CN113550561A - Auxiliary device is built to scaffold frame convenient to construction - Google Patents

Auxiliary device is built to scaffold frame convenient to construction Download PDF

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Publication number
CN113550561A
CN113550561A CN202110910531.4A CN202110910531A CN113550561A CN 113550561 A CN113550561 A CN 113550561A CN 202110910531 A CN202110910531 A CN 202110910531A CN 113550561 A CN113550561 A CN 113550561A
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CN
China
Prior art keywords
fixed
auxiliary device
scaffold
support frame
device convenient
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Granted
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CN202110910531.4A
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Chinese (zh)
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CN113550561B (en
Inventor
乔彬彬
杨艳权
黄研
陈刚
卢正方
龚雷
杨明锐
桂元霞
韩洋
李海
余爱敏
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China Construction Third Bureau Group Co Ltd
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China Construction Third Bureau Construction Engineering Co Ltd
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Application filed by China Construction Third Bureau Construction Engineering Co Ltd filed Critical China Construction Third Bureau Construction Engineering Co Ltd
Priority to CN202110910531.4A priority Critical patent/CN113550561B/en
Publication of CN113550561A publication Critical patent/CN113550561A/en
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Publication of CN113550561B publication Critical patent/CN113550561B/en
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    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04GSCAFFOLDING; FORMS; SHUTTERING; BUILDING IMPLEMENTS OR AIDS, OR THEIR USE; HANDLING BUILDING MATERIALS ON THE SITE; REPAIRING, BREAKING-UP OR OTHER WORK ON EXISTING BUILDINGS
    • E04G5/00Component parts or accessories for scaffolds
    • E04G5/007Devices and methods for erecting scaffolds, e.g. automatic scaffold erectors

Abstract

The invention provides a scaffold building auxiliary device convenient for construction, which comprises two frames, wherein auxiliary building mechanisms are arranged at the top ends of the two frames, and an anti-falling mechanism is arranged between the two auxiliary building mechanisms; the auxiliary building mechanism comprises a cylinder fixed on the upper surface of the frame, a support frame fixed on the upper surface of a piston rod of the cylinder, a cross rod leveling assembly arranged in the support frame, and rotary conveying assemblies arranged on two sides of the cross rod leveling assembly; the cross bar leveling component comprises an arc-shaped sliding rail fixed on the inner wall of one end of the support frame, a sliding block connected with the upper surface of the arc-shaped sliding rail in a sliding manner, and a cross bar supporting seat fixed on the upper surface of the sliding block; the rotary conveying assembly comprises power elements arranged on two sides of the arc-shaped sliding rail and a rotary supporting strip fixed at an execution end of the power elements. The scaffold cross rod adjusting device can assist workers in adjusting the scaffold cross rod to be in a horizontal state, and the cross rod can reach the installation position without being moved by the workers, so that the subsequent installation of the workers is facilitated.

Description

Auxiliary device is built to scaffold frame convenient to construction
Technical Field
The invention mainly relates to the technical field of building construction equipment, in particular to a scaffold building auxiliary device convenient for construction.
Background
Along with the increasing speed of urban construction, buildings also appear like spring bamboo shoots after rain, so scaffolds need to be built on each construction site, and the smooth construction of each project is ensured.
According to the portable construction scaffold erecting auxiliary device provided by the patent document with the application number of CN201910726796.1, the auxiliary device comprises two half cylinders which can be spliced into a complete cylinder, a handle is arranged on the outer side wall of one of the half cylinders, a connecting plate is connected on the outer circumferential wall of each half cylinder, a bearing block is connected on the lower end face of each connecting plate, a semicircular groove is arranged on the upper end face of each bearing block, placing blocks are arranged on the side walls of the half cylinders, a groove is arranged in one of the placing blocks, an air cylinder is arranged in the groove, the output end of the air cylinder is connected with the other placing block, a storage battery is arranged in the handle, when the portable construction scaffold erecting auxiliary device is used, the output end of the control cylinder is shortened, the two placing blocks are attached, the two half cylinders are clamped on a vertical steel pipe, one end of the horizontal steel pipe is placed in the semicircular groove, and the outer wall of the horizontal steel pipe is contacted with the outer wall of the vertical steel pipe, through using this device, can place the steel pipe and fasten again behind the fixed position, improve the construction security.
However, the auxiliary device for scaffold building still has defects, for example, although the auxiliary device can place the steel pipe at a fixed position and then fasten the steel pipe, the construction safety is improved, the traditional auxiliary device is difficult to assist workers in righting the cross bar of the scaffold, and therefore the scaffold building effect is influenced.
Disclosure of Invention
The invention mainly provides a scaffold building auxiliary device convenient for construction, which is used for solving the technical problems in the background technology.
The technical scheme adopted by the invention for solving the technical problems is as follows:
a scaffold building auxiliary device convenient for construction comprises two frames, wherein auxiliary building mechanisms are arranged at the top ends of the two frames, and an anti-falling mechanism is arranged between the two auxiliary building mechanisms;
the auxiliary building mechanism comprises an air cylinder fixed on the upper surface of the frame, a support frame fixed on the upper surface of a piston rod of the air cylinder, a cross rod leveling assembly arranged in the support frame, and rotary conveying assemblies arranged on two sides of the cross rod leveling assembly and positioned in the support frame;
the cross bar leveling component comprises an arc-shaped sliding rail fixed on the inner wall of one end of the support frame, a sliding block connected with the upper surface of the arc-shaped sliding rail in a sliding manner, and a cross bar supporting seat fixed on the upper surface of the sliding block;
the rotary conveying assembly comprises power elements arranged on two sides of the arc-shaped sliding rail, a rotary supporting bar fixed at an execution end of the power elements and a plurality of first magnetic suction fixing seats fixed on the upper surface of the rotary supporting bar.
Furthermore, the upper surface of horizontal pole supporting seat is fixed with second magnetism and inhales the fixing base, one side fixed surface of horizontal pole supporting seat has the electronic level appearance, because the fixing base is inhaled to second magnetism on the horizontal pole supporting seat adsorbs the scaffold frame horizontal pole to make the workman can judge whether the scaffold frame horizontal pole is in the horizontality.
Further, supplementary mechanism of buildding still include with the slope alarm component that the gyration conveying subassembly is connected, slope alarm component including being fixed in on the frame casing, and through the wire with the PLC controller that the electronic level is connected, with the PLC controller is connected, and is fixed in horizontal pole supporting seat side surface's inclination sensor, and with the bee calling organ that the PLC controller is connected, bee calling organ is fixed in a side surface of horizontal pole supporting seat for PLC controller control bee calling organ in time reports to the police, and reaches same effect through inclination sensor.
Furthermore, the rotary conveying assembly further comprises a plurality of third magnetic suction fixing seats which are fixed on the upper surface of the support frame and are arranged at equal intervals, so that the support frame can temporarily fix the cross rod of the scaffold through the third magnetic suction fixing seats on the support frame.
Furthermore, the first magnetic attraction fixing seat, the second magnetic attraction fixing seat and the third magnetic attraction fixing seat are embedded with electromagnets on the shell, so that the first magnetic attraction fixing seat, the second magnetic attraction fixing seat and the third magnetic attraction fixing seat can adsorb and fix the cross rod of the scaffold through the electromagnets on the first magnetic attraction fixing seat, the second magnetic attraction fixing seat and the third magnetic attraction fixing seat.
Further, the power component is including locating arc slide rail both sides, and be fixed in the inside baffle of support frame, through the rotation axis with the baffle rotates the connecting rod of connecting, the one end that the rotation axis was kept away from to the connecting rod through the pivot with the slewing support bar is connected, the one end that the rotation axis runs through the baffle is connected with double-end motor through the shaft coupling to the scaffold frame horizontal pole that the drive slewing support bar upper surface bore carries out the translation on the support frame top.
Furthermore, the anti-falling mechanism comprises two inserting buckles fixed on one side surface of the support frames close to each other, an L-shaped inserting plate inserted with the inserting buckles, a winding roller connected with the L-shaped inserting plate in a rotating mode through a rotating shaft, and an anti-falling net fixed between the two winding rollers, so that the anti-falling net can be protected sufficiently for workers through the anti-falling net, and the anti-falling net can be quickly detached through the inserting and pulling between the L-shaped inserting plate and the inserting buckles.
Furthermore, prevent weighing down the mechanism still include with the handle subassembly that the wind-up roll is connected, the handle subassembly include with the wind-up roll coaxial arrangement, and run through the first dwang of L shape plugboard, and with the one end looks articulated second dwang that L shape plugboard was kept away from to first dwang, through the articulated between second dwang and the first dwang to when preventing not rotating the wind-up roll, the second dwang is too stretched out with first dwang.
Furthermore, a limiting block for inserting the winding roller is fixed on the surface of one side of the frame, so that the limiting block and the winding roller are inserted, the movement of the bottom of the winding roller, which is interfered by external force, is reduced, and the stability of the winding roller during working is improved.
Furthermore, one side fixed surface of support frame has the horizontal pole fixed band to it is closed annular to close through horizontal pole fixed band ending, so that the supplementary gyration transport assembly of scaffold frame horizontal pole fixes the scaffold frame horizontal pole.
Compared with the prior art, the invention has the beneficial effects that:
firstly, the scaffold horizontal rod adjusting device can assist workers in adjusting the scaffold horizontal rod to be in a horizontal state so as to facilitate subsequent installation of the workers, and specifically comprises the following steps: the cross rod is fixed through the cross rod supporting seat, and the cross rod supporting seat is connected with the arc-shaped sliding rail inside the supporting frame in a sliding mode, so that the cross rod supporting seat slides on the upper surface of the arc-shaped sliding rail through the sliding block, and the cross rod supporting seat and the cross rod on the cross rod supporting seat are adjusted to be in a horizontal state.
Secondly, the invention does not need to be moved by workers, so that the cross rod can quickly reach the mounting position, thereby freeing the hands of the workers, and specifically comprises the following steps: because the inside of support frame provides the support for all the other horizontal poles that do not install through the slewing support strip, and the slewing support strip carries out the upper and lower gyration through the power component in the support frame to after the messenger installed preceding horizontal pole, promote the horizontal pole through slewing support strip's gyration, thereby drive the position that the horizontal pole reaches preceding horizontal pole, with the top that drives the horizontal pole and reach the horizontal pole supporting seat fast, so that the workman installs the horizontal pole.
The present invention will be explained in detail below with reference to the drawings and specific embodiments.
Drawings
FIG. 1 is a schematic view of the overall structure of the present invention;
FIG. 2 is an isometric view of the present invention;
FIG. 3 is a schematic structural view of the auxiliary building mechanism of the present invention;
FIG. 4 is a front view of the present invention;
FIG. 5 is an exploded view of the present invention;
FIG. 6 is a top view of the present invention;
FIG. 7 is a right side view of the present invention;
fig. 8 is an enlarged view of the structure of region a in fig. 5.
In the figure: 10. a frame; 20. an auxiliary building mechanism; 21. a cross bar leveling assembly; 211. an arc-shaped slide rail; 212. a slider; 213. a cross bar supporting seat; 2131. an electronic level; 2132. a second magnetic fixed seat; 22. a cylinder; 23. a support frame; 231. a cross bar fixing band; 24. a rotary conveying assembly; 241. a power element; 2411. a partition plate; 2412. a rotating shaft; 2413. a connecting rod; 242. a rotating support bar; 243. a first magnetic fixed seat; 244. a third magnetic suction fixing seat; 245. an electromagnet; 30. an anti-falling mechanism; 31. inserting and buckling; 32. an L-shaped plugboard; 33. a wind-up roll; 34. a fall prevention net; 35. a grip assembly; 351. a first rotating lever; 352. a second rotating lever; 36. and a limiting block.
Detailed Description
In order to facilitate an understanding of the invention, the invention will now be described more fully hereinafter with reference to the accompanying drawings, in which several embodiments of the invention are shown, but which may be embodied in different forms and not limited to the embodiments described herein, but which are provided so as to provide a more thorough and complete disclosure of the invention.
It will be understood that when an element is referred to as being "secured to" another element, it can be directly on the other element or intervening elements may be present, and when an element is referred to as being "connected" to another element, it can be directly connected to the other element or intervening elements may also be present, as the terms "vertical", "horizontal", "left", "right" and the like are used herein for descriptive purposes only.
Unless defined otherwise, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention belongs, and the knowledge of the terms used herein in the specification of the present invention is for the purpose of describing particular embodiments and is not intended to limit the present invention, and the term "and/or" as used herein includes any and all combinations of one or more of the associated listed items.
In the embodiment, referring to fig. 1-8, a scaffold building auxiliary device convenient for construction comprises two frames 10, wherein auxiliary building mechanisms 20 are respectively arranged at the top ends of the two frames 10, and an anti-falling mechanism 30 is arranged between the two auxiliary building mechanisms 20;
the auxiliary building mechanism 20 comprises an air cylinder 22 fixed on the upper surface of the frame 10, a support frame 23 fixed on the upper surface of a piston rod of the air cylinder 22, a cross rod leveling component 21 arranged in the support frame 23, and rotary conveying components 24 arranged on two sides of the cross rod leveling component 21 and positioned in the support frame 23;
the cross bar leveling component 21 comprises an arc-shaped slide rail 211 fixed on the inner wall of one end of the support frame 23, a slide block 212 connected with the upper surface of the arc-shaped slide rail 211 in a sliding manner, and a cross bar supporting seat 213 fixed on the upper surface of the slide block 212;
the rotary conveying assembly 24 includes power elements 241 disposed on two sides of the arc-shaped slide rail 211, a rotary support bar 242 fixed to an execution end of the power elements 241, and a plurality of first magnetic suction fixing seats 243 fixed to an upper surface of the rotary support bar 242;
it should be noted that, in this embodiment, the scaffold cross bar is placed on the top end of the supporting frame 23, and then the supporting frame 23 is driven by the air cylinder 22 to ascend until the cross bar reaches a designated height, because the cross bar to be installed is fixed by being attracted by a fixing block on the cross bar supporting seat 213, which has the same structure as the first magnetic attraction fixing seat 243, and the cross bar supporting seat 213 is slidably connected to the arc-shaped sliding rail 211 inside the supporting frame 23, the cross bar supporting seat 213 slides on the upper surface of the arc-shaped sliding rail 211 through the sliding block 212, so as to adjust the cross bar supporting seat 213 and the cross bar thereon to a horizontal state, thereby facilitating the subsequent installation of workers;
further, because the inside of the supporting frame 23 provides support for the rest of the non-installed cross bars through the rotation support bar 242, and the rotation support bar 242 rotates up and down through the power element 241 in the supporting frame 23, so that after the previous cross bar is installed, the cross bar is pushed through the rotation of the rotation support bar 242, and the next cross bar is driven to reach the position of the previous cross bar, so as to quickly drive the cross bar to reach the top end of the cross bar supporting base 213, and thus, the worker can install the cross bar conveniently.
Specifically, please refer to fig. 2 and 5 again, a second magnetic attraction fixing seat 2132 is fixed on the upper surface of the crossbar supporting seat 213, an electronic level 2131 is fixed on one side surface of the crossbar supporting seat 213, the auxiliary building mechanism 20 further includes an inclination alarm component 25 connected to the rotary conveying component 24, the inclination alarm component 25 includes a PLC controller 253 fixed on the housing of the frame 10 and connected to the electronic level 2131 through a wire, an inclination sensor 251 connected to the PLC controller 253 and fixed on one side surface of the crossbar supporting seat 213, and a buzzer 252 connected to the PLC controller 253, the buzzer 252 is fixed on one side surface of the crossbar supporting seat 213, the rotary conveying component 24 further includes a plurality of third magnetic attraction fixing seats 244 fixed on the upper surface of the supporting frame 23 and equidistantly arranged, the housing of the first magnetic fixed seat 243, the second magnetic fixed seat 2132 and the third magnetic fixed seat 244 are embedded with an electromagnet 245;
it should be noted that, in this embodiment, when the crossbar supporting seat 213 slides on the upper surface of the arc-shaped sliding rail 211, a worker can determine whether the crossbar supporting seat 213 is in the horizontal state through the electronic level 2131 thereon, and since the second magnetic fixing seat 2132 on the crossbar supporting seat 213 adsorbs the scaffold crossbar, the worker can determine whether the scaffold crossbar is in the horizontal state;
further, when the PLC controller 253 connected with the electronic level 2131 receives the information that the inclination of the cross bar supporting seat 213 exceeds the threshold value, the PLC controller 253 controls the buzzer 252 to give an alarm in time, and the same effect is achieved by using the inclination angle sensor 251 with the model number of AR-SS-QJ 0202;
further, the support frame 23 temporarily fixes the cross bar of the scaffold through the third magnetic fixing seat 244 thereon;
furthermore, the first magnetic fixing seat 243, the second magnetic fixing seat 2132 and the third magnetic fixing seat 244 are used for fixing the cross bar of the scaffold by the electromagnet 245 thereon.
Specifically, please refer to fig. 4 and 5 again, the power element 241 includes partition plates 2411 disposed at two sides of the arc-shaped sliding rail 211 and fixed inside the supporting frame 23, and a connecting rod 2413 rotatably connected to the partition plates 2411 via a rotating shaft 2412, one end of the connecting rod 2413 far from the rotating shaft 2412 is connected to the rotating support bar 242 via a rotating shaft, one end of the rotating shaft 2412 penetrating through the partition plate 2411 is connected to the double-head motor 2415 via a coupling, the falling-prevention mechanism 30 includes two inserting buckles 31 fixed on one side surfaces of the two supporting frames 23 close to each other, an L-shaped inserting plate 32 inserted into the inserting buckles 31, a winding roller 33 rotatably connected to the L-shaped inserting plate 32 via a rotating shaft, and a falling-prevention net 34 fixed between the two winding rollers 33, the falling-prevention mechanism 30 further includes a grip assembly 35 connected to the winding rollers 33, the handle assembly 35 comprises a first rotating rod 351 which is coaxially arranged with the winding roller 33 and penetrates through the L-shaped inserting plate 32, and a second rotating rod 352 which is hinged with one end of the first rotating rod 351 far away from the L-shaped inserting plate 32;
it should be noted that, in this embodiment, when the output shaft of the double-end motor 2415 drives the rotating shaft 2412 connected thereto to rotate, since the rotating shaft 2412 penetrates through one end of the connecting rod 2413, the rotating shaft 2412 drives the connecting rod 2413 to rotate, and when the connecting rod 2413 rotates, the rotating support bar 242 connected thereto is driven to rotate up and down, so as to drive the scaffold cross bar carried on the upper surface of the rotating support bar 242 to translate at the top end of the support frame 23;
furthermore, after a worker inserts the L-shaped plugboard 32 into the plugger 31 on the support frame 23, the winding rollers 33 are arranged at the bottom ends of the two L-shaped plugboards 32, and the falling-prevention net 34 is fixed between the two winding rollers 33, so that the falling-prevention net 34 can be quickly detached by providing sufficient protection for the worker through the falling-prevention net 34 and inserting and pulling the L-shaped plugboard 32 and the plugger 31;
further, when support frame 23 descends under the drive of cylinder 22, the workman drives second dwang 352 and rotates on first dwang 351 for second dwang 352 adjusts to the collinear state with first dwang 351, thereby promotes second dwang 352, so that first dwang 351 with the coaxial setting of wind-up roll 33 drives wind-up roll 33 and rotates, through the articulated between second dwang 352 and the first dwang 351, in order to prevent not rotating wind-up roll 33, second dwang 352 and first dwang 351 excessively stretch out.
Specifically, please refer to fig. 1 and 2 again, a limiting block 36 for inserting the wind-up roll 33 is fixed on one side surface of the frame 10, and a cross bar fixing strip 231 is fixed on one side surface of the supporting frame 23;
it should be noted that, in this embodiment, the limiting block 36 is inserted into the wind-up roller 33 to reduce the movement of the bottom of the wind-up roller 33, which is interfered by an external force, and improve the stability of the wind-up roller 33 during operation;
further, it is closed into a loop by rail securing straps 231 ending up to secure scaffolding rail to scaffolding rail assist slewing conveying assembly 24.
The specific operation mode of the invention is as follows:
when a worker uses the building auxiliary device to build a scaffold, the worker firstly puts a scaffold cross bar into the top end of the support frame 23, and then drives the support frame 23 to ascend through the air cylinder 22 until the cross bar reaches the designated height, because the cross bar to be installed is adsorbed and fixed through a fixing block which is arranged on the cross bar support base 213 and has the same structure with the first magnetic absorption fixing base 243, and the cross bar support base 213 is connected with the arc-shaped slide rail 211 in the support frame 23 in a sliding manner, the cross bar support base 213 slides on the upper surface of the arc-shaped slide rail 211 through the sliding block 212, so as to adjust the cross bar support base 213 and the cross bar thereon to be in a horizontal state, and facilitate the subsequent installation of the worker;
because the inside of the supporting frame 23 provides support for the rest of the non-installed cross bars through the rotation supporting bar 242, and the rotation supporting bar 242 rotates up and down through the power element 241 in the supporting frame 23, after the previous cross bar is installed, the cross bar is pushed through the rotation of the rotation supporting bar 242, so as to drive the next cross bar to reach the position of the previous cross bar, so as to quickly drive the cross bar to reach the top end of the cross bar supporting base 213, so that the worker can install the cross bar.
The invention is described above with reference to the accompanying drawings, it is obvious that the invention is not limited to the above-described embodiments, and it is within the scope of the invention to adopt such insubstantial modifications of the inventive method concept and solution, or to apply the inventive concept and solution directly to other applications without modification.

Claims (10)

1. The scaffold building auxiliary device convenient for construction is characterized by comprising two frames (10), wherein auxiliary building mechanisms (20) are arranged at the top ends of the two frames (10), and an anti-falling mechanism (30) is arranged between the two auxiliary building mechanisms (20);
the auxiliary building mechanism (20) comprises an air cylinder (22) fixed on the upper surface of the frame (10), a support frame (23) fixed on the upper surface of a piston rod of the air cylinder (22), a cross rod leveling component (21) arranged in the support frame (23), and rotary conveying components (24) arranged on two sides of the cross rod leveling component (21) and positioned in the support frame (23);
the cross bar leveling component (21) comprises an arc-shaped sliding rail (211) fixed on the inner wall of one end of the support frame (23), a sliding block (212) connected with the upper surface of the arc-shaped sliding rail (211) in a sliding manner, and a cross bar supporting seat (213) fixed on the upper surface of the sliding block (212);
the rotary conveying assembly (24) comprises power elements (241) arranged on two sides of the arc-shaped sliding rail (211), a rotary supporting strip (242) fixed at the execution end of the power elements (241), and a plurality of first magnetic suction fixing seats (243) fixed on the upper surface of the rotary supporting strip (242).
2. The scaffold building auxiliary device convenient for construction according to claim 1, wherein a second magnetic fixing seat (2132) is fixed on the upper surface of the crossbar support seat (213), and an electronic level (2131) is fixed on one side surface of the crossbar support seat (213).
3. The scaffold building auxiliary device convenient for construction according to claim 2, wherein the auxiliary building mechanism (20) further comprises an inclination alarm assembly (25) connected with the rotary conveying assembly (24), the inclination alarm assembly (25) comprises a PLC controller (253) fixed on the frame (10) shell and connected with the electronic level gauge (2131) through a lead, an inclination sensor (251) connected with the PLC controller (253) and fixed on one side surface of the crossbar supporting seat (213), and a buzzer (252) connected with the PLC controller (253), and the buzzer (252) is fixed on one side surface of the crossbar supporting seat (213).
4. The scaffold building auxiliary device convenient for construction according to claim 3, wherein the rotary conveying assembly (24) further comprises a plurality of third magnetic suction fixing seats (244) fixed on the upper surface of the support frame (23) and arranged at equal intervals.
5. The scaffold building auxiliary device convenient for construction according to claim 4, wherein electromagnets (245) are embedded in the housings of the first magnetic suction fixing seat (243), the second magnetic suction fixing seat (2132) and the third magnetic suction fixing seat (244).
6. The scaffold building auxiliary device convenient to construct of claim 1, wherein the power element (241) comprises partition boards (2411) arranged on two sides of the arc-shaped sliding rail (211) and fixed inside the supporting frame (23), and a connecting rod (2413) rotatably connected with the partition boards (2411) through a rotating shaft (2412), one end, far away from the rotating shaft (2412), of the connecting rod (2413) is connected with the rotary supporting bar (242) through a rotating shaft, and one end, penetrating through the partition boards (2411), of the rotating shaft (2412) is connected with a double-end motor (2415) through a coupler.
7. The scaffold building auxiliary device convenient for construction according to claim 1, wherein the anti-falling mechanism (30) comprises a plug buckle (31) fixed on one side surface of the two support frames (23) close to each other, an L-shaped plug board (32) plugged with the plug buckle (31), a winding roller (33) rotatably connected with the L-shaped plug board (32) through a rotating shaft, and an anti-falling net (34) fixed between the two winding rollers (33).
8. A scaffold building aid convenient for construction according to claim 7, characterized in that the fall arrest mechanism (30) further comprises a grip assembly (35) connected with the take-up roll (33), the grip assembly (35) comprises a first rotating rod (351) coaxially arranged with the take-up roll (33) and penetrating the L-shaped plugboard (32), and a second rotating rod (352) hinged with one end of the first rotating rod (351) far away from the L-shaped plugboard (32).
9. The scaffold building auxiliary device convenient for construction according to claim 8, wherein a limiting block (36) for the winding roller (33) to be inserted is fixed on one side surface of the frame (10).
10. A scaffold building auxiliary device convenient for construction according to claim 1, wherein a crossbar fixing band (231) is fixed to one side surface of the support frame (23).
CN202110910531.4A 2021-08-09 2021-08-09 Auxiliary device is built to scaffold frame convenient to construction Active CN113550561B (en)

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CN202110910531.4A CN113550561B (en) 2021-08-09 2021-08-09 Auxiliary device is built to scaffold frame convenient to construction

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Application Number Priority Date Filing Date Title
CN202110910531.4A CN113550561B (en) 2021-08-09 2021-08-09 Auxiliary device is built to scaffold frame convenient to construction

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CN113550561B CN113550561B (en) 2022-06-28

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Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104612400A (en) * 2014-12-30 2015-05-13 胡镔 Novel scaffold putting-up robot
CN107288329A (en) * 2017-06-30 2017-10-24 台山市东扩钢构有限公司 A kind of scaffold of levelling
KR101982334B1 (en) * 2018-12-14 2019-05-24 박재섭 Standing tent equipment for high altitude work
CN111561144A (en) * 2020-06-03 2020-08-21 杭州莉杜机械科技有限公司 Device convenient for building scaffold steel pipe
CN111734102A (en) * 2020-08-03 2020-10-02 烟台虹月电子商务有限公司 Support arrangement suitable for scaffold frame

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104612400A (en) * 2014-12-30 2015-05-13 胡镔 Novel scaffold putting-up robot
CN107288329A (en) * 2017-06-30 2017-10-24 台山市东扩钢构有限公司 A kind of scaffold of levelling
KR101982334B1 (en) * 2018-12-14 2019-05-24 박재섭 Standing tent equipment for high altitude work
CN111561144A (en) * 2020-06-03 2020-08-21 杭州莉杜机械科技有限公司 Device convenient for building scaffold steel pipe
CN111734102A (en) * 2020-08-03 2020-10-02 烟台虹月电子商务有限公司 Support arrangement suitable for scaffold frame

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