A high-altitude suspended construction equipment

By designing high-altitude suspension construction equipment for suspension mechanisms and drive components, the problem that the roof inner plate cannot pass in the crossing parts in the prior art is solved, and a fast and convenient installation process is achieved.

CN119664088BActive Publication Date: 2025-08-05CHINA CONSTR FIRST BUREAU GRP (LIAONING) CONSTR CO LTD +1
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Patent Information

Application Number
CN202510199702.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-02-24
Publication Date
2025-08-05
Estimated Expiration
2045-02-24

AI Technical Summary

Technical Problem

When installing roof inner panels in the prior art, when encountering intersections such as corner support and roof support, they cannot pass directly, and need to be disassembled and reinstalled, resulting in slow installation progress.

Method used

A high-altitude suspension construction equipment is designed, with suspending mechanisms, drive components and locking components at both ends of the hanging frame. By driving the movable ply plate to rotate, the suspension mechanism can be stably suspended on the purlins and folded the suspension mechanism at the intersection to adapt to different purlin widths.

Benefits of technology

The smooth passage of the hanging frame at the intersection is achieved, the efficiency and applicability of the roof inner panel installation is improved, and the complexity and time of manual operation is reduced.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to the technical field of steel structure roof inner plate installation, and discloses a high-altitude suspension construction equipment. Through the setting of the suspension mechanism, when installing the hanging frame, the movable splints on the suspension mechanism at both ends of the hanging frame are driven by the driving component to rotate downward, and the suspension mechanism is opened, so that the fixed splints of the suspension mechanism can be installed on the purlin from one side of the purlin. Then, the movable splints are driven by the driving component to rotate upward, and the suspension mechanism is closed, so that the hanging frame is suspended on the purlin to form an aerial operating platform with stable travel. When the hanging frame passes through an intersection, the suspension mechanisms at both ends of the hanging frame are folded in sequence, so that the hanging frame can directly pass through the intersection and switch to a new purlin, which saves a lot of time and labor, thereby accelerating the installation progress of the roof inner plate.
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Description

Technical Field

[0001] The invention relates to the technical field of steel structure roof inner plate installation, in particular to high-altitude suspension construction equipment. Background Art

[0002] When building a factory building, the inner roof panels need to be installed on the steel beams. This installation process requires workers to perform on the corresponding installation platform.

[0003] Chinese patent CN211736308U discloses a self-sliding hanging frame device for installing the inner roof panels of a steel structure factory building. The device installs the hanging frame on the purlin through the cooperation of L-shaped rods, connecting rods and anti-fall bolts, providing workers with a platform for installing the inner roof panels. During the operation, workers can push the device to move on the purlin to adjust the position of the installed roof inner panels. However, when encountering intersections such as corner braces and roof supports, the existing technology cannot pass directly. Workers are required to suspend their work and leave the hanging frame, and then remove the hanging frame from the section of purlin, jump over the intersections such as corner braces and roof supports, and then install it on the new purlin. This process is labor-intensive and time-consuming, slowing down the installation progress of the roof inner panels. Summary of the Invention

[0004] In view of the deficiencies of the prior art, the present invention provides a high-altitude suspended construction equipment to overcome the above-mentioned technical problems existing in the existing related technologies.

[0005] In order to solve the above technical problems, the present invention provides the following technical solutions: a high-altitude suspended construction equipment, including a hanging frame, characterized in that: a set of suspension mechanism, a driving assembly and a locking assembly are respectively provided on both ends of the hanging frame, the suspension mechanism includes a fixed plate, a movable plate and a support assembly, the side of the fixed plate is connected with a fixed splint, the side of the movable plate is connected with a movable splint, the movable plate is installed on the fixed plate, and the movable plate can move horizontally on the fixed plate, and a number of pulleys are rotatably installed on the fixed splint and the movable splint, the fixed splint and the movable splint can be clamped on the purlin, and the pulleys are in contact with the top of the purlin, so The axle up and down groove at two ends embeds respectively in two guide rails up and down of being made up of the groove on the attachment piece, and the tooth on the attachment piece is meshed with tooth on upper sprocket wheel, the lower sprocket.

[0006] Preferably, a limiting groove is provided on the fixed plate, a threaded sleeve is fixedly connected to the bottom of the fixed plate on a side away from the movable splint, the fixed splint is fixedly installed on the upper side of the fixed plate away from the movable splint, a limiting column is fixedly installed on the movable plate, the limiting column is slidably installed in the limiting groove, a connecting block is fixedly installed on the bottom side of the movable plate away from the fixed splint, the connecting block corresponds to the threaded sleeve, and the movable splint is rotatably installed on the side of the movable plate away from the fixed splint.

[0007] Preferably, the sides of the fixed splint and the movable splint are provided with receiving grooves, the openings of the receiving grooves face the pulley, and the upper sides of the fixed splint and the movable splint are provided with mounting grooves, and the mounting grooves are located above the pulley.

[0008] Preferably, the suspension mechanism also includes an adjusting rod, which is provided with a thread. The adjusting rod is assembled in the threaded sleeve through the thread. The end of the adjusting rod away from the threaded sleeve is rotatably installed in the connecting block. A wrench is fixed on the end of the adjusting rod close to the threaded sleeve. The adjusting rod can be rotated by the wrench, so that the adjusting rod drives the movable plate to move.

[0009] Preferably, two lower support rods are fixedly connected to the two ends of the hanging frame, the lower end of the lower support rod is fixedly connected to the hanging frame, and the upper end of the lower support rod is fixedly installed with a fixing seat, and a fixing rod and a fixing slot are respectively provided on the side of the fixing seat close to the movable splint, one end of the fixing rod is rotatably installed on the fixing seat, and the other end of the fixing rod can be inserted into the fixing slot, and the fixing slot is equipped with a fixing bolt, and the fixing bolt can fix the fixing rod in the fixing slot.

[0010] Preferably, the lower end of the upper support rod is rotatably mounted on the fixed seat, the lower end of the support rod is fixedly mounted with a support plate, the support plate is located above the fixed seat, a sliding seat is slidably mounted on the support plate, and the upper end of the upper support rod is fixedly connected to the bottom of the fixed plate.

[0011] Preferably, the driving assembly also includes a motor seat and a driving motor, the motor seat is fixedly mounted on the bottom of the movable plate, the driving motor is fixedly mounted in the motor seat, the output shaft of the driving motor passes through the lower side of the motor seat, and the output shaft of the driving motor is coaxially fixedly connected with a screw rod, the lower end of the screw rod is rotatably mounted on the sliding seat, the driving block is assembled on the screw rod, and a stopper is slidably mounted on the driving block, a support spring is fixedly connected between the stopper and the driving block, and the support spring pushes the stopper to contact the push rod, the lower end of the push rod is rotatably connected to the driving block, and the upper end of the push rod is rotatably connected to the connecting seat.

[0012] The locking plate is fixedly mounted on the locking plate, and the locking plate is fixedly mounted on the locking plate, wherein the locking plate has a bottom end and a bottom end of the locking plate, and the locking plate is lifted up. The other end of the push plate is rotatably connected to the driving screw, and the driving screw is threadably engaged with the receiving slot, and one end of the driving screw extends out of the receiving slot, and a knob is fixedly mounted on the protruding end of the driving screw.

[0013] Preferably, a plurality of connecting rods are fixedly connected between the two lower support rods and the two upper support rods on the same end of the hanging frame to form a ladder for people to climb.

[0014] Compared with the prior art, the present invention provides a high-altitude suspended construction equipment with the following beneficial effects:

[0015] 1. This high-altitude suspended construction equipment, through the setting of the suspension mechanism, when installing the hanging frame, drives the movable splints on the suspension mechanism at both ends of the hanging frame to rotate downward through the driving component, opens the suspension mechanism, and allows the fixed splints of the suspension mechanism to be installed on the purlin from one side of the purlin. Then, the driving component drives the movable splint to rotate upward to close the suspension mechanism, so that the hanging frame is suspended on the purlin on an aerial operating platform with a stable stroke. When the hanging frame passes through an intersection, the suspension mechanisms at both ends of the hanging frame are folded in sequence, so that the hanging frame can directly pass through the intersection and switch to the new purlin, which saves a lot of time and effort, thereby speeding up the installation progress of the roof inner panel.

[0016] 2. The high-altitude suspended construction equipment, through the setting of the adjusting rod, enables the movable plate to move on the fixed plate with the movable splint under the drive of the adjusting rod when facing purlins of different widths, thereby changing the distance between the fixed splint and the movable splint, so that the distance between the movable splint and the fixed splint can adapt to the purlins of corresponding width, thereby increasing the applicability of the equipment. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 It is a schematic diagram of the three-dimensional structure of the present invention;

[0018] Figure 2 This is a structural schematic diagram of the movable splint of the present invention when it is lowered;

[0019] Figure 3 for Figure 2 A local enlarged structural diagram of point A;

[0020] Figure 4 This is a schematic diagram of the internal structure of the storage tank of the present invention;

[0021] Figure 5 for Figure 4 A schematic diagram of the partially enlarged structure at point B;

[0022] Figure 6 This is a schematic diagram of the internal structure of the installation slot of the present invention;

[0023] Figure 7 This is a schematic diagram of the planar structure of the support assembly of the present invention;

[0024] Figure 8 It is a schematic diagram of the positional relationship between the fixed plate and the movable plate of the present invention.

[0025] In the figure: 1, hanging frame; 2, suspension mechanism; 21, fixed plate; 211, limiting groove; 212, threaded sleeve; 22, fixed splint; 23, movable plate; 231, limiting column; 232, connecting block; 24, movable splint; 241, connecting seat; 25, storage slot; 26, mounting slot; 27, pulley; 28, adjusting rod; 3, support assembly; 31, lower support rod; 311, fixed seat; 312, fixed rod; 313, fixed Fixed slot; 314, fixing bolt; 32, upper support rod; 321, support plate; 322, sliding seat; 33, connecting rod; 4, driving assembly; 41, motor seat; 42, driving motor; 43, screw; 44, driving block; 441, stop block; 442, supporting spring; 45, push rod; 5, locking assembly; 51, locking plate; 52, locking plate; 53, pressure spring; 54, driving screw; 55, push plate; 56, wedge block. DETAILED DESCRIPTION

[0026] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0027] Embodiment 1;

[0028] See also Figures 1-8 A high-altitude suspended construction equipment includes a hanging frame 1, and a set of hanging mechanisms 2, a driving assembly 4 and a locking assembly 5 are respectively provided at both ends of the hanging frame 1. The hanging mechanism 2 includes a fixed plate 21, a movable plate 23 and a supporting assembly 3. The side of the fixed plate 21 is connected to a fixed splint 22, and the side of the movable plate 23 is connected to a movable splint 24. The movable plate 23 is installed on the fixed plate 21, and the movable plate 23 can move horizontally on the fixed plate 21. A number of pulleys 27 are rotatably installed on the fixed splint 22 and the movable splint 24. The fixed splint 22 and the movable splint 24 can be clamped on the purlin and make the pulley 27 contact the top of the purlin. The supporting assembly 3 includes a lower support The support rod 31 and the upper support rod 32, the upper and lower ends of the lower support rod 31 are respectively connected to the upper support rod 32 and the hanging frame 1, the upper end of the upper support rod 32 is connected to the bottom of the fixed plate 21, the upper support rod 32 can rotate on the lower support rod 31, so that the suspension mechanism 2 is separated from the purlin, and the driving assembly 4 includes a driving block 44 and a push rod 45, the two ends of the push rod 45 are respectively connected to the driving block 44 and the outer side of the movable splint 24, the driving block 44 can drive the push rod 45 to move in the vertical direction, and the push rod 45 can drive the movable splint 24 to rotate when it moves. Locking assemblies 5 are installed on both the fixed splint 22 and the movable splint 24, and the locking assembly 5 can lock the pulley 27.

[0029] When in use, first, the driving block 44 of the driving assembly 4 drives the push rod 45 to move downward to the maximum stroke. When the push rod 45 moves downward, the movable splint 24 is pulled downward to rotate, so that the fixed splint 22 can be installed on the purlin from the side of the purlin. In this process, the suspension mechanisms 2 at both ends of the hanging frame 1 are carried out synchronously, and when the equipment is initially installed, the upper support rods 32 and the lower support rods 31 at both ends of the hanging frame 1 are in a vertical state, and the locking assemblies 5 on the fixed splint 22 and the movable splint 24 lock the slider so that the pulley 27 cannot rotate, thereby facilitating the installation of the equipment. After the fixed splint 22 is installed on the purlin, the pulley 27 on the fixed splint 22 falls on the upper side of the purlin. At this time, the driving The movable block 44 synchronously drives the push rod 45 to move upward, and the upward push rod 45 pushes the movable splint 24 to rotate upward. When the driving block 44 moves upward to the maximum stroke, the movable splint 24 is pushed by the push rod 45 to be vertical to the movable plate 23, closing the other side of the purlin. At this time, the pulley 27 on the movable splint 24 also falls on the purlin, so that the hanging frame 1 is suspended under the purlin. Then the worker can enter the hanging frame 1 and install the roof inner panel on the steel beam. When the worker has installed the roof inner panel of the workstation, the worker can unlock the pulley 27 by releasing the locking assembly 5, so that the pulley 27 falling on the purlin can rotate, and then grab the purlin, thereby pushing the hanging frame 1 to the next workstation. After the hanging frame 1 moves to the next workstation, The worker then locks the pulley 27 through the locking assembly 5 and stops the hanging frame 1 at the work station, so as to carry out the next round of installation of the roof inner panel. When the hanging frame 1 moves to the intersection, the worker controls the driving assembly 4 on the suspension mechanism 2 near the intersection to work, so that the driving block 44 of the driving assembly 4 drives the push rod 45 to move downward, and the push rod 45 pulls the movable splint 24 to rotate downward. After the movable splint 24 completes the rotation, the worker lowers the upper support rod 32 on the suspension mechanism 2 in the direction away from the movable splint 24, so that the fixed splint 22 of the suspension mechanism 2 is detached from the purlin. At this time, the suspension mechanism 2 on the other end of the hanging frame 1 is still hung on the purlin, and it can still play an effective mounting role, so that the hanging frame 1 remains It is suspended horizontally on the purlin. After the suspension mechanism 2 near the intersection is laid down, the worker pushes the hanging frame 1 to continue moving through the purlin. After the laid-down suspension mechanism 2 passes the intersection, the worker lifts up the laid-down suspension mechanism 2 and installs it on a new section of purlin. Repeat the above steps to lay down the suspension mechanism 2 on the other section, and then continues to push the hanging frame 1 to move on the purlin. After the hanging frame 1 completely passes the intersection, the laid-down suspension mechanism 2 is installed back on the purlin to continue the installation of the roof inner panel. When facing purlins of different widths, the worker can control the movable plate 23 to move on the fixed plate 21, thereby changing the distance between the fixed splint 22 and the movable splint 24, so as to adapt to purlins of different widths.

[0030] The difference from the above embodiment is that a limiting groove 211 is provided on the fixed plate 21, and a threaded sleeve 212 is fixedly connected to the side of the bottom of the fixed plate 21 away from the movable splint 24, and the fixed splint 22 is fixedly installed on the upper part of the fixed plate 21 away from the movable splint 24. A limiting column 231 is fixedly installed on the movable plate 23, and the limiting column 231 is slidably installed in the limiting groove 211. A connecting block 232 is fixedly installed on the side of the bottom of the movable plate 23 away from the fixed splint 22, and the connecting block 232 corresponds to the threaded sleeve 212, and the movable splint 24 is rotatably installed on the side of the movable plate 23 away from the fixed splint 22.

[0031] When the movable plate 23 moves on the fixed plate 21 , the movable plate 23 drives the limiting column 231 to move a corresponding distance in the limiting groove 211 , and the movable plate 23 maintains connection with the fixed plate 21 through the cooperation between the limiting column 231 and the limiting groove 211 .

[0032] The difference from the above embodiment is that the sides of the fixed splint 22 and the movable splint 24 are provided with a receiving groove 25, the opening of the receiving groove 25 faces the pulley 27, and the upper sides of the fixed splint 22 and the movable splint 24 are provided with an installation groove 26, which is located above the pulley 27.

[0033] The difference from the above embodiment is that the suspension mechanism 2 also includes an adjusting rod 28, which is provided with a thread. The adjusting rod 28 is assembled in the threaded sleeve 212 through the thread. The end of the adjusting rod 28 away from the threaded sleeve 212 is rotatably installed in the connecting block 232. A wrench is fixed on the end of the adjusting rod 28 close to the threaded sleeve 212. The adjusting rod 28 can be rotated by the wrench, so that the adjusting rod 28 drives the movable plate 23 to move.

[0034] Among them, when it is necessary to adjust the distance between the fixed splint 22 and the movable splint 24, the adjusting rod 28 is rotated in the opposite direction by using a wrench. The rotating adjusting rod 28, in cooperation with the threaded sleeve 212, pushes the movable plate 23 through the connecting block 232 in the direction away from the fixed splint 22, thereby increasing the distance between the fixed splint 22 and the movable splint 24. When the adjusting rod 28 is rotated forward, the adjusting rod 28 will pull the movable plate 23 closer to the fixed splint 22, thereby reducing the distance between the fixed splint 22 and the movable splint 24.

[0035] The difference from the above embodiment is that two lower support rods 31 are fixedly connected to the two ends of the hanging frame 1, the lower end of the lower support rod 31 is fixedly connected to the hanging frame 1, and the upper end of the lower support rod 31 is fixedly installed with a fixing seat 311. A fixing rod 312 and a fixing groove 313 are respectively provided on the side of the fixing seat 311 close to the movable splint 24. One end of the fixing rod 312 is rotatably installed on the fixing seat 311, and the other end of the fixing rod 312 can be inserted into the fixing groove 313. A fixing bolt 314 is assembled on the fixing groove 313, and the fixing bolt 314 can fix the fixing rod 312 in the fixing groove 313.

[0036] The difference from the above embodiment is that the lower end of the upper support rod 32 is rotatably mounted on the fixed seat 311, and the lower end of the support rod is fixedly mounted with a support plate 321, the support plate 321 is located above the fixed seat 311, and a sliding seat 322 is slidably mounted on the support plate 321, and the upper end of the upper support rod 32 is fixedly connected to the bottom of the fixed plate 21.

[0037] When the cam 312 is in the upright position, the cam 312 is in the upright position and the support plate 321 is located above the fixing seat 311. The fixing rod 312 on the fixing seat 311 is pressed against the supporting plate 321 and fixed in the fixing groove 313 by tightening the fixing bolt 314, so that the upper support rod 32 cannot rotate. When the suspension mechanism 2 needs to be laid down, the fixing bolt 314 is tightened to release the fixing of the fixing rod 312 and push the fixing rod 312 out of the fixing groove 313. Then, the upper support rod 32 can be rotated downward in the direction away from the movable splint 24, and the suspension mechanism 2 can be laid down by the upper support rod 32. When the laid-down suspension mechanism 2 is lifted up, the fixing rod 312 is put into the fixing groove 313 again, and the fixing bolt 314 is tightened to fix the upper support rod 32.

[0038] The difference from the above embodiment is that the driving assembly 4 also includes a motor base 41 and a driving motor 42. The motor base 41 is fixedly mounted on the bottom of the movable plate 23, and the driving motor 42 is fixedly mounted in the motor base 41. The output shaft of the driving motor 42 passes through the lower side of the motor base 41, and the output shaft of the driving motor 42 is coaxially fixedly connected with a screw rod 43. The lower end of the screw rod 43 is rotatably mounted on the sliding base 322. The driving block 44 is assembled on the screw rod 43. A stopper 441 is slidably mounted on the driving block 44. A support spring 442 is fixedly connected between the stopper 441 and the driving block 44. The support spring 442 pushes the stopper 441 to contact the push rod 45. The lower end of the push rod 45 is rotatably connected to the driving block 44, and the upper end of the push rod 45 is rotatably connected to the connecting base 241.

[0039] When the movable splint 24 needs to be lowered, the driving motor 42 drives the screw rod 43 to rotate in the opposite direction, driving the driving block 44 on the screw rod 43 to drive the push rod 45 to move downward. During the downward movement, the push rod 45 will rotate toward the driving block 44 while pulling the movable splint 24, so that the angle between the driving block 44 and the push rod 45 gradually decreases, and pushes the stopper 441 to approach the driving block 44, so that the support spring 442 is further compressed. When the driving block 44 moves down to the maximum stroke, the driving motor 42 stops working. At this time, the push rod 45 pushes the stopper 441 to contact with the On the driving block 44, when the movable splint 24 needs to be installed on the purlin, the driving motor 42 drives the screw rod 43 to rotate forward, driving the driving block 44 on the screw rod 43 to drive the push rod 45 to move upward. During the upward movement, the push rod 45 pushes the movable splint 24 while the compressed support spring 442 pushes the stop block 441 away from the driving block 44, and the auxiliary push rod 45 rotates in the direction away from the driving block 44. As the driving block 44 moves upward, the angle between the push rod 45 and the driving block 44 gradually increases. When the driving block 44 moves up to the maximum stroke, the driving motor 42 stops working.

[0040] The difference from the above embodiment is that the locking assembly 5 includes a locking plate 51, a locking piece 52 and a push plate 55. The locking plate 51 is fixedly connected to the locking piece 52 on the lower side, and the locking plate 51 is fixedly connected to the guide rod on the upper side. The guide rod on the locking plate 51 slides through the mounting slot 26, and a pressure spring 53 is sleeved on the guide rod of the locking plate 51. The two ends of the pressure spring 53 respectively abut between the top of the mounting slot 26 and the upper side of the locking plate 51

[0041] When the pulley 27 needs to be locked, the driving screw 54 is rotated forward by turning the knob to pull the push plate 55 back into the receiving groove 25, so that the wedge 56 is disengaged from the locking plate 51.

[0042] Embodiment 2;

[0043] The difference from the above embodiment is that a plurality of connecting rods 33 are fixedly connected between the two lower supporting rods 31 and the two upper supporting rods 32 on the same end of the hanging frame 1 to form a ladder for people to climb.

[0044] The worker enters the hanging frame 1 through a ladder formed by the upper support rod 32 and the lower support rod 31 .

[0045] Working principle: When in use, first drive motor 42 drives screw rod 43 to rotate in the opposite direction, drives driving block 44 on screw rod 43 to drive push rod 45 to move downward, and in the process of moving downward, push rod 45 will rotate toward driving block 44 while pulling movable splint 24 to rotate downward, so that the angle between driving block 44 and push rod 45 gradually decreases, and pushes stopper 441 to move closer to driving block 44, so that support spring 442 is further compressed. When driving block 44 moves down to the maximum stroke, drive motor 42 stops working, and at this time, push rod 45 is rotated toward driving block 44. The rod 45 pushes the stopper 441 to contact the driving block 44, so that the fixing splint 22 can be installed on the purlin from the side of the purlin. This process is carried out synchronously by the suspension mechanisms 2 at both ends of the hanging frame 1. Initially, the upper support rod 32 and the lower support rod 31 are in a vertical state, the support plate 321 under the upper support rod 32 is located above the fixing seat 311, and the fixing rod 312 on the fixing seat 311 is pressed above the support plate 321. The fixing bolt 314 is tightened to fix the fixing rod 312 in the fixing groove 313, so that the upper support rod 32 cannot rotate.

[0046] The locking plate 51 is pushed downward by the compressed pressure spring 53, and the locking piece 52 is inserted between the pulleys 27, thereby locking the pulleys 27 and preventing them from rotating, thereby facilitating the installation of the equipment. After the fixed splint 22 is installed on the purlin, the pulley 27 on the fixed splint 22 falls on the upper side of the purlin. At this time, the driving motors 42 at both ends of the hanging frame 1 drive the screw rod 43 to rotate forward, driving the driving block 44 on the screw rod 43 to drive the push rod 45 to move upward. When the rod 45 pushes the movable splint 24, the compressed support spring 442 pushes the stopper 441 away from the driving block 44, and the auxiliary push rod 45 rotates in the direction away from the driving block 44. As the driving block 44 moves upward, the angle between the push rod 45 and the driving block 44 gradually increases. When the driving block 44 moves up to the maximum stroke, the driving motor 42 stops working. At this time, the movable splint 24 is pushed by the push rod 45 to be perpendicular to the movable plate 23, closing the other side of the purlin, and the pulley 27 on the movable splint 24 also falls on the purlin, so that the hanging frame 1 is suspended under the purlin.

[0047] Then the worker can enter the hanging frame 1 and install the roof inner panel on the steel beam. When the worker has installed the roof inner panel of this station, the worker can reversely rotate the driving screw 54 by the knob so that the driving screw 54 pushes the push plate 55 out of the receiving groove 25, so that the wedge 56 extends from the receiving groove 25 and is inserted into the bottom of the locking plate 51, so that the locking plate 51 moves up along the inclined surface of the wedge 56, so that it is lifted by the wedge 56, so that the locking piece 52 is disengaged from the pulley 27, and the mobility of the pulley 27 is restored, so that it can rotate on the purlin and compress the pressure spring 53, and then grab the purlin to push the hanging frame 1 to the next station. After the hanging frame 1 moves to the next station, the worker uses the locking group Part 5 locks the pulley 27 and stops the hanging frame 1 at the work station, so as to carry out the installation of the next round of roof inner panels. When the hanging frame 1 moves to the intersection, the worker controls the driving assembly 4 on the suspension mechanism 2 near the intersection to work, so that the driving block 44 of the driving assembly 4 drives the push rod 45 to move downward, and the push rod 45 pulls the movable splint 24 to rotate downward. After the movable splint 24 completes the rotation, the worker tightens the fixing bolt 314 to release the fixation of the fixing rod 312, and pushes the fixing rod 312 out of the fixing slot 313. Then, the upper support rod 32 can be rotated downward in the direction away from the movable splint 24, and the suspension mechanism 2 is lowered by the upper support rod 32, so that the suspension mechanism 2 is The fixing splint 22 is detached from the purlin. At this time, the suspension mechanism 2 on the other end of the hanging frame 1 is still hung on the purlin, and it can still play an effective mounting role, so that the hanging frame 1 remains horizontally suspended on the purlin. After the suspension mechanism 2 near the intersection is knocked down, the worker pushes the hanging frame 1 to continue moving through the purlin. After the knocked down suspension mechanism 2 passes the intersection, the worker lifts up the knocked down suspension mechanism 2, puts the fixing rod 312 into the fixing groove 313, tightens the fixing bolt 314, fixes the upper support rod 32, and installs it on the new section of purlin. Repeat the above steps to knock down the suspension mechanism 2 on the other section, and then continue to push the hanging frame 1 to move on the purlin. After the frame 1 has completely passed the intersection, the laid-down suspension mechanism 2 is installed back on the purlin, and the installation of the roof inner panel is continued. When facing purlins of different widths, the adjusting rod 28 is rotated in the opposite direction by a wrench. The rotating adjusting rod 28, in cooperation with the threaded sleeve 212, pushes the movable plate 23 through the connecting block 232 in the direction away from the fixed splint 22, thereby increasing the distance between the fixed splint 22 and the movable splint 24. When the adjusting rod 28 is rotated forward, the adjusting rod 28 will pull the movable plate 23 toward the fixed splint 22, thereby reducing the distance between the fixed splint 22 and the movable splint 24, thereby adapting to purlins of different widths and increasing the applicability of the equipment.

[0048] While embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions, and variations may be made to these embodiments without departing from the principles and spirit of the invention, and that the scope of the invention is defined by the appended claims and their equivalents.

Claims

1. A high-altitude suspended construction equipment, comprising a hanging frame, characterized in that: The axle up and down groove at two ends embeds respectively in two guide rails up and down of being made up of the groove on the attachment piece, and the tooth on the attachment piece is meshed with tooth on upper sprocket wheel, the lower sprocket. A limiting groove is provided on the fixed plate, a threaded sleeve is fixedly connected to the side of the bottom of the fixed plate away from the movable splint, the fixed splint is fixedly installed on the side of the upper part of the fixed plate away from the movable splint, a limiting column is fixedly installed on the movable plate, the limiting column is slidably installed in the limiting groove, a connecting block is fixedly installed on the side of the bottom of the movable plate away from the fixed splint, the connecting block corresponds to the threaded sleeve, and the movable splint is rotatably installed on the side of the movable plate away from the fixed splint; The sides of the fixed splint and the movable splint are both provided with a receiving groove, the opening of the receiving groove faces the pulley, and the upper sides of the fixed splint and the movable splint are both provided with an installation groove, which is located above the pulley; The locking assembly includes a locking plate, a locking piece and a push plate, the lower side of the locking plate is fixedly connected to the locking plate, the upper side of the locking plate is fixedly connected to the guide rod, the guide rod on the locking plate slides through the mounting slot, and a pressure spring is sleeved on the guide rod of the locking plate, and the two ends of the pressure spring respectively contact between the top of the mounting slot and the upper side of the locking plate, the push plate is slidably installed in the storage slot, and the push plate is fixedly connected to a wedge on one side of the push plate toward the locking plate. The wedge is located at the bottom of the locking plate to lift the locking plate, and the other side of the push plate is rotatably connected to a driving screw, which is engaged with the storage slot through a thread, and one end of the driving screw extends out of the storage slot, and a knob is fixedly installed on the protruding end of the driving screw.

2. A high-altitude suspended construction equipment according to claim 1, characterized in that: The suspension mechanism also includes an adjusting rod, which is provided with a thread. The adjusting rod is assembled in the threaded sleeve through the thread. The end of the adjusting rod away from the threaded sleeve is rotatably installed in the connecting block. A wrench is fixed on the end of the adjusting rod close to the threaded sleeve. The adjusting rod is rotated by the wrench to drive the movable plate to move.

3. A high-altitude suspended construction equipment according to claim 2, characterized in that: Two lower support rods are fixedly connected to the two ends of the hanging frame, the lower ends of the lower support rods are fixedly connected to the hanging frame, and the upper ends of the lower support rods are fixedly installed with a fixing seat. A fixing rod and a fixing groove are respectively provided on the side of the fixing seat close to the movable splint. One end of the fixing rod is rotatably installed on the fixing seat, and the other end of the fixing rod is inserted into the fixing groove. The fixing groove is equipped with a fixing bolt, which fixes the fixing rod in the fixing groove.

4. A high-altitude suspended construction equipment according to claim 3, characterized in that: The lower end of the upper support rod is rotatably mounted on the fixed seat, the lower end of the support rod is fixedly mounted with a support plate, the support plate is located above the fixed seat, a sliding seat is slidably mounted on the support plate, and the upper end of the upper support rod is fixedly connected to the bottom of the fixed plate.

5. A high-altitude suspended construction equipment according to claim 4, characterized in that: The driving assembly also includes a motor base and a driving motor. The motor base is fixedly mounted on the bottom of the movable plate, and the driving motor is fixedly mounted in the motor base. The output shaft of the driving motor passes through the lower side of the motor base, and a screw rod is coaxially fixedly connected to the output shaft of the driving motor. The lower end of the screw rod is rotatably mounted on the sliding base, and the driving block is assembled on the screw rod. A stop block is slidably mounted on the driving block. A support spring is fixedly connected between the stop block and the driving block. The support spring pushes the stop block to contact the push rod. The lower end of the push rod is rotatably connected to the driving block, and the upper end of the push rod is rotatably connected to the connecting base.

6. A high-altitude suspended construction equipment according to claim 1, characterized in that: A plurality of connecting rods are fixedly connected between the two lower supporting rods and the two upper supporting rods on the same end of the hanging frame to form a ladder for people to climb.

Citation Information

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