CN114934662A - Suspension type operation platform - Google Patents

Suspension type operation platform Download PDF

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Publication number
CN114934662A
CN114934662A CN202210875130.4A CN202210875130A CN114934662A CN 114934662 A CN114934662 A CN 114934662A CN 202210875130 A CN202210875130 A CN 202210875130A CN 114934662 A CN114934662 A CN 114934662A
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China
Prior art keywords
rope
wheel
external box
sleeved
frame
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Granted
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CN202210875130.4A
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Chinese (zh)
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CN114934662B (en
Inventor
王成勇
杨红果
庞献良
刘刚
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Tisheng Elevator China Co ltd Chengdu Branch
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Tisheng Elevator China Co ltd Chengdu Branch
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Publication of CN114934662A publication Critical patent/CN114934662A/en
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Publication of CN114934662B publication Critical patent/CN114934662B/en
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    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04GSCAFFOLDING; FORMS; SHUTTERING; BUILDING IMPLEMENTS OR AIDS, OR THEIR USE; HANDLING BUILDING MATERIALS ON THE SITE; REPAIRING, BREAKING-UP OR OTHER WORK ON EXISTING BUILDINGS
    • E04G3/00Scaffolds essentially supported by building constructions, e.g. adjustable in height
    • E04G3/28Mobile scaffolds; Scaffolds with mobile platforms
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04GSCAFFOLDING; FORMS; SHUTTERING; BUILDING IMPLEMENTS OR AIDS, OR THEIR USE; HANDLING BUILDING MATERIALS ON THE SITE; REPAIRING, BREAKING-UP OR OTHER WORK ON EXISTING BUILDINGS
    • E04G3/00Scaffolds essentially supported by building constructions, e.g. adjustable in height
    • E04G3/28Mobile scaffolds; Scaffolds with mobile platforms
    • E04G3/30Mobile scaffolds; Scaffolds with mobile platforms suspended by flexible supporting elements, e.g. cables
    • E04G3/32Hoisting devices; Safety devices
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04GSCAFFOLDING; FORMS; SHUTTERING; BUILDING IMPLEMENTS OR AIDS, OR THEIR USE; HANDLING BUILDING MATERIALS ON THE SITE; REPAIRING, BREAKING-UP OR OTHER WORK ON EXISTING BUILDINGS
    • E04G3/00Scaffolds essentially supported by building constructions, e.g. adjustable in height
    • E04G3/28Mobile scaffolds; Scaffolds with mobile platforms
    • E04G2003/286Mobile scaffolds; Scaffolds with mobile platforms mobile vertically

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  • Engineering & Computer Science (AREA)
  • Architecture (AREA)
  • Mechanical Engineering (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Storing, Repeated Paying-Out, And Re-Storing Of Elongated Articles (AREA)
  • Lift-Guide Devices, And Elevator Ropes And Cables (AREA)

Abstract

The invention discloses a suspension type operation platform, which belongs to the technical field of high-altitude lifting operation and comprises a hanging basket, wherein a rope is bound at the top of the hanging basket, the other end of the rope is wound and connected onto a winding roller, a hoisting mechanism is assembled on the winding roller, and a plurality of inspection mechanisms are sleeved on the surface of the rope and used for inspecting whether the surface of the rope is damaged or not. According to the rope repairing method, the more thick the degree of the inkpad coated on the surface of the rope is, the more obvious the inkpad adhered on the paper tape is, part of the inkpad can be remained on the corresponding damaged part on the surface of the rope, so that a subsequent worker can repair the damaged part of the rope, on the other hand, the worker can judge whether the rope needs to be repaired or replaced by checking whether the ink mark exists on the paper tape and the depth of the inkpad, judge the number of burrs on the rope, know the damage condition of the rope accurately and timely, facilitate timely replacement or repair of the rope, and effectively reduce potential safety hazards.

Description

Suspension type operation platform
Technical Field
The invention belongs to the technical field of high-altitude lifting operation, and particularly relates to a suspension type operation platform.
Background
In high-altitude operation, a suspended type operation platform is generally adopted to hoist constructors and cargoes to a high place.
The prior art discloses a patent invention in the technical field of partial high-altitude lifting operation, wherein the patent application number is CN202011256938.1, and discloses a high-voltage overhead line aerial operation platform which comprises a platform body, a lifting mechanism, a fixing mechanism and a control mechanism, wherein the lifting mechanism is used for moving the platform body to an overhead line cross arm; the lifting mechanism comprises an unmanned aerial vehicle, a hanging module arranged below the unmanned aerial vehicle, and two first hooks respectively arranged at two sides of the platform body, wherein the two first hooks are connected with the hanging module through a steel cable, the high-voltage overhead line aerial operation platform is characterized in that the lifting mechanism moves the hanging module to the position above an overhead line cross arm by controlling the unmanned aerial vehicle and then fixes the hanging module on the cross arm, the unmanned aerial vehicle is separated, one end of the steel cable on the hanging module is connected with the two hooks at the side surface of the platform body, the other end of the steel cable is vertical to the ground, a ground operator pulls the platform body to the position of the high-voltage overhead line cross arm through a cable tightener, then the operator in the platform body fixes the platform body on the cross arm through a fixing mechanism, so that the operator can safely carry out wire outlet installation, maintenance, overhaul and the like on the power transmission line, and when the operation platform is lifted, the use of a large trolley is avoided, so that the steel cable can be suitable for the operation of high-voltage overhead line iron towers in different terrains, but the technical scheme has certain defects in the implementation process, the steel cable is worn after being used for a period of time, if the steel cable is seriously worn, burrs are generated on the surface of the steel cable, if the burrs are large in quantity and long in length, the damage degree of the steel cable can be deepened in a short time when the burrs are not repaired in time, the service life of the steel cable is seriously shortened, and meanwhile, certain potential safety hazards can be brought.
Based on this, the invention designs a suspension type operation platform to solve the above problems.
Disclosure of Invention
The invention aims to: the suspension type operation platform is provided in order to solve the problems that after a steel cable is used for a period of time, the steel cable is abraded, if the abrasion is serious, burrs are generated on the surface of the steel cable, if the burr amount is large and the burrs are long, the damage degree of the steel cable can be deepened in a short time if the burrs are not repaired in time, the service life of the steel cable is seriously shortened, and meanwhile, certain potential safety hazards can be brought.
In order to achieve the purpose, the invention adopts the following technical scheme:
a suspension type operation platform comprises a hanging basket, wherein a rope is bound to the top of the hanging basket, the other end of the rope is wound and connected onto a winding roller, a winding mechanism is assembled on the winding roller, a plurality of inspection mechanisms are sleeved on the surface of the rope and used for inspecting whether the surface of the rope is damaged or not, a cleaning mechanism is further sleeved on the surface of the rope, a driving mechanism is arranged on the outer arc surface of the cleaning mechanism and used for cleaning dirt on the surface of the rope, an oiling mechanism is connected to the top of the cleaning mechanism and used for coating a protective oil film on the surface of the rope, and the oiling mechanism is sleeved on the surface of the rope;
the inspection mechanism comprises a first external box, the first external box is sleeved on the periphery of the rope, a plurality of arc-shaped printing boxes in an annular array are arranged on the periphery of the rope corresponding to the inside of the first external box, and a printing plate is clamped at the position, close to the rope, of the outer arc surface of each arc-shaped printing box;
the arc-shaped print box is embedded in the inner side of the first wheel carrier, the inner side wall of the first wheel carrier is connected with a first sliding seat, the first sliding seat is connected in a first sliding groove formed in the end face of the arc-shaped print box in a sliding manner, and the end face of the inner side of the first sliding groove is connected with one face, close to the first sliding seat, of the first supporting spring;
the inner side of the first wheel frame is embedded with a first belt winding wheel, two end parts of the first belt winding wheel are respectively and rotatably connected with two end surfaces of the inner side of the first wheel frame through two bearings, one end of the first belt winding wheel is rotatably connected in a first adapter port formed in the inner side wall of the arc-shaped printing box through a bearing, the first belt winding wheel is sleeved in a second adapter port formed in the inner side wall of the arc-shaped printing box, an inner toothed ring is connected in the second adapter port, a plurality of teeth in an annular array are meshed on the inner toothed ring, and the edge of one surface of each tooth, which is far away from the inner toothed ring, is hinged at the end part of the first belt winding wheel through a spring hinge;
the top of the first wheel carrier is connected with a second wheel carrier through a bridge type connecting frame, the inner side of the second wheel carrier is respectively and rotatably connected with a second belt winding wheel and a fixed pulley, and one side, far away from the rope, of the bridge type connecting frame is connected with the inner side wall of the first external box through a second supporting spring.
As a further description of the above technical solution:
the winding mechanism comprises a roll shaft, the roll shaft is sleeved inside the winding roll, the surface of the roll shaft is connected with a driven wheel, the surface of the driven wheel is connected with a driving wheel in a transmission mode through a transmission belt, the driving wheel is connected to an output shaft of an industrial motor, the surface of a machine body of the industrial motor is connected to the inner side wall of the electromechanical rack, the surface of the output shaft of the industrial motor is connected to the inner side wall of the electromechanical rack in a rotating mode through a bearing, and the surface of the roll shaft is connected to the inner side wall of the electromechanical rack in a rotating mode through the bearing.
As a further description of the above technical solution:
the number of the inspection mechanisms is set to be a plurality, and the plurality of the inspection mechanisms are internally provided with first external boxes which are connected with each other.
As a further description of the above technical solution:
the cleaning mechanism comprises a second external box, the second external box is sleeved on the periphery of the rope, an adapter cylinder is sleeved on the periphery of the rope, the end part of the adapter cylinder is rotatably connected into a port of the second external box through a bearing, a cleaning brush is arranged on the inner side wall of the adapter cylinder, and the cleaning brush acts on the surface of the rope.
As a further description of the above technical solution:
the driving mechanism comprises a driven bevel gear, the driven bevel gear is connected to the surface of the transfer cylinder, a plurality of air cylinders in an annular array are clamped at the positions, corresponding to the driven bevel gear, of the surface of the second external connection box, the air cylinders are sleeved with driving bevel gears, the driving bevel gears are connected to the surface of the gear shaft, one ends, far away from the driving bevel gears, of the gear shaft are connected with fans, the outer arc surfaces of the fans are connected to the inside of the transfer ring in a rotating mode through bearings, the outer arc surfaces of the transfer ring are connected with second sliding seats, the second sliding seats are connected to the second sliding grooves formed in the inner side walls of the air cylinders in a sliding mode, and the end faces of the second sliding grooves are connected with the end faces of the inner sides of the second sliding grooves through third supporting springs.
As a further description of the above technical solution:
the oiling mechanism includes that the third is external to be boxed, the outer box cover of third is established in the periphery of rope, the surface of rope has cup jointed the oiling cover, the inside at the external box of third is inlayed to the oiling cover, the surface that the external box of third is connected with first link, the one end that the third was kept away from to first link is passed through the second link and is connected in the bottom of electromechanical rack, the one end that the electromechanical rack was kept away from to the second link is connected on the extrados of first external box.
As a further description of the above technical solution:
the clamping connection of the damping disc is characterized in that a second damping disc is clamped on the inner side wall of the first wheel frame and is rotatably connected to the surface of the first belt winding wheel, a first damping disc is clamped on the inner side wall of the second wheel frame, and the second belt winding wheel is rotatably connected to the end face of the first damping disc.
As a further description of the above technical solution:
the surface of the first external box is clamped with a transparent plate at a position corresponding to the first wheel carrier and the second wheel carrier, the surface of the second belt winding wheel is wound with a paper tape, and one end of the paper tape, far away from the second belt winding wheel, is wound around the fixed pulley and then is connected to the surface of the first belt winding wheel in a winding manner.
In summary, due to the adoption of the technical scheme, the invention has the beneficial effects that:
1. in the invention, the ink pad can absorb ink paste in the arc-shaped print box and coat the absorbed ink paste on the part of the rope surface corresponding to damage, the deeper the damage degree is, the thicker the coating degree of the ink paste is, in the process that the rope coated with the ink paste continuously rises, the ink paste can be contacted with the paper tape on the transmission part of the fixed pulley surface, the ink paste is contacted with the paper tape and can be adhered to the surface of the paper tape, the thicker the ink paste coated on the rope surface is, the more obvious the ink paste is adhered to the paper tape, part of the ink paste can be remained on the part of the rope surface corresponding to damage, so that a subsequent worker can repair the damaged part of the rope, on the other hand, the worker can judge whether the rope needs to be repaired or replaced by checking whether the paper tape has the mark and the depth of the ink paste, judge the number of burrs on the rope, and can accurately and timely know the damage condition of the rope, the rope is convenient to replace or repair in time, and the potential safety hazard can be effectively reduced.
2. According to the invention, when the printing plate is separated from the burr, the arc-shaped printing box can be driven to reset under the action of the reset elasticity of the first supporting spring, the tooth and the first belt winding wheel are connected through the spring hinge, so that the torsion can be applied to the tooth again through the inner tooth ring when the arc-shaped printing box is driven to reset, the tooth is overturned under the action of the stress of the spring hinge, the stability of the first belt winding wheel can be ensured when the arc-shaped printing box is driven to reset, and the backflow of the paper belt can be prevented.
3. In the invention, when the rope flows through the adapter cylinder, the cleaning brush can clean the rope for three hundred sixty degrees without dead angles, so that the surface cleanliness of the rope can be ensured to a higher degree, and the rope is prevented from being crushed due to the existence of hard harmful substances on the surface, and thus the rope can be prevented from being wound and laminated on the winding roller.
Drawings
Fig. 1 is a schematic view of an overall structure of a suspension type work platform according to the present invention;
fig. 2 is an enlarged schematic structural view of a place a in fig. 1 of a suspension type work platform according to the present invention;
fig. 3 is a schematic structural diagram of an inspection mechanism in a suspension type work platform according to the present invention;
fig. 4 is an enlarged schematic structural view of a suspension type work platform shown in fig. 2;
fig. 5 is a schematic structural view of a first pulley in a suspension type work platform according to the present invention;
fig. 6 is an enlarged schematic structural view of a place C in fig. 5 of a suspension type work platform according to the present invention;
fig. 7 is a schematic cross-sectional view of a second external box in a suspension-type work platform according to the present invention;
fig. 8 is an enlarged schematic structural view of a suspended work platform shown in fig. 7.
Illustration of the drawings:
1. a hanging basket; 2. a rope; 3. a winding roller; 4. a hoisting mechanism; 401. a roll shaft; 402. a driven wheel; 403. a transmission belt; 404. a driving wheel; 405. an industrial motor; 406. an electromechanical gantry; 5. an inspection mechanism; 501. a first external box; 502. a first wheel carrier; 503. a first belt winding wheel; 504. teeth; 505. an arc-shaped print box; 506. an inner gear ring; 507. a first sliding groove; 508. a first sliding seat; 509. a first support spring; 510. a second belt winding wheel; 511. a second wheel carrier; 512. a fixed pulley; 513. printing a plate; 514. a bridge type connecting frame; 515. a second support spring; 6. a cleaning mechanism; 601. a second external box; 602. a transfer cylinder; 603. cleaning with a brush; 7. a drive mechanism; 701. a driven bevel gear; 702. a drive bevel gear; 703. an air duct; 704. a fan; 705. a transfer ring; 706. a second sliding seat; 707. a second sliding groove; 708. a third support spring; 8. an oiling mechanism; 801. a third external box; 802. coating oil sleeve; 803. a first connecting frame; 9. a second link frame; 10. a transparent plate; 11. a first damping disc; 12. a second damping disc.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
Referring to fig. 1 to 8, the present invention provides a technical solution: a suspension type operation platform comprises a hanging basket 1, a rope 2 is bound at the top of the hanging basket 1, the other end of the rope 2 is wound and connected onto a winding roller 3, a winding mechanism 4 is assembled on the winding roller 3, a plurality of inspection mechanisms 5 are sleeved on the surface of the rope 2 and used for inspecting whether the surface of the rope 2 is damaged or not, a cleaning mechanism 6 is further sleeved on the surface of the rope 2, a driving mechanism 7 is arranged on the outer arc surface of the cleaning mechanism 6 and used for cleaning dirt on the surface of the rope 2, an oil coating mechanism 8 is connected to the top of the cleaning mechanism 6 and used for coating a protective oil film on the surface of the rope 2, and the oil coating mechanism 8 is sleeved on the surface of the rope 2;
the inspection mechanism 5 comprises a first external box 501, the first external box 501 is sleeved on the periphery of the rope 2, a plurality of arc-shaped printing boxes 505 in an annular array are arranged on the periphery of the rope 2 corresponding to the inside of the first external box 501, and a printing plate 513 is clamped at the position, close to the rope 2, of the outer arc surface of each arc-shaped printing box 505;
the arc-shaped print box 505 is embedded in the inner side of the first wheel frame 502, the inner side wall of the first wheel frame 502 is connected with a first sliding seat 508, the first sliding seat 508 is connected in a first sliding groove 507 arranged at the end surface of the arc-shaped print box 505 in a sliding way, and the end surface of the inner side of the first sliding groove 507 is connected with one surface close to the first sliding seat 508 through a first supporting spring 509;
a first belt winding wheel 503 is embedded on the inner side of the first wheel frame 502, two end parts of the first belt winding wheel 503 are respectively connected with two end surfaces of the inner side of the first wheel frame 502 in a rotating manner through two bearings, one end of the first belt winding wheel 503 is connected in a first adapter port formed in the inner side wall of the arc-shaped printing box 505 in a rotating manner through a bearing, the first belt winding wheel 503 is sleeved in a second adapter port formed in the inner side wall of the arc-shaped printing box 505, an inner gear ring 506 is connected in the second adapter port, a plurality of teeth 504 in an annular array are meshed on the inner gear ring 506, and the edge of one surface, far away from the inner gear ring 506, of each tooth 504 is hinged to the end part of the first belt winding wheel 503 through a spring hinge;
the top of the first wheel frame 502 is connected with a second wheel frame 511 through a bridge connection frame 514, the inner side of the second wheel frame 511 is respectively connected with a second winding wheel 510 and a fixed pulley 512 in a rotating way, and one side of the bridge connection frame 514 far away from the rope 2 is connected with the inner side wall of the first external box 501 through a second supporting spring 515.
The implementation mode is specifically as follows: the rope 2 flows through the first external box 501, the second external box 601 and the third external box 801 in the process of flowing upwards, when the rope 2 flows through the first external box 501, if the surface of the rope 2 is damaged to generate burrs, the damaged part of the rope 2 can be in contact with the printing plate 513, the printing plate 513 can absorb ink paste in the arc-shaped printing box 505, the absorbed ink paste is coated on the part, corresponding to the damage, of the surface of the rope 2, the deeper the damage degree is, the thicker the coating degree is, the ink paste coated on the rope 2 is, in the process of continuing to rise, the ink paste can be in contact with a paper tape at the surface transmission part of the fixed pulley 512, the ink paste can be in contact with the paper tape to be adhered to the surface of the paper tape, the thicker the ink paste coated on the surface of the rope 2 is, the more obvious the ink paste is adhered to the paper tape, when the printing plate 513 is in contact with the burrs, the arc-shaped printing box 505 can rotate through the linkage relationship between the inner toothed ring 506 and the teeth 504 to exert torsion force in the process of the arc-shaped printing box 505 On the first winding wheel 503, the first winding wheel 503 rotates under the action of torsion, and can wind and connect the paper tape printed with inkpad on the surface of the first winding wheel 503, when the printing plate 513 is separated from the burr, because the arc-shaped printing box 505 slides on the surface of the first sliding seat 508 through the first sliding groove 507 in the rotation process, the first supporting spring 509 is compressed, when the printing plate 513 is separated from the burr, the arc-shaped printing box 505 can be driven to reset under the action of the resetting elasticity of the first supporting spring 509, because the connection relationship between the teeth 504 and the first winding wheel 503 is the spring hinge, when the arc-shaped printing box 505 is driven to reset, the torsion can be applied on the teeth 504 again through the inner tooth ring 506, the teeth 504 are overturned under the action of the spring hinge, so that the stability of the first winding wheel 503 can be ensured when the arc-shaped printing box 505 is driven to reset, preventing the paper tape from reflowing.
Specifically, the winding mechanism 4 includes a roller shaft 401, the roller shaft 401 is sleeved inside the winding roller 3, the surface of the roller shaft 401 is connected with a driven wheel 402, the surface of the driven wheel 402 is in transmission connection with a driving wheel 404 through a transmission belt 403, the driving wheel 404 is connected on an output shaft of an industrial motor 405, the surface of a machine body of the industrial motor 405 is connected on the inner side wall of the electromechanical rack 406, the surface of the output shaft of the industrial motor 405 is connected on the inner side wall of the electromechanical rack 406 through a bearing in a rotating manner, and the surface of the roller shaft 401 is connected on the inner side wall of the electromechanical rack 406 through a bearing in a rotating manner.
The implementation mode is specifically as follows: when the hanging basket 1 needs to be lifted to a certain height, the operation of the industrial motor 405 is controlled, an output shaft of the industrial motor 405 can drive the driving wheel 404 to rotate in the working process, the driving wheel 404 acts on the driven wheel 402 through the transmission belt 403 with torsion, then the driven wheel 402 drives the winding roller 3 to rotate through the roller shaft 401, the winding roller 3 can wind the rope 2 of the hanging part on the surface of the winding roller 3 in the rotating process, and then the hanging basket 1 and constructors in the hanging basket 1 can be lifted to the height through the rope 2.
Specifically, the number of the inspection mechanisms 5 is set to be plural, and the plural inspection mechanisms 5 are built in the first external box 501 and connected with each other.
Specifically, the cleaning mechanism 6 includes a second external box 601, the second external box 601 is sleeved on the periphery of the rope 2, an adapter 602 is sleeved on the periphery of the rope 2, the end of the adapter 602 is rotatably connected in the port of the second external box 601 through a bearing, a cleaning brush 603 is arranged on the inner side wall of the adapter 602, and the cleaning brush 603 acts on the surface of the rope 2.
The implementation mode specifically comprises the following steps: in the process that the rope 2 flows through the adapter tube 602, the cleaning brush 603 can clean the rope 2 at three hundred sixty degrees without dead angles, so that the cleanness of the surface of the rope 2 can be ensured to a higher degree, and the rope 2 is prevented from having harder harmful substances on the surface.
Specifically, the driving mechanism 7 includes a driven bevel gear 701, the driven bevel gear 701 is connected to the surface of the adapter 602, a plurality of air ducts 703 in an annular array are clamped in the position, corresponding to the driven bevel gear 701, of the surface of the second external box 601, a driving bevel gear 702 is sleeved in the air ducts 703, the driving bevel gear 702 is connected to the surface of the gear shaft, one end, away from the driving bevel gear 702, of the gear shaft is connected to a fan 704, the outer arc surface of the fan 704 is rotatably connected to the inside of the adapter 705 through a bearing, the outer arc surface of the adapter 705 is connected to a second sliding seat 706, the second sliding seat 706 is slidably connected to a second sliding groove 707 formed in the inner side wall of the air duct 703, and the end surface of the second sliding groove 707 is connected to the end surface on the inner side of the second sliding groove 707 through a third support spring 708.
The implementation mode is specifically as follows: the fan 704 on the windward side rotates under the action of wind force, the fan 704 under the action of wind force approaches the direction of the adapter cylinder 602 in the second sliding groove 707 through the second sliding seat 706, and the third supporting spring 708 is deformed until the driving bevel gear 702 corresponding to the fan 704 contacts the driven bevel gear 701, the fan 704 rotates the adapter cylinder 602 under the action of the torque force converted by the wind force, and the adapter cylinder 602 drives the cleaning brush 603 to rotate on the surface of the rope 2.
Specifically, the oiling mechanism 8 includes a third external box 801, the third external box 801 is sleeved on the periphery of the rope 2, the surface of the rope 2 is sleeved with an oiling sleeve 802, the oiling sleeve 802 is embedded inside the third external box 801, the surface of the third external box 801 is connected with a first connecting frame 803, one end of the first connecting frame 803, which is far away from the third external box 801, is connected to the bottom of the electromechanical frame 406 through a second connecting frame 9, one end of the second connecting frame 9, which is far away from the electromechanical frame 406, is connected to the outer arc surface of the first external box 501, a second damping disc 12 is clamped on the inner side wall of the first wheel frame 502, the second damping disc 12 is rotatably connected to the surface of the first wheel winding wheel 503, a first damping disc 11 is clamped on the inner side wall of the second wheel frame 511, and the second wheel winding wheel 510 is rotatably connected to the end surface of the first damping disc 11, a transparent plate 10 is clamped on the surface of the first external box 501 corresponding to the positions of the first wheel frame 502 and the second wheel frame 511, the surface of the second winding wheel 510 is wound and connected with a paper tape, and one end of the paper tape far away from the second winding wheel 510 is wound and connected with the surface of the first winding wheel 503 after being wound and connected with the fixed pulley 512.
Working principle, when in use:
when the hanging basket 1 needs to be lifted to a certain height, the operation of the industrial motor 405 is controlled, an output shaft of the industrial motor 405 drives the driving wheel 404 to rotate in the working process, the driving wheel 404 applies torque force to the driven wheel 402 through the transmission belt 403, then the driven wheel 402 drives the winding roller 3 to rotate through the roller shaft 401, the winding roller 3 winds and connects the rope 2 of the hanging part on the surface of the winding roller 3 in the rotating process, and then the hanging basket 1 and constructors in the hanging basket 1 can be lifted to the height through the rope 2;
the rope 2 flows through the first external box 501, the second external box 601 and the third external box 801 in the process of flowing upwards, when the rope 2 flows through the first external box 501, if the surface of the rope 2 is damaged to generate burrs, the damaged part of the rope 2 is in contact with the printing plate 513, the printing plate 513 can absorb the inkpad in the arc-shaped printing box 505, the absorbed inkpad is coated on the part, corresponding to the damage, of the surface of the rope 2, the deeper the damage degree is, the thicker the coating degree of the inkpad is, the inkpad coated on the rope 2 is in contact with the paper tape at the surface transmission part of the fixed pulley 512 in the process of continuously rising, the inkpad is in contact with the paper tape to be adhered to the surface of the paper tape, the thicker the inkpad coated on the surface of the rope 2 is, the more obvious the inkpad adhered to the paper tape is, part of the surface of the rope 2, corresponding to the damage part, so that a subsequent worker can repair the damaged part of the rope 2, on the other hand, the worker can judge whether the rope 2 needs to be repaired or replaced or not by checking whether the paper tape has the mark or not and the depth of the inkpad, so that the number of burrs on the rope 2 can be judged, the damage condition of the rope 2 can be accurately and timely known, the rope 2 can be conveniently and timely replaced or repaired, and potential safety hazards can be effectively reduced;
when the printing plate 513 is in contact with the burr, the arc-shaped printing box 505 can rotate, torsion is acted on the first winding wheel 503 through the linkage relation between the inner tooth ring 506 and the teeth 504 in the rotating process of the arc-shaped printing box 505, the first winding wheel 503 rotates under the action of the torsion, and the paper tape printed with the inkpad can be wound and connected on the surface of the arc-shaped printing box 505, when the printing plate 513 is separated from the burr, because the arc-shaped printing box 505 slides on the surface of the first sliding seat 508 through the first sliding groove 507 in the rotating process, the first supporting spring 509 is compressed, when the printing plate 513 is separated from the burr, the arc-shaped printing box 505 can be driven to reset under the action of the resetting elasticity of the first supporting spring 509, because the connection relation between the teeth 504 and the first winding wheel 503 is used as a spring hinge, when the arc-shaped printing box 505 is driven to reset, the torsion can be acted on the teeth 504 again through the inner tooth ring 506, the teeth 504 are overturned under the action of stress through the spring hinges, so that the stability of the first belt winding wheel 503 can be ensured when the arc-shaped printing box 505 is driven to reset, and the paper belt is prevented from reflowing;
in the process that the rope 2 flows through the adapter 602, the cleaning brush 603 can clean the rope 2 at three hundred sixty degrees without dead angles, so that the surface cleanliness of the rope 2 can be ensured to a higher degree, and the rope 2 is prevented from being crushed due to the existence of hard harmful substances on the surface, so that the rope 2 can be prevented from being wound when being rolled and laminated on the winding roller 3;
the fan 704 on the windward side rotates under the action of wind force, the fan 704 under the action of the wind force approaches the direction of the adapter cylinder 602 in the second sliding groove 707 through the second sliding seat 706, and the third supporting spring 708 is deformed until the driving bevel gear 702 corresponding to the fan 704 contacts with the driven bevel gear 701, the fan 704 rotates the adapter cylinder 602 under the action of the torque force converted by the wind force, and the adapter cylinder 602 drives the cleaning brush 603 to rotate on the surface of the rope 2, so that the cleaning effect of the cleaning brush 603 on the surface of the rope 2 can be further improved.
The above description is only for the preferred embodiment of the present invention, but the scope of the present invention is not limited thereto, and any person skilled in the art should be able to cover the technical scope of the present invention and the equivalent alternatives or modifications according to the technical solution and the inventive concept of the present invention within the technical scope of the present invention.

Claims (8)

1. A suspension type operation platform comprises a hanging basket (1), wherein a rope (2) is bound at the top of the hanging basket (1), the other end of the rope (2) is wound and connected onto a winding roller (3), and a winding mechanism (4) is assembled on the winding roller (3), and the suspension type operation platform is characterized in that a plurality of inspection mechanisms (5) are sleeved on the surface of the rope (2) and used for inspecting whether the surface of the rope (2) is damaged or not, a cleaning mechanism (6) is further sleeved on the surface of the rope (2), a driving mechanism (7) is arranged on the outer arc surface of the cleaning mechanism (6) and used for cleaning dirt on the surface of the rope (2), an oiling mechanism (8) is connected to the top of the cleaning mechanism (6) and used for coating a protective oil film on the surface of the rope (2), and the oiling mechanism (8) is sleeved on the surface of the rope (2);
the checking mechanism (5) comprises a first external box (501), the first external box (501) is sleeved on the periphery of the rope (2), a plurality of arc-shaped printing boxes (505) in an annular array are arranged on the periphery of the rope (2) corresponding to the inside of the first external box (501), and a printing plate (513) is clamped at the position, close to the rope (2), of the outer arc surface of each arc-shaped printing box (505);
the arc-shaped print box (505) is embedded in the inner side of the first wheel carrier (502), the inner side wall of the first wheel carrier (502) is connected with a first sliding seat (508), the first sliding seat (508) is connected in a first sliding groove (507) formed in the end face of the arc-shaped print box (505) in a sliding manner, and the end face of the inner side of the first sliding groove (507) is connected with one face, close to the first sliding seat (508), of a first supporting spring (509);
a first belt winding wheel (503) is embedded on the inner side of the first wheel frame (502), two end parts of the first belt winding wheel (503) are respectively and rotatably connected to two end surfaces of the inner side of the first wheel frame (502) through two bearings, one end of the first belt winding wheel (503) is rotatably connected into a first adapter port formed in the inner side wall of the arc-shaped printing box (505) through a bearing, the first belt winding wheel (503) is sleeved in a second adapter port formed in the inner side wall of the arc-shaped printing box (505), an inner toothed ring (506) is connected into the second adapter port, a plurality of teeth (504) in an annular array are meshed on the inner toothed ring (506), and the edge of one surface, away from the inner toothed ring (506), of each tooth (504) is hinged to the end part of the first belt winding wheel (503) through a spring hinge;
the top of the first wheel carrier (502) is connected with a second wheel carrier (511) through a bridge connection frame (514), the inner side of the second wheel carrier (511) is respectively connected with a second belt winding wheel (510) and a fixed pulley (512) in a rotating mode, and one side, far away from the rope (2), of the bridge connection frame (514) is connected with the inner side wall of the first external box (501) through a second supporting spring (515).
2. A suspended working platform as claimed in claim 1, wherein the hoisting mechanism (4) comprises a roller shaft (401), the roller shaft (401) is sleeved inside the winding roller (3), a driven wheel (402) is connected to the surface of the roller shaft (401), the surface of the driven wheel (402) is in transmission connection with a driving wheel (404) through a transmission belt (403), the driving wheel (404) is connected to an output shaft of an industrial motor (405), the surface of the body of the industrial motor (405) is connected to the inner side wall of the electromechanical frame (406), the surface of the output shaft of the industrial motor (405) is in rotation connection with the inner side wall of the electromechanical frame (406) through a bearing, and the surface of the roller shaft (401) is in rotation connection with the inner side wall of the electromechanical frame (406) through a bearing.
3. A suspended working platform according to claim 1, wherein the number of the inspection mechanism (5) is multiple, and the plurality of inspection mechanisms (5) are connected with the first external box (501) inside.
4. A suspended working platform according to claim 1, wherein the cleaning mechanism (6) comprises a second external box (601), the second external box (601) is sleeved on the periphery of the rope (2), an adapter cylinder (602) is sleeved on the periphery of the rope (2), the end of the adapter cylinder (602) is rotatably connected into a port of the second external box (601) through a bearing, a cleaning brush (603) is arranged on the inner side wall of the adapter cylinder (602), and the cleaning brush (603) acts on the surface of the rope (2).
5. A suspended working platform as claimed in claim 4, wherein the driving mechanism (7) comprises a driven bevel gear (701), the driven bevel gear (701) is connected to the surface of the adapter cylinder (602), a plurality of air cylinders (703) in an annular array are clamped on the surface of the second external box (601) corresponding to the driven bevel gear (701), a driving bevel gear (702) is sleeved in the air cylinders (703), the driving bevel gear (702) is connected to the surface of a gear shaft, one end of the gear shaft far away from the driving bevel gear (702) is connected to a fan (704), the outer arc surface of the fan (704) is rotatably connected to the inside of the adapter ring (705) through a bearing, the outer arc surface of the adapter ring (705) is connected to a second sliding seat (706), the second sliding seat (706) is slidably connected to a second sliding groove (707) formed in the inner side wall of the air cylinders (703), the end surface of the second sliding groove (707) is connected with the end surface of the inner side of the second sliding groove (707) through a third supporting spring (708).
6. A suspended working platform as claimed in claim 1, wherein the oiling mechanism (8) includes a third external box (801), the third external box (801) is sleeved on the periphery of the rope (2), an oiling sleeve (802) is sleeved on the surface of the rope (2), the oiling sleeve (802) is embedded inside the third external box (801), a first connecting frame (803) is connected to the surface of the third external box (801), one end of the first connecting frame (803), which is far away from the third external box (801), is connected to the bottom of the electromechanical frame (406) through a second connecting frame (9), and one end of the second connecting frame (9), which is far away from the electromechanical frame (406), is connected to the outer arc surface of the first external box (501).
7. A suspended working platform as claimed in claim 1, wherein the inner side wall of the first wheel frame (502) is connected with a second damping disc (12) in a clamping manner, the second damping disc (12) is rotatably connected with the surface of the first pulley (503), the inner side wall of the second wheel frame (511) is connected with the first damping disc (11) in a clamping manner, and the second pulley (510) is rotatably connected with the end surface of the first damping disc (11).
8. A suspended working platform as claimed in claim 1, wherein the transparent plate (10) is clamped on the surface of the first external box (501) at the position corresponding to the first wheel frame (502) and the second wheel frame (511), the surface of the second pulley (510) is wound and connected with a paper tape, and one end of the paper tape far away from the second pulley (510) is wound and connected with the surface of the first pulley (503) after passing around the fixed pulley (512).
CN202210875130.4A 2022-07-25 2022-07-25 Suspension type operation platform Active CN114934662B (en)

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