Anti-collision auxiliary device for civil construction building curtain wall installation

By designing anti-collision-type civil construction curtain wall installation auxiliary devices, and using its combined components to provide flexible and rigid buffering, the problem of glass curtain walls being susceptible to collision damage during construction is solved, effectively reducing the risk of damage to glass panels.

CN120097194AActive Publication Date: 2025-06-06MINXI VOCATIONAL & TECHN COLLEGE
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Patent Information

Application Number
CN202510577957.0
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-07
Publication Date
2025-06-06
Estimated Expiration
2045-05-07

AI Technical Summary

Technical Problem

During civil construction, glass curtain walls are prone to accidental collisions due to wind force, space limitations or improper operation during lifting and installation, resulting in gaps or cracks on the edges of glass sheets, and even fragmentation.

Method used

An anti-collision-type civil construction building curtain wall installation auxiliary device is designed, the device includes a first connecting frame, suction cup, adjustment frame, guide rail, lift frame, rubber pad, corrugated telescopic plate and hard protective plate. Through the combination of these components, flexible and rigid cushioning is provided to protect the glass panel.

Benefits of technology

Flexible buffering is performed during slight impact to absorb impact energy, reduce peak stress on glass panels, and reduce the risk of damage; during severe impact, the impact energy is absorbed through flexible buffering in the early stage, and later transition to rigid buffering, stably supporting the glass panels and avoid damage.

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Abstract

The invention discloses an anti-collision civil construction building curtain wall installation auxiliary device, and relates to the technical field of building construction auxiliary devices.The anti-collision civil construction building curtain wall installation auxiliary device comprises a first connecting frame, the first connecting frame is fixedly connected with suction cups symmetrically distributed along the first connecting frame, and the suction cups are used for adsorbing a glass panel; the first connecting frame is provided with adjusting frames symmetrically distributed along the first connecting frame. According to the invention, flexible buffering is carried out during slight impact, and during severe impact, impact energy can be effectively absorbed and peak stress transmitted to the glass panel can be reduced through flexible buffering in the initial stage, so that the risk of damage is reduced, and as the impact continues, the buffer is gradually transited to rigid buffering in the later stage, so that the service life of the glass panel is prolonged. The glass panel can be stably supported under the condition that excessive deformation is not caused, damage caused by sudden rigid contact is avoided, in this way, the buffering characteristic can be dynamically adjusted according to the characteristics of impact, and the glass panel buffering device is suitable for coping with impact of various strengths and durations.
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Description

Technical Field

[0001] The invention relates to the technical field of building construction auxiliary devices, and in particular to an anti-collision type civil construction building curtain wall installation auxiliary device. Background Art

[0002] During the civil construction process, the installation of building curtain walls is an important part of ensuring the beautiful appearance of the building and the comfortable internal environment. The common installation method is: first, the glass plate placed on the ground is sucked by the suction cup, then the suction cup is tied with a rope, and the glass plate is sent to the specified height by rope hoisting, and finally the suction cup on the glass curtain wall is manually held for alignment and installation.

[0003] However, in the early stage of embedding and installing glass panels into the metal frame of the curtain wall of a high-rise building, that is, during the construction process of adsorption hoisting, due to wind force, space limitations or improper operation, the glass panels may collide with other completed parts of the curtain wall, scaffolding or external facilities of the building. Accidental collisions may occur, and the edges of the glass panels are the most vulnerable parts, which are most likely to cause gaps or cracks, deformation and damage, or even shattering of the glass curtain wall due to collisions.

[0004] In order to ensure construction safety, protect materials and guarantee the final installation quality, the present invention provides an anti-collision civil construction building curtain wall installation auxiliary device, which specially protects the corners of the glass plate to prevent collision. Summary of the invention

[0005] In order to overcome the shortcomings mentioned in the above background technology, the present invention provides an anti-collision type civil construction building curtain wall installation auxiliary device.

[0006] A collision-proof civil construction curtain wall installation auxiliary device includes a first connecting frame, the first connecting frame is fixedly connected to suction cups symmetrically distributed along the first connecting frame, the suction cups are used to adsorb glass panels, the first connecting frame is provided with an adjustment frame symmetrically distributed along the first connecting frame, at least one guide rail is fixedly connected to the side of the adjustment frame away from the first connecting frame, a lifting frame is slidably connected between adjacent guide rails, a rubber pad is fixedly connected to the lifting frame, a corrugated expansion plate is fixedly connected to the outside of the lifting frame, the corrugated expansion plate is filled with hydraulic oil, a hard protective plate is fixedly connected to the outside of the corrugated expansion plate, a hose is connected to the corrugated expansion plate, a slot is opened on the side of the adjustment frame close to the adjacent hose, the hose is connected to the adjacent slot, and a conveying frame is fixedly connected to the slot of the adjustment frame, an adjustment plate is slidably connected between the conveying frame and the adjacent adjustment frame, the adjustment plate is opened with a through hole, the through hole is in the conveying frame, and an adjustment component for adjusting the position of the through hole is arranged in the conveying frame.

[0007] Optionally, the adjustment component includes a first bellows corresponding to the conveying frame, the first bellows is arranged in the conveying frame, a conveying channel is opened in the conveying frame, the conveying channel is connected to the adjacent first bellows, a second bellows is arranged outside the conveying frame, the conveying channel is connected to the adjacent second bellows, and the adjustment plate is fixedly connected to the adjacent second bellows.

[0008] Optionally, it also includes a second connecting frame corresponding to the adjusting frame, the second connecting frame is slidably connected to the corresponding adjusting frame, a first spring is fixedly connected between the second connecting frame and the adjacent adjusting frame, the adjusting frame is slidably connected to a limiting plate, the limiting plate is used to limit the adjacent second connecting frame, and a second spring is fixedly connected between the limiting plate and the adjacent adjusting frame.

[0009] Optionally, a push rod is also included, which is slidably connected to the conveying frame, contacts the adjacent first corrugated tube, moves to contact the adjacent limiting plate, and is extruded and matched with each other.

[0010] Optionally, a longitudinally distributed clamping groove is formed on one side of the second connecting frame close to the adjacent limiting plate, and the limiting plate moves to clamp the clamping groove of the adjacent second connecting frame.

[0011] Optionally, a fixed frame corresponding to the adjusting frame is also included, the fixed frame is fixedly connected to the adjacent adjusting frame, the fixed frame is provided with a guide groove and a movable groove, a safety hook for hooking the glass panel sliding groove is slidably connected in the movable groove, and the guide groove is used to limit and guide the adjacent safety hooks.

[0012] Optionally, the lifting frame moves into contact with an adjacent safety hook.

[0013] Optionally, a friction plate corresponding to the adjustment frame is further included, the friction plate is fixedly connected to the adjacent adjustment frame, the adjustment frame is slidably connected to the first connecting frame, the first connecting frame is threadedly connected with fastening bolts symmetrically distributed along the first connecting frame, and the fastening bolts are in contact with the adjacent friction plate.

[0014] Optionally, a bubble level for horizontal installation is also included, and the bubble level is fixedly connected to the first connecting frame.

[0015] The beneficial effects of the present invention are as follows: the present invention performs flexible buffering when dealing with slight impacts, and when dealing with severe impacts, the flexible buffering can effectively absorb the impact energy in the early stage, reduce the peak stress transmitted to the glass panel, and thus reduce the risk of breakage. As the impact continues, the flexible buffering is gradually transitioned to the rigid buffering in the later stage, and the glass panel can be stably supported without causing excessive deformation, avoiding damage caused by sudden rigid contact. In this way, the buffering characteristics can be dynamically adjusted according to the characteristics of the impact, which is suitable for dealing with impacts of various intensities and durations.

[0016] When an impact occurs, the second connecting frame is automatically clamped by the limiting plate, thereby fixing the lifting frame, the rubber pad, the hard protective plate and the corrugated telescopic plate. When the impact force disappears, the fixation is automatically released, so that the glass panel can be embedded in the metal frame without being blocked.

[0017] During the hoisting process, the present invention can hook the slide groove of the glass panel by arranging the safety hook to prevent the glass panel from breaking away from the suction of the suction cup and falling downward; when the glass panel is embedded and installed in the metal frame, the safety hook automatically disengages from the slide groove of the glass panel, ensuring that the glass panel will not be blocked by the safety hook when embedded and installed in the metal frame.

[0018] The present invention arranges the adjustment frame to be slidable on the first connecting frame to adapt to glass panels of different widths, and the adjustment frame is fastened to the first connecting frame by the fastening cooperation between the friction plate and the fastening bolt, thereby being able to provide stable protection for the glass panel. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 It is a three-dimensional structural schematic diagram of the working state of the present invention.

[0020] Figure 2 It is a schematic diagram of the three-dimensional structure of the present invention in a non-working state.

[0021] Figure 3 It is a schematic diagram of a partial three-dimensional structure of the present invention.

[0022] Figure 4 It is a schematic diagram of the three-dimensional structure of the rubber pad, hard protective plate, corrugated expansion plate and other components of the present invention.

[0023] Figure 5 It is a schematic diagram of the three-dimensional structure of the second bellows and the adjustment plate of the present invention.

[0024] Figure 6 It is a schematic diagram of the three-dimensional structure of the adjusting frame, the lifting frame, the second connecting frame and other components of the present invention.

[0025] Figure 7 It is a schematic diagram of the three-dimensional structure of the push rod, the limit plate, the second spring and other components of the present invention.

[0026] Figure 8 It is a schematic diagram of the three-dimensional structure of the lifting frame, the second connecting frame and the limiting plate of the present invention.

[0027] Fig. 9 It is a three-dimensional structural schematic diagram of the fixing frame, the safety hook and other components of the present invention.

[0028] Fig.10 It is a three-dimensional structural schematic diagram of the friction plate, fastening bolt, bubble level and other components of the present invention.

[0029] Wherein: 101: first connecting frame, 102: suction cup, 1021: glass panel, 103: adjusting frame, 104: guide rail, 105: lifting frame, 106: rubber pad, 107: hard protective plate, 108: corrugated telescopic plate, 109: hose, 110: conveying frame, 111: first corrugated pipe, 112: conveying channel, 113: second corrugated pipe, 114: adjusting plate, 115: through hole, 201: second connecting frame, 202: first spring, 203: pushing rod, 204: limiting plate, 205: second spring, 301: fixing frame, 302: guide groove, 303: movable groove, 304: safety hook, 401: friction plate, 402: fastening bolt, 501: bubble level. DETAILED DESCRIPTION

[0030] The above scheme is further described below in conjunction with specific examples. It should be understood that these examples are used to illustrate the present application and are not limited to the scope of the present application. The implementation conditions adopted in the examples can be further adjusted according to the conditions of the specific manufacturer, and the implementation conditions not specified are usually the conditions in conventional experiments.

[0031] Embodiment 1: An anti-collision type civil construction curtain wall installation auxiliary device, such as Figure 1-Figure 6 As shown, it includes a first connecting frame 101, the first connecting frame 101 is fixedly connected with suction cups 102 symmetrically distributed along the upper and lower sides of the first connecting frame 101, the suction cups 102 are used to absorb the glass panel 1021, the upper and lower sides of the first connecting frame 101 are both provided with adjustment frames 103 symmetrically distributed along the left and right sides of the first connecting frame 101, the side of the adjustment frame 103 away from the first connecting frame 101 is fixedly connected with two guide rails 104, and a lifting frame 105 is slidably connected between two adjacent guide rails 104 along the front and rear directions. A rubber pad 106 is fixedly connected to the rear side of the lifting frame 105, a corrugated telescopic plate 108 is fixedly connected to the outer side of the lifting frame 105, the corrugated telescopic plate 108 is filled with hydraulic oil, a hard protective plate 107 is fixedly connected to the outer side of the corrugated telescopic plate 108, and the corrugated telescopic plate 108 is connected with a hose 109, and the adjustment frame 1 03 has a slot on one side close to the adjacent hose 109, the hose 109 is connected to the adjacent slot, and a conveying rack 110 is fixedly connected to the slot of the adjusting rack 103, a first bellows 111 is arranged in the conveying rack 110, a conveying channel 112 is arranged in the conveying rack 110, the conveying channel 112 is connected to the adjacent first bellows 111, a second bellows 113 is arranged outside the conveying rack 110, the conveying channel 112 is connected to the adjacent second bellows 113, the first bellows 111 and the second bellows 113 transmit gas through the conveying channel 112, an adjusting plate 114 is slidably connected between the conveying rack 110 and the adjacent adjusting rack 103, the adjusting plate 114 is fixed to the adjacent second bellows 113, a through hole 115 is arranged in the adjusting plate 114, and the through hole 115 is in the conveying rack 110.

[0032] When using the device to assist in the construction and installation of building curtain walls, first, the glass panel 1021 used for curtain wall installation is adsorbed by the suction cup 102, and then the first connecting frame 101 of the device is hoisted horizontally and balanced by the hoisting machine, and the glass panel 1021 is sent to the metal frame of the curtain wall. In order to protect the corners of the glass panel 1021 during adsorption and hoisting, the device wraps and protects the corners of the glass panel 1021 through the lifting frame 105, the corrugated expansion plate 108 and the hard protective plate 107, and protects the bottom surface of the glass panel 1021 through the rubber pad 106 to prevent bumps. Compared with the linear front buffering of the spring, the buffering system of the present invention can cope with a wider range of surfaces, not only can it cope with the front buffering, but also can cope with the buffering of the oblique side.

[0033] When encountering a bump during the adsorption process, the impact force causes the corrugated expansion plate 108 to be compressed, and the hydraulic oil in the corrugated expansion plate 108 enters the conveying frame 110 through the hose 109 and the through hole 115 of the adjustment plate 114 in turn. Under the squeezing action of the hydraulic oil, the first bellows 111 is compressed, and the air in the first bellows 111 enters the second bellows 113 through the conveying channel 112. Under the action of air pressure, the second bellows 113 extends downward, thereby driving the adjustment plate 114 to extend downward.

[0034] When encountering a slight impact, the through hole 115 is always fully located in the conveying frame 110 during the downward movement of the adjustment plate 114, so that the hydraulic oil can enter the conveying frame 110 normally, thereby allowing the corrugated expansion plate 108 to buffer in a normal and softer manner to delay the impact.

[0035] When encountering a severe impact, in the early stage, when the adjustment plate 114 is moving downward, the through hole 115 is also fully located in the conveying frame 110, so that the corrugated expansion plate 108 is buffered in a normal and softer manner. In the later stage, when the adjustment plate 114 is moving downward, part of the through hole 115 is gradually moved downward out of the conveying frame 110, so that the resistance of the hydraulic oil entering the conveying frame 110 is gradually increased, so that the corrugated expansion plate 108 is gradually buffered in a harder manner, further reducing the deformation speed.

[0036] When it reaches the building curtain wall, the first connecting frame 101 of the device is longitudinally balanced and hoisted by a hoisting machine so that the glass panel 1021 is installed in the metal frame. At this time, in order to enable the glass panel 1021 to be embedded in the metal frame without being blocked by the lifting frame 105, rubber pad 106, hard protective plate 107 and corrugated expansion plate 108, the lifting frame 105, rubber pad 106, hard protective plate 107 and corrugated expansion plate 108 are set to be non-fixed. In this way, during installation, after the rubber pad 106 contacts the metal frame, the lifting frame 105, rubber pad 106, hard protective plate 107 and corrugated expansion plate 108 no longer move, and the suction cup 102 pushes the glass panel 1021 to continue to move and embed into the metal frame, and the guide rail 104 slides relative to the lifting frame 105.

[0037] In summary, the present invention performs flexible buffering when dealing with slight impacts, and when dealing with severe impacts, the flexible buffering can effectively absorb the impact energy in the early stage, reduce the peak stress transmitted to the glass panel 1021, and thus reduce the risk of breakage. As the impact continues, it gradually transitions to rigid buffering in the later stage, and can stably support the glass panel 1021 without causing excessive deformation, thereby avoiding damage caused by sudden rigid contact. In this way, the buffering characteristics can be dynamically adjusted according to the characteristics of the impact, which is suitable for dealing with impacts of various intensities and durations.

[0038] like Figure 7-Figure 8 As shown, it also includes a second connecting frame 201 corresponding to the adjusting frame 103, the second connecting frame 201 is slidably connected to the corresponding adjusting frame 103, a first spring 202 is fixedly connected between the second connecting frame 201 and the adjacent adjusting frame 103, a pushing rod 203 is slidably connected in the conveying frame 110 along the front-back direction, the pushing rod 203 contacts the adjacent first corrugated tube 111, the adjusting frame 103 is slidably connected to the limiting plate 204, the pushing rod 203 moves forward to contact the adjacent limiting plate 204, and they are squeezed and matched with each other, a longitudinally distributed card groove is opened on the side of the second connecting frame 201 close to the adjacent limiting plate 204, the limiting plate 204 moves to clamp the card groove of the adjacent second connecting frame 201, so that the limiting plate 204 limits the adjacent second connecting frame 201, and a second spring 205 is fixedly connected between the limiting plate 204 and the adjacent adjusting frame 103.

[0039] Before embedding, in order to prevent the lifting frame 105, rubber pad 106, hard protective plate 107 and corrugated expansion plate 108 from moving relative to the lifting frame 105 during collision, thereby causing the protection of the glass panel 1021 to fail, therefore, during collision, the lifting frame 105, rubber pad 106, hard protective plate 107 and corrugated expansion plate 108 need to be fixed, specifically: when the first corrugated tube 111 is compressed, it drives the push rod 203 to move upward to contact the limit plate 204, and pushes the limit plate 204 to slide to the side close to the second connecting frame 201 until the limit plate 204 jams the second connecting frame 201, so that the second connecting frame 201 is fixed, and the limit plate 204 limits the lifting frame 105, so that the lifting frame 105, rubber pad 106, hard protective plate 107 and corrugated expansion plate 108 cannot move relative to the lifting frame 105 during collision.

[0040] like Fig. 9 As shown, it also includes a fixed frame 301 corresponding to the adjustment frame 103, the fixed frame 301 is fixedly connected to the adjacent adjustment frame 103, and the fixed frame 301 is provided with a guide groove 302 and a movable groove 303. The side of the guide groove 302 close to the adjacent movable groove 303 is set as an inclined portion, and the side of the guide groove 302 away from the adjacent movable groove 303 is set as a straight portion. A safety hook 304 is slidably connected in the movable groove 303, and the safety hook 304 is used to hook the sliding groove of the glass panel 1021. The guide groove 302 is used to limit and guide the adjacent safety hook 304, and the lifting frame 105 moves forward to contact the adjacent safety hook 304.

[0041] In order to prevent the glass panel 1021 from breaking free from the suction of the suction cup 102 and falling downward during the lifting process, a safety hook 304 is provided to hook the slide groove of the glass panel 1021. When the glass panel 1021 is embedded and installed in the metal frame, the sliding of the lifting frame 105 relative to the guide rail 104 will simultaneously drive the safety hook 304 to slide relative to the guide groove 302 and the movable groove 303. Under the guidance of the inclined part of the guide groove 302, the safety hook 304 will automatically swing to the slide groove of the glass panel 1021. In this way, it is ensured that the glass panel 1021 will not be blocked by the safety hook 304 when it is embedded and installed in the metal frame.

[0042] like Fig.10 As shown, it also includes a friction plate 401 corresponding to the adjustment frame 103, the friction plate 401 is fixedly connected to the adjacent adjustment frame 103, the adjustment frame 103 is slidably connected to the first connecting frame 101, and the upper and lower sides of the first connecting frame 101 are both threadedly connected with fastening bolts 402 symmetrically distributed along the first connecting frame 101, and the fastening bolts 402 are in contact with the adjacent friction plate 401.

[0043] In order to adapt to glass panels 1021 of different widths, the adjustment frame 103 is configured to be able to slide on the first connecting frame 101. Before adjustment, the fastening bolt 402 is loosened. After adjustment, the fastening bolt 402 is tightened until it contacts the friction plate 401. With the fastening cooperation between the friction plate 401 and the fastening bolt 402, the adjustment frame 103 is fastened to the first connecting frame 101, thereby being able to provide stable protection for the glass panel 1021.

[0044] like Fig.10 As shown, a bubble level 501 for horizontal installation is also included, and the bubble level 501 is fixedly connected to the first connecting frame 101.

[0045] Those skilled in the art should understand that the above embodiments do not limit the present invention in any form, and any technical solutions obtained by equivalent replacement or equivalent transformation shall fall within the protection scope of the present invention.

Claims

1. An anti-collision type civil construction curtain wall installation auxiliary device, characterized by: The invention comprises a first connecting frame (101), the first connecting frame (101) being fixedly connected with suction cups (102) symmetrically distributed along the first connecting frame (101), the suction cups (102) being used to absorb a glass panel (1021), the first connecting frame (101) being provided with an adjustment frame (103) symmetrically distributed along the first connecting frame (101), at least one guide rail (104) being fixedly connected to a side of the adjustment frame (103) away from the first connecting frame (101), a lifting frame (105) being slidably connected between adjacent guide rails (104), the lifting frame (105) being fixedly connected with a rubber pad (106), a corrugated telescopic plate (108) being fixedly connected to the outer side of the lifting frame (105), and the corrugated telescopic plate (108) being fixedly connected to the outer side of the lifting frame (105), and the corrugated telescopic plate (108) being fixedly connected to the outer side of the lifting frame (105). 8) is filled with hydraulic oil, a hard protective plate (107) is fixedly connected to the outer side of the corrugated telescopic plate (108), a hose (109) is connected to the corrugated telescopic plate (108), a slot is opened on the side of the adjustment frame (103) close to the adjacent hose (109), the hose (109) is connected to the adjacent slot, and a conveying frame (110) is fixedly connected in the slot of the adjustment frame (103), an adjustment plate (114) is slidably connected between the conveying frame (110) and the adjacent adjustment frame (103), the adjustment plate (114) is opened with a through hole (115), the through hole (115) is in the conveying frame (110), and an adjustment component for adjusting the position of the through hole (115) is arranged in the conveying frame (110).

2. The anti-collision type civil construction curtain wall installation auxiliary device according to claim 1 is characterized by: The adjustment component comprises a first bellows (111) corresponding to the conveying frame (110), the first bellows (111) being arranged in the conveying frame (110), a conveying channel (112) being opened in the conveying frame (110), the conveying channel (112) being communicated with the adjacent first bellows (111), a second bellows (113) being arranged outside the conveying frame (110), the conveying channel (112) being communicated with the adjacent second bellows (113), and an adjustment plate (114) being fixedly connected with the adjacent second bellows (113).

3. The anti-collision type civil construction curtain wall installation auxiliary device according to claim 2 is characterized by: It also includes a second connecting frame (201) corresponding to the adjustment frame (103), the second connecting frame (201) is slidably connected to the corresponding adjustment frame (103), a first spring (202) is fixedly connected between the second connecting frame (201) and the adjacent adjustment frame (103), the adjustment frame (103) is slidably connected to a limiting plate (204), the limiting plate (204) is used to limit the adjacent second connecting frame (201), and a second spring (205) is fixedly connected between the limiting plate (204) and the adjacent adjustment frame (103).

4. The anti-collision type civil construction curtain wall installation auxiliary device according to claim 3 is characterized by: It also includes a push rod (203), the push rod (203) is slidably connected to the conveying frame (110), the push rod (203) is in contact with the adjacent first corrugated tube (111), and the push rod (203) moves to contact with the adjacent limiting plate (204), and the two are mutually pressed and matched.

5. The anti-collision type civil construction curtain wall installation auxiliary device according to claim 4 is characterized in that: A side of the second connecting frame (201) close to the adjacent limiting plate (204) is provided with a longitudinally distributed clamping groove, and the limiting plate (204) moves to clamp the clamping groove of the adjacent second connecting frame (201).

6. The anti-collision type civil construction curtain wall installation auxiliary device according to claim 5 is characterized by: The invention also comprises a fixing frame (301) corresponding to the adjusting frame (103), the fixing frame (301) being fixedly connected to the adjacent adjusting frame (103), the fixing frame (301) being provided with a guide groove (302) and a movable groove (303), a safety hook (304) being slidably connected in the movable groove (303) for hooking the sliding groove of the glass panel (1021), and the guide groove (302) being used for limiting and guiding the adjacent safety hook (304).

7. The anti-collision type civil construction curtain wall installation auxiliary device according to claim 6 is characterized by: The lifting frame (105) moves to contact the adjacent safety hook (304).

8. The anti-collision type civil construction curtain wall installation auxiliary device according to claim 7 is characterized by: It also includes a friction plate (401) corresponding to the adjustment frame (103), the friction plate (401) is fixedly connected to the adjacent adjustment frame (103), the adjustment frame (103) is slidably connected to the first connecting frame (101), the first connecting frame (101) is threadedly connected to fastening bolts (402) symmetrically distributed along the first connecting frame (101), and the fastening bolts (402) are in contact with the adjacent friction plate (401).

9. The anti-collision type civil construction curtain wall installation auxiliary device according to claim 8 is characterized by: It also includes a bubble level (501) for horizontal installation, and the bubble level (501) is fixedly connected to the first connecting frame (101).

Citation Information

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