Glass curtain wall high-precision positioning auxiliary installation device and method

By designing high-precision positioning auxiliary installation equipment for glass curtain walls, and utilizing the combination of clamping components and suction cups, safety hazards and construction quality issues during the handling and positioning of glass panels were resolved, achieving efficient and stable glass panel installation.

CN119411825BActive Publication Date: 2025-10-24CHINA FIRST METALLURGICAL GROUP
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Patent Information

Application Number
CN202411628089.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-11-14
Publication Date
2025-10-24
Estimated Expiration
2044-11-14

AI Technical Summary

Technical Problem

In the current glass curtain wall installation process, there are safety hazards in the handling and positioning of glass panels, and multiple people are required to cooperate, which affects the construction quality and the labor intensity of the operators.

Method used

A high-precision positioning auxiliary installation device for glass curtain walls was designed, including a base, an adjustment component, a suction cup, an assembly frame, a control frame, a clamping component, an angle control component, and an assembly component. Through the cooperation of the clamping component and the suction cup, the glass panel can be stably fixed and accurately positioned, reducing manual intervention.

Benefits of technology

It improves the stability of the fixed movement of the glass panel, reduces safety hazards, ensures the precise assembly of the glass panel, reduces the labor intensity of operators, and improves the construction quality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application provides a glass curtain wall high-precision positioning auxiliary installation equipment and method, which comprises a base arranged on a hanging basket, a position adjusting assembly arranged at the bottom of the base, a plurality of suction cups for fixing external glass plates, two assembling frames connected with the suction cups respectively, a control frame connected with the two assembling frames, a clamping assembly installed on the control frame, two hook rings fixed symmetrically on the control frame, an adjusting assembly arranged on the control frame and the two assembling frames, and a connecting plate hinged on the control frame. The glass curtain wall high-precision positioning auxiliary installation equipment and method can reinforce the glass plates fixed by the suction cups through the clamping assembly, effectively improves the safety during the installation of the glass plates, and facilitates the stable and accurate movement and positioning of the glass plates under the control of the position adjusting assembly, so that the installation quality of the whole glass curtain wall is ensured.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of building construction, in particular to a glass curtain wall high-precision positioning auxiliary installation equipment and method. BACKGROUND

[0002] The building curtain wall is composed of a supporting structure system and a panel, which can have a certain displacement capacity relative to the main structure, does not share the action of the main structure, and is hung like a curtain, so it is also called a suspended wall. It is a light wall with decorative effect commonly used in modern large and high-rise buildings. It is composed of a structural frame and a panel, and does not bear the load and action of the main structure.

[0003] In the current glass curtain wall installation method, a lifting appliance is generally used to move a single glass curtain wall to the installation position, and then a worker stands on the basket to hold the glass panel and adjusts and installs it into the installation position. During installation, the worker needs to hold the glass panel, so another worker is needed to install the glass panel, which requires multiple workers to cooperate in construction. During the transportation of the glass panel, manual adjustment is generally used after the glass curtain wall is fixed by the suction cup. However, since the glass curtain wall is usually made of double-layer glass, it is heavy and large in size, and the suction cup cannot be adapted to the glass panel for stable auxiliary fixing, which may cause safety hazards during the assembly operation of the glass panel and increase the labor intensity of the operator. During installation, the worker cannot stably adjust the position of the glass panel, which may cause the glass curtain wall to deviate after adjustment, affecting the overall construction quality of the glass curtain wall. SUMMARY

[0004] The purpose of the present application is to provide a glass curtain wall high-precision positioning auxiliary installation equipment and method to solve the above problems.

[0005] In order to achieve the above purpose, the present application provides a glass curtain wall high-precision positioning auxiliary installation equipment and method, which comprises: a base provided on a basket, a positioning assembly provided at the bottom of the base, a plurality of suction cups for fixing external glass panels, two assembly frames respectively connected with the plurality of suction cups, a control frame connected with the two assembly frames, a clamping assembly installed on the control frame, two hook rings symmetrically fixed on the control frame, an adjustment assembly provided on the control frame and the two assembly frames, a connecting plate hingedly connected to the control frame, two angle control assemblies symmetrically provided on the control frame and the connecting plate, and an assembly assembly connected with the connecting plate and the positioning assembly, wherein

[0006] The assembly assembly is adapted to complete the butt joint connection of the connecting plate and the positioning assembly.

[0007] Two angle control assemblies are adapted to control the angle of the control frame, thereby changing the angle of the fixed peripheral glass plate;

[0008] The adjusting assembly is adapted to control the distance between the two assembly frames;

[0009] The clamping assembly is adapted to reinforce the fixed peripheral glass plate;

[0010] The position adjusting assembly is adapted to stably control the multi-directional position of the fixed peripheral glass plate.

[0011] Further, the clamping assembly comprises a plurality of first electric push rods respectively mounted on the two assembly frames, two control plates respectively arranged at the upper and lower ends of the control frame and connected with the telescopic ends of the first electric push rods, a plurality of guide rods movably mounted on the control frame and fixedly connected with the two control plates, two clamping sleeves movably mounted on the two control plates, and a plurality of reset springs symmetrically arranged in the two clamping sleeves.

[0012] The two ends of the reset spring are fixedly connected with the clamping sleeve and the control plate, respectively.

[0013] Further, the adjusting assembly comprises two limiting grooves symmetrically arranged on the control frame, two limiting rods movably mounted in the two assembly frames and fixedly mounted in the control frame, a positioning plate fixedly connected with the middle part of the control frame, a rack fixedly mounted on the positioning plate, two adjusting screws threadedly mounted on the two assembly frames, and two positioning tooth plates rotatably connected with the two adjusting screws and engaged with the rack.

[0014] The two assembly frames are movably inserted in the two limiting grooves.

[0015] Further, the angle control assembly comprises a movable slot arranged on the control frame, a control screw rotatably mounted in the movable slot, a control slider threadedly connected with the control screw and slidably mounted in the movable slot, and a connecting rod rotatably connected with one end of the control slider and the other end of the connecting plate.

[0016] Further, the position adjusting assembly comprises two translation grooves symmetrically arranged on the bottom of the base and corresponding to the hanging basket, a plurality of translation balls movably mounted in the two translation grooves, two guide grooves symmetrically arranged on the upper surface of the hanging basket and corresponding to the translation balls, a positioning screw threadedly mounted on the base, a positioning groove arranged on the hanging basket, a control handle fixedly mounted on the base, a lifting member arranged on the base, and a displacement member arranged on the lifting member.

[0017] Further, the lifting member comprises two second electric push rods symmetrically mounted on the base, a lifting plate fixed at the telescopic ends of the two second electric push rods, a plurality of jacking rods movably mounted on the base and fixedly connected to the lower surface of the lifting plate.

[0018] Further, the shifting member comprises two guide rails symmetrically fixed to the upper surface of the lifting plate, a plurality of guide blocks movably mounted on the two guide rails, a push plate fixedly connected to the plurality of guide blocks, a control groove opened in the lifting plate, and a third electric push rod fixed to the lower surface of the lifting plate.

[0019] The telescopic end of the third electric push rod passes through the control groove and is fixedly connected to the lower surface of the push plate.

[0020] Further, the assembly component comprises two connecting blocks symmetrically fixed to the connecting plate, two insertion slots respectively opened in the two connecting blocks, a butt plate fixedly connected to the push plate, two insertion blocks symmetrically fixed to the butt plate, and two limiting blocks symmetrically rotatably mounted on one of the insertion blocks.

[0021] The two insertion blocks are respectively slidably inserted into the two insertion slots.

[0022] Further, a scale groove is symmetrically opened in the positioning plate.

[0023] A high-precision installation method of a glass curtain wall, comprising the following steps:

[0024] S1. Measure and lay out on the building, and install the embedded parts according to the measurement data. Assemble the glass curtain wall beams and vertical beams on the building. Carry the glass plate to be installed to the top of the building, and lower the basket to the position where the glass plate is to be installed. Assemble the positioning assembly on the basket.

[0025] S2. Connect the lifting rope with the two carabiners. Connect the control frame with the glass plate to be installed through the clamping assembly and the plurality of suction cups. According to the required installation angle of the glass curtain wall on the building, adjust the angle of the connecting plate on the control frame relative to the control frame through the angle control assembly. Then, the fixed glass plate can be hoisted to the basket through the lifting rope.

[0026] S3. Connect the connecting plate with the positioning assembly through the assembly component, so that the glass plate to be installed is parallel to the installation surface of the glass curtain wall.

[0027] S4, pull the control handle to control the base to move horizontally on the basket, thereby adjusting the side wall of the to-be-installed glass plate to correspond to the side of the glass plate installation position, and then starting the control of the two second electric push rods to control the height of the lifting plate, thereby adjusting the upper surface and the lower surface of the to-be-installed glass plate to correspond to the upper surface and the lower surface of the glass plate installation position;

[0028] S5, start the control of the third electric push rod to control the movement of the push plate, thereby pushing the control frame to drive the to-be-installed glass plate to approach the glass curtain wall installation surface, so that the to-be-installed glass plate is installed into the specified installation position between the horizontal beam and the vertical beam;

[0029] S5, repeat steps S2 to S5 to complete the installation of the entire curtain wall glass.

[0030] Compared with the prior art, the present application has the following beneficial effects:

[0031] 1. The glass curtain wall high-precision positioning auxiliary installation equipment and method can clamp the glass plate through the clamping assembly before the glass plate is fixed by the plurality of suction cups, so that the control frame is located at the relative center position of the glass plate, the suction cups can be suctioned at the relative center position of the glass plate when the glass plate is fixed by the plurality of suction cups, thereby improving the uniformity of the force when the glass plate is fixed and moved by the plurality of suction cups, and the clamping and fixing of the glass plate by the clamping assembly, effectively improving the stability of the glass plate during the fixing and moving, compared with the simple suction fixing by the suction cups, the safety of the glass plate during the transfer is effectively improved under the cooperation of the clamping assembly, and the safety hidden danger during the construction of the glass curtain wall is reduced.

[0032] 2. The glass curtain wall high-precision positioning auxiliary installation equipment and method can indirectly complete the assembly of the fixed glass on the positioning assembly through the assembly assembly, thereby conveniently and quickly and stably completing the position calibration of the glass plate through the positioning assembly, and after the position adjustment is completed, the glass plate can be stably controlled to approach the installation position for installation, thereby effectively ensuring the accuracy of the glass panel during the positioning and installation, avoiding the shaking during the manual adjustment and installation to affect the assembly accuracy of the glass plate, ensuring the construction quality of the glass curtain wall as a whole, and after the glass plate enters the installation position, the glass plate can be stably supported, without the need for manual support operation, effectively reducing the cooperation of too many manual operations, and reducing the labor intensity of the operators. BRIEF DESCRIPTION OF DRAWINGS

[0033] The present application will be further described below in conjunction with the drawings and examples.

[0034] Figure 1 A perspective view of the present application is shown;

[0035] Figure 2 A perspective view of the present application is shown;

[0036] Figure 3 partial cutaway perspective view showing the present application Figure 1 ;

[0037] Figure 4 partial cutaway perspective view showing the present application Figure 2 ;

[0038] Figure 5 partial cutaway perspective view showing the present application Figure 1 ;

[0039] Figure 6 partial cutaway perspective view showing the present application Figure 3 ;

[0040] Figure 7 partial cutaway perspective view showing the present application Figure 2 ;

[0041] Figure 8 partial cutaway perspective view showing the present application

[0042] Figure 9 partial cutaway perspective view showing the present application Figure 4 .

[0043] In the drawings, the same reference numerals indicate the same structural elements throughout the various figures, in which:

[0044] 1, basket; 2, base; 3, positioning assembly; 4, suction cup; 5, assembly frame; 6, control frame; 7, clamping assembly; 8, shackle; 9, adjusting assembly; 10, connecting plate; 11, angle control assembly; 12, assembly assembly; 13, first electric push rod; 14, control plate; 15, guide rod; 16, jacket; 17, return spring; 18, limiting sliding groove; 19, limiting rod; 20, positioning plate; 21, rack; 22, adjusting screw; 23, positioning tooth plate; 24, movable groove; 25, control screw; 26, control sliding block; 27, connecting rod; 28, translation slot; 29, translation ball; 30, guide sliding groove; 31, positioning screw; 32, positioning sliding groove; 33, control handle; 34, lifting piece; 35, displacement piece; 36, second electric push rod; 37, lifting plate; 38, jacking rod; 39, guide rail; 40, guide block; 41, push plate; 42, control groove; 43, third electric push rod; 44, connecting block; 45, insertion slot; 46, butt plate; 47, insertion block; 48, limiting block; 49, scale groove. DETAILED DESCRIPTION

[0045] The application will now be described in further detail with reference to the drawings. These drawings show only the essential features of the application and are therefore not to scale. In the drawings, like reference numerals refer to like parts throughout the various views thereof.

[0046] As Figures 1-9 shown, a glass curtain wall high-precision positioning auxiliary installation device, comprising: a base 2 arranged on a hanging basket 1, a positioning assembly 3 arranged at the bottom of the base 2, a plurality of suction cups 4 for fixing external glass plates, two assembly frames 5 connected with the plurality of suction cups 4 respectively, a control frame 6 connected with the two assembly frames 5, a clamping assembly 7 mounted on the control frame 6, two hook rings 8 fixed symmetrically on the control frame 6, an adjusting assembly 9 arranged on the control frame 6 and the two assembly frames 5, a connecting plate 10 hinged on the control frame 6, two angle control assemblies 11 symmetrically arranged on the control frame 6 and the connecting plate 10, and an assembly assembly 12 connected with the connecting plate 10 and the positioning assembly 3, wherein

[0047] The assembly assembly 12 is adapted to complete the butt joint connection of the connecting plate 10 and the positioning assembly 3;

[0048] The two angle control assemblies 11 are adapted to control the angle of the control frame 6, thereby changing the angle of the fixed external glass plate;

[0049] The adjusting assembly 9 is adapted to control the distance between the two assembly frames 5;

[0050] The clamping assembly 7 is adapted to reinforce the fixed external glass plate;

[0051] The position adjusting assembly 3 is suitable for stabilizing the multi-directional position control of the fixed external glass plate. When in use, the distance between the two assembly frames 5 can be controlled through the adjusting assembly 9, so that the control frame 6 can be conveniently adsorbed and fixed with the glass plate of different sizes. When the glass plate is adsorbed and fixed by the plurality of suction cups 4, the glass plate can be clamped by the clamping assembly 7, and the control frame 6 is located at the relative center position of the glass plate, so that the plurality of suction cups 4 can be adsorbed at the relative center position of the glass plate, thereby ensuring the uniformity of the force when the plurality of suction cups 4 adsorb and fix the glass plate, and effectively improving the stability of the glass plate during the fixing and moving by cooperating with the clamping of the glass plate by the clamping assembly 7, thereby reducing the safety hidden danger during the construction of the glass curtain wall. At the same time, the two clamping sleeves 16 in the clamping assembly 7 for clamping the glass plate can move during the assembly of the glass plate, so as not to hinder the assembly of the glass plate. After the glass plate is fixed, the angle of the hinge connecting plate 10 connected with the control frame 6 can be changed through the angle control assembly 11, so that the angle after the angle adjustment can be always ensured during the subsequent assembly of the glass plate, thereby facilitating the assembly of the inclined building surface glass curtain wall. Then, the single glass plate is moved to the installation position by the lifting tool cooperating with the two hook rings 8, and the lifting basket 1 is moved to the curtain wall installation position in advance. The connecting plate 10 can be stably installed on the butt joint plate 46 in the position adjusting assembly 3 through the assembly assembly 12, thereby facilitating the subsequent position adjustment of the fixed glass plate by the position adjusting assembly 3, and the connecting plate 10 can be quickly detached from the butt joint plate 46 after the assembly of the single glass plate is completed, thereby facilitating the assembly of the next glass plate. The position of the glass plate can be quickly and stably calibrated through the position adjusting assembly 3, and the glass plate can be stably controlled to approach the installation position for installation after the position adjustment is completed, thereby effectively ensuring the accuracy of the glass panel positioning and installation, avoiding the assembly deviation caused by manual adjustment, thereby ensuring the construction quality of the glass curtain wall as a whole, and the glass plate can be maintained after entering the installation position. The top support of the glass plate does not need to be operated by the operator, thereby effectively reducing the cooperation of too much manual work and reducing the labor intensity of the operator.

[0052] Optionally, the clamping assembly 7 comprises a plurality of first electric push rods 13 respectively installed on the two assembly frames 5, two control plates 14 respectively arranged at the upper and lower ends of the control frame 6 and connected with the extension ends of the plurality of first electric push rods 13, a plurality of guide rods 15 movably installed on the control frame 6 and respectively fixedly connected with the two control plates 14, two clamping sleeves 16 movably installed on the two control plates 14, and a plurality of reset springs 17 symmetrically arranged in the two clamping sleeves 16.

[0053] The two ends of the reset spring 17 are fixedly connected with the clamping sleeve 16 and the control plate 14 respectively. Before the plurality of suction cups 4 perform the adsorption and fixation of the glass plate, the plurality of first electric push rods 13 work synchronously to control the two control plates 14 to drive the two clamping sleeves 16 to move synchronously. When the two clamping sleeves 16 abut against the glass plate, the plurality of suction cups 4 are located at the relative center position of the glass plate, effectively improving the uniformity of the stress of the plurality of suction cups 4 during the adsorption and fixation of the glass plate, and then cooperating with the limiting of the glass plate by the two clamping sleeves 16, effectively improving the stability of the glass plate during the fixation and movement, and compared with the simple adsorption and fixation by the suction cups 4, the safety of the glass plate during the transfer is effectively improved under the clamping cooperation of the two clamping sleeves 16. When the glass plate approaches the building wall surface for abutting assembly, the plurality of first electric push rods 13 control the two clamping sleeves 16 to slightly move away from the glass plate. At this time, the two clamping sleeves 16 will contact the wall surface before the glass plate, and gradually move close to the two control plates 14 during the assembly process of the glass plate, and compress the plurality of reset springs 17, without affecting the assembly of the glass plate. After the assembly of the glass plate is completed, the two clamping sleeves 16 can also reset under the elastic force of the plurality of reset springs 17.

[0054] Optionally, the adjusting assembly 9 comprises two limiting sliding grooves 18 symmetrically opened on the control frame 6, two limiting rods 19 symmetrically movably installed in the two assembly frames 5 and fixedly installed in the control frame 6, a positioning plate 20 fixedly connected to the middle part of the control frame 6, a rack 21 fixedly installed on the positioning plate 20, two adjusting screws 22 threadedly installed on the two assembly frames 5 respectively, and two positioning tooth plates 23 rotationally connected with the two adjusting screws 22 respectively and engaged with the rack 21.

[0055] The two assembly frames 5 are movably inserted in the two limiting sliding grooves 18. When the adsorption and fixation of the glass plate of different sizes is needed, the two adjusting screws 22 are rotated to control the two tooth plates to move away from the rack 21. At this time, the two assembly frames 5 can be pushed to move in the control frame 6, so that the distance between the two assembly frames 5 can be controlled to move close to or away from each other, effectively improving the adsorption and fixation area of the plurality of suction cups 4, facilitating the adsorption and fixation of the glass plate of different sizes. When the two assembly frames 5 move, the clamping range of the clamping assembly 7 is also adjusted synchronously, thereby facilitating the reinforcement of the glass plate of different sizes by the clamping assembly 7.

[0056] Optionally, the angle control assembly 11 comprises a movable slot 24 opened on the control frame 6, a control screw 25 rotatably installed in the movable slot 24, a control sliding block 26 threadedly connected with the control screw 25 and slidably installed in the movable slot 24, and a connecting rod 27 rotatably connected with one end of the control sliding block 26 and rotatably connected with the other end of the connecting plate 10. When the building facade is not perpendicular to the ground, the glass curtain wall is also installed obliquely, and then the two angle control assemblies 11 can be controlled simultaneously after the glass plate is fixed. The control screw 25 is rotated to drive the control sliding block 26 to move in the movable slot 24, and then the one end of the connecting rod 27 is driven to move upward to drive the connecting plate 10 to rotate around the hinge of the control frame 6. Then, after the connecting plate 10 is connected with the butt plate 46 through the assembly 12, the fixed glass plate can always maintain the corresponding inclination angle, and the stable and accurate assembly is facilitated, the practicability of the equipment is effectively improved.

[0057] Optionally, the position adjusting assembly 3 comprises two translation slots 28 symmetrically opened on the bottom of the base 2 and corresponding to the hanging basket 1, a plurality of translation balls 29 movably installed in the two translation slots 28, two guide sliding grooves 30 symmetrically opened on the upper surface of the hanging basket 1 and corresponding to the plurality of translation balls 29, a positioning screw 31 threadedly installed on the base 2, a positioning sliding groove 32 opened on the hanging basket 1, a control handle 33 fixed on the base 2, a lifting piece 34 arranged on the base 2, and a displacement piece 35 arranged on the lifting piece 34. After the assembly of the connecting plate 10 on the butt plate 46 is completed, the operator can rotate the positioning screw 31 to remove the interference between the positioning screw 31 and the hanging basket 1, then hold the control handle 33 to push and pull the base 2, and then control the horizontal position of the base 2 on the hanging basket 1 to preliminarily align the side edge of the glass plate with the installation position. When the base 2 is moved, the plurality of translation balls 29 can move in the two guide sliding grooves 30 respectively to ensure smooth movement of the base 2, facilitate control of the operator, and after the preliminary alignment of the glass plate is completed, the positioning screw 31 is rotated to move and interfere with the hanging basket 1, so that the stability of the base 2 after position adjustment is ensured, and the subsequent assembly accuracy of the glass plate is improved.

[0058] Optionally, the lifting piece 34 comprises two second electric push rods 36 symmetrically mounted on the base 2, a lifting plate 37 fixed at the telescopic ends of the two second electric push rods 36, a plurality of jacking rods 38 movably mounted on the base 2 and fixedly connected to the lower surface of the lifting plate 37. After the alignment of the side wall of the glass plate is completed, two of the second electric push rods 36 can be controlled to adjust the height of the lifting plate 37, so that the fixed glass plate can be simultaneously adjusted in height, facilitating the control of the height of the glass plate to be consistent with the installation height, completing the positioning of the entire glass plate and ensuring that the glass plate remains stable after positioning, so that the subsequent assembly of the glass plate will not be offset, improving the assembly precision of the glass plate.

[0059] Optionally, the displacement piece 35 comprises two guide rails 39 symmetrically fixed on the upper surface of the lifting plate 37, a plurality of guide blocks 40 movably mounted on the two guide rails 39, a push plate 41 fixedly connected to the plurality of guide blocks 40, a control groove 42 opened in the lifting plate 37, and a third electric push rod 43 fixed to the lower surface of the lifting plate 37.

[0060] The telescopic end of the third electric push rod 43 passes through the control groove 42 and is fixedly connected to the lower surface of the push rod. After the glass plate is controlled to correspond to the designated installation position, the third electric push rod 43 is started to control the push rod to move, thereby driving the fixed glass plate to approach, and under the cooperation of the two guide rails 39 and the plurality of guide blocks 40, the stability of the movement of the push plate 41 is effectively improved. In this way, it is ensured that the glass plate will not be easily misaligned during assembly, avoiding the manual control of the glass by the worker to prevent shaking and affecting the assembly precision of the glass plate. At the same time, the glass plate can be kept in contact when it is in the assembly position, and the worker does not need to manually support the glass plate during the installation and gluing of the glass plate, reducing the labor intensity of the operator.

[0061] Optionally, the assembly assembly 12 comprises two connection blocks 44 symmetrically fixed on the connecting plate 10, two insertion grooves 45 respectively opened in the two connection blocks 44, a butt plate 46 fixedly connected to the push plate 41, two insertion blocks 47 symmetrically fixed on the butt plate 46, and two limiting blocks 48 symmetrically rotating on one of the insertion blocks 47.

[0062] Two said plug-in blocks 47 are respectively fitted and inserted into two said plug-in slots 45. When the control frame 6 and the connecting plate 10 fixed with the glass plate are hoisted and placed to the hanging basket 1, the worker can hold the connecting plate 10, control the two connecting blocks 44 on the connecting plate 10 to be connected with the two plug-in blocks 47 on the connecting plate 46, then move the connecting plate 10 downward, so that the two plug-in blocks 47 are respectively inserted into the two plug-in slots 45, finally rotate the two limiting blocks 48, so that the two limiting blocks 48 are partially moved from the plug-in blocks 47 to the connecting blocks 44, thereby ensuring the stability of the connecting plate 10 and the connecting plate 46, providing support for the connecting plate 10 and the control frame 6, facilitating the subsequent movement of the fixed glass plate through the positioning assembly 3, thereby reducing the labor intensity of the operator during the connection and installation of the glass plate. After the installation of a single glass plate is completed, the connecting plate 10 and the connecting plate 46 can be quickly separated for the operation and installation of the next glass plate.

[0063] Optionally, the positioning plate 20 is symmetrically provided with a scale groove 49. When adjusting the positions of the two assembly frames 5 on the control frame 6, the scale groove 49 can be observed to ensure the consistency and accuracy of the adjustment positions of the two control frames 6, thereby preventing the middle part of the glass plate from deviating too much from the plurality of suction cups 4, ensuring that the suction cups 4 are evenly stressed, and effectively reducing the situation of curtain wall falling off during installation.

[0064] A high-precision glass curtain wall installation method, comprising the following steps:

[0065] S1. Measure and lay out on the building, and install the embedded parts according to the measurement data. Assemble the glass curtain wall beams and vertical beams on the building, carry the glass plate to be installed to the top of the building, hoist the hanging basket 1 to the position where the glass plate is to be installed, and assemble the positioning assembly 3 on the hanging basket 1.

[0066] S2. Connect the lifting rope with the two hook rings 8, connect the control frame 6 with the glass plate to be installed through the clamping assembly 7 and the plurality of suction cups 4, and control the angle of the connecting plate 10 on the control frame 6 relative to the control frame 6 through the angle control assembly 11 according to the required assembly angle of the glass curtain wall on the building. Then the fixed glass plate can be hoisted to the hanging basket 1 through the lifting rope.

[0067] S3. Connect the connecting plate 10 with the positioning assembly 3 through the assembly assembly 12, so that the glass plate to be installed is parallel to the glass curtain wall installation surface.

[0068] S4, pull the control handle 33, control the base 2 to move horizontally on the basket 1, and then adjust the side wall of the glass plate to be installed to correspond to the side of the glass plate installation position, and then start to control the two second electric push rods 36, control the height of the lifting plate 37, and then adjust the upper surface and the lower surface of the glass plate to be installed to correspond to the upper surface and the lower surface of the glass plate installation position;

[0069] S5, start to control the third electric push rod 43, control the push plate 41 to move, and then push the control frame 6 to drive the glass plate to be installed to approach the glass curtain wall installation surface, so that the glass plate to be installed is installed into the specified installation position between the horizontal beam and the vertical beam;

[0070] S5, repeat steps S2 to S5 to complete the installation of the entire curtain wall glass.

[0071] The above only describes the preferred embodiments of the present application and is not intended to limit the present application. Those skilled in the art can make various modifications and changes to the present application. Any modification, equivalent replacement, improvement, etc. made within the spirit and principles of the present application shall be included in the protection scope of the present application.

Claims

1. A high-precision positioning auxiliary installation device for glass curtain walls, characterized in that, The utility model relates to a glass curtain wall high-precision positioning auxiliary installation equipment, including: The base (2) is arranged on the basket (1), the positioner (3) is arranged at the bottom of base (2), a plurality of suction cups (4) for fixing external glass plate are arranged, two assembly frames (5) are connected with a plurality of suction cups (4) respectively, the control frame (6) is connected with two assembly frames (5), the clamping assembly (7) is installed on the control frame (6), two carabiners (8) are fixed on the control frame (6) symmetrically, the adjusting assembly (9) is arranged on the control frame (6) and two assembly frames (5), the connecting plate (10) is hinged on the control frame (6), two angle control assemblies (11) are symmetrically arranged on the control frame (6) and connecting plate (10), and the assembly assembly (12) is connected with the connecting plate (10) and positioner (3), wherein The assembly assembly (12) is suitable for the butt joint of the connecting plate (10) and the positioner (3); Two angle control assemblies (11) are suitable for controlling the angle of control frame (6), and then changing the angle of fixed external glass plate; The adjusting assembly (9) is suitable for controlling the distance between two assembly frames (5); The clamping assembly (7) is suitable for reinforcing the fixed external glass plate; The positioner (3) is suitable for stable multi-directional position control of the fixed external glass plate; The assembly assembly (12) includes two connecting blocks (44) fixed on the connecting plate (10), two insertion grooves (45) formed in the two connecting blocks (44) respectively, an abutment plate (46) fixedly connected with a push plate (41), two insertion blocks (47) fixed on the abutment plate (46) symmetrically, and two limiting blocks (48) rotatably arranged on one of the insertion blocks (47) symmetrically. Two insertion blocks (47) are respectively slidably inserted into two insertion grooves (45).

2. The glass curtain wall high-precision positioning auxiliary installation equipment according to claim 1, wherein The clamping assembly (7) includes a plurality of first electric push rods (13) mounted on the two assembly frames (5) respectively, two control plates (14) arranged on the upper and lower ends of the control frame (6) and connected with the telescopic ends of the plurality of first electric push rods (13) respectively, a plurality of guide rods (15) movably mounted on the control frame (6) and fixedly connected with the two control plates (14) respectively, two clamping sleeves (16) movably mounted on the two control plates (14) respectively, and a plurality of return springs (17) symmetrically arranged in the two clamping sleeves (16); The two ends of the return spring (17) are fixedly connected with the clamping sleeve (16) and the control plate (14) respectively.

3. The glass curtain wall high-precision positioning auxiliary installation equipment according to claim 2, wherein The adjusting assembly (9) comprises two limiting grooves (18) symmetrically formed on the control frame (6), two limiting rods (19) symmetrically movably mounted in the two assembling frames (5) and fixedly mounted on the control frame (6), a positioning plate (20) fixedly connected to the middle portion of the control frame (6), a rack (21) fixed on the positioning plate (20), two adjusting screws (22) threadedly mounted on the two assembling frames (5) respectively, and two positioning tooth plates (23) rotatably connected to the two adjusting screws (22) respectively and engaged with the rack (21). The two assembling frames (5) are movably inserted into the two limiting grooves (18).

4. The high-precision positioning auxiliary installation device for glass curtain walls according to claim 3, characterized in that The angle control assembly (11) comprises a movable groove (24) formed on the control frame (6), a control screw (25) rotatably mounted in the movable groove (24), a control sliding block (26) threadedly connected to the control screw (25) and movably mounted in the movable groove (24), and a connecting rod (27) rotatably connected to one end of the control sliding block (26) and rotatably connected to the other end of the connecting plate (10).

5. The high-precision positioning auxiliary installation device for glass curtain walls according to claim 1, characterized in that The position adjusting assembly (3) comprises two translation grooves (28) symmetrically formed on the bottom of the base (2) and corresponding to the hanging basket (1), a plurality of translation balls (29) movably mounted in the two translation grooves (28), two guide grooves (30) symmetrically formed on the upper surface of the hanging basket (1) and corresponding to the plurality of translation balls (29), a positioning screw (31) threadedly mounted on the base (2), a positioning groove (32) formed on the hanging basket (1), a control handle (33) fixed on the base (2), a lifting member (34) provided on the base (2), and a displacement member (35) provided on the lifting member (34).

6. The high-precision positioning auxiliary installation device for glass curtain walls according to claim 5, characterized in that The lifting member (34) comprises two second electric push rods (36) symmetrically mounted on the base (2), a lifting plate (37) fixed to the telescopic ends of the two second electric push rods (36), and a plurality of jacking rods (38) movably mounted on the base (2) and fixedly connected to the lower surface of the lifting plate (37).

7. The high-precision positioning auxiliary installation device for glass curtain walls according to claim 6, characterized in that The shifting piece (35) comprises two guide rails (39) symmetrically fixed on the upper surface of the lifting plate (37), a plurality of guide blocks (40) movably mounted on the two guide rails (39), a push plate (41) fixedly connected with the plurality of guide blocks (40), a control groove (42) opened on the lifting plate (37), and a third electric push rod (43) fixed on the lower surface of the lifting plate (37); The telescopic end of the third electric push rod (43) penetrates through the control groove (42) and is fixedly connected with the lower surface of the push rod.

8. The high-precision positioning auxiliary installation device for glass curtain walls according to claim 3, characterized in that, Symmetrical scale grooves (49) are opened on the positioning plate (20).

9. A high-precision installation method of a glass curtain wall, applied to the high-precision positioning auxiliary installation device of the glass curtain wall according to claim 7, characterized in that, The steps include: S1, measuring and laying out on the building, and installing the embedded parts according to the measured data, assembling the glass curtain wall beams and vertical beams on the building, carrying the glass plate to be installed to the top of the building, and lowering the basket (1) to the position where the glass plate is to be installed, and assembling the positioning assembly (3) on the basket (1); S2, connecting the lifting rope with the two carabiners (8), connecting the control frame (6) with the glass plate to be installed through the clamping assembly (7) and the plurality of suction cups (4), and adjusting the angle of the connecting plate (10) relative to the control frame (6) on the control frame (6) through the angle control assembly (11) according to the required assembly angle of the glass curtain wall on the building, and then hoisting the fixed glass plate to the basket (1) through the lifting rope; S3, connecting the connecting plate (10) with the positioning assembly (3) through the assembly assembly (12), and arranging the glass plate to be installed parallel to the glass curtain wall installation surface; S4, pulling the control handle (33) to control the horizontal movement of the base (2) on the basket (1), thereby adjusting the side wall of the glass plate to be installed to correspond to the side of the glass plate installation position, and then starting to control the two second electric push rods (36) to control the height of the lifting plate (37), thereby adjusting the upper and lower surfaces of the glass plate to be installed to correspond to the upper and lower surfaces of the glass plate installation position; S5, starting to control the third electric push rod (43) to control the movement of the push plate (41), thereby pushing the control frame (6) to drive the glass plate to be installed to approach the glass curtain wall installation surface, so that the glass plate to be installed is installed into the specified installation position between the horizontal beam and the vertical beam; S5, repeating steps S2 to S5 to complete the installation of the entire curtain wall glass.

Citation Information

Patent Citations

  • Glass curtain wall construction glass plate installation auxiliary positioning device

    CN118774423A

  • Installation auxiliary equipment for glass curtain wall construction

    CN221219744U