CN215055146U - Dysmorphism high altitude construction supporting platform - Google Patents

Dysmorphism high altitude construction supporting platform Download PDF

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Publication number
CN215055146U
CN215055146U CN202120725533.1U CN202120725533U CN215055146U CN 215055146 U CN215055146 U CN 215055146U CN 202120725533 U CN202120725533 U CN 202120725533U CN 215055146 U CN215055146 U CN 215055146U
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China
Prior art keywords
rods
supporting
positioning
upright
plates
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CN202120725533.1U
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Chinese (zh)
Inventor
耿旭冉
王利明
温福剑
黄惠敏
王旭光
任帅
刘子翱
芮希帆
梁哲
潘鸿磊
孟祥刚
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China Construction Second Engineering Bureau Co Ltd
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China Construction Second Engineering Bureau Co Ltd
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Priority to CN202120725533.1U priority Critical patent/CN215055146U/en
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Abstract

The utility model provides a dysmorphism high altitude operation supporting platform, its characterized in that with including bearing structure, the current protection railing has been replaced, carry out all-round encirclement to the region that this application top constructor used, the barrier propterty has been improved, in inserting the spout respectively through the slider with the baffle both ends, the connecting block slides in U type groove, in-process and supporting shoe contact when the slider removes and continue to move down, the supporting shoe of upper end receives the extrusion force, and to the spring extrusion, when the slider can not continue to move down, represent the connecting block and have removed to the bottom in U type groove, whole slider completely removed to the spout this moment, the elasticity effect of spring is passed through to the slider bottom and support it, the slider upper end is passed through the locating lever, the bolt is fixed a position with the backup pad, the installation of baffle has been realized.

Description

Dysmorphism high altitude construction supporting platform
Technical Field
The utility model relates to a construction technical field especially relates to a dysmorphism high altitude operation supporting platform.
Background
With the continuous development of social economy, the population is continuously increased and the living standard is improved, the number of buildings is continuously increased, apartment houses, commercial squares, garages and the like are continuously increased, when the buildings are subjected to building construction, the buildings are usually provided with the lighting roofs with the opposite-shaped structures for the sake of attractive appearance, and comprise a gallery lighting roof, an oval lighting roof and a circular lighting roof, when the lighting roof is subjected to steel structure construction, a tower crane in a field structure stage is hoisted, an operation platform is provided in the range of the lighting roof, the construction structure form and the actual construction characteristics are combined, the gallery lighting roof installation operation platform adopts a movable steel truss, the circular and oval lighting roofs are installed by adopting a steel wire rope soft platform, namely, a steel wire rope is erected on a turning beam of the lighting roof, a scaffold plate is laid by a steel wire net to serve as the operation platform, and a supporting platform is arranged on the operation platform to serve as a construction frame body, the construction of the daylighting roof by constructors is facilitated;
the circular and elliptical daylighting roofs both adopt steel wire rope soft platforms, namely, pipe fittings are pre-buried firstly, steel wire ropes penetrate through a structure through a sleeve, short-axis steel wire ropes and long-axis steel wire ropes are woven into nets in a vertically staggered mode, elastic ropes with certain elasticity are used for fixing the steel wire rope nets, the upper layer steel wire ropes and the lower layer steel wire ropes are guaranteed to be fixed into nets, the steel wire ropes are tensioned and fixed, the steel wire nets and templates are laid and fixed, and portal frames with different heights are erected according to the height of a keel of the daylighting roof;
in the prior art, the portal frame for the daylighting roof construction is mostly formed by welding steel pipes, and protective railings are welded at two ends of the top of the portal frame, so that the protective effect is achieved, after the framework and the steel structure of the daylighting roof are installed, the welding connection part needs to be polished by means of a power tool before fluorocarbon spraying, and the polishing residues are cleaned by using a steel wire brush tool, so that construction workers need to carry various tools, and the tools are stored to the top of the portal frame for convenient use and operation Damage, low protection performance and low safety coefficient;
and because the special-shaped structure on daylighting top, highly reduce to both sides by the centre gradually, need install the not portal frame of co-altitude to the construction of co-altitude on daylighting top and construct, however, present portal frame for the construction of daylighting top is the welding formation, in order to adapt to the construction of special-shaped structure, need not weld the portal frame of co-altitude according to the structure on daylighting top before the construction, not only the consumptive material increases the cost, and the new portal frame of welding formation is higher to the availability factor of special-shaped structure's building, can not be applicable to all construction projects completely.
Disclosure of Invention
According to the technical problem, the utility model provides a dysmorphism high altitude construction supporting platform which is characterized in that the supporting platform comprises a base structure, a connecting structure and a supporting structure, wherein the connecting structure is arranged at the top of the base structure, the number of the connecting structures is N, N is more than or equal to 2, and the supporting structure is arranged at the top of the connecting structure;
the base structure comprises four vertical rods A, floor sweeping rods, connecting plates A, positioning blocks and reinforcing rods, the number of the vertical rods A is four, the floor sweeping rods are arranged between two vertical rods A at the front ends, the floor sweeping rods are arranged between two vertical rods A at the rear ends, the connecting plates A are welded at the tops of the vertical rods A, the reinforcing rods are arranged at the bottoms of the connecting plates A and the tops of the floor sweeping rods, the positioning blocks are respectively arranged at four corners of the tops of the connecting plates A, and mounting holes are formed in the positioning blocks;
the connecting structure comprises four upright posts B, four connecting plates B and positioning pieces, the connecting plates B are welded at the tops of the upright posts B, reinforcing rods are installed at the bottoms of the connecting plates B, positioning blocks are installed at four corners of the tops of the connecting plates B respectively, and the positioning pieces are installed at the bottoms of the four upright posts B respectively;
the supporting structure comprises four upright rods C, supporting plates, protecting plates, baffles, sliding blocks, connecting blocks, supporting blocks, springs, positioning rods, bolts and balls, the number of the upright rods C is four, positioning pieces are mounted at the bottoms of the four upright rods C, the supporting plates are mounted at the tops of the four upright rods C, the protecting plates are mounted at two ends of the top of the supporting plates respectively, sliding grooves are formed in the front end and the rear end of each protecting plate respectively, each sliding groove is of a semicircular structure, a mounting groove is formed in the side wall of each sliding groove and is provided with the corresponding ball, the number of the balls is M, M is more than or equal to 2, the supporting blocks are mounted at the bottoms of the sliding grooves, the supporting blocks are of the semicircular structures and are in contact with the sliding grooves, the number of the supporting blocks is two, the springs are connected between the two supporting blocks, and U-shaped grooves are formed in the front ends and the rear ends of the side walls, which are close to each other, of the two protecting plates, the U-shaped groove is communicated with the sliding groove, a sliding block is connected in the sliding groove in a sliding mode and is in contact with the supporting block, a connecting block is installed on the side wall of the sliding block, the connecting block penetrates through the U-shaped groove and is provided with a baffle, positioning holes are formed in the upper ends of the sliding block and the protecting plate respectively, a positioning rod is arranged in each positioning hole, and a bolt is installed on each positioning rod;
a cross upright rod is arranged between the reinforcing rod and the upright rod A, a cross upright rod is arranged between the reinforcing rod and the upright rod B, and a cross upright rod is arranged between the reinforcing rod and the upright rod C;
the bottom of setting element has seted up the rectangular channel, the mounting hole has been seted up to the inside of setting element, the setting element passes through the rectangular channel and uses with the locating piece cooperation, install the bolt in the mounting hole of setting element and locating piece inside.
The utility model has the advantages that: the utility model adds the protection plate, the baffle, the slider, the connecting block, the supporting block, the spring, the positioning rod and the bolt, replaces the existing protection railing, surrounds the area used by constructors at the top of the application in all directions, improves the protection performance, the slider at the two ends of the baffle is respectively inserted into the sliding groove, the connecting block slides in the U-shaped groove, when the slider contacts with the supporting block in the moving process and moves downwards continuously, the supporting block at the upper end is extruded by the extrusion force and extrudes the spring, when the slider can not move downwards continuously, the connecting block is moved to the bottom of the U-shaped groove, at the moment, the whole slider moves into the sliding groove completely, the bottom of the slider supports the slider through the elastic force of the spring, the upper end of the slider is positioned with the supporting plate through the positioning rod and the bolt, the installation of the baffle is realized, the baffle is matched with the protection plates at the two sides for use, the supporting plate can be surrounded, the protective plate and the baffle plate can block tools with different sizes on the supporting plate, and can effectively protect constructors, so that the protective effect is good, the damage and injury caused by the sliding and falling of the tools and the constructors are avoided, the protective performance is improved, and the safety is improved;
the utility model discloses increased connection structure, through the quantity that increases connection structure between bearing structure and the base structure, promoted bearing structure's daylighting top construction that highly is applicable to special-shaped structure, use through the cooperation of setting element, bolt under, assemble this application according to the construction conditions, save material, reduce cost for this application is applicable to all construction items, has improved the availability factor of this application.
Drawings
FIG. 1 is a schematic view of the present invention installed on a soft platform;
fig. 2 is a front view of the present invention;
fig. 3 is a schematic view of the support structure of the present invention;
FIG. 4 is a schematic view of the positioning block mounted on the top of the connecting plate A of the present invention;
FIG. 5 is a top view of the baffle and guard of the present invention;
FIG. 6 is an enlarged view taken at A in FIG. 5;
FIG. 7 is a top view of the sliding chute of the present invention with balls mounted therein;
FIG. 8 is a cross-sectional view of the slider and chute arrangement of the present invention;
FIG. 9 is an enlarged view of FIG. 8 at B;
FIG. 10 is a schematic view of the side wall of the protection plate of the present invention having U-shaped grooves;
fig. 11 is a top view of the support block of the present invention.
As shown in the figure, 1-upright post A, 2-floor sweeping rod, 3-connecting plate A, 4-positioning block, 5-positioning piece, 6-bolt, 7-upright post B, 8-connecting plate B, 9-upright post C, 10-cross upright post, 11-supporting plate, 12-protective plate, 13-baffle, 14-reinforcing rod, 15-sliding block, 16-connecting block, 17-U-shaped groove, 19-supporting block, 20-spring, 21-sliding groove, 22-steel wire rope soft platform, 23-daylighting top, 24-steel wire rope, 25-positioning rod, 26-bolt and 27-ball.
Detailed Description
Example 1
The utility model provides a special-shaped high-altitude operation supporting platform, which is characterized by comprising a base structure, a connecting structure and a supporting structure, wherein the connecting structure is arranged at the top of the base structure, the number of the connecting structures is N, N is more than or equal to 2, and the supporting structure is arranged at the top of the connecting structure;
the base structure comprises upright posts A1, floor sweeping rods 2, connecting plates A3, positioning blocks 4 and reinforcing rods 14, the number of the upright posts A1 is four, the floor sweeping rods 2 are arranged between the two upright posts A1 at the front end, the floor sweeping rods 2 are arranged between the two upright posts A1 at the rear end, the connecting plates A3 are welded at the tops of the upright posts A1, the reinforcing rods 14 are arranged at the bottoms of the connecting plates A3 and the tops of the floor sweeping rods 2, the positioning blocks 4 are respectively arranged at four corners of the tops of the connecting plates A3, and mounting holes are formed in the positioning blocks 4;
the connecting structure comprises upright posts B7, connecting plates B8 and positioning pieces 5, the number of the upright posts B7 is four, the connecting plates B8 are welded at the top of the upright post B7, reinforcing rods 14 are installed at the bottoms of the connecting plates B8, positioning blocks 4 are respectively installed at four corners of the top of each connecting plate B8, and the positioning pieces 5 are respectively installed at the bottoms of the four upright posts B7;
the supporting structure comprises upright rods C9, supporting plates 11, protection plates 12, baffle plates 13, sliding blocks 15, connecting blocks 16, supporting blocks 19, springs 20, positioning rods 25, bolts 26 and balls 27, the number of the upright rods C9 is four, positioning pieces 5 are installed at the bottoms of four upright rods C9, the supporting plates 11 are installed at the tops of four upright rods C9, the protection plates 12 are installed at the two ends of the top of the supporting plates 11 respectively, sliding grooves 21 are formed in the front and rear ends of the protection plates 12 respectively, each sliding groove 21 is of a semicircular structure, an installation groove is formed in the side wall of each sliding groove 21 and provided with the balls 27, the number of the balls 27 is M, M is more than or equal to 2, the supporting blocks 19 are installed at the bottoms of the sliding grooves 21, the supporting blocks 19 are of the semicircular structures and are in contact with the sliding grooves 21, the number of the supporting blocks 19 is two, the springs 20 are connected between the two supporting blocks 19, U-shaped grooves 17 are formed in the front and rear ends of the side walls, which are close to the two protection plates 12, the U-shaped groove 17 is communicated with the sliding groove 21, the sliding block 15 is connected in the sliding groove 21 in a sliding mode, the sliding block 15 is in contact with the supporting block 19, the connecting block 16 is installed on the side wall of the sliding block 15, the connecting block 16 penetrates through the U-shaped groove 17 to be installed with the baffle 13, the upper ends of the sliding block 15 and the upper end of the protecting plate 12 are respectively provided with a positioning hole, a positioning rod 25 is arranged in each positioning hole, and a bolt 26 is installed on each positioning rod 25;
a cross upright post is arranged between the reinforcing rod 14 and the upright post A1, a cross upright post is arranged between the reinforcing rod 14 and the upright post B7, and a cross upright post is arranged between the reinforcing rod 14 and the upright post C9;
the bottom of the positioning piece 5 is provided with a rectangular groove, the inside of the positioning piece 5 is provided with a mounting hole, the positioning piece 5 is matched with the positioning block 4 through the rectangular groove, and the bolt 6 is installed in the mounting hole of the positioning piece 5 and the mounting hole of the inside of the positioning block 4.
Example 2
The utility model is used for the supporting device of circular and oval daylighting roof 23 construction, which is arranged on the steel wire rope 24 soft platform 22 and is reinforced by the steel wire rope 24, thus improving the stability;
because of the special-shaped structure of the daylighting roof 23, the height of the daylighting roof 23 from the middle to the two sides is reduced, for this reason, before construction, the application needs to be assembled into different heights according to construction sites, a specified number of connecting structures are assembled together, the rectangular groove of the positioning piece 5 at the bottom of the upright rod B7 is inserted into the positioning block 4 and fixed through the bolt 6, the assembly of adjacent connecting structures is completed, the positioning piece 5 at the lower end of the connecting structure is inserted into the positioning block 4 on the base structure and fixed through the bolt 6, and the assembly of the connecting structure and the base structure is completed;
in order to improve the protection performance of the application, the baffle 13 needs to be installed, the sliding blocks 15 at two ends of the baffle 13 are respectively inserted into the sliding grooves 21, the sliding blocks 15 are driven by rolling of the balls 27 to move downwards to play a role in assisting movement, the abrasion speed of the sliding blocks 15 and the sliding grooves 21 is delayed, meanwhile, the connecting blocks 16 slide in the U-shaped grooves 17, when the sliding blocks 15 are in contact with the supporting blocks 19 in the moving process and move downwards continuously, the supporting blocks 19 at the upper ends are subjected to extrusion force and extrude the springs 20, when the sliding blocks 15 cannot move downwards continuously, the connecting blocks 16 are moved to the bottoms of the U-shaped grooves 17, at the moment, the whole sliding blocks 15 completely move into the sliding grooves 21, the bottoms of the sliding blocks 15 are supported by the elastic force of the springs 20, the upper ends of the sliding blocks 15 are positioned with the supporting plates 11 by the positioning rods 25 and the bolts 26, and the installation of the baffle 13 is realized;
the supporting structure with the baffle 13 installed is installed on the upper side of the connecting structure, so that the positioning piece 5 at the bottom of the upright C9 is inserted into the positioning block 4 and is fixed through the bolt 6, and the installation of the supporting structure and the connecting structure is completed; constructor stands and is under construction to daylighting top 23 in backup pad 11, place the instrument that the work progress needs to use on backup pad 11, be convenient for take, baffle 13 is used with the cooperation of the guard plate 12 of both sides, can surround backup pad 11, guard plate 12, baffle 13 can stop the instrument of different sizes of volume in backup pad 11, can effectively protect constructor simultaneously, the protecting effect is good, avoid the instrument, constructor by this application landing, fall and lead to damaging, the condition of injury takes place, the protective properties is improved, and the safety is improved.
The basic principles and the main features of the invention and the advantages of the invention have been shown and described above. The utility model discloses each part that mentions is the common technique in prior art, and the technical personnel of this trade should understand, the utility model discloses do not receive the restriction of above-mentioned embodiment, the description only is the explanation in above-mentioned embodiment and the description the principle of the utility model, under the prerequisite that does not deviate from the spirit and the scope of the utility model, the utility model discloses still can have various changes and improvement, these changes and improvement all fall into the protection of claim the utility model is within the scope. The scope of the invention is defined by the appended claims and equivalents thereof.

Claims (3)

1. A special-shaped high-altitude operation supporting platform is characterized by comprising a base structure, a connecting structure and a supporting structure, wherein the connecting structure is arranged at the top of the base structure, and the supporting structure is arranged at the top of the connecting structure;
the base structure comprises four vertical rods A, floor sweeping rods, connecting plates A, positioning blocks and reinforcing rods, the number of the vertical rods A is four, the floor sweeping rods are arranged between two vertical rods A at the front ends, the floor sweeping rods are arranged between two vertical rods A at the rear ends, the connecting plates A are welded at the tops of the vertical rods A, the reinforcing rods are arranged at the bottoms of the connecting plates A and the tops of the floor sweeping rods, the positioning blocks are respectively arranged at four corners of the tops of the connecting plates A, and mounting holes are formed in the positioning blocks;
the connecting structure comprises four upright posts B, four connecting plates B and positioning pieces, the connecting plates B are welded at the tops of the upright posts B, reinforcing rods are installed at the bottoms of the connecting plates B, positioning blocks are installed at four corners of the tops of the connecting plates B respectively, and the positioning pieces are installed at the bottoms of the four upright posts B respectively;
the supporting structure comprises four upright rods C, supporting plates, protecting plates, a baffle, a sliding block, a connecting block, supporting blocks, springs, a positioning rod, a bolt and balls, the number of the upright rods C is four, positioning pieces are installed at the bottoms of the four upright rods C, the supporting plates are installed at the tops of the four upright rods C, the protecting plates are installed at two ends of the top of the supporting plates respectively, sliding grooves are formed in the front end and the rear end of each protecting plate respectively, each sliding groove is of a semicircular structure, a mounting groove is formed in the side wall of each sliding groove and is provided with the corresponding ball, the supporting blocks are installed at the bottoms of the sliding grooves and are of a semicircular structure and are in contact with the sliding grooves, the number of the supporting blocks is two, the springs are connected between the two supporting blocks, U-shaped grooves are formed in the front end and the rear end of the side wall, close to each other, of the two protecting plates, and are communicated with the sliding grooves, a sliding block is connected in the sliding groove in a sliding mode, the sliding block is in contact with the supporting block, a connecting block is installed on the side wall of the sliding block, the connecting block penetrates through the U-shaped groove and is provided with a baffle, positioning holes are formed in the upper ends of the sliding block and the protecting plate respectively, a positioning rod is arranged in each positioning hole, and a bolt is installed on each positioning rod;
a cross upright rod is arranged between the reinforcing rod and the upright rod A, a cross upright rod is arranged between the reinforcing rod and the upright rod B, and a cross upright rod is arranged between the reinforcing rod and the upright rod C;
the bottom of setting element has seted up the rectangular channel, the mounting hole has been seted up to the inside of setting element, the setting element passes through the rectangular channel and uses with the locating piece cooperation, install the bolt in the mounting hole of setting element and locating piece inside.
2. The special-shaped high-altitude operation supporting platform as claimed in claim 1, wherein the number of the connecting structures is N, and N is more than or equal to 2.
3. The special-shaped high-altitude operation supporting platform as claimed in claim 1, wherein the number of the balls is M, and M is more than or equal to 2.
CN202120725533.1U 2021-04-09 2021-04-09 Dysmorphism high altitude construction supporting platform Active CN215055146U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202120725533.1U CN215055146U (en) 2021-04-09 2021-04-09 Dysmorphism high altitude construction supporting platform

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202120725533.1U CN215055146U (en) 2021-04-09 2021-04-09 Dysmorphism high altitude construction supporting platform

Publications (1)

Publication Number Publication Date
CN215055146U true CN215055146U (en) 2021-12-07

Family

ID=79148433

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202120725533.1U Active CN215055146U (en) 2021-04-09 2021-04-09 Dysmorphism high altitude construction supporting platform

Country Status (1)

Country Link
CN (1) CN215055146U (en)

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