An installation device and installation method for high-altitude suspension of building side columns
By adjusting the angle and length of the telescopic rod arm and side arm, combining elastic parts and reinforced rods, the stability problem of hanging basket installation in the frame structure is solved, and the safety and efficiency of high-altitude construction is improved.
Patent Information
- Application Number
- CN202211318894.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-10-26
- Publication Date
- 2025-07-08
- Estimated Expiration
- 2042-10-26
AI Technical Summary
In high-rise buildings, the existing hanging basket installation method is highly destructive to the frame structure and is difficult to fix in the absence of shear walls, which affects construction safety and efficiency.
An installation device for hanging aerial at the side column of a building is provided, including a clamping assembly and a reinforcement assembly. By adjusting the angle and length of the telescopic rod arm and side arm, the connecting stability with the side column is enhanced by using elastic members and reinforcement rods, and the friction force is increased through the adhesive layer to ensure the stability of the device.
It realizes stable installation on side columns of different sizes, improves construction safety and efficiency, reduces damage to the building structure, and is suitable for high-altitude construction of frame structures.
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Figure CN115749243B_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of high-rise building construction, and in particular to an installation device and an installation method for high-altitude suspension of building side columns. Background Art
[0002] At present, in high-rise building construction, hanging baskets are often used for external structure construction or decorative construction. A hanging basket is a high-altitude operation device that can replace traditional scaffolding, effectively reduce labor intensity, improve work efficiency, and can be reused. When installing a hanging basket, it needs to be fixedly connected to the upper structure or device to ensure the safety of the hanging basket. Usually, the fixing is achieved by using upper counterweights or directly anchoring to the building structure.
[0003] However, when using a counterweight type hanging basket for installation, a large construction site is required, and there are certain requirements for the flatness of the site ground; when using the method of anchoring to the building structure, it is also necessary to drill holes or set embedded parts on the building structure, which will inevitably cause certain damage to the building structure. And in a frame structure, there is no shear wall on the outside, which is inconvenient for drilling holes or anchoring. Summary of the Invention
[0004] In order to provide a high-altitude construction device suitable for the frame structure environment, the present application provides an installation device and an installation method for high-altitude suspension of building side columns.
[0005] In a first aspect, the present application provides an installation device for high-altitude suspension of building side columns, adopting the following technical solutions:
[0006] An installation device for high-altitude suspension of building side columns includes a clamping assembly. The clamping assembly includes a telescopic rod arm, two side arms, and two contact plates. The two ends of the telescopic rod arm are respectively connected to one ends of the two side arms, and the other ends of the two side arms are respectively connected to the two contact plates. Elastic members capable of making the two side arms swing towards each other are arranged between the telescopic rod arm and the two side arms, and suspension rings for connecting safety ropes are arranged on the two side arms.
[0007] By adopting the above technical solutions, since the sizes of side columns in a frame structure are different, first, the length of the telescopic rod arm can be adjusted according to side columns of different sizes, and then the angles of the side arms connected to the two ends of the telescopic rod arm can be adjusted, and the angles of the two contact plates can be adjusted adaptively to make the contact plates fit the building side columns better. The device is clamped on the building side column through the elastic members between the telescopic rod arm and the side arms, and the safety ropes are tied and fixed by using the suspension rings on the two side arms. The safety ropes are connected to the lower objects to achieve hoisting. The device can be installed on side columns of different sizes by adjusting the telescopic rod arm and the side arms.
[0008] Optionally, the installation device further includes a reinforcement component, which includes a sleeve and two reinforcement rods. One end of each of the two reinforcement rods extends into the sleeve from both ends of the sleeve, and the two reinforcement rods can approach or move away from each other. The other ends of the two reinforcement rods are respectively bolted to the two contact plates.
[0009] By adopting the above technical solution, the connection stability between the two contact plates and the side wall of the building side column is enhanced by using the reinforcement component, thereby improving the stability of the device and making the device not easily fall off.
[0010] Optionally, a gear is provided inside the sleeve. Serrations are provided at one end of each of the two reinforcement rods extending into the sleeve. The serrations are engaged with the gear. A handle capable of driving the gear to rotate is provided on the gear, and the handle extends out of the sleeve.
[0011] By adopting the above technical solution, the rotation of the gear drives the two reinforcement rods engaged with the gear to extend or retract into or out of the sleeve, completing the installation and disassembly of the reinforcement component. When the reinforcement component is installed, the handle is rotated to drive the gear to rotate, driving the two reinforcement rods to move into the sleeve, thereby enhancing the pressure of the reinforcement rods on the contact plate and making the contact plate more firmly installed on the side wall of the building side column.
[0012] Optionally, the telescopic rod arm includes an outer rod, an inner rod and a threaded lock. A limiting hole is provided on the outer rod, and a plurality of threaded holes are provided on the inner rod. One end of the inner rod extends into the outer rod. The limiting hole corresponds to the threaded hole. The threaded lock passes through the limiting hole and is screwed into the threaded hole of the inner rod. The end of the outer rod away from the inner rod is rotatably connected to the side wall, and the end of the inner rod away from the outer rod is rotatably connected to the other side wall.
[0013] By adopting the above technical solution, when adjusting the length of the telescopic rod arm, according to the size of the building side column, first adjust the inner rod to extend into the outer rod to an appropriate length, so that the threaded hole on the inner rod corresponds to the limiting hole on the outer rod. The threaded lock passes through the limiting hole and is screwed into the threaded hole on the inner rod to fix the length of the telescopic rod arm, ensuring that the telescopic rod arm will not slide during the installation and use process.
[0014] Optionally, inclined struts for abutting against the building side column are provided on both the outer rod and the inner rod, and an abutting block is connected to one end of the inclined strut.
[0015] By adopting the above technical solution, inclined struts are provided on both the outer rod and the inner rod of the telescopic rod arm, and an abutting block is provided at one end of the inclined strut that abuts against the building side column. When the installation device is in use, the inclined strut is obliquely supported between the building side column and the telescopic rod arm, which can prevent the telescopic rod arm and the side walls at both ends from swinging downward, affecting the use of the device, and improving the use stability and safety of the installation device.
[0016] Optionally, a connecting rod is fixedly arranged on the outer rod, and a ring for the safety rope to pass through is fixedly installed at one end of the connecting rod.
[0017] By adopting the above technical solution, the safety rope fixed to the hanging rings on the two side arms passes through the ring and is connected to the lower object, which can ensure that during the use of the safety rope, there is an inward pulling force on the two side arms, thereby strengthening the connection stability between the two contact plates and the side wall of the building side column, and further improving the stability of the installation device.
[0018] Optionally, a plurality of adjusting rings are arranged at intervals on both the outer rod and the inner rod. One end of the elastic member is detachably connected to the adjusting ring, and the other end of the elastic member is fixedly connected to the side arm.
[0019] By adopting the above technical solution, during installation, in order to adapt to side columns of different sizes and ensure that the elastic member is always in a stretched state, that is, there is an inward pulling force on the two side arms, select the adjusting ring at the appropriate position, connect one end of the elastic member to the adjusting ring, and fix the other end of the elastic member on the side arm. At this time, there is an inward pulling force on the side arms at both ends of the telescopic rod arm, and the two side arms apply a pressure to the two contact plates, further enhancing the connection stability between the two contact plates and the building side column, and further improving the stability of the installation device.
[0020] Optionally, the two contact plates are respectively rotatably connected to the two side arms, and the rotation range of the contact plate relative to the side arm is 0 - 90°.
[0021] By adopting the above technical solution, since the two contact plates are rotatably connected to the two side arms, when following the two side arms to rotate, it is necessary to adjust the angle of itself at all times to ensure that it fits the building side column.
[0022] Optionally, a viscous layer for sticking to the contact surface of the building side column is provided on the two contact plates.
[0023] By adopting the above technical solution, the viscous layer can increase the connection stability between the contact plate and the building side column, making the contact plate not easy to slide off the building side column.
[0024] In a second aspect, the present application provides an installation method for an installation device for high-altitude suspension of a building side column, and the installation method includes the following steps:
[0025] Step 1: Clean the side wall of the building side column;
[0026] Step 2: According to the dimensions of the building side column, adjust the length of the telescopic rod arm by adjusting the length of the inner rod extending into the outer rod, and thread-fix the relative position between the inner rod and the outer rod through a threaded lock, and adjust the side arms at both ends of the telescopic rod arm to an appropriate angle;
[0027] Step 3: Apply a viscous coating on the side wall of the building side column;
[0028] Step 4: Adjust the angles of the two contact plates respectively, abut the two contact plates against the side wall of the building side column, connect the elastic member to the adjusting ring, ensure that the elastic member is in a stretched state, adjust the strut to abut against the side wall of the building side column, and adjust the strut to keep the telescopic rod arm and the two side arms horizontal;
[0029] Step 5: Install the reinforcement component, bolt-connect the two reinforcement rods to the two contact plates respectively, and move the two reinforcement rods into the sleeve by screwing the handle to firmly connect the contact plates to the building side column;
[0030] Step 6: Fix the safety rope to the hanging ring, and the safety rope passes through the circular ring and is connected to the lower object at the same time, thus completing the installation.
[0031] By adopting the above technical solution, first clean the side wall of the building side column to prevent concrete debris on the side wall from affecting the connection strength between the contact plate and the side column; adjust the length of the telescopic rod arm and the angles of the two side arms according to the dimensions of the building side column; apply a viscous coating on the side wall of the building side column to increase the friction force with the contact plate; abut the two contact plates against the side wall of the building side column, adjust the elastic member and the strut to keep the installation device stable, and then install the reinforcement component on the two contact plates to enhance the connection stability between the contact plate and the building side column, thereby further enhancing the stability of the installation device.
[0032] In summary, the present application includes at least one of the following beneficial technical effects:
[0033] 1. The length of the telescopic rod arm can be adjusted by adjusting the length of the inner rod extending into the outer rod, so that the installation device can be applicable to building side columns of different sizes, improving the applicability of the installation device.
[0034] 2. Utilize the reinforcement component to enhance the connection stability between the two contact plates and the side arm of the building side column, thereby improving the stability of the device and making the device not easy to fall off.
[0035] 3. When the installation device is in use, the strut is inclined between the building side column and the telescopic rod arm, which can prevent the telescopic rod arm and the side arms at both ends from swinging downward, affecting the use of the device, and improving the use stability and safety of the installation device.
[0036] 4. The safety rope fixed to the hanging rings on the two side arms passes through the circular ring and is connected to the lower object, which can ensure that during the use of the safety rope, there is an inward pulling force on the two side arms, thereby strengthening the connection stability between the two contact plates and the side wall of the building side column, and further improving the stability of the installation device.
[0037] 5. The adhesive layer can increase the connection stability between the contact plate and the building side column, making the contact plate not easy to slide off the building side column. Description of the Drawings
[0038] Figure 1 is a three-dimensional structural schematic diagram of the installation device in the embodiment of the present application.
[0039] Figure 2 is a three-dimensional structural schematic diagram of the installation device in another perspective in the embodiment of the present application.
[0040] Figure 3 is a structural schematic diagram of the reinforcement component in the embodiment of the present application.
[0041] Figure 4 is a schematic diagram of the internal structure of the reinforcement component in the embodiment of the present application.
[0042] Figure 5 is a structural schematic diagram of the clamping component in the embodiment of the present application.
[0043] Reference numerals: 1. Clamping component; 11. Telescopic rod arm; 111. Outer rod; 1111. Limit hole; 1112. Threaded lock; 1113. Connecting rod; 1114. Circular ring; 112. Inner rod; 1121. Threaded hole; 113. Diagonal brace; 1131. Abutting block; 114. Adjusting ring; 12. Side arm; 121. Hanging ring; 13. Contact plate; 14. Elastic member; 2. Reinforcement component; 21. Sleeve; 211. Gear; 2111. Handle; 2112. Locking member; 22. Reinforcement rod; 221. Sawtooth; 23. Horseshoe-shaped connecting plate. Detailed Description of the Embodiment
[0044] The following Figure 1 in combination with the attached Figure 5 drawings, the present application will be further described in detail.
[0045] Referring to Figure 1, an installation device for high-altitude suspension of building side columns, comprising a clamping assembly 1. The clamping assembly 1 includes a telescopic rod arm 11, two side arms 12 and two contact plates 13. The two ends of the telescopic rod arm 11 are respectively connected to one end of the two side arms 12, and the other ends of the two side arms 12 are respectively connected to the two contact plates 13. Elastic members 14 capable of making the two side arms 12 swing towards each other are arranged between the telescopic rod arm 11 and the two side arms 12. In this embodiment, the elastic members 14 are selected as strong springs. Hoisting rings 121 for connecting safety ropes are arranged on both side arms 12. The hoisting rings 121 can be integrally formed with the side arms 12, or the hoisting rings 121 can be welded to the side arms 12.
[0046] First, adjust the length of the telescopic rod arm 11 according to side columns of different sizes. Then, adjust the angles of the two side arms 12 connected to the two ends of the telescopic rod arm 11, and adaptively adjust the angles of the two contact plates 13 to make the contact plates 13 fit better with the side wall of the building side column. The installation device is clamped on the building side column by the strong springs between the telescopic rod arm 11 and the side arms 12. The safety ropes are tied and fixed by the hoisting rings 121 on the two side arms 12. The safety ropes are connected to the lower objects to achieve hoisting.
[0047] Refer to Figure 2 and Figure 3 , the installation device further includes a reinforcement assembly 2. The reinforcement assembly 2 includes a sleeve 21 and two reinforcement rods 22. The sleeve 21 is fitted and installed with the side wall of the building side column. One ends of the two reinforcement rods 22 extend into the sleeve 21 from both ends of the sleeve 21 respectively, and the two reinforcement rods 22 can approach or move away from each other. The other ends of the two reinforcement rods 22 are respectively bolted to the two contact plates 13. The ends of the reinforcement rods 22 extending out of the sleeve 21 are bent and bolted to the contact plates 13. A horseshoe-shaped connecting plate 23 is arranged at the connection between the reinforcement rods 22 and the contact plates 13. The horseshoe-shaped connecting plate 23 can ensure the fixed connection between the reinforcement rods 22 and the contact plates 13 without interfering with the connection between the side arms 12 and the contact plates 13. The two contact plates 13 are respectively rotatably connected to the two side arms 12. The rotation range of the contact plates 13 relative to the side arms 12 is 0 - 90°, so that the contact plates 13 can be conveniently adjusted to fit better with the side wall of the building side column.
[0048] Refer to Figure 2 and Figure 4A gear 211 is provided inside the sleeve 21, and saw teeth 221 are provided on one end of the two reinforcement rods 22 extending into the sleeve 21. The saw teeth 221 are engaged with the gear 211. The gear 211 is provided with a handle 2111 that can drive the gear 211 to rotate. One end of the handle 2111 extends out of the sleeve 21. When installing the reinforcement component 2, the two reinforcement rods 22 are moved into the sleeve 21 by screwing the handle 2111, thereby increasing the pressure of the reinforcement rods 22 on the contact plate 13, so that the contact plate 13 is more firmly installed on the side wall of the building side column, thereby improving the overall stability of the installation device. At the same time, a locking piece 2112 is provided on the sleeve 21. The locking piece 2112 is blade-shaped and is more suitable for engaging with the gear 211. A through hole directly reaching the gear 211 is opened on the sleeve 21. The locking piece 2112 is engaged with the gear 211 through the through hole. When the gear 211 rotates to a suitable position, the automatic rotation of the gear 211 is limited by turning the locking piece 2112, thereby preventing the reinforcement rod 22 from loosening.
[0049] Reference Figure 5 The telescopic arm 11 includes an outer rod 111, an inner rod 112 and a threaded lock 1112. The outer rod 111 is provided with a limiting hole 1111, and the inner rod 112 is provided with a plurality of threaded holes 1121. In this embodiment, the inner rod 112 is provided with 10 threaded holes 1121 at intervals. The outer rod 111 is a long hollow steel column with an open end. One end of the inner rod 112 extends into the outer rod 111. The limiting hole 1111 corresponds to the threaded hole 1121. The threaded lock 1112 passes through the limiting hole 1111 and is screwed to the inner rod 112. The length of the telescopic arm 11 is adjusted in the threaded hole 1121, and the end of the outer rod 111 away from the inner rod 112 is rotatably connected to the side arm 12, and the end of the inner rod 112 away from the outer rod 111 is rotatably connected to the other side arm 12. According to the size of the building side column, the inner rod 112 is first adjusted to extend into the outer rod 111 to a suitable length so that the threaded hole 1121 on the inner rod 112 corresponds to the limit hole 1111 on the outer rod 111, and the threaded lock buckle 1112 can ensure that the outer rod 111 and the inner rod 112 will not slide during installation and use.
[0050] Reference Figure 5 , a plurality of adjustment rings 114 are welded at intervals on the outer rod 111 and the inner rod 112. In the present embodiment, three adjustment rings 114 are provided on the outer rod 111 and the inner rod 112. One end of the elastic member 14 is detachably connected to the adjustment ring 114, and the other end of the elastic member 14 is fixedly connected to the side arm 12. During use, it is necessary to ensure that the elastic member 14 is always in a stretched state, that is, there is a force pulling the two side arms 12 toward each other. Select the adjustment ring 114 in a suitable position, connect one end of the elastic member 14 to the adjustment ring 114, and enhance the connection stability between the two contact plates 13 and the building side columns, thereby improving the stability of the installation device.
[0051] Refer to Figure 5 , on both the outer rod 111 and the inner rod 112, there are provided diagonal braces 113 for abutting against the building side column. The two diagonal braces 113 are respectively hinged to the outer rod 111 and the inner rod 112. At one end of each of the two diagonal braces 113, there is a hinged abutting block 1131, and damping members are provided at the hinged joints. The diagonal braces 113 are diagonally braced between the building side column and the telescopic rod arm 11, forming a triangular structure. By using the stability of the triangle, when the side arm 12 suspends a heavy object through the hanging ring 121, it can prevent the telescopic rod arm 11 and the two side arms 12 at both ends from swinging downward, affecting the use of the installation device, thereby improving the use stability and safety of the installation device.
[0052] Refer to Figure 5 , a connecting rod 1113 is welded on the outer rod 111. At one end of the connecting rod 1113, there is an integrally formed ring 1114 through which a safety rope passes. The safety rope fixedly connected to the hanging ring 121 passes through the ring 1114 and is connected to the lower object. The lower object generates a pulling force on the safety rope. By providing the ring 1114, the safety rope generates a pulling force on the two side arms 12 that causes the two side arms 12 to rotate inward, so that the pressure of the two side arms 12 on the contact plate 13 is stronger, and then the connection between the contact plate 13 and the side wall of the building side column is more stable, enhancing the overall stability of the installation device; on the contact plate 13, there is a sticky layer 131 for sticking to the contact surface of the building side column, which can increase the friction between the contact plate 13 and the side wall of the building side column.
[0053] The embodiment of the present application also discloses an installation method for an installation device for high-altitude suspension of a building side column. The installation method includes the following steps:
[0054] Step 1: Clean the side wall of the building side column;
[0055] Step 2: According to the size of the building side column, adjust the length of the telescopic rod arm 11 by adjusting the length of the inner rod 112 extending into the outer rod 111, and thread-fix the relative position between the inner rod 112 and the outer rod 111 through the thread lock 1112, and adjust the two side arms 12 at both ends of the telescopic rod arm 11 to an appropriate angle;
[0056] Step 3: Apply a sticky coating on the side wall of the building side column;
[0057] Step 4: Adjust the angles of the two contact plates 13 respectively, abut the two contact plates 13 against the side wall of the building side column, connect the elastic member 14 to the adjusting ring 114, ensure that the elastic member 14 is in a stretched state, adjust the diagonal brace 113 to abut against the side wall of the building side column, and adjust the diagonal brace 113 to keep the telescopic rod arm 11 and the two side arms 12 horizontal;
[0058] Step Five: Install the reinforcement component 2. Bolt the two reinforcement rods 22 to the two contact plates 13 respectively. By turning the handle 2111, move the two reinforcement rods 22 into the sleeve 21, so that the contact plates 13 are firmly connected to the building side column.
[0059] Step Six: Fix the safety rope to the hanging ring 121. The safety rope passes through the circular ring 1114 and is connected to the lower object at the same time, thus completing the installation.
[0060] In this embodiment, the adhesive coating can be construction glue 801, 901, etc., as long as it can achieve firm bonding between the contact plate 13 and the side wall of the building side column.
[0061] The implementation principle of the embodiment of this application is as follows: First, adjust the length of the telescopic rod arm 11 according to the building side columns of different sizes. Then, adjust the angles of the side arms 12 connected to both ends of the telescopic rod arm 11, and adaptively adjust the angles of the two contact plates 13 to make the contact plates 13 fit the building side column better. Clamp the device on the building side column through the elastic member 14 between the telescopic rod arm 11 and the side arm 12. Adjust the two diagonal braces 113 to keep the telescopic rod arm 11 and the side arm 12 horizontal. The abutting block 1131 on the diagonal brace 113 abuts against the side wall of the building side column. Bolt the reinforcement rod 22 to the contact plate 13. Turn the handle 2111 to move the two reinforcement rods 22 into the sleeve 21, increasing the pressure between the two contact plates 13 and the side wall of the building side column. Place the sleeve 21 in contact with the side wall of the building side column. Fix the safety rope by hanging it on the hanging rings 121 on the two side arms 12. The safety rope passes through the circular ring 1114 and is connected to the lower object to realize hoisting. The device can be installed on building side columns of different sizes by adjusting the telescopic rod arm 11 and the side arm 12.
[0062] The embodiments of this specific implementation manner are all preferred embodiments of this application, and do not limit the protection scope of this application accordingly. The same components are denoted by the same reference numerals. Therefore, all equivalent changes made according to the structure, shape, and principle of this application shall be covered within the protection scope of this application.
Claims
1. An installation device for high-altitude suspension of building side columns, comprising a clamping assembly (1), characterized in that, The clamping assembly (1) includes a telescopic rod arm (11), two side arms (12) and two contact plates (13). The two ends of the telescopic rod arm (11) are respectively connected to one end of the two side arms (12). The other ends of the two side arms (12) are respectively connected to the two contact plates (13). Elastic members (14) capable of making the two side arms (12) swing towards each other are arranged between the telescopic rod arm (11) and the two side arms (12). Hoisting rings (121) for connecting safety ropes are arranged on the two side arms (12). The installation device further includes a reinforcement assembly (2). The reinforcement assembly (2) includes a sleeve (21) and two reinforcement rods (22). One ends of the two reinforcement rods (22) extend into the sleeve (21) from the two ends of the sleeve (21), and the two reinforcement rods (22) can approach or move away from each other. The other ends of the two reinforcement rods (22) are respectively bolted to the two contact plates (13).
2. The installation device for high-altitude suspension of building side columns according to claim 1, wherein A gear (211) is arranged inside the sleeve (21). Sawteeth (221) are formed on one ends of the two reinforcement rods (22) extending into the sleeve (21). The sawteeth (221) are meshed with the gear (211). A handle (2111) capable of driving the gear (211) to rotate is arranged on the gear (211). The handle (2111) extends out of the sleeve (21).
3. The installation device for high-altitude suspension of building side columns according to claim 2, wherein, The telescopic rod arm (11) includes an outer rod (111), an inner rod (112) and a threaded lock (1112). A limit hole (1111) is formed in the outer rod (111). A plurality of threaded holes (1121) are formed in the inner rod (112). One end of the inner rod (112) extends into the outer rod (111). The limit hole (1111) corresponds to the threaded hole (1121). The threaded lock (1112) passes through the limit hole (1111) and is screwed into the threaded hole (1121) of the inner rod (112). The end of the outer rod (111) away from the inner rod is rotatably connected to the side arm (12). The end of the inner rod (112) away from the outer rod (111) is rotatably connected to the other side arm (12).
4. The installation device for high-altitude suspension of building side columns according to claim 3, characterized in that, Diagonal braces (113) for abutting against building side columns are arranged on both the outer rod (111) and the inner rod (112). An abutting block (1131) is connected to one end of the diagonal brace (113).
5. The installation device for high-altitude suspension of building side columns according to claim 4, characterized in that, A connecting rod (1113) is fixedly arranged on the outer rod (111). A ring (1114) through which a safety rope passes is fixedly installed at one end of the connecting rod (1113).
6. The installation device for high-altitude suspension of building side columns according to claim 5, wherein, A plurality of adjusting rings (114) are arranged at intervals on both the outer rod (111) and the inner rod (112). One end of the elastic member (14) is detachably connected to the adjusting ring (114). The other end of the elastic member (14) is fixedly connected to the side arm (12).
7. A mounting device for high-altitude suspension of building side columns according to claim 1, characterized in that, The two contact plates (13) are respectively rotatably connected to the two side arms (12), and the rotation range of the contact plate (13) relative to the side arm (12) is 0 - 90°.
8. The installation device for high-altitude suspension of building side columns according to claim 1, wherein, The two contact plates (13) are provided with an adhesive layer (131) for adhering to the contact surface of the building side column.
9. An installation method for an installation device for high-altitude suspension of building side columns as described in claim 6, characterized in that, The installation method includes the following steps: Step 1: Clean the side wall of the building side column. Step 2: According to the size of the building side column, adjust the length of the telescopic rod arm (11) by adjusting the length of the inner rod (112) extending into the outer rod (111), and thread-fix the relative position between the inner rod (112) and the outer rod (111) through the thread lock (1112), and adjust the two side arms (12) at both ends of the telescopic rod arm (11) to an appropriate angle. Step 3: Apply an adhesive coating on the side wall of the building side column. Step 4: Adjust the angles of the two contact plates (13) respectively, abut the two contact plates (13) against the side wall of the building side column, connect the elastic member (14) to the adjustment ring (114), ensure that the elastic member (14) is in a stretched state, adjust the diagonal brace (113) to abut against the side wall of the building side column, and adjust the diagonal brace (113) to keep the telescopic rod arm (11) and the two side arms (12) horizontal. Step 5: Install the reinforcement assembly (2), bolt-connect the two reinforcement rods (22) to the two contact plates (13) respectively, and move the two reinforcement rods (22) into the sleeve (21) by screwing the handle (2111) to firmly connect the contact plate (13) to the building side column. Step 6: Fix the safety rope to the hanging ring (121), and the safety rope passes through the circular ring (1114) and is connected to the lower object at the same time, thus completing the installation.
Citation Information
Patent Citations
Dimensionally-adjustable beam clamp
CN107386642A
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