A glass curtain wall mounting support structure

By designing a support structure for glass curtain wall installation and utilizing a snap-fit ​​mechanism and a hydraulic control system, the problem of difficult position adjustment during the glass curtain wall splicing process was solved, achieving efficient and safe glass curtain wall splicing.

CN117403907BActive Publication Date: 2025-12-26陕西建工集团股份有限公司
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Patent Information

Application Number
CN202311176238.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-09-13
Publication Date
2025-12-26
Estimated Expiration
2043-09-13

AI Technical Summary

Technical Problem

During the splicing of glass curtain walls, the position adjustment is difficult and the operating space is limited, which may lead to incomplete adjustment and safety hazards.

Method used

Design a glass curtain wall installation support structure, including a snap-fit ​​mechanism and a telescopic mechanism. The two sets of glass curtain walls can be precisely positioned and adjusted through the hoisting part and the stop block. The snap-fit ​​mechanism is operated synchronously by the hydraulic control system to ensure the accurate positioning of the glass curtain wall during the splicing process.

Benefits of technology

It achieves efficient and safe splicing of glass curtain walls, improves construction efficiency and safety, and ensures neat and consistent splicing.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a glass curtain wall installation supporting structure and belongs to the technical field of glass curtain wall installation auxiliary equipment. Mainly comprising two groups of clamping mechanisms, the clamping mechanism is provided with a first cylinder, the first cylinder is provided with a first inner cavity, a first piston is slidably arranged in the first inner cavity, a roller is arranged on the end of the first cylinder away from the first piston and the end of the first piston away from the first cylinder, the roller is matched with a containing groove and is adapted to be clamped in the containing groove; a telescopic mechanism is arranged between the two groups of clamping mechanisms and is used for adjusting the distance between the two groups of clamping mechanisms; a hoisting part is arranged on the first cylinder; and a stop block is slidably arranged in the containing groove. The glass curtain wall installation supporting structure can conveniently adjust two groups of glass curtain walls to the position, so that the glass curtain wall can meet the specific construction requirements in the splicing process.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of glass curtain wall installation auxiliary equipment, in particular to a glass curtain wall installation supporting structure. BACKGROUND

[0002] The curtain wall is the outer wall of the building, like a curtain hanging, so it is also called suspended wall, which is a light wall with decorative effect commonly used in modern large and high-rise buildings, and does not bear the load of the main structure. There are many types of curtain walls, among which the glass curtain wall is a common one.

[0003] The glass curtain wall is generally composed of an aluminum frame and a glass panel. During construction, the glass panel is first installed in the aluminum frame, and then the assembled single glass curtain wall is hoisted and installed on the wall in sequence to form a complete glass curtain wall structure.

[0004] During the splicing process of the two groups of glass curtain walls, first, one group of glass curtain wall is fixed to the wall, then the other group of glass curtain wall is hoisted to the corresponding height and clamped on the installed group of glass curtain wall, and finally fixed to the wall.

[0005] During the splicing process of the two groups of glass curtain walls, in order to make the joint neat, the hoist is generally manually adjusted by the staff to make the two groups of glass curtain walls close to each other. However, the operation position of the glass curtain wall is generally at the outer wall, and the operation space of the staff is limited and dangerous, and the weight of the glass curtain wall is heavy, which makes the adjustment more difficult and prone to misadjustment. Therefore, it is necessary to provide a glass curtain wall installation supporting structure to solve the above problems.

[0006] It should be noted that the above information disclosed in this background section is only for understanding the background of the present application, and therefore, it can contain information that does not constitute prior art. SUMMARY

[0007] Based on the above problems in the prior art, the present application solves the problem of difficult position adjustment of the glass curtain wall during splicing.

[0008] The technical scheme adopted by the application to solve its technical problems is: a glass curtain wall mounting support structure is applied to the splicing of two groups of glass curtain walls, the glass curtain wall has a containing groove for hoisting, the containing groove is open at the bottom and closed at the upper end, the mounting support structure comprises two groups of clamping mechanisms, the clamping mechanism has a first cylinder, the first cylinder has a first inner cavity, a first piston is slidably arranged inside the first inner cavity, a roller is mounted on the end of the first cylinder away from the first piston and the end of the first piston away from the first cylinder, the roller is matched with the containing groove and is adapted to be clamped in the containing groove, a telescopic mechanism is mounted between the two groups of clamping mechanisms and is used for adjusting the distance between the two groups of clamping mechanisms, a hoisting part is mounted on the first cylinder, a stop block is slidably arranged in the containing groove, the stop block and the clamping mechanism are clamped into the containing groove from the bottom in sequence, the two groups of clamping mechanisms are hoisted by the hoisting part, and the two groups of clamping mechanisms are adjusted to the same horizontal height by the telescopic mechanism.

[0009] Further, the telescopic mechanism is a pneumatic cylinder.

[0010] Further, a groove is arranged on the inner wall of the first inner cavity in the circumferential direction, an insertion block is mounted in the groove, and a tension spring is mounted between the insertion block and the groove; a first tooth is arranged on one end of the first piston in the first inner cavity, a second tooth is arranged on one side of the insertion block in the first inner cavity, and the first tooth is engaged with the second tooth; an oil cavity is arranged on one side of the first inner cavity in the first cylinder, a sliding block is sealingly and slidably arranged in the oil cavity, an insertion part is arranged on one end of the sliding block close to the first inner cavity, an insertion groove is arranged in the insertion block, the insertion groove is arranged to be inclined away from the insertion part; a second inner cavity is arranged on one end of the first piston in the first inner cavity, and a spring is arranged between the second inner cavity and the sliding block; a first connector is arranged on the outer end of the first cylinder, the first connector communicates with the oil cavity, the telescopic mechanism has a second cylinder, a second connector is communicatively arranged on the outer end of the second cylinder, a three-way connector is arranged between the second connector and the two first connectors, and a switching valve is arranged between the three-way connector and the second connector.

[0011] Further, the oil cavity and the second cylinder are pre-filled with hydraulic oil.

[0012] Further, a hanging chain is arranged at both ends of the clamping mechanism, a fixed plate is hung at the lower end of the hanging chain, and the fixed plate is used to connect the two groups of glass curtain walls.

[0013] Further, a mounting hole is arranged on the glass curtain wall, and a second waist groove matched with the mounting hole is arranged on the fixed plate.

[0014] Further, the fixed plate is further provided with a first waist groove.

[0015] Further, the position where the stop block contacts the roller is sequentially provided with a first slope, a step and a second slope from bottom to top, the first slope and the second slope are used for the transition track of the roller, and the step is used for the temporary position of the roller.

[0016] Further, the hanging chain is a release hook.

[0017] The beneficial effects of the present application are: the glass curtain wall mounting support structure provided by the present application can conveniently adjust two groups of glass curtain walls to the right position, so that the glass curtain wall meets the specific construction requirements during splicing.

[0018] In addition to the purposes, features and advantages described above, the present application has other purposes, features and advantages. The present application will be further described below with reference to the drawings. BRIEF DESCRIPTION OF DRAWINGS

[0019] The drawings accompanying the specification of the present application form a part thereof, serve to provide further understanding of the present application, and together with the description of the present application, serve to explain the present application, and do not constitute an improper limitation on the present application.

[0020] In the drawings:

[0021] Figure 1 It is the overall schematic diagram of the glass curtain wall in the present application;

[0022] Figure 2 It is Figure 1 It is the partial structure schematic diagram of A in the present application;

[0023] Figure 3 It is the overall structure schematic diagram of the glass curtain wall mounting tool;

[0024] Figure 4 It is Figure 3 It is the partial structure schematic diagram of B in the present application;

[0025] Figure 5 It is Figure 3 It is the internal structure schematic diagram of the first cylinder in the present application;

[0026] Figure 6 It is Figure 5 It is the internal structure explosion schematic diagram of the first cylinder in the present application;

[0027] Figure 7 It is the hydraulic pipeline connection schematic diagram of the glass curtain wall mounting tool;

[0028] Figure 8Fig. 1 is a schematic view of an overall structure of two glass curtain walls connected by the installation tool;

[0029] Figure 9 Fig. 1 is a schematic view of an overall structure of two glass curtain walls connected by the installation tool; Figure 8 Fig. 1 is a schematic view of an overall structure of two glass curtain walls connected by the installation tool;

[0030] Figure 10 Fig. 1 is a schematic view of an overall structure of two glass curtain walls connected by the installation tool; Figure 8 Fig. 1 is a schematic view of an overall structure of two glass curtain walls connected by the installation tool;

[0031] Figure 11 Fig. 1 is a schematic view of an overall structure of two glass curtain walls connected by the installation tool; Figure 10 Fig. 1 is a schematic view of an overall structure of two glass curtain walls connected by the installation tool;

[0032] In the drawings, various reference numerals represent different features as follows:

[0033] 1, frame; 11, back plate; 12, face plate; 13, connecting beam; 14, mounting hole; 15, accommodating groove;

[0034] 2, cover; 3, accommodating frame;

[0035] 4, installation tool; 41, first cylinder; 410, oil cavity; 411, first joint; 412, first inner cavity; 413, groove; 42, first piston; 421, second inner cavity; 422, first tooth; 43, roller; 44, hanging chain; 45, hoisting part; 46, telescopic mechanism; 461, second cylinder; 462, second piston; 464, second joint; 47, spring; 48, sliding block; 481, plug-in part; 49, plug; 491, insertion groove; 492, second tooth;

[0036] 5, switching valve; 6, three-way;

[0037] 7, stop block; 71, first inclined surface; 72, step; 73, second inclined surface; 8, fixed plate; 81, first waist groove; 82, second waist groove. DETAILED DESCRIPTION

[0038] It should be noted that the embodiments and features in the present application can be combined with each other without conflict. The technical solutions in the embodiments of the present application will be described in detail below with reference to the drawings and in combination with the embodiments.

[0039] In order for those skilled in the art to better understand the present application, the technical solutions in the embodiments of the present application will be described in detail below with reference to the drawings. Obviously, the described embodiments are only a part of the embodiments of the present application, not all. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor should be within the scope of protection of the present application.

[0040] Embodiment one:

[0041] The embodiment specifically illustrates how to adjust the position of two groups of glass curtain walls during installation by using auxiliary tools, in particular:

[0042] As shown in Figure 8-9 , the application provides a glass curtain wall installation support structure, which includes two groups of spliced glass curtain walls. For the sake of convenience, one group of glass curtain wall fixed to the wall is defined as the first glass curtain wall, and the other group of glass curtain wall fixed to the first glass curtain wall by splicing is defined as the second glass curtain wall. An installation tool 4 is arranged between the first glass curtain wall and the second glass curtain wall, which is used for auxiliary positioning during splicing of the first glass curtain wall and the second glass curtain wall to replace manual positioning, thereby greatly improving the stability and safety of the splicing of the glass curtain wall. The specific structure and function of the installation tool 4 will be described in detail below.

[0043] As shown in Figures 1-2 , the glass curtain wall includes a frame 1 supported by aluminum alloy, which is composed of a back plate 11 fixedly installed on the wall and a panel 12 away from the back plate 11. A connecting beam 13 is arranged between the back plate 11 and the panel 12 to connect and fix the back plate 11 and the panel 12.

[0044] The frame 1 is provided with a containing frame 3 for accommodating the glass panel, and the panel 12 is connected with a cover 2 on one side, so that the glass panel is sealed in the containing frame 3 by the cover 2, thereby improving the aesthetic appearance of the glass curtain wall.

[0045] Meanwhile, the back plate 11 and the panel 12 are provided with containing grooves 15 on opposite sides, which are used to place the installation tool 4. The installation tool 4 can slide in the containing groove 15, and the bottom of the containing groove 15 is open and the top is closed, so that the installation tool 4 can be put into the containing groove 15 from the bottom and stopped at the top of the containing groove 15, in particular:

[0046] As shown in Figures 3-6 , the installation tool 4 includes two groups of clamping mechanisms at both ends and a telescopic mechanism 46 between the two groups of clamping mechanisms. The clamping mechanism is used to cooperate with the containing groove 15 and slide in the containing groove 15 to assist in adjusting the position of the glass curtain wall, and the telescopic mechanism 46 is fixedly installed at both ends of the two groups of clamping mechanisms to facilitate adjustment of the distance between the two groups of clamping mechanisms.

[0047] In the present application, the two groups of clamping mechanisms of the installation tool 4 are arranged on the first glass curtain wall and the second glass curtain wall respectively, and the distance between the two groups of glass curtain walls is adjusted by the telescopic mechanism 46 to facilitate the clamping installation of the two groups of curtain walls, in particular:

[0048] The clamping mechanism comprises a first cylinder 41 which is the main structure of the clamping mechanism, and the first cylinder 41 is internally provided with a first inner cavity 412, the first inner cavity 412 is internally slidably provided with a first piston 42, and a roller 43 is fixedly installed at the end of the first cylinder 41 away from the first piston 42 and the end of the first piston 42 away from the first cylinder 41, the roller 43 is matched with the accommodating groove 15 and can be clamped in the accommodating groove 15, so that by sliding the first piston 42 in the first cylinder 41, the gap between the two groups of rollers 43 can be adjusted, and then the roller 43 can be in the accommodating groove 15 or out of the accommodating groove 15;

[0049] The telescopic mechanism 46 comprises a second cylinder 461 hinged with one group of clamping mechanisms, and a second piston 462 is slidably arranged in the second cylinder 461, and the end of the second piston 462 away from the second cylinder 461 is hinged with another group of clamping mechanisms, so that during the sliding of the second piston 462, the two groups of clamping mechanisms can approach or move away from each other;

[0050] As described above, when the second glass curtain wall needs to be clamped with the first glass curtain wall, first, one group of cranes is used to lift the second glass curtain wall to a position slightly lower than the first glass curtain wall, and then the two groups of clamping mechanisms on the installation tool 4 are respectively clamped into the accommodating grooves 15 of the two groups of glass curtain walls from the bottom;

[0051] As shown in Figure 3 , a hoisting part 45 is fixedly installed on the first cylinder 41 of the clamping mechanism, so that after the clamping mechanism is clamped into the accommodating groove 15, the clamping mechanism is hoisted by the other two groups of cranes through the hoisting part 45;

[0052] As shown in Figures 9-10 , a stop block 7 is slidably arranged in the accommodating groove 15, which is placed in advance before the clamping mechanism is clamped, and will rise with the rising of the clamping mechanism;

[0053] At the same time, when the installation tool 4 is clamped into the accommodating grooves 15 at both ends, due to the height difference between the two groups of glass curtain walls, the two groups of clamping structures are at different heights, that is, the position of the clamping mechanism inserted into the second glass curtain wall is lower than the position of the clamping mechanism inserted into the first glass curtain wall (as shown in Figure 9 ), and in this state, the telescopic mechanism 46 is in an extended state and is fixed in this state, in this embodiment, the telescopic mechanism 46 is a pneumatic cylinder, and in the initial state, it is in an extended state;

[0054] At the same time, the position of the first piston 42 in the clamping mechanism is adjusted, so that the position of the two groups of rollers 43 is matched with the accommodating groove 15, so as not to be out of the accommodating groove 15;

[0055] Then the two groups of clamping mechanisms are hoisted synchronously until the stopper 7 in the first glass curtain wall reaches the top of the containing groove 15, at which time the clamping mechanism in the first glass curtain wall is stopped from rising by the staff, while the glass curtain wall in the second glass curtain wall continues to rise until the stopper 7 in the second glass curtain wall reaches the top of the containing groove 15, at which time it is also stopped by the staff;

[0056] After the first group of clamping mechanisms stops rising, the telescopic mechanism 46 is also controlled by the staff to start retracting until it retracts to the shortest distance, at which time the telescopic mechanism 46 is in a horizontal state, so that the two groups of clamping mechanisms are at the same height, and at the same time the stopper 7 in the second glass curtain wall also reaches the top of the containing groove 15, so that the two groups of glass curtain walls are adjusted to the same height, and the staff can then fix and install the two groups of glass curtain walls.

[0057] Embodiment Two:

[0058] During the adjustment process of Embodiment One, the control of the clamping mechanism and the telescopic mechanism 46 is operated by the staff, thereby increasing the burden on the staff. In this embodiment, the clamping mechanism and the telescopic mechanism 46 are set as a linkage control structure to facilitate synchronous operation, thereby increasing the convenience of staff operation. Specifically:

[0059] As shown in Figure 6 , a plurality of grooves 413 are arranged on the inner wall of the first inner cavity 412 in the circumferential direction, and an insertion block 49 is installed in the groove 413, and a tension spring (not marked in the figure) is installed between the insertion block 49 and the groove 413, so that the insertion block 49 can be accommodated in the groove 413 or protrude from the groove 413, and in the state that the tension spring is not stressed, the insertion block 49 protrudes from the groove 413;

[0060] Meanwhile, a first tooth 422 is arranged at one end of the first piston 42 in the first inner cavity 412, and a second tooth 492 is arranged at one side of the insertion block 49 in the first inner cavity 412, and the first tooth 422 can engage with the second tooth 492, so that when the insertion block 49 is accommodated in the groove 413, the first piston 42 can freely slide in the first inner cavity 412, and when the insertion block 49 protrudes from the groove 413, under the influence of the first tooth 422 and the second tooth 492, the first piston 42 can only move outward of the first inner cavity 412;

[0061] As shown in Figure 6As shown, an oil cavity 410 is provided inside the first cylinder 41 on one side of the first inner cavity 412. A slider 48 is slidably disposed in the oil cavity 410. A plug-in portion 481 is provided at one end of the slider 48 near the first inner cavity 412. At the same time, a slot 491 matching the plug-in portion 481 is provided inside the plug block 49. The end of the slot 491 away from the plug-in portion 481 is inclined, so that the plug-in portion 481 can slide in the slot 491. When the plug-in portion 481 contacts the inclined position of the slot 491, it can drive the plug block 49 to be housed in the groove 413.

[0062] like Figures 5-6 As shown, a second inner cavity 421 is provided at one end of the first inner cavity 412 on the first piston 42. A spring 47 is installed between the second inner cavity 421 and the slider 48. Under the action of the spring 47, the first piston 42 and the slider 48 can move closer to each other to compress the spring 47 and move further away from each other to stretch the spring 47.

[0063] like Figure 4 and Figure 7 As shown, a first connector 411 is provided at the outer end of the first cylinder 41, which is connected to the oil chamber 410. At the same time, a second connector 464 is provided at the outer end of the second cylinder 461, and a three-way valve 6 is provided between the second connector 464 and the two sets of first connectors 411. A switching valve 5 is also provided between the three-way valve 6 and the second connector 464. The switching valve 5 has two states, namely a first state and a second state. In the first state, hydraulic oil can only flow from the oil chamber 410 into the second cylinder 461, while in the second state, hydraulic oil can only flow from the second cylinder 461 into the oil chamber 410. The switching between the two states is operated by the operator.

[0064] In this embodiment, hydraulic oil is pre-filled in both the oil chamber 410 and the second cylinder 461;

[0065] In summary, during the hoisting process of the glass curtain wall and installation tool 4 in Embodiment 1, in the initial state, the switching valve 5 is in the first state. At this time, the hydraulic oil can only flow into the second cylinder 461 from the oil chamber 410, so that the position of the slider 48 can be adjusted to discharge all the oil into the second cylinder 461, thereby allowing the second piston 462 to extend to the maximum position.

[0066] Since the slider 48 is away from the first inner cavity 412 at this time, the insertion part 481 does not contact the inclined surface of the insertion slot 491, and the insertion block 49 protrudes from the groove 413, and the retraction of the first piston 42 by the first tooth 422 and the second tooth 492 is hindered, because the distance between the two groups of rollers 43 on the clamping mechanism is pre-adjusted, and the two groups of rollers 43 are adapted to the accommodating groove 15, so that the two groups of rollers 43 can be stably clamped in the accommodating groove 15 during the lifting of the clamping mechanism, and will not fall off;

[0067] When the first group of clamping mechanisms stops rising, the switching valve 5 is switched to the second state at this time, and the hydraulic oil can only flow from the second cylinder 461 to the oil cavity 410, so that a large amount of oil in the second cylinder 461 can flow into the oil cavity 410;

[0068] At the same time, after the hydraulic oil enters the oil cavity 410, it pushes the slider 48 to slide, so that the insertion part 481 enters the insertion slot 491 and contacts the inclined surface of the insertion slot 491, which can drive the insertion block 49 to be accommodated in the groove 413, so that the first tooth 422 and the second tooth 492 are disengaged;

[0069] In the above case, the first piston 42 can slide to the inside of the first inner cavity 412 and stop on the slider 48. At this position, because the moving distance is short, the rollers 43 will not fall off from the accommodating groove 15, and due to the action of the hydraulic oil, the force of the rollers 43 on the slider 48 will not cause the slider 48 to move, so that the clamping mechanism can still be stably clamped without falling off.

[0070] Embodiment three

[0071] This embodiment specifically describes how to install the two groups of glass curtain walls after the position adjustment of the two groups of glass curtain walls is completed, specifically:

[0072] As shown in Figure 5 and Figure 10 , the hanging chain 44 is arranged at both ends of the clamping mechanism, which can be lifted together with the clamping mechanism, and the fixed plate 8 is hung at the lower end of the hanging chain 44, which is used to connect the two groups of glass curtain walls;

[0073] As shown in Figure 2 and Figure 11 , mounting holes 14 are arranged on the back plate 11 and the face plate 12, and second waist grooves 82 matching the mounting holes 14 are arranged on the fixed plate 8, so that the fixed plate 8 can be fixed with the two groups of glass curtain walls by fasteners through the cooperation of the second waist grooves 82 and the mounting holes 14;

[0074] Meanwhile, the first waist groove 81 is arranged on the fixing plate 8, which is used to fasten the two groups of fixing plates 8 together, so as to complete the fixing and installation of the two groups of glass curtain walls.

[0075] In the embodiment, the hanging chain 44 is a release hook, which is usually designed with a spring mechanism. When a large force or torque is applied, the hook will automatically release to release the fixation of the object. This design is commonly used in safety belts, slings, hooks and other applications, which can provide reliable connection when needed, and protect the object or person when the rated load is exceeded. The release hook is prior art, which will not be described here.

[0076] Embodiment four:

[0077] The embodiment specifically describes how to disengage the installation assembly from the glass curtain wall after the installation of the two groups of glass curtain walls is completed, specifically:

[0078] As shown in Figure 10 , the first inclined surface 71 and the second inclined surface 73 are used as the transition track of the roller 43, and the step 72 is used as the temporary position of the roller 43;

[0079] In summary, combined with Figures 5-6 and embodiment two, when the roller 43 is sliding in the accommodating groove 15, it is the normal lifting stage of the clamping mechanism;

[0080] When the roller 43 drives the stop block 7 to reach the highest point, due to the state change of the switching valve 5, the first piston 42 can slide to the inside of the first inner cavity 412 and stop on the sliding block 48 (refer to embodiment two). At this time, the distance between the two groups of rollers 43 is shortened, and the rollers 43 are lifted along the first inclined surface 71 and stop at the step 72, which is the installation position of the two groups of glass curtain walls;

[0081] When the glass curtain wall installation is completed, the switching valve 5 switches back to the first state, at this time, the hydraulic oil can only flow from the oil cavity 410 into the second cylinder 461, so that the sliding block 48 can retract under the action of the spring 47. At this time, since the first tooth 422 has passed the second tooth 492, when the clamping mechanism is continued to be lifted, the first piston 42 can continue to move towards the sliding block 48, so that the distance between the two groups of rollers 43 is reduced;

[0082] After the distance between the two groups of rollers 43 is reduced, the roller 43 can be disengaged along the second inclined surface 73, so as to complete the disassembly of the installation tool 4, so as to be reused.

[0083] The above descriptions are only the preferred embodiments of the present application, and are not intended to limit the present application. The present application can have various modifications and changes for those skilled in the art. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present application shall be included in the protection scope of the present application.

Claims

1. A glass curtain wall installation support structure, applied to the splicing of two sets of glass curtain walls, wherein the glass curtain wall has a receiving groove for hoisting, the receiving groove being open at the bottom and closed at the top, characterized in that: The mounting support structure comprises: two sets of clamping mechanisms, each of which has a first cylinder (41) with a first inner cavity (412) in which a first piston (42) is slidably arranged, one end of the first cylinder (41) away from the first piston (42), and one end of the first piston (42) away from the first cylinder (41) are both provided with a roller (43) matched with a containing groove and adapted to be clamped in the containing groove; a telescopic mechanism (46) mounted between the two sets of clamping mechanisms for adjusting the distance between the two sets of clamping mechanisms; a lifting part (45) mounted on the first cylinder (41); a stop block (7) slidably arranged in the containing groove; wherein the stop block (7) and the clamping mechanisms are sequentially clamped from the bottom of the containing groove, the two sets of clamping mechanisms are lifted by the lifting part (45), and the two sets of clamping mechanisms are adjusted to the same horizontal height by the telescopic mechanism (46).

2. The glass curtain wall mounting support structure according to claim 1, wherein: The telescopic mechanism (46) is a pneumatic cylinder.

3. The glass curtain wall mounting support structure according to claim 1, wherein: A groove (413) is arranged on the inner wall of the first inner cavity (412) in the circumferential direction, an insertion block (49) is mounted in the groove (413), and a tension spring is mounted between the insertion block (49) and the groove (413); The first piston (42) is provided with a first tooth (422) at one end of the first inner cavity (412), the insertion block (49) is provided with a second tooth (492) at one side of the first inner cavity (412), and the first tooth (422) is engaged with the second tooth (492); An oil cavity (410) is arranged on one side of the first inner cavity (412) in the first cylinder (41), a sliding block (48) is sealingly and slidably arranged in the oil cavity (410), the sliding block (48) is provided with an insertion part (481) at one end close to the first inner cavity (412), the insertion block (49) is provided with an insertion groove (491) matching the insertion part (481) in the interior thereof, and one end of the insertion groove (491) away from the insertion part (481) is arranged in an inclined manner; The first piston (42) is provided with a second inner cavity (421) at one end of the first inner cavity (412), and a spring (47) is mounted between the second inner cavity (421) and the sliding block (48); The first cylinder (41) is provided with a first connector (411) at the outer end thereof, the first connector (411) is in communication with the oil cavity (410), the telescopic mechanism (46) has a second cylinder (461), the second cylinder (461) is provided with a second connector (464) at the outer end thereof in communication, a three-way connector (6) is arranged between the second connector (464) and the two sets of first connectors (411), and a switching valve (5) is arranged between the three-way connector (6) and the second connector (464).

4. The glass wall mounting support structure according to claim 3, wherein: The oil cavity (410) and the second cylinder (461) are both pre-filled with hydraulic oil.

5. The glass wall mounting support structure according to claim 4, wherein: Both ends of the clamping mechanism are provided with hanging chains (44), the lower ends of the hanging chains (44) are hung with fixing plates (8), and the fixing plates (8) are used for connecting two groups of glass curtain walls.

6. The glass wall mounting support structure according to claim 5, wherein: Mounting holes are arranged on the glass curtain wall, and second waist grooves (82) matched with the mounting holes are arranged on the fixing plates (8).

7. The glass wall mounting support structure according to claim 6, wherein: First waist grooves (81) are further arranged on the fixing plates (8).

8. The glass wall mounting support structure according to claim 7, wherein: The position, where the stop block (7) is in contact with the roller (43), is sequentially provided from bottom to top with a first inclined surface (71), a step (72) and a second inclined surface (73), the first inclined surface (71) and the second inclined surface (73) are used for transition tracks of the roller (43), and the step (72) is used for a temporary position of the roller (43).

9. The glass wall mounting support structure of claim 5, wherein: The hanging chains (44) are release hooks.

Citation Information

Patent Citations

  • Building outer glass curtain wall splicing device

    CN112240068A

  • Hoisting equipment for curtain wall structure installation

    CN112627408A