CN214302859U - Hydraulic formwork climbing device for building construction - Google Patents

Hydraulic formwork climbing device for building construction Download PDF

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Publication number
CN214302859U
CN214302859U CN202021686875.9U CN202021686875U CN214302859U CN 214302859 U CN214302859 U CN 214302859U CN 202021686875 U CN202021686875 U CN 202021686875U CN 214302859 U CN214302859 U CN 214302859U
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frame
outer frame
bolt
lifting
pulley
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CN202021686875.9U
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姬孟刚
郭利
陈进财
胡文博
蔡佳
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First Construction Co Ltd of China Construction Eighth Engineering Division Co Ltd
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First Construction Co Ltd of China Construction Eighth Engineering Division Co Ltd
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Abstract

The utility model discloses a construction hydraulic pressure template climbing device, including hanging seat and inner tower, one side of cement wall body is provided with and hangs the seat, and the inboard that hangs the seat is close to cement wall body one side and is provided with the inner tower, one side of inner tower is provided with the outrigger, and the upper end of outrigger is provided with hoisting device, it includes two mounting panels, first bolt and second bolt to hang the seat, and the both sides of two mounting panels are run through respectively has first bolt and second bolt, the inner tower includes first guide way and triangle fixture block, and the both sides of inner tower are provided with first guide way. This hydraulic pressure template climbing device is provided with outrigger and hydraulic stem, and the hydraulic stem mainly plays the effect that goes up and down to the outrigger to make the template of outrigger upper end adjust from top to bottom at any time, and the connecting block lies in can strengthening fixedly between outrigger and the inner tower with the main action of cutting, and the connecting block also plays the effect of supporting the hydraulic stem with the cutting simultaneously.

Description

Hydraulic formwork climbing device for building construction
Technical Field
The utility model relates to a template climbing device technical field is used to building specifically is construction hydraulic template climbing device.
Background
The climbing formwork is called climbing formwork for short and is also called jumping formwork abroad, which is an effective formwork system of a reinforced concrete structure of a shear wall system and a cylinder system for engineering construction, is often applied to high-rise buildings and high-volume structure construction, and is widely popularized and applied in various countries in the world.
The traditional template climbing device only needs hoisting equipment to climb to the next working surface when being lifted, the climbing frame only can climb the guide rail and cannot climb the template, the structure is complex, the construction period is long, the template consumption is large, the efficiency is low, and the manufacturing cost is high; meanwhile, the traditional slip form device cannot be used for discontinuous construction, the surface of concrete is rough, and operators need to have higher professional knowledge.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide a building construction hydraulic template climbing device, which solves the problems that the traditional template climbing device proposed in the background technology needs hoisting equipment to climb to the next working surface when being lifted, a climbing frame can only climb a guide rail and cannot climb a template, the structure is complex, the construction period is long, the template consumption is more, the efficiency is lower, and the manufacturing cost is higher; meanwhile, the traditional slip form device cannot be constructed discontinuously, the surface of concrete is rough, and operators need to have higher professional knowledge.
In order to achieve the above object, the utility model provides a following technical scheme: the hydraulic formwork climbing device for building construction comprises an outer frame and a hydraulic rod, wherein a suspension seat is arranged on one side of a cement wall, an inner frame is arranged on one side, close to the cement wall, of the inner side of the suspension seat, an outer frame is arranged on one side of the inner frame, and a lifting device is arranged at the upper end of the outer frame;
the suspension seat comprises two mounting plates, a first bolt and a second bolt, and the first bolt and the second bolt penetrate through two sides of the two mounting plates respectively;
the inner frame comprises a first guide groove and triangular clamping blocks, the first guide groove is formed in each of two sides of the inner frame, and the triangular clamping blocks are arranged on one side, away from the cement wall, of the inner frame.
Preferably, the outer frame is connected with the connecting block in a lifting mode through the hydraulic rod, and the inserting strips at the lower end of the connecting block penetrate through the outer frame and are attached to the upper end of the triangular clamping block.
Preferably, the limiting plate and the clamping plate form a rotating structure through a rotating shaft, and the springs at the lower end of the clamping plate are distributed in an inclined manner.
Preferably, the inner frame and the motor form a movable connection through a steel wire rope, and winding wheels on one side of the motor are horizontally distributed.
Preferably, the supporting plate forms a lifting structure through the lifting inner tube and the lifting outer tube, and the first pulleys and the second pulleys at the two ends of the supporting plate are symmetrically distributed along the center line of the lifting inner tube.
Preferably, the outer frame and the inner frame are vertically distributed and are fixed through triangular clamping blocks and clamping plates.
Compared with the prior art, the beneficial effects of the utility model are that: this hydraulic pressure template climbing device is provided with outrigger and hydraulic stem, and the hydraulic stem mainly plays the effect that goes up and down to the outrigger to make the template of outrigger upper end adjust from top to bottom at any time, and the connecting block lies in can strengthening fixedly between outrigger and the inner tower with the main action of cutting, and the connecting block also plays the effect of supporting the hydraulic stem with the cutting simultaneously.
The effect of screens board lies in can carrying out mutual block with the triangle fixture block to make can the reciprocal anchorage between outrigger and the inner frame, and the effect of pivot and limiting plate lies in can making the screens board can rotate along the single direction, thereby makes the outrigger can take all the time on the triangle fixture block of inner frame, and the spring mainly plays the effect that resets the screens board in addition.
The motor and the winding wheel mainly play a role in packing up and releasing the steel wire rope, the steel wire rope mainly plays a role in connecting the inner frame, and the steel wire rope can lift and descend the inner frame under the folding and unfolding of the motor, so that the inner frame can be matched with the outer frame.
Drawings
FIG. 1 is a schematic view of the overall side view structure of the present invention;
FIG. 2 is a schematic view of a partial enlarged structure at A in FIG. 1 according to the present invention;
fig. 3 is the structural schematic diagram of the hydraulic rod in front view.
In the figure: 100. a cement wall body; 200. a suspension seat; 201. two mounting plates; 202. a first bolt; 203. a second bolt; 300. an inner frame; 301. a first guide groove; 302. a triangular clamping block; 400. an outer frame; 401. a second guide groove; 402. a hydraulic lever; 403. connecting blocks; 404. Cutting; 405. a strip frame; 406. a rotating shaft; 407. a limiting plate; 408. a clamping plate; 409. A spring; 5. a lifting device; 501. lifting the outer pipe; 502. lifting the inner pipe; 503. a motor; 504. a winding wheel; 505. a wire rope; 506. a support plate; 507. a first pulley; 508. a second pulley.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Referring to fig. 1-3, the present invention provides a technical solution: the hydraulic formwork climbing device for building construction comprises a cement wall body 100, a suspension seat 200, two mounting plates 201, a first bolt 202, a second bolt 203, an inner frame 300, a first guide groove 301, a triangular fixture block 302, an outer frame 400, a second guide groove 401, a hydraulic rod 402, a connecting block 403, an inserting strip 404, a long strip frame 405, a rotating shaft 406, a limiting plate 407, a clamping plate 408, a spring 409, a lifting device 5, a lifting outer pipe 501, a lifting inner pipe 502, a motor 503, a winding wheel 504, a steel wire rope 505, a supporting plate 506, a first pulley 507 and a second pulley 508, wherein the suspension seat 200 is arranged on one side of the cement wall body 100, the inner frame 300 is arranged on one side of the inner frame 200 close to the cement wall body 100, the outer frame 400 is arranged on one side of the inner frame 300, and the lifting device 5 is arranged at the upper end of the outer frame 400;
the suspension base 200 comprises two mounting plates 201, a first bolt 202 and a second bolt 203, and the first bolt 202 and the second bolt 203 penetrate through two sides of the two mounting plates 201 respectively;
the inner frame 300 comprises a first guide groove 301 and a triangular fixture block 302, the first guide groove 301 is arranged on two sides of the inner frame 300, and the triangular fixture block 302 is arranged on one side of the inner frame 300 far away from the cement wall 100.
The outer frame 400 comprises a second guide groove 401, a hydraulic rod 402, a connecting block 403, a cutting bar 404, a long frame 405, a rotating shaft 406, a limiting plate 407, a clamping plate 408 and a spring 409, wherein the second guide groove 401 is arranged on two sides of the outer frame 400, the long frame 405 is arranged on one side of the outer frame 400 away from the inner frame 300, the connecting block 403 is arranged on the inner side of the long frame 405, the cutting bar 404 is arranged at the lower end of the connecting block 403, the hydraulic rod 402 is arranged at the upper end of the connecting block 403, the rotating shaft 406 is arranged on one side of the outer frame 400 close to the inner frame 300, the clamping plate 408 is arranged on the outer side of the rotating shaft 406 in a circle, the limiting plate 407 is arranged at the upper end of the clamping plate 408, the spring 409 is arranged between one side of the lower end of the clamping plate 408 and the outer frame 400, the outer frame 400 is connected with the connecting block 403 in a lifting manner through the hydraulic rod 402, the cutting bar 404 at the lower end of the connecting block 403 penetrates through the outer frame 400 and is attached to the upper end of the triangular clamping block 302, the hydraulic rod 402 mainly plays a role in lifting the outer frame 400, so that the template at the upper end of the outer frame 400 can be adjusted up and down at any time, the connecting block 403 and the inserting strip 404 mainly play a role in reinforcing and fixing the outer frame 400 and the inner frame 300, and the connecting block 403 and the inserting strip 404 also play a role in supporting the hydraulic rod 402;
the limiting plate 407 and the blocking plate 408 form a rotating structure through the rotating shaft 406, and the springs 409 at the lower end of the blocking plate 408 are distributed in an inclined shape, the blocking plate 408 is used for being mutually clamped with the triangular clamping block 302, so that the outer frame 400 and the inner frame 300 can be mutually fixed, the rotating shaft 406 and the limiting plate 407 are used for enabling the blocking plate 408 to rotate along a single direction, so that the outer frame 400 can be always lapped on the triangular clamping block 302 of the inner frame 300, and in addition, the springs 409 mainly play a role in resetting the blocking plate 408;
the lifting device 5 comprises an outer lifting pipe 501, an inner lifting pipe 502, a motor 503, a winding wheel 504, a steel wire rope 505, a supporting plate 506, a first pulley 507 and a second pulley 508, the outer lifting pipe 501 is arranged on one side of the upper end of the outer frame 400, the inner lifting pipe 502 is attached to the inner side of the outer lifting pipe 501, the supporting plate 506 is arranged on the upper end of the inner lifting pipe 502, the first pulley 507 is arranged at one end of the supporting plate 506, the second pulley 508 is arranged at the other end of the supporting plate 506, the motor 503 is arranged on the other side of the upper end of the outer frame 400, the winding wheel 504 is arranged on one side of the motor 503, the steel wire rope 505 is attached to the outer circumference of the winding wheel 504, the inner frame 300 and the motor 503 are movably connected through the steel wire rope 505, the winding wheel 504 on one side of the motor 503 is horizontally distributed, the motor 503 and the winding wheel 504 mainly play a role in retracting and releasing the steel wire rope 505, and the steel wire rope 505 mainly plays a role in connecting the inner frame 300, meanwhile, the steel wire rope 505 can lift and lower the inner frame 300 when the motor 503 is retracted, so that the inner frame 300 can be matched with the outer frame 400;
the supporting plate 506 forms a lifting structure through the lifting inner pipe 502 and the lifting outer pipe 501, a first pulley 507 and a second pulley 508 at two ends of the supporting plate 506 are symmetrically distributed along the central line of the lifting inner pipe 502, the lifting inner pipe 502 and the lifting outer pipe 501 mainly play a role in matching with the motor 503 and lifting the inner frame 300, and simultaneously play a role in fixing the supporting plate 506, and the first pulley 507 and the second pulley 508 play a role in enabling the motor 503 to be smoother when the steel wire rope 505 is wound and unwound;
outer frame 400 all is vertical distribution with inner frame 300, and outer frame 400 fixes through triangle fixture block 302 and screens board 408 with inner frame 300, inner frame 300 mainly plays and carries out the effect fixed to outer frame 400, still plays simultaneously and mutually supports with outer frame 400, and it is more convenient when going up and down to make outer frame 400, and triangle fixture block 302 mainly plays and carries out the effect of carrying on the screens board 408 of outer frame 400 one side, thereby make and to keep firm state between outer frame 400 and the inner frame 300.
The working principle is as follows: for the hydraulic formwork climbing device for building construction, firstly, when the inner frame 300 needs to be lifted, the first bolt 202 needs to be extracted from two sides of the two mounting plates 201, then the motor 503 and the winding wheel 504 can drive the steel wire rope 505 to be retracted, the inner frame 300 connected with the steel wire rope 505 can be gradually lifted under the driving of the motor 503, the first pulley 507 and the second pulley 508 at two ends of the supporting plate 506 play roles of lubricating and reducing resistance to the pulling of the steel wire rope 505, meanwhile, the lifting outer pipe 501 and the lifting inner pipe 502 play roles of assisting and matching the motor 503, so that the lifting speed of the steel wire rope 505 is further increased, finally, the first bolt 202 is inserted again, next, when the outer frame 400 needs to be lifted, the second bolt 203 is extracted firstly, the hydraulic rod 402 can push the top end of the inner side of the outer frame 400 and lift the outer frame 400, and the connecting block 403 and the inserting strip 404 play roles of supporting the hydraulic rod 402, meanwhile, the inserting bar 404 also serves to strengthen and fix the space between the outer frame 400 and the inner frame 300, and in addition, after the outer frame 400 rises and stops, the clamping plate 408 is clamped with the triangular clamping block 302 and limited and fixed to the clamping plate 408 under the limitation of the limiting plate 407, so that the outer frame 400 can be always lapped on the triangular clamping block 302 of the inner frame 300 to complete the fixation.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.

Claims (6)

1. Building construction hydraulic template climbing device, including cement wall (100), hang seat (200), two mounting panels (201), first bolt (202), second bolt (203), interior frame (300), first guide way (301), triangle fixture block (302), outrigger (400), second guide way (401), hydraulic stem (402), connecting block (403), cutting (404), rectangular frame (405), pivot (406), limiting plate (407), screens board (408), spring (409), hoisting device (5), promote outer tube (501), promote inner tube (502), motor (503), winding wheel (504), wire rope (505), layer board (506), first pulley (507), second pulley (508), its characterized in that: a suspension seat (200) is arranged on one side of the cement wall body (100), an inner frame (300) is arranged on one side, close to the cement wall body (100), of the inner side of the suspension seat (200), an outer frame (400) is arranged on one side of the inner frame (300), and a lifting device (5) is arranged at the upper end of the outer frame (400);
the suspension seat (200) comprises two mounting plates (201), a first bolt (202) and a second bolt (203), and the first bolt (202) and the second bolt (203) penetrate through two sides of the two mounting plates (201) respectively;
the inner frame (300) comprises a first guide groove (301) and a triangular clamping block (302), the first guide groove (301) is formed in each of two sides of the inner frame (300), and the triangular clamping block (302) is arranged on one side, far away from the cement wall body (100), of the inner frame (300);
the outer frame (400) comprises a second guide groove (401), a hydraulic rod (402), a connecting block (403), a cutting (404), a long strip frame (405), a rotating shaft (406), a limiting plate (407), a clamping plate (408) and a spring (409), and the two sides of the outer frame (400) are provided with second guide grooves (401), one side of the outer frame (400) far away from the inner frame (300) is provided with a strip frame (405), and the inner side of the strip frame (405) is provided with a connecting block (403), the lower end of the connecting block (403) is provided with an inserting strip (404), a hydraulic rod (402) is arranged at the upper end of the connecting block (403), a rotating shaft (406) is arranged at one side of the outer frame (400) close to the inner frame (300), a clamping plate (408) is arranged on the outer circumference of the rotating shaft (406), a limiting plate (407) is arranged at the upper end of the clamping plate (408), a spring (409) is arranged between one side of the lower end of the clamping plate (408) and the outer frame (400);
lifting device (5) are including promoting outer tube (501), promotion inner tube (502), motor (503), winding wheel (504), wire rope (505), layer board (506), first pulley (507) and second pulley (508), the upper end one side of outrigger (400) is provided with promotion outer tube (501), and the inboard laminating that promotes outer tube (501) has promotion inner tube (502), the upper end that promotes inner tube (502) is provided with layer board (506), and the one end of layer board (506) is provided with first pulley (507), the other end of layer board (506) is provided with second pulley (508), the upper end opposite side of outrigger (400) is provided with motor (503), and one side of motor (503) is provided with winding wheel (504), the outside a week laminating of winding wheel (504) has wire rope (505).
2. The construction hydraulic template climbing device according to claim 1, characterized in that: the outer frame (400) is connected with the connecting block (403) in a lifting mode through the hydraulic rod (402), and the inserting strips (404) at the lower end of the connecting block (403) penetrate through the outer frame (400) and are attached to the upper end of the triangular clamping block (302).
3. The construction hydraulic template climbing device according to claim 1, characterized in that: the limiting plate (407) and the blocking plate (408) form a rotating structure through a rotating shaft (406), and springs (409) at the lower end of the blocking plate (408) are distributed in an inclined shape.
4. The construction hydraulic template climbing device according to claim 1, characterized in that: the inner frame (300) and the motor (503) form a movable connection through a steel wire rope (505), and winding wheels (504) on one side of the motor (503) are horizontally distributed.
5. The construction hydraulic template climbing device according to claim 1, characterized in that: the supporting plate (506) forms a lifting structure through the lifting inner pipe (502) and the lifting outer pipe (501), and the first pulley (507) and the second pulley (508) at the two ends of the supporting plate (506) are symmetrically distributed along the center line of the lifting inner pipe (502).
6. The construction hydraulic template climbing device according to claim 1, characterized in that: the outer frame (400) and the inner frame (300) are vertically distributed, and the outer frame (400) and the inner frame (300) are fixed through triangular clamping blocks (302) and clamping plates (408).
CN202021686875.9U 2020-08-14 2020-08-14 Hydraulic formwork climbing device for building construction Active CN214302859U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021686875.9U CN214302859U (en) 2020-08-14 2020-08-14 Hydraulic formwork climbing device for building construction

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021686875.9U CN214302859U (en) 2020-08-14 2020-08-14 Hydraulic formwork climbing device for building construction

Publications (1)

Publication Number Publication Date
CN214302859U true CN214302859U (en) 2021-09-28

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ID=77826689

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202021686875.9U Active CN214302859U (en) 2020-08-14 2020-08-14 Hydraulic formwork climbing device for building construction

Country Status (1)

Country Link
CN (1) CN214302859U (en)

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