CN112664037A - Be used for radio tower to dismantle auxiliary assembly - Google Patents

Be used for radio tower to dismantle auxiliary assembly Download PDF

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Publication number
CN112664037A
CN112664037A CN202110022306.7A CN202110022306A CN112664037A CN 112664037 A CN112664037 A CN 112664037A CN 202110022306 A CN202110022306 A CN 202110022306A CN 112664037 A CN112664037 A CN 112664037A
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CN
China
Prior art keywords
cavity
fixedly connected
block
rope
face
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CN202110022306.7A
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Chinese (zh)
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CN112664037B (en
Inventor
魏汝伟
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Liaoyuan Power Supply Co Of State Grid Jilinsheng Electric Power Supply Co
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Shanghai Shenliu Digital Communication Co ltd
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02WCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO WASTEWATER TREATMENT OR WASTE MANAGEMENT
    • Y02W30/00Technologies for solid waste management
    • Y02W30/50Reuse, recycling or recovery technologies
    • Y02W30/56Reuse, recycling or recovery technologies of vehicles

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Abstract

The invention discloses auxiliary equipment for disassembling a radio tower, which comprises auxiliary equipment, wherein a supporting mechanism for supporting the radio tower is also arranged in the auxiliary equipment, a driving mechanism for providing power for a device is also arranged in the auxiliary equipment, and an auxiliary mechanism for fixing the device is also arranged in the auxiliary equipment, so that the device has a simple structure and is convenient to operate, when the device is normally used, a worker firstly places the device at a base of the radio tower, then fixes the device and cuts a certain tower foot of the base at the same time, the worker can control the toppling direction of the radio tower, the electric tower cannot topple due to the structural action of the device at the moment, then the worker cuts a cable fixed in advance, and the radio tower topples towards the placing direction of the device under the action of the device, thereby ensuring the life safety of the worker and saving financial resources, the cost of disassembly is reduced.

Description

Be used for radio tower to dismantle auxiliary assembly
Technical Field
The invention relates to the field of power transmission design, in particular to a radio tower disassembly auxiliary device.
Background
In life, communication exists from ancient times to present, before the mechanical revolution, communication is mainly carried out in modes of letter reporting personnel or flying pigeons to pass books and the like, so that information exchange is achieved, and the progress of human society enables global information transmission to be faster;
at the present stage, the wires tied up in advance are usually cut off by workers for disassembling the radio tower, and then the radio tower is allowed to collapse at will, but when other new radio towers are arranged around, the disassembly of the radio tower can be assisted through the lifter, so that the new radio tower is prevented from being affected by the old radio tower and has certain potential safety hazards.
Disclosure of Invention
The invention aims to solve the technical problem of providing a radio tower disassembly auxiliary device, and overcomes the problems.
The invention is realized by the following technical scheme.
The invention relates to auxiliary equipment for disassembling a radio tower, which comprises auxiliary equipment, wherein a supporting mechanism for supporting the radio tower is further arranged in the auxiliary equipment, a driving mechanism for providing power for the device is further arranged in the auxiliary equipment, an auxiliary mechanism for fixing the device is further arranged in the auxiliary equipment, the supporting mechanism comprises a supporting cavity which is also arranged in the auxiliary equipment, a supporting block is arranged in the supporting cavity, the lower end face of the supporting block is fixedly connected with a supporting spring of which the other end is fixedly connected with the upper cavity wall of the supporting cavity, the upper end face of the supporting block is also fixedly connected with a thick rope, a cutting placing cavity is further arranged in the supporting cavity, a motor displacement cavity is further arranged in the upper cavity wall of the cutting placing cavity, a motor is arranged in the motor displacement cavity, the left end face of the motor is fixedly connected with the other end which is fixedly connected with the left cavity wall, motor power is connected with another part and is located the power shaft of intracavity is placed in the cutting, power shaft fixedly connected with cutting piece, still be equipped with in the chamber wall on the motor displacement chamber and draw a chamber, it is equipped with another part and is located to draw a intracavity motor displacement intracavity and with the piece is drawn in the contact of motor left end face, draw a right-hand member face still fixedly connected with other end with draw a chamber right side chamber wall fixed connection's the piece reset spring that draws, draw a right-hand member face fixedly connected with string, still be equipped with the signal chamber in the auxiliary assembly, it is equipped with the signal piece to indicate the intracavity, signal piece rear end face fixedly connected with other end with signal chamber rear chamber wall fixed connection's signal spring, it still fixedly connected with to indicate piece rear end face the other end of string, be equipped with the input port in the chamber rear chamber wall to indicate.
Furthermore, an output port is arranged in the lower cavity wall of the indicating cavity, a driven cavity is arranged in the output port rear cavity wall, the driven cavity rear cavity wall is rotatably connected with a rotating shaft, the other end of the rotating shaft penetrates through the driven cavity front cavity wall to be rotatably connected with the output port front cavity wall, a rotating wheel is fixedly connected with the rotating shaft in the output port, a driven rope wheel is fixedly connected with the rotating shaft in the driven cavity, the other end of the thin rope is wound on the driven rope wheel, the rear end face of the driven rope wheel is fixedly connected with a rotating torsion spring, the other end of the rotating torsion spring is fixedly connected with the driven cavity rear cavity wall, a plugging block cavity with a forward opening is further arranged in the output port rear cavity wall, another part of a plugging block in the output port is further arranged in the plugging block cavity, and a plugging block reset spring is fixedly connected with the other end of the plugging block rear cavity, the rear end face of the plugging block is also fixedly connected with a long rope.
Further, the driving mechanism comprises a high-pressure oil placing cavity which is arranged in the auxiliary equipment, an oil pump is arranged in the high-pressure oil placing cavity, the upper end face of the oil pump is fixedly connected with an oil conveying pipe, a valve cavity is arranged in the upper cavity wall of the high-pressure oil placing cavity, the lower cavity wall of the valve cavity is communicated with an oil return channel of the upper cavity wall of the high-pressure oil placing cavity, a control cavity is also arranged in the rear cavity wall of the valve cavity, a valve is also arranged in the valve cavity, the rear end face of the valve is fixedly connected with a T-shaped rod of which the other part is arranged in the control cavity, the front end face of the T-shaped rod in the control cavity is fixedly connected with an extension spring of which the other end is fixedly connected with the front cavity wall of the control cavity, the rear cavity wall of the control cavity is fixedly connected with an electromagnet, the rear end face of the T-shaped rod, the valve cavity is internally provided with a control block, the other part of the control block is positioned in the control cavity, the upper end surface of the control block is fixedly connected with a control spring, the other end of the control spring is fixedly connected with the upper cavity wall of the control block cavity, the front end surface of the control block is fixedly connected with the other end of the long rope, and the inner wall of the upper cavity wall of the valve cavity is also provided with the other end of the input port and the other end of the output port.
Further, the auxiliary mechanism comprises a handle cavity arranged in the auxiliary equipment, the handle cavity is internally provided with another part of handle arranged outside, the handle is fixedly connected with a rotary clamping wheel and a rope winding wheel, a short rope is wound on the rope winding wheel, the left end face of the rope winding wheel is fixedly connected with a rotary torsion spring of which the other end is fixedly connected with the left cavity wall of the handle cavity, the right cavity wall of the handle cavity is internally provided with a I-shaped cavity, the I-shaped cavity is internally provided with an I-shaped block, the right end face of the I-shaped block is fixedly connected with a compression spring of which the other end is fixedly connected with the right cavity wall of the I-shaped cavity, the left end face of the I-shaped block is fixedly connected with a hemp rope, the upper cavity wall of the handle cavity is internally provided with a clamping block cavity with a downward opening, the clamping block cavity is also internally provided with another part of the clamping block, the upper end, the upper end face of the fixture block is fixedly connected with the other end of the hemp rope, the auxiliary equipment is further internally provided with two rear wheel cavities and two front wheel cavities, the rear wheel cavity rear cavity wall is rotatably connected with a wheel shaft, the other end of the wheel shaft penetrates through the rear wheel cavity front cavity wall to the front wheel cavity front cavity wall, and the wheel shaft in the rear wheel cavity and the front wheel cavity is fixedly connected with wheels.
Further, the left side and the right side of the auxiliary equipment are both provided with fixed cavities with downward openings, fixed blocks are arranged in the fixed cavities, the other ends of the upper end faces of the fixed blocks are fixedly connected with the fixed springs fixedly connected with the upper cavity walls of the fixed cavities, the fixed cavities are close to push block cavities are arranged in the cavity walls of the rear wheel cavities, another parts of the push blocks are arranged in the push blocks, the push blocks in the fixed cavities are fixedly connected with the other ends of the lower end faces of the push blocks and the push block springs fixedly connected with the lower cavity walls of the push block cavities, and the lower end faces of the push blocks are fixedly connected with the fixed blocks
Furthermore, the lower end face of the push block is fixedly connected with the rope winding wheel through the short rope, the upper end face of the fixture block is fixedly connected with the left end face of the I-shaped block through the hemp rope, the right end face of the pull block is fixedly connected with the driven rope wheel through the thin rope, the front end face of the control block is fixedly connected with the rear end face of the block through the long rope, the elasticity of a cavity of the control block is larger than that of the block reset spring, the rear end face of the indication block is fixedly connected with the upper end face of the support block, the elasticity of the indication spring is larger than that of the support spring, and the thin rope is an elastic rope.
The invention has the beneficial effects that: the device simple structure, the simple operation, the device staff places the device in radio tower base department at first when normal use, then the staff is fixed the device again and is cut certain root electricity tower column foot of base simultaneously, can control the direction of empting of electricity tower for later make this moment because the structural action of device makes the electricity tower can not collapse, the staff cuts the cable of fixing in advance again afterwards, make the electricity tower empty towards the direction that the device was placed under the effect of device simultaneously, guarantee staff's life safety and saved financial resources and materials with this, the cost of dismantling has been reduced.
Drawings
In order to more clearly illustrate the embodiments of the invention or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly described below, and it is obvious that the drawings in the following description are only some embodiments of the invention, and it is obvious for those skilled in the art that other drawings can be obtained based on these drawings without creative efforts.
FIG. 1 is a schematic structural diagram of an embodiment of the present invention;
FIG. 2 is a schematic diagram of the structure A-A of FIG. 1 according to an embodiment of the present invention;
FIG. 3 is a schematic diagram of the structure B-B in FIG. 1 according to an embodiment of the present invention;
FIG. 4 is an enlarged schematic view of the structure at C in FIG. 1 according to an embodiment of the present invention.
Detailed Description
The invention will now be described in detail with reference to fig. 1-4, wherein for ease of description the orientations described hereinafter are now defined as follows: the up, down, left, right, and front-back directions described below correspond to the up, down, left, right, and front-back directions in the projection relationship of fig. 1 itself.
The auxiliary device for detaching a radio tower, which is described in conjunction with fig. 1-4, includes an auxiliary device 10, a supporting mechanism 77 for supporting a radio tower is further disposed in the auxiliary device 10, a driving mechanism 78 for providing power for the device is further disposed in the auxiliary device 10, an auxiliary mechanism 79 for fixing the device is further disposed in the auxiliary device 10, the supporting mechanism 77 includes a supporting cavity 11 disposed in the auxiliary device 10, a supporting block 12 is disposed in the supporting cavity 11, a supporting spring 13 is fixedly connected to a lower end face of the supporting block 12, the other end of the supporting spring is fixedly connected to an upper cavity wall of the supporting cavity 11, a thick rope 14 is further fixedly connected to an upper end face of the supporting block 12, a cutting placing cavity 23 is further disposed in the supporting cavity 11, a motor displacement cavity 21 is further disposed in an upper cavity wall of the cutting placing cavity 23, and a motor 20 is disposed in the motor displacement cavity 21, the left end face of the motor 20 is fixedly connected with the other end and fixedly connected with the left cavity wall of the motor displacement cavity 21, the motor 20 is in power connection with a power shaft 22 of which the other part is positioned in the cutting placement cavity 23, the power shaft 22 is fixedly connected with a cutting blade 24, the upper cavity wall of the motor displacement cavity 21 is also provided with a pulling block cavity 16, the pulling block cavity 16 is internally provided with a pulling block 15 of which the other part is positioned in the motor displacement cavity 21 and is in contact with the left end face of the motor 20, the right end face of the pulling block 15 is also fixedly connected with a pulling block reset spring 17 of which the other end is fixedly connected with the right cavity wall of the pulling block cavity 16, the right end face of the pulling block 15 is fixedly connected with a thin rope 18, the auxiliary equipment 10 is also internally provided with a signaling cavity 76, the signaling block 41 is arranged in the signaling cavity 76, and the rear end face of the signaling block 41 is fixedly connected with, the rear end face of the indicating block 41 is also fixedly connected with the other end of the thick rope 14, and an input port 39 is arranged in the rear cavity wall of the indicating cavity 76.
Beneficially, an output port 40 is arranged in the lower cavity wall of the indicating cavity 76, a driven cavity 54 is arranged in the rear cavity wall of the output port 40, the rear cavity wall of the driven cavity 54 is rotatably connected with a rotating shaft 53, the other end of the rotating shaft passes through the front cavity wall of the driven cavity 54 and is rotatably connected with the front cavity wall of the output port 40, the rotating shaft 53 in the output port 40 is fixedly connected with a rotating wheel 52, the rotating shaft 53 in the driven cavity 54 is fixedly connected with a driven rope wheel 55, the other end of the thin rope 18 is wound on the driven rope wheel 55, the rear end face of the driven rope wheel 55 is fixedly connected with a rotating torsion spring 56, the other end of the rotating torsion spring is fixedly connected with the rear cavity wall of the driven cavity 54, a blocking block cavity 44 with a forward opening is further arranged in the rear cavity wall of the output port 40, another part of a blocking block 46 in the output port 40 is further arranged in the blocking cavity 44, the rear end face of the blocking block 46 is fixedly, the rear end face of the block 46 is also fixedly connected with a long rope 38.
Beneficially, actuating mechanism 78 includes and is located still be equipped with high pressure oil in auxiliary assembly 10 and place chamber 57, high pressure oil is placed and is equipped with oil pump 60 in the chamber 57, oil pump 60 up end fixedly connected with defeated oil pipe 61, high pressure oil is placed and is equipped with valve cavity 37 in the chamber 57 epicoele wall, valve cavity 37 lower chamber wall with high pressure oil places return channel 58 that chamber 57 epicoele wall communicates, still be equipped with control chamber 32 in the chamber wall behind valve cavity 37, still be equipped with valve 59 in the valve cavity 37, valve 59 rear end fixedly connected with another part is located T type pole 63 in control chamber 32, be located before the T type pole 63 in control chamber 32 terminal surface fixedly connected with the other end with control chamber 32 front chamber wall fixedly connected's extension spring 62, control chamber 32 rear chamber wall fixedly connected with electro-magnet 31, be located in control chamber 32T type pole 63 rear end fixedly connected with iron sheet 64, a control block cavity 35 is further arranged in the upper cavity wall of the control cavity 32, another part of the control block 33 located in the control cavity 32 is arranged in the control block cavity 35, the upper end face of the control block 33 is fixedly connected with a control spring 34, the other end of the control spring is fixedly connected with the upper cavity wall of the control block cavity 35, the front end face of the control block 33 is fixedly connected with the other end of the long rope 38, and the upper cavity wall of the valve cavity 37 is further internally provided with the other end of the input port 39 and the other end of the output port 40.
Beneficially, the auxiliary mechanism 79 includes a handle cavity 50 disposed in the auxiliary device 10, another part of the handle 72 disposed outside is disposed in the handle cavity 50, the handle 72 is fixedly connected with a rotary clamping wheel 51 and a rope winding wheel 74, the short rope 27 is wound on the rope winding wheel 74, the left end surface of the rope winding wheel 74 is fixedly connected with a rotary torsion spring 75, the other end of the rotary torsion spring is fixedly connected with the left cavity wall of the handle cavity 50, a tool cavity 71 is further disposed in the right cavity wall of the handle cavity 50, a tool block 69 is disposed in the tool cavity 71, the right end surface of the tool block 69 is fixedly connected with a compression spring 70, the other end of the compression spring is fixedly connected with the right cavity wall of the tool cavity 71, the left end surface of the tool block 69 is fixedly connected with a hemp rope 49, a clamping block cavity 47 with a downward opening is further disposed in the handle cavity 50, and another part of the clamping block 43 is disposed in the, the fixture block 43 up end fixedly connected with other end with fixture block cavity 47 goes up cavity wall fixed connection's fixture block reset spring 48, fixture block 43 up end still fixedly connected with the other end of rope made of hemp 49, still be equipped with in the auxiliary assembly 10 and still be equipped with two rear wheel cavities 65 and two front wheel cavities 68 respectively, rear wheel cavity 65 rear cavity wall rotates and is connected with the other end and runs through rear wheel cavity 65 front cavity wall extremely the wheel axle 67 that front wheel cavity 68 front cavity wall rotated the connection is located in rear wheel cavity 65 with in the front wheel cavity 68 wheel axle 67 is fixedly connected with wheel 66 respectively.
Beneficially, the left side and the right side of the auxiliary device 10 are respectively provided with a fixing cavity 29 with a downward opening, a fixing block 28 is arranged in the fixing cavity 29, the upper end face of the fixing block 28 is fixedly connected with a fixing spring 30 with the other end fixedly connected with the upper cavity wall of the fixing cavity 29, a push block cavity 80 is arranged in the cavity wall of the fixing cavity 29 close to the rear wheel cavity 65, another push block 25 is arranged in the push block cavity 80, the other part of the push block 25 is located in the fixing cavity 29, and the lower end face of the push block 25 is fixedly connected with a lower cavity wall of the push block cavity 80
Advantageously, the lower end face of the push block 25 is fixedly connected with the rope winding wheel 74 through the short rope 27, the upper end face of the fixture block 43 is fixedly connected with the left end face of the I-shaped block 69 through the hemp rope 49, the right end face of the pull block 15 is fixedly connected with the driven rope wheel 55 through the thin rope 18, the front end face of the control block 33 is fixedly connected with the rear end face of the block 46 through the long rope 38, the elasticity of the control block cavity 35 is greater than that of the block return spring 45, the rear end face of the schematic block 41 is fixedly connected with the upper end face of the support block 12, the elasticity of the schematic spring 42 is greater than that of the support spring 13, and the thin rope 18 is an elastic rope.
Sequence of mechanical actions of the whole device:
in the initial state: the lower end face of the supporting block 12 is in contact with the lower cavity wall of the supporting cavity 11, the lower end faces of the two fixing blocks 28 are higher than the ground, and the cutting piece 24 is located in the cutting placing cavity 23.
1: firstly, a worker places the device at a base where a radio tower is preset, so that the radio tower can be detached according to self control, when the device is placed, the worker rotates a handle 72 to drive a rope winding wheel 74 to rotate, the rope winding wheel 74 rotates to tension a short rope 27, push blocks 25 on the left side and the right side move downwards to drive a fixing block 28 to move downwards, and therefore the stability of the device is guaranteed, and the fixation of the device is completed;
2: then the oil pump 60 is started, so that the high-pressure oil in the high-pressure oil placing cavity 57 passes through the oil delivery pipe 61 and the valve 59, at this time, the electromagnet 31 is electrified, the T-shaped rod 63 is further moved backwards, so that the electromagnet 31 is attracted with the iron sheet 64, at the same time, the control block 33 is pushed due to the backward movement of the T-shaped rod 63, so that the long rope 38 is tensioned, so that the blocking block 46 is moved backwards, so that the indication cavity 76 is communicated with the output port 40, at this time, the high-pressure oil enters the indication cavity 76 through the input port 39 through the valve 59, at this time, the indication block 41 is pushed to move forwards, so that the thick rope 14 is tensioned, so that the support block 12 is moved upwards, so that a transverse tower of the radio tower is in contact with the upper end face of the support block 12, preparation is made for the later cutting action, when the support block 12 is in contact with the upper cavity wall of the support cavity 11, then the rotating wheel 52 is driven to rotate, the rotating shaft 53 is driven to rotate, the driven rope wheel 55 is driven to rotate, the thin rope 18 is tensioned at the moment, the pulling block 15 is driven to move rightwards, the motor 20 is started at the moment, the power shaft 22 is driven to rotate, the cutting blade 24 is driven to rotate, preparation is made for later cutting, when the motor 20 is moved to be in contact with the right cavity wall of the motor displacement cavity 21, the tower legs of the radio tower are cut at the moment, the radio tower is more easily disassembled, but the whole radio tower cannot collapse due to the cutting of the tower legs under the action of the supporting blocks 12 and the fixing blocks 28;
3: at the moment, the oil pump 60 is turned off, the motor 20 is turned off, the driven rope pulley 55 is further turned reversely under the action of the rotating torsion spring 56, the thin rope 18 is further turned reversely and loosened, the pulling block 15 is further moved leftwards and reset under the action of the pulling block return spring 17, the motor 20 is moved leftwards and reset under the action of the displacement spring 19, at the moment, high-pressure oil is not continuously supplied into the indicating cavity 76, the indicating block 41 is further slowly reset backwards under the action of the indicating spring 42, at the moment, the thick rope 14 is loosened, the supporting block 12 is further moved downwards under the action of the supporting spring 13, the radio tower above the radio tower is slowly in a shaking state, at the moment, a worker cuts a cable which is placed in advance, just above the radio tower and unstably, at the moment, and at the whole radio tower is turned towards the placing device due to the fact that a part of the cut part, therefore, the purpose of controlling the toppling direction is achieved, when the supporting block 12 is in contact with the lower cavity wall of the supporting cavity 11, the electromagnet 31 is powered off, the T-shaped rod 63 is enabled to move forwards and reset under the action of the extension spring 62, the control block 33 moves downwards under the action of the control spring 34, the long rope 38 is further enabled to be loosened, the blocking block 46 is enabled to move forwards and reset, meanwhile, due to the fact that the electric tower base is of the trapezoid structure, the auxiliary device 10 is protected from being crushed due to toppling of the radio tower, after the disassembly is finished, a worker pushes the handle 72, the I-shaped block 69 is further enabled to move rightwards, the hemp rope 49 is tensioned, the clamping block 43 is further enabled to move upwards, the limitation on the rotating clamping wheel 51 is removed, the rope rolling wheel 74 is enabled to rotate reversely and reset under the action of the rotating torsion spring 75, the short rope 27 is further enabled to be loosened, and, at the same time, the anchor block 28 is caused to move upwardly under the influence of the anchor spring 30 and then out of the device, completing the job.
The above embodiments are merely illustrative of the technical ideas and features of the present invention, and the purpose thereof is to enable those skilled in the art to understand the contents of the present invention and implement the present invention, and not to limit the protection scope of the present invention. All equivalent changes and modifications made according to the spirit of the present invention should be covered within the protection scope of the present invention.

Claims (6)

1. A disassembly aid for a radio tower, comprising an aid characterized by: the auxiliary equipment is also internally provided with a supporting mechanism for supporting the radio tower, the auxiliary equipment is also internally provided with a driving mechanism for providing power for the device, the auxiliary equipment is also internally provided with an auxiliary mechanism for fixing the device, the supporting mechanism comprises a supporting cavity positioned in the auxiliary equipment, a supporting block is arranged in the supporting cavity, the lower end surface of the supporting block is fixedly connected with a supporting spring of which the other end is fixedly connected with the upper cavity wall of the supporting cavity, the upper end surface of the supporting block is also fixedly connected with a thick rope, a cutting placing cavity is also arranged in the supporting cavity, a motor displacement cavity is also arranged in the upper cavity wall of the cutting placing cavity, a motor is arranged in the motor displacement cavity, the left end surface of the motor is fixedly connected with the other end and is fixedly connected with the left cavity wall of the motor displacement cavity, and the motor power is connected with a power shaft, the power shaft fixedly connected with cuts the piece, still be equipped with in the chamber wall on the motor displacement chamber and draw a chamber, it is located to draw a intracavity be equipped with another part motor displacement intracavity and with the piece is drawn of the contact of motor left end face, draw a right-hand member face still fixedly connected with other end with draw a chamber right side chamber wall fixed connection draw a reset spring, draw a right-hand member face fixedly connected with string, still be equipped with the signal chamber in the auxiliary assembly, it is equipped with the signal piece to indicate the intracavity, signal piece rear end face fixedly connected with other end with signal chamber rear chamber wall fixed connection's signal spring, it is still fixedly connected with to indicate a rear end face the other end of string, be equipped with the input port in the chamber rear chamber wall to indicate.
2. A disassembly aid for a radio tower as claimed in claim 1, wherein: the lower cavity wall of the indicating cavity is internally provided with a delivery outlet, the rear cavity wall of the delivery outlet is internally provided with a driven cavity, the rear cavity wall of the driven cavity is rotatably connected with a rotating shaft, the other end of the rotating shaft penetrates through the front cavity wall of the driven cavity to be rotatably connected with the front cavity wall of the delivery outlet, the rotating shaft in the delivery outlet is fixedly connected with a rotating wheel, the rotating shaft in the driven cavity is fixedly connected with a driven rope wheel, the other end of the thin rope is wound on the driven rope wheel, the rear end face of the driven rope wheel is fixedly connected with a rotating torsion spring, the other end of the driven rope wheel is fixedly connected with the rear cavity wall of the driven cavity, the rear cavity wall of the delivery outlet is internally provided with a plugging block cavity with a forward opening, the other part of the plugging block in the delivery outlet is also arranged in the plugging block cavity, the rear, the rear end face of the plugging block is also fixedly connected with a long rope.
3. A disassembly aid for a radio tower as claimed in claim 1, wherein: the driving mechanism comprises a high-pressure oil placing cavity which is arranged in the auxiliary equipment, an oil pump is arranged in the high-pressure oil placing cavity, the upper end face of the oil pump is fixedly connected with an oil conveying pipe, a valve cavity is arranged in the upper cavity wall of the high-pressure oil placing cavity, the lower cavity wall of the valve cavity is communicated with an oil return channel of the upper cavity wall of the high-pressure oil placing cavity, a control cavity is also arranged in the rear cavity wall of the valve cavity, a valve is also arranged in the valve cavity, the rear end face of the valve is fixedly connected with a T-shaped rod, the other part of the T-shaped rod is arranged in the control cavity, the front end face of the T-shaped rod is fixedly connected with an extension spring, the other end of the extension spring is fixedly connected with the front cavity wall of the control cavity, the rear cavity wall of the control cavity is fixedly connected with an electromagnet, the rear end face, the valve cavity is internally provided with a control block, the other part of the control block is positioned in the control cavity, the upper end surface of the control block is fixedly connected with a control spring, the other end of the control spring is fixedly connected with the upper cavity wall of the control block cavity, the front end surface of the control block is fixedly connected with the other end of the long rope, and the inner wall of the upper cavity wall of the valve cavity is also provided with the other end of the input port and the other end of the output port.
4. A disassembly aid for a radio tower as claimed in claim 1, wherein: the auxiliary mechanism comprises a handle cavity which is positioned in the auxiliary equipment, the handle cavity is internally provided with another part of handle which is positioned outside, the handle is fixedly connected with a rotary clamping wheel and a rope winding wheel, a short rope is wound on the rope winding wheel, the left end surface of the rope winding wheel is fixedly connected with a rotary torsion spring of which the other end is fixedly connected with the left cavity wall of the handle cavity, the right cavity wall of the handle cavity is internally provided with an I-shaped cavity, the I-shaped cavity is internally provided with an I-shaped block, the right end surface of the I-shaped block is fixedly connected with a compression spring of which the other end is fixedly connected with the right cavity wall of the I-shaped cavity, the left end surface of the I-shaped block is fixedly connected with a hemp rope, the upper cavity wall of the handle cavity is internally provided with a clamping block cavity with a downward opening, the clamping block cavity is internally provided with another part of which is, the upper end face of the fixture block is fixedly connected with the other end of the hemp rope, the auxiliary equipment is further internally provided with two rear wheel cavities and two front wheel cavities, the rear wheel cavity rear cavity wall is rotatably connected with a wheel shaft, the other end of the wheel shaft penetrates through the rear wheel cavity front cavity wall to the front wheel cavity front cavity wall, and the wheel shaft in the rear wheel cavity and the front wheel cavity is fixedly connected with wheels.
5. A disassembly aid for a radio tower as claimed in claim 1, wherein: the auxiliary assembly left and right sides all is equipped with the fixed chamber that the opening is decurrent, fixed intracavity is equipped with the fixed block, fixed block up end fixedly connected with other end with fixed chamber epicoele wall fixed connection's fixed spring, fixed chamber is close to be equipped with the ejector pad chamber in the chamber wall in rear wheel chamber, the ejector pad intracavity still is equipped with another part and is located the ejector pad of fixed intracavity, terminal surface fixedly connected with other end under the ejector pad with ejector pad chamber cavity wall fixed connection's ejector pad spring, terminal surface fixedly connected with under the ejector pad the other end of short rope.
6. A disassembly aid for a radio tower as claimed in claim 1, wherein: the lower end face of the push block is fixedly connected with the rope winding wheel through the short rope, the upper end face of the fixture block is fixedly connected with the left end face of the I-shaped block through the hemp rope, the right end face of the pull block is fixedly connected with the driven rope wheel through the thin rope, the front end face of the control block is fixedly connected with the rear end face of the block through the long rope, the elasticity of a cavity of the control block is larger than that of the block reset spring, the rear end face of the indication block is fixedly connected with the upper end face of the support block, the elasticity of the indication spring is larger than that of the support spring, and the thin rope is an elastic rope.
CN202110022306.7A 2021-01-08 2021-01-08 Be used for radio tower to dismantle auxiliary assembly Active CN112664037B (en)

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CN202110022306.7A CN112664037B (en) 2021-01-08 2021-01-08 Be used for radio tower to dismantle auxiliary assembly

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