A combined glass curtain wall panel transportation and stacking system and method
Through the modular glass curtain wall panel transportation and stacking system, using the combination of support components, moving components, lifting components and locking components, the storage and transportation problems of glass curtain wall panels in limited space are solved, flexible storage and efficient transportation are achieved, and the needs of panels of different sizes and specifications are met.
Patent Information
- Application Number
- CN202311393033.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-10-25
- Publication Date
- 2025-09-30
- Estimated Expiration
- 2043-10-25
AI Technical Summary
In the existing technology, the storage racks for glass curtain wall panels are usually only suitable for fixed specifications and sizes, and cannot adapt to the transportation needs of different models, sizes and quantities. In particular, oversized panels require large-scale lifting machinery, resulting in high power and rental costs, and difficult storage and transportation in limited space.
A modular glass curtain wall panel transportation and stacking system is designed, including a support component, a moving component, a lifting component, a locking component and a pull rod component. Through the combination of multi-layer support frames and locking components, free combination and flexible transportation of support components are achieved. The locking component is used to connect multiple sets of support components, and the pull rod component is detachable to pull the entire system.
Flexible storage and transportation of glass curtain wall panels are achieved in a limited space, reducing dependence on forklifts and lifting machinery, improving transportation capacity and adaptability, preventing panel wear, and adapting to the storage and transportation of glass curtain wall panels of different sizes and specifications.
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Figure CN117508850B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of glass curtain wall construction, and more particularly to a combined glass curtain wall panel transportation and stacking system and method. Background Art
[0002] With the rapid development of the construction industry, complex and varied exterior curtain wall forms and shapes are becoming more and more popular. At the same time, glass curtain walls have also put forward higher requirements for installation, storage, and transportation technology. After the glass curtain wall panels are assembled in the production workshop, they need to be transported to the designated construction area by truck for installation. Due to the limited space on the construction site and the different sizes and shapes of the glass curtain wall panels, they are mostly stored in storage racks of different specifications and then transported by forklifts. How to store and transport curtain wall materials in large quantities in a limited space is a major technical challenge in the field of curtain wall construction.
[0003] The existing technology has the following disadvantages: traditional glass curtain wall panel storage racks are usually only suitable for storing unit panels of a limited number of fixed specifications, sizes and shapes. For ultra-large glass curtain wall panels, they can only be lifted and transported by large heavy machinery, which requires a lot of power and rental costs, and cannot adapt to the transportation needs of different models, sizes and quantities. Summary of the Invention
[0004] In response to the above defects or improvement needs of the prior art, the present invention provides a combined glass curtain wall panel transportation and stacking system and method, including a support assembly, a moving assembly, a lifting assembly, a locking assembly and a pull rod assembly, wherein the support assembly is the bracket body of the entire stacking system, the moving assembly and the lifting assembly are both fixedly arranged at the bottom of the support assembly, and are respectively used to move and fix the support assembly, the locking assembly is arranged on the side of the support assembly, and is used to connect and install multiple sets of support assemblies to form a freely combinable glass curtain wall panel transportation and stacking system, the pull rod assembly is detachably arranged on the support assembly, and is used to pull the entire transportation and stacking system, and the support assembly solves the problem of storing a large amount of glass curtain walls and flexible transportation in a limited space by designing a multi-layer support frame and combining multiple support assemblies through the locking assembly.
[0005] In order to achieve the above-mentioned object, the present invention provides a combined glass curtain wall panel transportation and stacking system, comprising a support assembly, a moving assembly, a lifting assembly, a locking assembly and a pull rod assembly, wherein the support assembly comprises a multi-layer support frame and columns, the columns are fixed on the support frame, and the columns are inserted into the adjacent support frame and fixed; the moving assembly and the lifting assembly are fixedly arranged at the bottom of the support block frame of the bottom layer, the pull rod assembly is detachably arranged on the support assembly, and the lifting assembly is supported and fixed on the ground; the moving assembly comprises a brake module and a roller module, the roller module is supported on the ground in a rolling manner, and the brake module stops the roller module;
[0006] The locking assembly is arranged on the support assembly and is used to lock multiple sets of the support assemblies. The locking assembly includes a lock tongue, a socket and an adjustment rod. Two adjacent frames in the support frame are fixed with a first pin extending outward, and the other two frames are provided with a socket. The first pin on one side of the support frame is inserted into the socket of an adjacent group of support frames. The lock tongue passes through the socket and is inserted into the first pin. The adjustment rod is rotatably connected to the support frame to drive the lock tongue.
[0007] Furthermore, the locking assembly includes an adjusting bolt, one end of the adjusting rod passes through the side of the support frame, the adjusting bolt is fixed at the end of the adjusting rod, and the adjusting bolt is rotated to drive the adjusting rod and the lock tongue, and the adjusting rod and the lock tongue are engaged and transmitted.
[0008] Furthermore, the support assembly includes a square groove and a first pin. The square groove is provided at one end of the column, and a column pin extending outward is fixed at the other end. The column pin located on the upper layer is inserted into the adjacent square groove and fixed.
[0009] Furthermore, the upper surfaces of the support frame and the columns are both supporting surfaces, and rubber pads are laid on the supporting surfaces.
[0010] Furthermore, the roller module includes a rotating support, a buffer device, a wheel body bracket and a damping wheel. The rotating support is fixedly arranged on the bottom support frame, the buffer device is fixed on the rotating support, the wheel body bracket is fixedly arranged at the bottom of the buffer device, and the damping wheel is rotatably connected to the wheel body bracket.
[0011] Furthermore, the brake module includes a deceleration plate and an elastic bracket, the elastic bracket is fixedly arranged in the middle of the wheel body bracket, the deceleration plate is fixedly arranged on the elastic bracket, and the deceleration plate is rotatably connected to the elastic bracket.
[0012] Furthermore, the pull rod assembly includes a second pin, a roller and a pull rod. A handle for holding is provided at one end of the pull rod, and the second pin and the roller are provided at the other end. The second pin is connected to the socket provided on the bottom support frame, and the roller is rotatably connected to the pull rod.
[0013] Furthermore, the lifting assembly is fixed to the bottom of the supporting frame of the bottom layer. The lifting assembly includes a hydraulic cylinder, a hydraulic rod and a support seat. One end of the hydraulic cylinder is fixed to the bottom of the supporting frame of the bottom layer, and the other end is hydraulically connected to the hydraulic rod. The support seat is fixedly set at the bottom of the hydraulic rod.
[0014] Furthermore, the support assembly includes a cross bar and a support bar. The cross bar and the support bar are perpendicular to each other and fixedly connected. The two are fixed in the same plane to form the support frame.
[0015] According to another aspect of the present invention, a method for using a combined glass curtain wall panel transport and stacking system is provided, comprising the following steps:
[0016] S100, stacking the support frames, extending the lifting assembly on the bottom support frame to support and fix it on the ground, aligning the column pins on the upper layer with the columns on the adjacent support frame at the bottom, and inserting the column pins into the square grooves of the columns to fix them, stacking and fixing multiple support frames in sequence as needed, and then moving the glass curtain wall panels to each support frame for storage;
[0017] S200, splicing the multiple groups of support assemblies, retracting the lifting assembly on the bottom support frame to release the fixation of the entire system, then moving the multiple groups of support assemblies to align with the support frames on each layer using the bottom moving assembly, inserting the first latch on one side of the support frame into the socket on the side of the adjacent support frame to complete the splicing;
[0018] S300, locking the plurality of support assemblies, rotating the adjusting bolt to rotate the movable adjusting rod, and driving the locking tongue to extend into the insertion hole until the locking tongue is inserted into the through hole of the first latch, thereby locking the adjacent support assemblies;
[0019] S400, use the pull rod assembly for transportation, insert the second pin at the bottom of the pull rod into the socket on the bottom support frame, then pull the pull rod to guide multiple groups of the support assemblies for transportation through the rollers, and after transporting to the designated location, start the hydraulic cylinder to push out the hydraulic rod until the support base is supported on the ground to achieve fixation.
[0020] In general, the above technical solutions conceived by the present invention can achieve the following beneficial effects compared with the prior art:
[0021] 1. The present invention provides a modular glass curtain wall panel transportation and stacking system, comprising a support assembly, a moving assembly, a lifting assembly, a locking assembly, and a pull rod assembly, wherein the support assembly is the bracket body of the entire stacking system, the moving assembly and the lifting assembly are both fixedly arranged at the bottom of the support assembly, and are respectively used to move and fix the support assembly, the locking assembly is arranged on the side of the support assembly, and is used to connect and install multiple sets of support assemblies to form a freely combinable glass curtain wall panel transportation and stacking system, the pull rod assembly is detachably arranged on the support assembly, and is used to pull the entire transportation and stacking system, and the support assembly solves the problem of storing a large amount of glass curtain walls and flexible transportation in a limited space by designing a multi-layer support frame and connecting multiple support assemblies through the locking assembly.
[0022] 2. The present invention provides a combined glass curtain wall panel transportation and stacking system, the locking assembly adopted includes an adjusting bolt, a locking tongue, a socket and an adjusting rod. Among the four frames of the supporting frame, two adjacent frames are provided with first latches extending outward, and the other two frames are provided with sockets. The equal-length frames of the two groups of supporting frames are moved side by side, and then the first latch of one supporting frame is pushed to be inserted into the socket of the other supporting frame. A horizontal through hole is provided on the first latch, the adjusting rod is arranged in the supporting frame, and a plurality of locking tongues are fixedly provided on the side of the adjusting rod. The adjusting rod is engaged with the locking tongue for transmission connection. When the first latch is inserted into the socket, the adjusting rod is rotated to drive the locking tongue to extend out and penetrate into the first latch, thereby completing the locking of the two adjacent groups of supporting frames. The provision of the locking assembly can make the adjacent supporting frames of multiple stacking systems tightly combined together, thereby increasing the adaptability of the entire stacking system, being able to transport and store glass curtain wall panels of different sizes and specifications, and improving the transportation capacity. BRIEF DESCRIPTION OF THE DRAWINGS
[0023] Figure 1 This is a structural schematic diagram of a combined glass curtain wall panel transportation and stacking system according to an embodiment of the present invention;
[0024] Figure 2 A partially enlarged view of a combined glass curtain wall panel transportation and stacking system according to an embodiment of the present invention;
[0025] Figure 3 A cross-sectional view of a locking assembly of a combined glass curtain wall panel transportation and stacking system according to an embodiment of the present invention;
[0026] Figure 4 This is a structural schematic diagram of a pull rod assembly in a combined glass curtain wall panel transportation and stacking system according to an embodiment of the present invention;
[0027] Figure 5 A partially enlarged view B of a combined glass curtain wall panel transportation and stacking system according to an embodiment of the present invention;
[0028] Figure 6This is a schematic diagram of the combination of adjacent support frames in a combined glass curtain wall panel transportation and stacking system according to an embodiment of the present invention;
[0029] Figure 7 This is a flow chart of a method for using a combined glass curtain wall panel transportation and stacking system according to an embodiment of the present invention.
[0030] In all the drawings, the same reference numerals represent the same technical features, specifically: 1-support assembly, 2-moving assembly, 3-lifting assembly, 4-locking assembly, 5-pull rod assembly, 11-column, 12-cross bar, 13-support rod, 14-square groove, 15-first latch, 21-rotating support, 22-buffer device, 23-wheel body bracket, 24-shock-absorbing wheel, 25-speed reducer, 26-elastic bracket, 31-hydraulic cylinder, 32-hydraulic rod, 33-support seat, 41-adjusting bolt, 42-lock tongue, 43-socket, 44-adjusting rod, 51-second latch, 52-roller, 53-pull rod. DETAILED DESCRIPTION
[0031] In order to make the objectives, technical solutions and advantages of the present invention more clearly understood, the present invention is further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only intended to illustrate the present invention and are not intended to limit the present invention. In addition, the technical features involved in the various embodiments of the present invention described below may be combined with each other as long as they do not conflict with each other.
[0032] like Figures 1-6 The illustrated combined glass curtain wall panel transport and stacking system includes a support assembly 1, a moving assembly 2, a lifting assembly 3, a locking assembly 4, and a pull rod assembly 5, wherein the support assembly 1 is the bracket body of the entire stacking system, the moving assembly 2 and the lifting assembly 3 are fixedly arranged at the bottom of the support assembly 1, and are respectively used to move and fix the support assembly 1, the locking assembly 4 is arranged on the support assembly 1, and is used to lock and install multiple sets of support assemblies 1 to form a freely combinable glass curtain wall panel transport and stacking system, and the pull rod assembly 5 is detachably arranged on the support assembly 1, and is used to pull the entire transport and stacking system. The support assembly 1 is designed with a multi-layer support frame, which can be quickly disassembled and assembled according to the size and quantity of the glass curtain wall, which can reduce the use of forklifts and lifting machinery, and the locking assembly 4 is combined with multiple support assemblies 1 to solve the problem of storing a large amount of glass curtain walls and flexible transportation in a limited space.
[0033] Furthermore, if Figure 1 and Figure 6As shown, the support assembly 1 includes a column 11, a cross bar 12, a support rod 13, a square groove 14 and a first latch 15. The cross bar 12 and the support rod 13 are arranged in a plurality and are perpendicular to each other and fixedly connected. The two form a support frame in the same plane for storing glass curtain wall panels. The columns 11 are vertically fixed at the four corners of the support frame. Preferably, the columns 11 only extend in one direction from the top of the support frame, and the column 11 is defined here as the head and the other end connected to the support frame is the tail. The support frame and the columns 11 form a stacking layer. The first latch 15 is fixed. It is fixed on the outside of the supporting frame and is used to connect and install other adjacent supporting frames; a square groove 14 is provided at the head of the column 11, and a column pin extending outward is provided at the tail thereof. The adjacent stacking layers are fixed by inserting the column pin into the square groove 14. This connection method is convenient for assembly and disassembly and stable for installation. The user can adjust the number of stacking layers according to the transportation volume requirements, and each piece of glass curtain wall panel will not directly contact each other, which can effectively prevent the decorative panel of the glass curtain wall panel from being scratched, worn, and pitted, and can solve the problem of storing a large number of curtain wall glass panels in a limited space.
[0034] Furthermore, the upper surfaces of the support frame and the columns 11 are both supporting surfaces, and rubber pads are laid on the supporting surfaces to protect the curtain wall glass panels and prevent them from slipping, making the curtain wall glass panels more firmly placed.
[0035] Furthermore, if Figure 1 and Figure 2 As shown, the mobile component 2 includes a brake module and a roller module, the roller module includes a rotating support 21, a buffer device 22, a wheel body bracket 23, and a damping wheel 24. The mobile component 2 is fixedly arranged at the bottom of the lowest stacking layer, the rotating support 21 is fixedly arranged below the support frame of the stacking layer, and is used to fix and support the buffer device 22. The wheel body bracket 23 is fixedly arranged at the bottom of the buffer device 22 for installing the damping wheel 24. The damping wheel 24 and the buffer device 22 can rotate in a circle through the rotating support 21. A spring is arranged in the buffer device 22 for shock absorption. The damping wheel 24 is made of rubber material. By arranging the damping wheel 24 and the buffer device 22 Reduce the vibration caused by the uneven road surface and prevent the glass curtain wall panels from being damaged; further, the bottom of the wheel body bracket 23 is rotatably connected to the damping wheel 24, and the brake module includes a speed reduction plate 25 and an elastic bracket 26. The elastic bracket 26 is fixedly arranged in the middle of the wheel body bracket 23 for fixing the speed reduction plate 25. The speed reduction plate 25 is rotatably connected to the elastic bracket 26 and is supported by the upward rebound force of the spring. When deceleration is required, the operator steps on the speed reduction plate 25 to contact the damping wheel 24 to achieve the deceleration effect. After releasing the speed reduction plate 25, the speed reduction plate 25 leaves the surface of the damping wheel 24 under the jacking of the spring. The mobile component 2 is arranged at the bottom of this system to play a role of rapid stopping.
[0036] Furthermore, if Figure 1-Figure 3As shown, the locking assembly 4 includes an adjusting bolt 41, a locking tongue 42, a socket 43 and an adjusting rod 44. Among the four frames of the support frame, two adjacent frames are provided with a first latch 15 extending outward, and the other two frames are provided with a socket 43. The equal-length frames of the two groups of support frames are moved side by side, and then the first latch 15 of one support frame is pushed into the socket 43 of the other support frame to complete the initial limit. A horizontal through hole is provided on the first latch 15, and then the locking assembly 4 is used to lock through the through hole; the adjusting rod 44 is provided in the support frame, and the two are rotatably connected. There are multiple The locking tongue 42 is coaxial with the through hole on the first latch 15. When the first latch 15 is inserted into the insertion hole 43, the adjusting rod 44 is rotated to drive the locking tongue 42 to extend and penetrate into the first latch 15, thereby completing the locking of the two adjacent groups of support frames. Furthermore, one end of the adjusting rod 44 extends from the side of the support frame, and an adjusting bolt 41 is provided at the end of the adjusting rod 44. Locking and unlocking are completed by rotating the adjusting bolt 41. The provision of the locking assembly 4 allows the adjacent support frames of multiple stacking systems to be tightly combined. For oversized or overlong unit panels, two or more mobile brackets can be combined into an overlong bracket for storage, which increases the adaptability of the entire stacking system, can transport and store glass curtain wall panels of different sizes, and improves transportation capacity.
[0037] Furthermore, if Figure 1 and Figure 4 As shown, the pull rod assembly 5 includes a second pin 51, a roller 52 and a pull rod 53, wherein the pull rod 53 is a bent rod-shaped structure, with a handle for holding provided at one end, and a second pin 51 and a roller 52 provided at the other end. The second pin 51 is used to temporarily connect with the socket provided on the bottom support frame, and then the pull rod 53 can be dragged to move and transport. The roller 52 is rotatably connected to the pull rod 53, and the roller 52 plays a guiding role in ground support.
[0038] Furthermore, if Figure 1 and Figure 5 As shown, multiple groups of lifting components 3 are arranged and fixed at the bottom of the bottom support frame. The lifting components 3 include a hydraulic cylinder 31, a hydraulic rod 32 and a support seat 33. Among them, one end of the hydraulic cylinder 31 is supported and fixed at the bottom of the bottom support frame, and the other end is hydraulically connected to the hydraulic rod 32. A support seat 33 with a larger area is fixed at the bottom of the hydraulic rod 32 for contacting the ground. When the transport and stacking system moves to the designated position, the hydraulic cylinder 31 is started to push the hydraulic rod 32 out until the support seat 33 is supported on the ground for fixation.
[0039] Furthermore, from another aspect of the present invention, a method for using a combined glass curtain wall panel transportation and stacking system is provided, comprising the following steps:
[0040] S100: Stack the support frames. Extend the lifting assembly 3 on the bottom support frame and fix it to the ground. Align the upper column pins with the columns 11 on the adjacent bottom support frame and insert the column pins into the square grooves 14 of the columns 11 to secure them. Stack and fix multiple support frames as needed. Then move the glass curtain wall panels to each support frame for storage.
[0041] S200: Splice multiple support assemblies 1. Retract the lifting assembly 3 on the bottom support frame to release the entire system. Then, use the bottom moving assembly 2 to move the multiple support assemblies 1 to align them with each layer of support frames. Insert the first latch 15 on one side of the support frame into the socket 43 on the side of the adjacent support frame to complete the splicing.
[0042] S300, locking multiple support assemblies 1, rotating the adjusting bolt 41, driving the adjusting rod 44 to rotate, and driving the locking tongue 42 to extend into the insertion hole 43 until the locking tongue 42 is inserted into the through hole of the first latch 15, thereby locking the adjacent support assemblies 1;
[0043] S400, use the pull rod assembly 5 for transportation, insert the second pin 51 at the bottom of the pull rod 53 into the socket on the bottom support frame, then pull the pull rod 53, and guide the multiple groups of support assemblies 1 for transportation through the roller 52. After transporting to the designated location, start the hydraulic cylinder 31 to push out the hydraulic rod 32 until the support seat 33 is supported on the ground to achieve fixation.
[0044] It will be easily understood by those skilled in the art that the above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions and improvements made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.
Claims
1. A combined glass curtain wall panel transportation and stacking system, characterized in that: It comprises a support assembly, a moving assembly (2), a lifting assembly, a locking assembly and a pull rod assembly (5); wherein the support assembly comprises a multi-layer support frame and a column (11), the column (11) is fixed on the support frame, and the column (11) is inserted into the adjacent support frame and fixed; the moving assembly (2) and the lifting assembly are fixedly arranged at the bottom of the support block frame of the bottom layer, the pull rod assembly (5) is detachably arranged on the supporting assembly, and the lifting assembly is supported and fixed on the ground; the moving assembly (2) comprises a brake module and a roller module, the roller module is supported on the ground in a rolling manner, and the brake module stops the roller module; The locking assembly is arranged on the supporting assembly and is used to lock multiple sets of the supporting assemblies. The locking assembly includes a lock tongue (42), a socket (43) and an adjusting rod (44). A plurality of the lock tongues (42) are provided on the side of the adjusting rod (44). The adjusting rod (44) is meshed and transmission-connected with the lock tongue (42). The lock tongue (42) is screwed into the supporting frame. Two adjacent frames in the supporting frame are fixed with a first latch (15) extending outward, and the other two frames are provided with a socket (43). The first latch (15) on one side of the supporting frame is inserted into the socket (43) of an adjacent group of the supporting frames. The adjusting rod (44) is rotatably connected to the supporting frame to drive the lock tongue (42) so that the lock tongue (42) passes through the socket (43) and is inserted into the first latch (15).
2. The combined glass curtain wall panel transportation and stacking system according to claim 1, characterized in that: The locking assembly includes an adjusting bolt (41), one end of the adjusting rod (44) extends out from the side of the support frame, the adjusting bolt (41) is fixed to the end of the adjusting rod (44), and the adjusting bolt (41) is rotated to drive the adjusting rod (44) and the locking tongue (42).
3. The combined glass curtain wall panel transportation and stacking system according to claim 2, characterized in that: The support assembly comprises a square groove (14) and a first latch (15); the square groove (14) is provided at one end of the column (11); and a column pin extending outward is fixed at the other end; the column pin located at the upper layer is inserted into the adjacent square groove (14) and fixed.
4. A combined glass curtain wall panel transportation and stacking system according to any one of claims 1 to 3, characterized in that: The upper surfaces of the support frame and the upright column (11) are both supporting surfaces, and rubber pads are laid on the supporting surfaces.
5. The combined glass curtain wall panel transportation and stacking system according to claim 3, characterized in that: The roller module comprises a rotating support (21), a buffer device (22), a wheel body bracket (23) and a damping wheel (24), wherein the rotating support (21) is fixedly arranged on the supporting frame of the bottom layer, the buffer device (22) is fixed on the rotating support (21), the wheel body bracket (23) is fixedly arranged at the bottom of the buffer device (22), and the damping wheel (24) is rotatably connected to the wheel body bracket (23).
6. The combined glass curtain wall panel transportation and stacking system according to claim 5, characterized in that: The brake module comprises a deceleration plate (25) and an elastic bracket (26); the elastic bracket (26) is fixedly arranged in the middle of the wheel body bracket (23); the deceleration plate (25) is fixedly arranged on the elastic bracket (26); and the deceleration plate (25) is rotatably connected to the elastic bracket (26).
7. The combined glass curtain wall panel transportation and stacking system according to claim 6, characterized in that: The pull rod assembly (5) includes a second latch (51), a roller (52) and a pull rod (53). A handle for holding is provided at one end of the pull rod (53), and the second latch (51) and the roller (52) are provided at the other end. The second latch (51) is connected to a socket provided on the bottom support frame, and the roller (52) is rotatably connected to the pull rod (53).
8. The combined glass curtain wall panel transportation and stacking system according to claim 7, characterized in that: The lifting assembly is fixed to the bottom of the bottom support frame, and the lifting assembly includes a hydraulic cylinder (31), a hydraulic rod (32) and a support seat (33). One end of the hydraulic cylinder (31) is fixed to the bottom of the bottom support frame, and the other end is hydraulically connected to the hydraulic rod (32). The support seat (33) is fixedly arranged at the bottom of the hydraulic rod (32).
9. A combined glass curtain wall panel transportation and stacking system according to any one of claims 1 to 3, characterized in that: The support assembly comprises a cross bar (12) and a support bar (13); the cross bar (12) and the support bar (13) are perpendicular to each other and fixedly connected, and the two are fixed in the same plane to form the support frame.
10. A method for using a combined glass curtain wall panel transportation and stacking system, characterized in that: The combined glass curtain wall panel transportation and stacking system according to claim 8 is implemented by the following steps: S100, stacking the support frames, extending the lifting assembly on the bottom support frame to support and fix it on the ground, aligning the column pins on the upper layer with the columns (11) on the adjacent support frame at the bottom, inserting the column pins into the square grooves (14) of the columns (11) to achieve fixation, stacking and fixing multiple support frames in sequence as required, and then moving the glass curtain wall panels to each layer of the support frame for storage; S200, splicing multiple groups of the support components, retracting the lifting components on the bottom support frame, releasing the fixation of the entire system, and then moving the multiple groups of the support components to each layer of the support frame through the bottom moving component (2) to align them, inserting the first latch (15) on one side of the support frame into the socket (43) on the side of the adjacent support frame to complete the splicing; S300, locking the plurality of support assemblies, rotating the adjusting bolt (41), driving the adjusting rod (44) to rotate, and driving the locking tongue (42) to extend into the insertion hole (43), until the locking tongue (42) is inserted into the through hole of the first latch (15), thereby locking the adjacent support assemblies; S400, using the pull rod assembly (5) for transportation, inserting the second pin (51) at the bottom of the pull rod (53) into the socket on the bottom support frame, then pulling the pull rod (53), guiding multiple groups of the support assemblies for transportation through the roller (52), and after being transported to the designated location, starting the hydraulic cylinder (31) to push out the hydraulic rod (32) until the support base (33) is supported on the ground to achieve fixation.