CN218843695U - Asynchronous hanging basket for cantilever cast-in-place - Google Patents

Asynchronous hanging basket for cantilever cast-in-place Download PDF

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Publication number
CN218843695U
CN218843695U CN202222480901.8U CN202222480901U CN218843695U CN 218843695 U CN218843695 U CN 218843695U CN 202222480901 U CN202222480901 U CN 202222480901U CN 218843695 U CN218843695 U CN 218843695U
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China
Prior art keywords
hanging
fixedly connected
cantilever
cast
asynchronous
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CN202222480901.8U
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Chinese (zh)
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杨伟
王春晓
韩森
程晓刚
马佳
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Building Installation Engineering Co Ltd of China Railway 18th Bureau Group Co Ltd
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Building Installation Engineering Co Ltd of China Railway 18th Bureau Group Co Ltd
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Abstract

The utility model relates to a construction equipment field especially relates to a cast-in-place asynchronous basket of hanging of using of cantilever. The asynchronous hanging basket for cantilever cast-in-place comprises two guide rails, and a hanging assembly is arranged between the two guide rails; the suspension assembly comprises a support frame, a roller, a motor, a winding rod, a shaft rod and a winding disc. The utility model provides a cast-in-place asynchronous basket of hanging of using of cantilever, the later stage is when using this device, after accomplishing wire rope and being connected of hanging the basket, the control motor that the staff can be smooth rotates and carries out the rolling to wire rope, can be smooth through the rolling of wire rope will hang the basket body and hoist, can be smooth will hang the basket body and remove to aerial the use, through the setting that suspends the subassembly in midair, not only can improve the flexibility of highly adjusting in hanging basket body later stage use, and need not to carry out the lease of large-scale loop wheel machine or tower crane and use, still can reduce building engineering's construction use cost on a journey.

Description

Asynchronous hanging basket for cantilever cast-in-place
Technical Field
The utility model relates to a construction equipment field especially relates to a cast-in-place asynchronous basket of hanging of using of cantilever.
Background
The hanging basket is the main equipment in cantilever construction, and can be divided into 4 types of truss type, inclined pull type, section steel type and mixed type according to the structural form. Comprehensively comparing the characteristics and the weight of the hanging baskets in various forms, the types of steel adopted, the construction process and the like according to the construction process requirements of the concrete cantilever and the requirements of design drawings on the hanging baskets; hanging basket design principle: the hanging basket has the advantages of light dead weight, simple structure, firmness, stability, convenience in forward movement and assembly and disassembly, strong reusability, small deformation after stress and the like, and the space under the hanging basket is sufficient, so that a large construction operation surface can be provided, and the construction operation of the steel bar formwork is facilitated.
Present string basket generally all is independent string basket body, and the later stage is carrying out the use of hanging the basket, generally all is to cooperate the use through hoisting of large-scale loop wheel machine, and it uses, and the loaded down with trivial details flexibility relatively of operation is lower.
Therefore, a new asynchronous cradle for cantilever cast-in-situ is needed to solve the above technical problems.
SUMMERY OF THE UTILITY MODEL
In order to solve the technical problem, the utility model provides a cast-in-place asynchronous basket of hanging of using of cantilever.
The utility model provides a cast-in-place asynchronous basket of hanging of using of cantilever includes:
the guide rails are provided with two guide rails, and a suspension assembly is arranged between the two guide rails;
the suspension assembly comprises a support frame, rollers, motors, winding rods, shaft rods and winding disks, wherein two side walls of the support frame are connected with the inner walls of guide rails at two sides through a plurality of uniformly distributed rollers, the two side walls of the support frame are respectively provided with the fixedly connected motors, the output frames of the two motors are provided with the same fixedly connected winding rods, one side of the interior of the support frame, which is far away from the winding rods, is provided with the shaft rods, and the outer walls of the shaft rods and the winding rods are respectively sleeved with the fixedly connected winding disks;
hang the basket body, just it sets up in the subassembly below that suspends in midair to hang the basket body.
Preferably, two the guide rail is put on the shelf and is equipped with fixed connection's counterweight housing, counterweight housing's top is equipped with the pneumatic cylinder, counterweight housing is close to and is equipped with a plurality of fixed connection's hydraulic stem on one lateral wall of support frame, and every the hydraulic stem all is connected with the pneumatic cylinder through oil pipe.
Preferably, the end parts of the plurality of hydraulic rods far away from the hydraulic cylinder are fixedly connected with the side wall of the same connecting strip, and the connecting strip is fixedly connected with the side wall of the support frame through a bolt.
Preferably, a controller is arranged on the top side of the counterweight frame and is electrically connected with electrical components in the device.
Preferably, both sides of support frame bottom all are equipped with fixed connection's guide frame through the bolt, and two the inner wall of guide frame all with hang the tip sliding connection of branch in the basket body.
Preferably, the top side of the cradle body is provided with a plurality of fixedly connected steel wire ropes, the outer wall of each steel wire rope is in sliding connection with the inner wall of the corresponding winding disc, and one end, far away from the cradle body, of each steel wire rope is fixedly connected with the outer wall of the winding rod.
Compared with the prior art, the utility model provides a cast-in-place asynchronous basket of hanging of using of cantilever has following beneficial effect:
1. the utility model discloses a set up rather than the suspension assembly who is connected in the top of hanging basket body, the later stage is before the use of hanging basket body, at first can with the guide rail with suspend the unit mount in the top of engineering part in midair, then the motor that steerable suspension assembly was in rotates, make wire rope extend, the tip that until wire rope is connected with the basket body that hangs that is located ground, after accomplishing wire rope and being connected of hanging the basket, control motor that can be smooth rotates and carries out the rolling to wire rope, can be smooth will hang basket body and hoist through wire rope's rolling, can be smooth will hang the basket body and remove to using aloft, setting through suspension assembly, not only can improve the flexibility of hanging basket body later stage in-process height control, and need not to carry out the lease of large-scale loop wheel machine or tower crane and use, still can reduce building engineering's construction use cost on a journey.
2. The utility model discloses a set up fixed connection's weight rack on the guide rail, and set up pneumatic cylinder and hydraulic stem on the weight rack, the later stage is when hanging the use of basket body, the staff can carry out work through controller control hydraulic stem according to the in-process needs of actual operation, the hydraulic stem of work this moment can be smooth drive the support through the connecting strip and slide in the guide rail is inside, gliding support frame can be smooth this moment drive rather than the basket body of hanging of being connected through wire rope and remove, and then can be smooth carry out the regulation of horizontal direction to hanging the basket body, consequently, can further improve the precision of hanging basket body position control in the use of hanging basket body later stage.
Drawings
Fig. 1 is a schematic structural view of a preferred embodiment of an asynchronous cradle for cantilever cast-in-place according to the present invention;
FIG. 2 is a schematic structural view of the suspension assembly shown in FIG. 1 connected with a basket body and a guide frame;
FIG. 3 is a schematic view of the suspension assembly of FIG. 2;
fig. 4 is a schematic structural view of the weight rack shown in fig. 1;
FIG. 5 is a schematic structural view of the hanging basket body and the guide frame shown in FIG. 2;
fig. 6 is a schematic view of the structure of the guide rail shown in fig. 1.
Reference numbers in the figures: 1. a guide rail; 2. a suspension assembly; 21. a support frame; 22. a roller; 23. a motor; 24. winding the rod; 25. a shaft lever; 26. a winding disc; 3. a hanging basket body; 3a, a steel wire rope; 4. a guide frame; 5. a counterweight frame; 5a, a hydraulic cylinder; 5b, a hydraulic rod; 5c, connecting strips; 5d, a controller.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention more clearly understood, the present invention will be further described in detail with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are for purposes of illustration only and are not intended to limit the invention.
The following detailed description is provided for the specific embodiments of the present invention.
Referring to fig. 1 to 6, an embodiment of the present invention provides an asynchronous hanging basket for cantilever cast-in-place, including: guide rail 1 and suspension assembly 2, guide rail 1 is equipped with two, and two be equipped with suspension assembly 2 between the guide rail 1.
In the embodiment of the present invention, please refer to fig. 1, fig. 2 and fig. 3, the suspension assembly 2 includes a support frame 21, rollers 22, a motor 23, a winding rod 24, a shaft rod 25 and a winding disc 26, two side walls of the support frame 21 are connected to the inner walls of the guide rails 1 at two sides through a plurality of uniformly distributed rollers 22, the motors 23 are fixedly connected to two side walls of the support frame 21, the winding rods 24 are fixedly connected to the output frames of the two motors 23, the shaft rod 25 is erected at one side of the support frame 21 away from the winding rods 24, and the winding disc 26 is fixedly connected to the outer walls of the shaft rod 25 and the winding rods 24;
hang basket body 3, just hang basket body 3 sets up in the subassembly 2 below that suspends in midair.
It should be noted that: when the worker controls the motor 23 in the suspension component 2 to rotate, the two motors 23 which rotate simultaneously can smoothly drive the winding rod 24 to rotate, the specifications and the models of the two motors 23 are the same, the rotating winding rod 24 can smoothly wind the steel wire rope 3a connected with the winding rod, the suspension basket body 3 can be smoothly lifted by winding the steel wire rope 3a, the suspension basket body 3 can be smoothly moved to the air for use, the flexibility of height adjustment in the later use process of the suspension basket body 3 can be improved through the arrangement of the suspension component 2, the renting use of a large crane or a crane is not needed, and the construction and use cost of building engineering can be reduced on a certain journey.
In the embodiment of the utility model, please refer to fig. 1, fig. 2 and fig. 4, two the 1 upper bracket of guide rail is equipped with fixed connection's weight frame 5, the top of weight frame 5 is equipped with pneumatic cylinder 5a, weight frame 5 is close to and is equipped with a plurality of fixed connection's hydraulic stem 5b on a lateral wall of support frame 21, and every hydraulic stem 5b all is connected with pneumatic cylinder 5a through oil pipe, and is a plurality of the tip that pneumatic cylinder 5a was kept away from to hydraulic stem 5b and same connecting strip 5 c's lateral wall fixed connection, just connecting strip 5c passes through the lateral wall fixed connection of bolt and support frame 21.
It should be noted that: the later stage is when hanging basket body 3's use, the staff can carry out work through controller 5d control hydraulic stem 5b according to the in-process of actual operation, the hydraulic stem 5b of work this moment can be smooth drive support frame 21 inside sliding at guide rail 1 through connecting strip 5c, gliding support frame 21 can be smooth this moment drive rather than the basket body 3 of hanging that is connected through wire rope 3a and remove, and then can be smooth carry out the regulation of horizontal direction to hanging basket body 3, consequently, can further improve the precision of hanging basket body 3 position control in 3 later stages of hanging basket body use.
In an embodiment of the present invention, please refer to fig. 4, a controller 5d is disposed on a top side of the weight rack 5, and the controller 5d is electrically connected to an electrical component of the apparatus.
It should be noted that: by electrically connecting the controller 5d with the electrical components in the device, when the device is used later, a worker can smoothly control the device through the controller 5d, so that the operation of the device is more convenient.
In the embodiment of the utility model, please refer to fig. 1, fig. 2 and fig. 5, the both sides of support frame 21 bottom all are equipped with fixed connection's guide frame 4 through the bolt, and two the inner wall of guide frame 4 all with hang the tip sliding connection of branch in the basket body 3, the top side of hanging basket body 3 is equipped with a plurality of fixed connection's wire rope 3a, every wire rope 3 a's outer wall all with correspond the inner wall sliding connection of rolling dish 26, and every wire rope 3a keep away from the one end of hanging basket body 3 all with the outer wall fixed connection of winding rod 24.
It should be noted that: by abutting the steel wire rope 3a against the inner wall of the winding disc 26, the steel wire rope 3a can be stably wound in the winding disc 26 when the motor 23 drives the winding rod 24 to rotate in the later period, and the phenomenon that the steel wire rope 3a deviates in position can be avoided;
and through the tip of branch and the inner wall sliding connection of guide frame 4 in will hanging basket body 3, when motor 23 rolled up wire rope 3a and drove hanging basket body 3 and reciprocate, fixed connection's guide frame 4 carries out smooth spacing to carrying out the horizontal direction to hanging basket body 3 removal in-process, consequently can make the removal of hanging basket body 3 more stable.
The utility model provides a cast-in-place asynchronous hanging basket's of hanging of cantilever theory as follows:
in the later period, before the hanging basket body 3 is used, a worker can firstly install the guide rail 1 and the suspension assembly 2 above the engineering component to install the device;
then, the worker can control the motor 23 in the suspension assembly 2 to rotate, so that the steel wire rope 3a extends until the end part of the steel wire rope 3a is connected with the hanging basket body 3 on the ground, after the connection between the steel wire rope 3a and the hanging basket is completed, the motor 23 can be smoothly controlled to rotate, and the steel wire rope 3a can be smoothly wound through the winding rod 24;
at the moment, the cradle body 3 can be smoothly hoisted by winding the steel wire rope 3a, the protruding rods on the two sides of the cradle body 3 can smoothly slide along the guide frames 4 on the two sides while the cradle body 3 is hoisted upwards, the height of the cradle body 3 can be smoothly controlled, and through the arrangement of the suspension assembly 2, the flexibility of height adjustment in the later use process of the cradle body 3 can be improved, the renting use of a large crane or a crane is not needed, and the construction and use cost of the building engineering can be reduced on a certain distance;
accomplish the regulation back to hanging 3 heights of basket body through hanging in midair subassembly 2 when the staff, the staff still can carry out work through controller 5d control hydraulic stem 5b according to actual operation in-process, the hydraulic stem 5b of this moment work can be smooth drive support frame 21 inside the guide rail slides through connecting strip 5c, gliding support frame 21 can be smooth this moment drive rather than the basket body 3 of hanging that is connected through wire rope 3a and remove, and then can be smooth carry out the regulation of horizontal direction to hanging basket body 3, consequently, can further improve the precision of hanging 3 position control of basket body in the 3 later stage use of hanging basket body.
The utility model discloses circuit and control that relate to are prior art, do not carry out too much repetition here.
The above only is the embodiment of the present invention, not limiting the scope of the present invention, all the equivalent structures or equivalent processes of the present invention are used in the specification and the attached drawings, or directly or indirectly applied to other related technical fields, and the same principle is included in the protection scope of the present invention.

Claims (6)

1. The utility model provides a cast-in-place asynchronous basket of hanging of using of cantilever which characterized in that includes:
the device comprises guide rails (1), wherein two guide rails (1) are arranged, and a suspension assembly (2) is arranged between the two guide rails (1);
the suspension assembly (2) comprises a support frame (21), idler wheels (22), motors (23), winding rods (24), shaft rods (25) and winding disks (26), wherein two side walls of the support frame (21) are connected with the inner walls of guide rails (1) at two sides through the idler wheels (22) which are uniformly distributed, the motors (23) which are fixedly connected are arranged on the two side walls of the support frame (21), the same winding rod (24) which is fixedly connected is erected at the output ends of the two motors (23), the shaft rods (25) are erected at one side, far away from the winding rod (24), in the support frame (21), and the winding disks (26) which are fixedly connected are sleeved on the outer walls of the shaft rods (25) and the winding rods (24);
the hanging basket comprises a hanging basket body (3), and the hanging basket body (3) is arranged below the hanging component (2).
2. The asynchronous cradle for cantilever cast-in-place according to claim 1, wherein a fixedly connected weight frame (5) is erected on the two guide rails (1), a hydraulic cylinder (5 a) is arranged above the weight frame (5), a plurality of fixedly connected hydraulic rods (5 b) are arranged on one side wall of the weight frame (5) close to the support frame (21), and each hydraulic rod (5 b) is connected with the hydraulic cylinder (5 a) through an oil pipe.
3. The asynchronous cradle for cast-in-situ cantilever according to claim 2, wherein the ends of the hydraulic rods (5 b) far away from the hydraulic cylinder (5 a) are fixedly connected with the side wall of the same connecting bar (5 c), and the connecting bar (5 c) is fixedly connected with the side wall of the support frame (21) through bolts.
4. The asynchronous cradle for cantilever cast-in-place according to claim 2, characterized in that a controller (5 d) is arranged on the top side of the weight frame (5), and the controller (5 d) is electrically connected with the electrical components in the device.
5. The asynchronous hanging basket for cantilever cast-in-place according to claim 1, wherein the two sides of the bottom of the support frame (21) are respectively provided with a fixedly connected guide frame (4) through bolts, and the inner walls of the two guide frames (4) are respectively connected with the end parts of the support rods in the hanging basket body (3) in a sliding manner.
6. The asynchronous cradle for cantilever cast-in-situ according to claim 1, wherein the top side of the cradle body (3) is provided with a plurality of fixedly connected steel wire ropes (3 a), the outer wall of each steel wire rope (3 a) is slidably connected with the inner wall of the corresponding winding disc (26), and one end of each steel wire rope (3 a) far away from the cradle body (3) is fixedly connected with the outer wall of the winding rod (24).
CN202222480901.8U 2022-09-20 2022-09-20 Asynchronous hanging basket for cantilever cast-in-place Active CN218843695U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202222480901.8U CN218843695U (en) 2022-09-20 2022-09-20 Asynchronous hanging basket for cantilever cast-in-place

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202222480901.8U CN218843695U (en) 2022-09-20 2022-09-20 Asynchronous hanging basket for cantilever cast-in-place

Publications (1)

Publication Number Publication Date
CN218843695U true CN218843695U (en) 2023-04-11

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ID=87283094

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202222480901.8U Active CN218843695U (en) 2022-09-20 2022-09-20 Asynchronous hanging basket for cantilever cast-in-place

Country Status (1)

Country Link
CN (1) CN218843695U (en)

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