Device for adjusting distance between hanging basket and wall in high-altitude operation
Technical Field
The application relates to the field of aloft work, in particular to a device for adjusting the distance between a hanging basket and a wall in aloft work.
Background
The hanging machine frame is arranged on a building or a structure, and the elevator drives the hanging platform to move up and down along the vertical face through a steel wire rope. The high-altitude operation hanging basket is a special construction work machine which uses a special steel wire rope to move up and down along the vertical surface from a building through a hanging mechanism under the action of a climbing elevator.
The roof structure is waterproof, the protection layer is constructed, holes are not allowed to be formed in the roof structure, the finishing surface of the curtain wall is 1080mm away from the outer eave of the roof structure, and under the condition that the overhead operation hanging basket is normally erected, the distance between the overhead operation hanging basket and the curtain wall is further longer, operators can be further away from the construction operation surface, and construction cannot be performed.
Disclosure of Invention
In order to overcome the defects in the prior art, the embodiment of the application provides a device for adjusting the distance between an overhead working basket and a wall, which can solve the problem that the distance between the overhead working basket and the curtain wall is far.
The device for adjusting the distance between the hanging basket and the wall in the high-altitude operation comprises an outer wall and a roof structure connected to the top of the outer wall, wherein a hanging device is arranged on the top of the roof structure, a hanging basket component is connected to the hanging device, a guide bracket is arranged on the outer wall of the outer wall, a guide mechanism capable of adjusting the position is connected to the guide bracket in a threaded manner, and the hanging basket component penetrates through the guide mechanism.
In a specific embodiment, the guide bracket comprises two channel steel, one end of each channel steel is in threaded connection with a first mounting plate, the other end of each channel steel is in threaded connection with the outer wall of the outer wall, and two ends of the guide mechanism are in threaded connection with the two channel steel respectively.
In a specific embodiment, two channel-section steel bottoms are all spiro union has the diagonal brace, two diagonal brace one end is all fixedly connected with second mounting panel, two the equal spiro union of second mounting panel in on the outer wall of outer wall.
In a specific embodiment, the guiding mechanism comprises two moving shafts, two left steering wheels and two right steering wheels, wherein the two moving shafts are in threaded connection with the two channel steel, the two left steering wheels are respectively and rotatably sleeved on the left side parts of the two moving shafts, the two right steering wheels are respectively and rotatably sleeved on the right side parts of the two moving shafts, and the hanging basket assembly is wound on the two left steering wheels and the two right steering wheels.
In a specific embodiment, the guiding mechanism further comprises two left sliding blocks and two right sliding blocks, the two left sliding blocks are fixedly connected with one ends of the two moving shafts respectively, the two right sliding blocks are fixedly connected with the other ends of the two moving shafts respectively, the two left sliding blocks are slidably arranged on the left side in the channel steel, and the two right sliding blocks are slidably arranged on the right side in the channel steel.
In a specific embodiment, two left side slider's one end lateral wall is last all fixedly connected with left threaded rod, two right slider's one end lateral wall is last all fixedly connected with right threaded rod, two left threaded rod slip runs through the left side the channel-section steel to be connected with left nut, two right threaded rod slip runs through the right side the channel-section steel to be connected with right nut.
In a specific embodiment, a plurality of adjusting holes are respectively formed in two channel steels, and two left threaded rods and two right threaded rods respectively penetrate through the corresponding adjusting holes.
In a specific embodiment, the hanging basket assembly comprises two steel wires connected with the hanging device, the two steel wires are respectively wound on the two left steering wheels and the two right steering wheels, and the two steel wires are connected with the same hanging basket mechanism.
The hanging device is arranged at the top of the roof structure, one end of the hanging device is connected with the hanging basket assembly, the outer wall is connected with the guide bracket in a screwed mode, and the guide mechanism is arranged on the guide bracket, so that the hanging basket assembly passes through the guide mechanism, the guide mechanism guides the hanging basket mechanism to the outer wall, the distance between the hanging basket mechanism and the outer wall is shortened, construction operation of workers is facilitated, meanwhile, the guide mechanism can move on the guide bracket, and the position of the guide mechanism can be adjusted, so that the application range of the guide mechanism is improved.
Drawings
FIG. 1 is a schematic diagram of a main structure of a device for adjusting the distance between a hanging basket and a wall in an aerial working according to an embodiment of the present application;
FIG. 2 is a schematic side view of a device for adjusting the distance between a hanging basket and a wall in an aerial working mode according to the embodiment of the application;
FIG. 3 is a schematic diagram of a connection relationship between a guide bracket and a guide mechanism in a device for adjusting the distance between a hanging basket and a wall in an aerial working according to an embodiment of the present application;
fig. 4 is a schematic diagram of a turning structure of a guide mechanism in the device for adjusting the distance between a hanging basket and a wall in an aerial working according to the embodiment of the application.
10-Outer walls, 20-roof structures, 30-hanging devices, 40-hanging basket assemblies, 410-steel ropes, 420-hanging basket mechanisms, 50-guide brackets, 510-channel steel, 520-first mounting plates, 530-diagonal braces, 540-second mounting plates, 60-guide mechanisms, 610-movable shafts, 620-left steering wheels, 630-right steering wheels, 640-left sliding blocks, 650-right sliding blocks, 660-left threaded rods, 670-right threaded rods, 680-left nuts, 690-right nuts and 70-adjusting holes.
Detailed Description
The technical scheme in the embodiment of the application aims to solve the problem of long distance between the overhead working hanging basket and the curtain wall, and the overall thought is as follows:
example 1:
Referring to fig. 1-4, a device for adjusting distance between a hanging basket and a wall in an overhead operation comprises an outer wall 10 and a roof structure 20 connected to the top of the outer wall 10, wherein a hanging device 30 is installed on the top of the roof structure 20, a hanging basket assembly 40 is connected to the hanging device 30, a guide bracket 50 is installed on the outer wall of the outer wall 10, a guide mechanism 60 with an adjustable position is screwed to the guide bracket 50, the hanging basket assembly 40 passes through the guide mechanism 60, specifically, by screwing the guide bracket 50 to the outer wall 10, the guide mechanism 60 is arranged on the guide bracket 50, so that the distance between the hanging basket assembly 40 and the outer wall 10 can be shortened through the guide mechanism 60, thereby facilitating normal construction operation.
Referring to fig. 3, the guide bracket 50 includes two channel steels 510, one ends of the two channel steels 510 are all screwed with a first mounting plate 520, the two first mounting plates 520 are all screwed on the outer wall of the outer wall 10, two ends of the guide mechanism 60 are respectively screwed with the two channel steels 510, and when the guide mechanism is set, a first mounting hole is formed in the first mounting plate 520, an expansion bolt is driven into the outer wall 10, and then the expansion bolt is connected with the first mounting plate 520, so that the installation of the channel steels 510 can be realized.
Referring to fig. 3, the bottoms of the two channel steels 510 are both in screwed connection with the diagonal brace 530, one end of each diagonal brace 530 is fixedly connected with the second mounting plate 540, the two second mounting plates 540 are both in screwed connection with the outer wall of the outer wall 10, specifically, the second mounting plates 540 are provided with second mounting holes, and the diagonal brace 530 can be mounted on the outer wall 10 by driving expansion bolts into the outer wall 10 to connect the expansion bolts with the second mounting plates 540, so as to assist in supporting the channel steels 510.
Referring to fig. 3, the guide mechanism 60 includes two moving shafts 610, two left steering wheels 620 and two right steering wheels 630, the two moving shafts 610 are all in threaded connection with the two channel steels 510, the two left steering wheels 620 are respectively rotatably sleeved on the left side portions of the two moving shafts 610, the two right steering wheels 630 are respectively rotatably sleeved on the right side portions of the two moving shafts 610, the basket assembly 40 is wound on the two left steering wheels 620 and the two right steering wheels 630, and when the guide mechanism is specifically arranged, the positions between the basket mechanism 420 and the outer wall 10 can be shortened by arranging the two moving shafts 610 and rotatably sleeved with the left steering wheels 620 and the right steering wheels 630 on the moving shafts 610, so that normal construction operation can be performed.
Referring to fig. 3 and 4, the guiding mechanism 60 further includes two left sliding blocks 640 and two right sliding blocks 650, the two left sliding blocks 640 are fixedly connected with one ends of the two moving shafts 610, the two right sliding blocks 650 are fixedly connected with the other ends of the two moving shafts 610, the two left sliding blocks 640 are slidably arranged in the left side groove steel 510, the two right sliding blocks 650 are slidably arranged in the right side groove steel 510, and when the guiding mechanism is arranged, the left sliding blocks 640 slide in the left side groove steel 510, the right sliding blocks 650 slide in the right side groove steel 510, so that the position of the moving shafts 610 on the channel steel 510 can be adjusted, and the guiding length of the steel wire rope 410 can be adjusted, so that the guiding length of the steel wire rope 410 can be adjusted according to the distance between the steel wire rope and the outer wall 10.
Referring to fig. 3 and 4, a left threaded rod 660 is fixedly connected to one end side wall of each of the two left sliders 640, a right threaded rod 670 is fixedly connected to one end side wall of each of the two right sliders 650, the two left threaded rods 660 slidably penetrate through the left side groove steel 510 and are connected with left nuts 680, the two right threaded rods 670 slidably penetrate through the right side groove steel 510 and are connected with right nuts 690, a plurality of adjusting holes 70 are respectively formed in the two channel steels 510, the two left threaded rods 660 and the two right threaded rods 670 respectively penetrate through the corresponding adjusting holes 70, it is to be noted that the left threaded rods 660 penetrate through the left adjusting holes 70, then the left nuts 680 are connected with the left threaded rods 660, the right threaded rods 670 penetrate through the right adjusting holes 70, and the right nuts 690 are connected with the right threaded rods 670, so that the fixed moving shaft 610 can be achieved.
Referring to fig. 1 and 2, the basket assembly 40 includes two wire ropes 410 connected to the suspension device 30, the two wire ropes 410 are respectively wound on two left steering wheels 620 and two right steering wheels 630, and the two wire ropes 410 are connected with the same basket mechanism 420, specifically, one wire rope 410 is wound on the two left steering wheels 620, and the other wire rope 410 is wound on the two right steering wheels 630, so as to achieve the guiding purpose of the wire ropes 410, thereby shortening the distance between the basket mechanism 420 and the outer wall 10.
The application is used when:
The horizontal distance between the edge of the roof structure 20 and the outer wall 10 is measured in advance, then the position of the movable shaft 610 on the channel steel 510 is adjusted according to measured data, after adjustment, the two channel steels 510 are installed on the outer wall 10 after the adjustment is completed, then the diagonal brace 530 is installed, after the diagonal brace 530 is installed, the two steel wire ropes 410 can be respectively wound on the two left steering wheels 620 and the two right steering wheels 630, so that the guiding purpose is achieved, and the distance between the hanging basket mechanism 420 and the outer wall 10 is shortened.
It should be noted that, specific model specifications of the outer wall 10, the roof structure 20, the hanging device 30 and the hanging basket mechanism 420 need to be determined by selecting a model according to actual specifications of the device, and a specific model selection calculation method adopts the prior art in the field, so detailed description is omitted.
Finally, it should be noted that the above-mentioned examples are given for the purpose of illustration only and are not intended to limit the invention to the particular embodiments. Other variations or modifications of the above teachings will be apparent to those of ordinary skill in the art. It is not necessary here nor is it exhaustive of all embodiments. And obvious variations or modifications thereof are contemplated as falling within the scope of the present invention.