rods 204, so that the aluminum plate can be quickly lowered onto the keel. The suction cup 502 also determines the shape of the aluminum plate, preventing it from bending or curling.
[0030] The second embodiment, as follows Figure 2 , Figure 3 and Figure 8 As shown, a transverse groove is provided on the mounting plate 501. The exhaust valve and tail handle of the suction cup 502 extend to the rear side through the transverse groove. An elastic pull rod 503 is also hinged on the mounting plate 501. The pull rod end of the elastic pull rod 503 is connected to the tail handle of the suction cup 502.
[0031] like Figures 4 to 7 As shown, cantilever 600 is fixed on both sides of the middle frame 200, and top rod 601 and elastic hinge 602 corresponding to the fixture 500 are respectively provided on the cantilever 600. The top rod 601 is elastically hinged to the cantilever 600 via the elastic hinge 602. The top rod 601 is used to slide the tail handle of the top support suction cup 502 along the transverse groove toward the centerline of the loading frame 300 during the process of the loading frame 300 flipping toward the sides of the middle frame 200.
[0032] like Figure 6 As shown, the top rod 601 is elastically driven by the elastic hinge 602 and tilts upward in its initial state when it is not pressed downward by the loading frame 300.
[0033] In this embodiment, a transverse slot is formed on the mounting plate 501, and the tail handle of the suction cup 502 and the air valve are exposed on the back of the mounting plate 501 through the transverse slot, so that the worker can directly operate the air valve to loosen the aluminum plate after the loading frame 300, the inclined frame rod 400, the aluminum plate carrying frame is turned over to the middle frame 200 and the aluminum plate is preliminarily fixed by the aluminum pull pin. The tail handle of the suction cup 502 is exposed on the back through the transverse slot, which is convenient for the elastic pull rod 503 installed on the back to pull the mounting plate 501 to apply tension in the transverse slot direction, so as to keep the aluminum plate in a tight and straight state, and prevent the aluminum plate from slipping and curling due to shaking, accidental touch and the like during turning over.
[0034] The cantilever 600 is arranged below the loading frame 300 and is used for resetting and adjusting the suction cup 502. When the loading frame 300 has not been turned back, the top rod 601 is in a state of being tilted upward by a certain angle. When the suction cup 502 returns, it has been pulled to the outer end of the transverse slot by the elastic pull rod 503. The top rod 601 can support the tail handle of the suction cup 502 in the process of turning back. With the continuation of the turning back, the top rod 601 slowly descends, and the extension of the top rod 601 in the horizontal direction pushes the tail handle of the suction cup 502 to be close to the center line of the loading frame 300, and the elastic pull rod 503 is pulled up to be elongated and re-forms a pulling back trend, which is used for tightening the next aluminum plate. This process can be automatically completed by simply lowering the loading frame 300, without the need for artificial intervention.
[0035] In the third embodiment, as shown in Figures 4 to 6 and Figure 8 , the middle part of the inclined frame rod 400 is welded with a guide column 302, the guide column 302 extends to the back through the fixed plate 301, and the back of the fixed plate 301 is provided with a locker 303 concentrically arranged with the fixed plate 301 for locking the fixed plate 301; the two ends of the inclined frame rod 400 are provided with guide rods, and the two ends of the fixed plate 301 above and below the loading frame 300 are respectively provided with strip-shaped slots, and sleeves are installed in the strip-shaped slots, and the guide rods of the inclined frame rod 400 are sleeved in the sleeves.
[0036] In this embodiment, a lifting mechanism for the aluminum plate is adopted. When the loading frame 300 and the inclined frame rod 400 drive the aluminum plate to the upper part of the assembly unit, the lifting device composed of the guide column 302 and the locker 303 can cover the aluminum plate on the keel of the assembly unit. The front and back ends of the inclined frame rod 400 are provided with guide rods, and the guide rods are sleeved in the sleeves which can be adjusted in position along the transverse slot.
[0037] The middle part of the inclined frame rod 400 is provided with the guide column 302, and the locker 303 is located on the fixed plate 301. The locker 303 can be a rotary three-jaw chuck, and the worker can adjust the clamping of the guide column 302 by the jaw through rotation. It can also be provided as other fixed structures which are easy to operate, which will not be limited further here.
[0038] Working principle and use flow of the present application: The workers first adjust the included angle between the marker posts 204 and the L-shaped frames 201 and the horizontal rods 202 to adapt to the assembly units of the curved aluminum plate curtain wall of different buildings. The workers can clearly obtain the size and alignment relationship of the assembly units below the marker posts 204 after adjustment, and simultaneously correct the adaptive shapes of the inclined frame rods 400 on both sides. When the middle frame 200 reaches above the assembly unit along the ring beam 100, it is fixed, the aluminum plate is clamped on the inclined frame rod 400 and directly flipped after being adsorbed by the mounting plate 501, so that the inclined frame rod 400 is between the marker posts 204, the aluminum is vertically aligned with the assembly unit, then the operator loosens the guide column 302 by operating the lock 303, so that the inclined frame rod 400 with the aluminum plate is lowered and placed on the keel assembly unit, then after preliminary positioning by using the aluminum pull nails, the aluminum plate is further fixed after the pressure of the suction cup 502 is released.
[0039] In the above process, other workers can pre-assemble the aluminum plate on one inclined frame rod 400.
[0040] When the loading frame 300 is flipped back, the top rod 601 is tilted at a certain angle and can support the tail handle of the suction cup 502 in the process of flipping back. With the continuation of the flip, the top rod 601 slowly descends, and its extension in the horizontal direction will push the tail handle of the suction cup 502 close to the center line of the loading frame 300, and the elastic pull rod 503 is stretched and re-formed to have a pulling tendency, which is used to tighten the next aluminum plate.
[0041] After moving the construction device to the next work position and aligning, the above operation is performed again.
[0042] It should be noted that, in the present text, the relationship terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any such actual relationship or order between the entities or operations. Moreover, the terms "include", "contain" or any other variants thereof are intended to cover non-exclusive inclusion, so that the process, method, article or equipment including a series of elements not only includes those elements, but also includes other elements not explicitly listed or inherent to such process, method, article or equipment.
[0043] Although the embodiments of the present application have been shown and described, it can be understood by those of ordinary skill in the art that various changes, modifications, replacements and variations can be made to the embodiments without departing from the principles and spirits of the present application, and the scope of the present application is defined by the appended claims and their equivalents.
Claims
1. A construction device for rapid installation of curved aluminum panel curtain walls in high-rise buildings, comprising an aluminum panel curtain wall installation frame and a ring beam (100) set on the frame, wherein an aluminum panel (700) is fixed in a single assembly unit of the installation frame by aluminum rivets, characterized in that: The construction device also includes a central frame (200) which sits on the ring beam (100) and is movable along the ring beam (100); Loading frame (300), which is hinged to both sides of the middle frame (200); A set of diagonal support rods (400) are mounted on the loading frame (300) and are capable of vertically lifting and lowering on the loading frame (300); Fixture (500), which is set on the diagonal bracket (400) for mounting the aluminum plate and adsorbing and fixing the aluminum plate; The loading rack (300) includes a fixing plate (301) fixed to the main square frame. The main square frame is hinged to both sides of the middle frame (200). A set of loading racks (300) forms the same shape as a single assembly unit with a mounting frame. After the loading rack (300) is flipped onto the middle frame (200), the aluminum plate installed on the inclined frame rod (400) coincides with the vertical projection of the assembly unit. After the inclined frame rod (400) is lowered, the aluminum plate is placed into the assembly unit.
2. The construction device for rapid installation of curved aluminum panel curtain walls for high-rise buildings according to claim 1, characterized in that: The central frame (200) includes a pair of L-shaped frames (201) and a crossbar (202) welded to the L-shaped frames (201). A marker (204) is connected between the ends of the L-shaped frames (201) and the crossbar (202). The two L-shaped frames (201) and the crossbar (202) are fixedly connected by a connecting steel frame (203) and bolts, and the distance between them is adjustable.
3. The construction device for rapid installation of curved aluminum panel curtain walls for high-rise buildings according to claim 2, characterized in that: The marker (204) is hinged to the end of the L-shaped frame (201). A strip-shaped through groove (2021) is provided on the crossbar (202). A bolt (2022) that can move in the groove is provided on the marker (204). The bolt (2022) passes through the strip-shaped through groove (2021) and is fixedly connected by a nut.
4. The construction device for rapid installation of curved aluminum panel curtain walls for high-rise buildings according to claim 1, characterized in that: The central frame (200) also includes hinge modules (205) disposed at both ends thereon. The hinge modules (205) are provided with sliders and slide rails, and the sliders are provided with fixed hinge points. The fixed plate (301) is movably connected to the fixed hinge points by a pin.
5. The construction device for rapid installation of curved aluminum panel curtain walls for high-rise buildings according to claim 2, characterized in that: The fixture (500) includes a mounting plate (501) installed on the inclined frame (400), and a suction cup (502) is slidably mounted on the mounting plate (501). The aluminum plate mounting module composed of the mounting plate (501) and the suction cup (502) is symmetrically arranged in four sets on the inclined frame (400).
6. The construction device for rapid installation of curved aluminum panel curtain walls for high-rise buildings according to claim 5, characterized in that: A transverse groove is provided on the mounting plate (501). The exhaust valve and tail handle of the suction cup (502) extend to the rear side through the transverse groove. An elastic pull rod (503) is also hinged on the mounting plate (501). The pull rod end of the elastic pull rod (503) is connected to the tail handle of the suction cup (502).
7. The construction device for rapid installation of curved aluminum panel curtain walls for high-rise buildings according to claim 6, characterized in that: The central frame (200) is fixed with cantilever (600) on both sides, and the cantilever (600) is provided with a top rod (601) and an elastic hinge (602) respectively corresponding to the fixer (500). The top rod (601) is elastically hinged to the cantilever (600) via an elastic hinge (602). The top rod (601) is used to slide the tail of the top support suction cup (502) along the transverse groove toward the centerline of the loading frame (300) during the process of the loading frame (300) flipping toward the sides of the middle frame (200).
8. The construction device for rapid installation of curved aluminum panel curtain walls for high-rise buildings according to claim 7, characterized in that: The top rod (601) is elastically driven by the elastic hinge (602) and initially tilts upward when not pressed downward by the loading frame (300).
9. The construction device for rapid installation of curved aluminum panel curtain walls for high-rise buildings according to any one of claims 1-8, characterized in that: A guide post (302) is welded to the middle of the inclined frame (400). The guide post (302) extends through the fixing plate (301) to the rear. A locking device (303) is provided on the back of the fixing plate (301) and is concentrically arranged with the fixing plate (301) to lock the fixing plate (301).
10. The construction device for rapid installation of curved aluminum panel curtain walls for high-rise buildings according to claim 9, characterized in that: The inclined frame rod (400) has guide rods at both ends. The two fixed plates (301) located above and below the loading frame (300) have strip grooves at both ends. Sleeves are installed in the strip grooves, and the guide rods of the inclined frame rod (400) are sleeved in the sleeves.