CN112775055A - Quick paint removing device - Google Patents

Quick paint removing device Download PDF

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Publication number
CN112775055A
CN112775055A CN202011515080.6A CN202011515080A CN112775055A CN 112775055 A CN112775055 A CN 112775055A CN 202011515080 A CN202011515080 A CN 202011515080A CN 112775055 A CN112775055 A CN 112775055A
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CN
China
Prior art keywords
plate
pipe
friction
sliding plate
main body
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Pending
Application number
CN202011515080.6A
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Chinese (zh)
Inventor
白林
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Individual
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Individual
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Priority to CN202011515080.6A priority Critical patent/CN112775055A/en
Publication of CN112775055A publication Critical patent/CN112775055A/en
Pending legal-status Critical Current

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    • B08B1/20
    • B08B1/165
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B08CLEANING
    • B08BCLEANING IN GENERAL; PREVENTION OF FOULING IN GENERAL
    • B08B13/00Accessories or details of general applicability for machines or apparatus for cleaning
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B24GRINDING; POLISHING
    • B24BMACHINES, DEVICES, OR PROCESSES FOR GRINDING OR POLISHING; DRESSING OR CONDITIONING OF ABRADING SURFACES; FEEDING OF GRINDING, POLISHING, OR LAPPING AGENTS
    • B24B7/00Machines or devices designed for grinding plane surfaces on work, including polishing plane glass surfaces; Accessories therefor
    • B24B7/20Machines or devices designed for grinding plane surfaces on work, including polishing plane glass surfaces; Accessories therefor characterised by a special design with respect to properties of the material of non-metallic articles to be ground
    • B24B7/28Machines or devices designed for grinding plane surfaces on work, including polishing plane glass surfaces; Accessories therefor characterised by a special design with respect to properties of the material of non-metallic articles to be ground for grinding wood

Abstract

The invention belongs to the technical field of chemical and environmental protection devices, and particularly relates to a quick paint removing device which comprises a main body, a motor, a threaded rod, a conveying plate group and a paint removing mechanism, wherein the main body is provided with a first conveying plate and a second conveying plate; the outer walls of the two ends of the main body are vertically connected with a transmission plate group in a sliding manner through a threaded rod, and the left end of the main body is fixedly connected with a motor; a paint removing mechanism is arranged inside the main body; the paint removing mechanism comprises a rotating roller, a conveying belt, an installation pipe, a first plugboard, a second plugboard, a pressure pipe, an elastic plate and a sliding plate; the left end of each rotating roller is rotatably connected with the motor, and the number of the rotating rollers is two, and the rotating rollers are rotatably connected through the conveying belt; the sliding plate is arc-shaped to slide when sliding to the outside, namely the end part of the sliding plate is in tangent contact with the wooden door, so that the wooden door can be prevented from being damaged by cutting a trace on the outer surface of the wooden door by the end part of the sliding plate while the paint layer on the surface of the wooden door can be removed.

Description

Quick paint removing device
Technical Field
The invention belongs to the technical field of chemical and environmental protection devices, and particularly relates to a quick paint removing device.
Background
Paint english name: paint or coating. Paint is a chemical mixture coating that can be firmly covered on the surface of an object for protection, decoration, marking and other special purposes. The book of coating technology which is relatively authoritative in the Chinese coating world is defined as follows: the paint is a material which can be coated on the surface of an object by different construction processes to form a continuous solid film with firm adhesion and certain strength. The film thus formed is generally called a coating film, also called a paint film or a coating.
In the prior art, paint removing operation is usually realized by a chemical paint remover, the chemical paint remover mainly utilizes permeation, swelling, solvation and dissolution of a solvent to destroy paint film adhesive force and paint removing of a spatial structure, the currently used paint remover has great harm to the body of an operator and great pollution to the environment, meanwhile, the paint remover has a certain corrosion effect on a wooden door, the paint remover can accelerate the rotting of the wooden door, so that the service life of the wooden door is greatly reduced, and more burrs are generated on the outer surface of the wooden door after the wooden door is used for a long time, so that the surface of the wooden door still needs to be polished after paint removing, otherwise, a shell phenomenon can occur after the wooden door is coated with new paint, but paint removing and polishing are completed separately, thereby undoubtedly further improving the complexity of the paint removing operation.
Disclosure of Invention
The technical scheme adopted by the invention for solving the technical problems is as follows: the invention relates to a quick paint removing device which comprises a main body, a motor, a threaded rod, a transmission plate group and a paint removing mechanism, wherein the motor is arranged on the main body; the outer walls of the two ends of the main body are vertically connected with a transmission plate group in a sliding manner through a threaded rod, and the left end of the main body is fixedly connected with a motor; a paint removing mechanism is arranged inside the main body; the paint removing mechanism comprises a rotating roller, a conveying belt, an installation pipe, a first plugboard, a second plugboard, a pressure pipe, an elastic plate and a sliding plate; the left end of each rotating roller is rotatably connected with a motor, the number of the rotating rollers is two, the rotating rollers are rotatably connected through a conveying belt, the initial time interval between the rotating rollers is set to be five centimeters, the rotating rollers are vertically and slidably mounted in the main body, and the outer surfaces of the rotating rollers are uniformly hinged with a first plugboard; the conveying belt is arranged to be an elastic belt and is arranged in a cross shape; the first plugboard is obliquely arranged and is inserted on the outer surface of the second plugboard in a sliding manner; the inner end of the second inserting plate is uniformly hinged to the outer surface of the rotating roller, and a pressure pipe is arranged on the inner side of the second inserting plate; the pressure pipe is made of elastic rubber materials and is arranged on the inner side of the first plugboard.
The outer side of the rotating roller is provided with a mounting pipe; elastic plates are uniformly and fixedly arranged in the outer wall of the mounting pipe; the elastic plate is arc-shaped, the bending direction of the elastic plate is the moving direction of the wooden door, and a sliding plate is inserted in the elastic plate in a sliding mode; the inner end of the sliding plate is initially arranged on the right side of the first inserting plate in the cavity between the rotating roller and the mounting pipe, the sliding plate is arc-shaped, the outer end of the sliding plate is knife-edge-shaped, and the radian of the sliding plate is consistent with that of the elastic plate.
The outer end of the elastic plate is fixedly connected with pressed rubber; the interior of the compressed rubber is hollow, the inner surface of the compressed rubber and the outer end surface of the sliding plate are in a fit shape, the outer surface of the inner end of the compressed rubber is fixedly connected with a telescopic rod, and the cavity at the lower end of the compressed rubber is communicated with the pressure groove; the other end of the telescopic rod is fixedly connected to the outer surface of the mounting pipe.
The pressure groove is formed in the middle wall of the sliding plate, the inside of the pressure groove is elastically connected with a clamping block through a spring, and the inner side of the pressure groove is provided with a clamping groove; the clamping groove is formed in the inner wall of the elastic plate and is staggered with the pressure groove initially.
The outer wall of the upper end of the elastic plate is uniformly provided with friction pipes; the outer surface of the upper end of the friction pipe is fixedly connected with a pull rope; the inner end of the pull rope is rotatably connected to the outer surface of the rotating pipe provided with the torsion spring; the inner end of the rotating tube is in rotational contact with the outer surface of the sliding plate.
The friction pipe is made of a ceramic silicon rubber material, a friction plate is fixedly connected to the outer surface of the inner end of the friction pipe, and an inner cavity of the friction pipe is initially communicated with an upper end cavity of the pressed rubber; the friction plate is initially arranged inside the elastic plate, the friction plate is arranged in an arc shape, and the inner surface of the friction plate is attached and connected with the outer surface of the friction pipe; when the wood door is used, the wood door can be transversely inserted into the transmission plate group and fixed through the threaded rod, then the wood door is pushed to enable the end part of the wood door to enter the main body, when the front end part of the wood door enters the main body, the wood door can contact with the installation pipe inside the wood door, the wood door is influenced by the thickness of the wood door, the rotating rollers can slide along the upper side and the lower side inside the main body, the rotating rollers can be driven to rotate along with the starting of the motor in the moving direction of the wood door, when the rotating rollers rotate, the first plug board and the second plug board on the outer surfaces can rotate, when the first plug board rotates to a certain degree, the outer surfaces of the first plug board can contact with the lower end of the sliding plate, and along with the rotation of the rotating rollers, the sliding plate slides on the upper surface of the first plug board, so that the first plug board slides along the outer surface of the second plug board and, namely, when the pressure applied to the pressure pipe reaches the maximum, the sliding plate is forced to slide towards the outer side of the elastic plate, so that the knife edge at the end part of the pressure pipe is in contact with and scrapes off the paint layer on the surface of the wooden door, namely, the paint on the surface of the wooden door is cleared through a physical mode, the wooden door can be protected while the paint is effectively cleared, the corrosion of the wooden door caused by paint remover is avoided, meanwhile, the sliding plate slides outwards in an arc shape, namely, the end part of the sliding plate is in tangential contact with the wooden door, so that the paint layer on the surface of the wooden door can be cleared, the damage of the wooden door caused by cutting a trace on the outer surface of the wooden door by the end part of the sliding plate is avoided, before the sliding plate is in contact with the outer surface of the wooden door, namely, the elastic plate is forced to bend inwards, the telescopic rod at the end part of the sliding plate is contracted by extrusion force, meanwhile, relative pressure is generated between the telescopic rod and the compressed rubber, namely, the lower end cavity of the compressed rubber transmits the internal air pressure into the pressure groove, so that a pushing force is generated on the clamping block, namely, the final clamping block is extruded into the clamping groove when the sliding plate slides towards the outer side of the elastic plate, namely, the sliding plate is fixed in the paint removing process, further, the outer end part of the sliding plate is contacted with the paint layer on the outer surface of the wooden door, the paint on the outer surface of the wooden door can be effectively scraped, the internal air pressure is transmitted into the friction pipe when the upper end of the compressed rubber is contacted with the outer surface of the wooden door, and the pull rope pulls the friction pipe when the sliding plate slides through the rotation of the rotation pipe, so that the friction pipe rotates, and further, the friction plate on the inner side of the friction pipe slides to the outer side of the elastic plate and, thereby realize polishing the surface of timber at the in-process of depainting, realize that depainting and polishing are as an organic whole, reduce the required time of japanning again by a wide margin for the depainting rhythm.
The invention has the following beneficial effects:
1. when the front end part of the wooden door enters the main body, the front end part of the wooden door can contact with the installation pipe inside the wooden door and is influenced by the thickness of the wooden door, the rotating rollers can slide along the upper side and the lower side inside the main body, the rotating rollers can drive the rotating rollers to rotate towards the moving direction of the wooden door along with the starting of the motor, when the rotating rollers rotate, the first insertion plate and the second insertion plate on the outer surfaces can rotate, when the first insertion plate rotates to a certain degree, the outer surfaces of the first insertion plate can contact with the lower end of the sliding plate, the sliding plate can slide on the upper surface of the first insertion plate along with the rotation of the rotating rollers, the first insertion plate can slide along the outer surfaces of the second insertion plate and finally extrude to the pressure pipe on the inner side, at the moment, the rotating rollers are constantly in a rotating state, namely, when the pressure on the front end part reaches the maximum, the sliding plate can be forced to slide towards the outer side, realize the cleaing away of timber surface paint through physical means promptly, can also play the guard action to the timber when realizing effectively cleaing away paint, avoid using paint remover to cause the timber to corrode, the sliding plate is the arc when sliding to the outside simultaneously and slides, even the tip that makes the sliding plate is tangent form contact with the timber, thereby the realization not only can clear away the paint layer on timber surface while can also avoid the tip of sliding plate to surely go out a vestige and cause the damage to the timber at the surface of timber.
2. Before the sliding plate contacts with the outer surface of the wooden door, the elastic plate contacts with the outer surface of the wooden door firstly, namely the elastic plate is bent inwards due to the extrusion force, namely the telescopic rod at the end part of the elastic plate is contracted due to the extrusion force, and meanwhile, a relative pressure is generated between the telescopic rod and the compressed rubber, namely, the lower end cavity of the compressed rubber transmits the internal air pressure into the pressure groove, so that a pushing force is generated on the clamping block, namely, the clamping block is finally extruded into the clamping groove when the sliding plate slides to the outer side of the elastic plate, namely, the sliding plate is fixed in the paint removing process, further, the outer end part of the sliding plate is contacted with the paint layer on the outer surface of the wooden door, the external paint can be effectively scraped, and the internal air pressure can be transmitted into the friction pipe when the upper end of the compressed rubber is contacted, and can make the stay cord stimulate the friction pipe via the rotation of rotating tube when the sliding plate slides to make the friction pipe take place to rotate, and then make its inboard friction plate slide the outside of elastic plate and contact and produce the friction with the surface of timber, thereby realize polishing the surface of timber at the in-process of depainting, realize depainting and polish as an organic whole, reduce the required time of japanning again by a wide margin, accelerate the depainting rhythm.
Drawings
FIG. 1 is a front view of the present invention;
FIG. 2 is a cross-sectional view of the present invention;
FIG. 3 is a schematic view of the construction of a rotating roll of the present invention;
FIG. 4 is a schematic structural view of the paint stripping mechanism of the present invention;
FIG. 5 is an enlarged view of a portion of the invention at A in FIG. 4;
in the figure: the paint removing device comprises a main body 1, a motor 2, a threaded rod 3, a conveying plate group 4, a paint removing mechanism 5, a rotating roller 51, a conveying belt 52, an installation pipe 53, a first insertion plate 54, a second insertion plate 55, a pressure pipe 56, an elastic plate 57, a sliding plate 58, compressed rubber 6, a telescopic rod 61, a pressure groove 62, a clamping block 63, a clamping groove 64, a friction pipe 65, a pull rope 66, a rotating pipe 67 and a friction plate 68.
Detailed Description
A quick paint remover according to an embodiment of the present invention will be described below with reference to fig. 1 to 5.
As shown in fig. 1-5, the fast paint removing device of the present invention comprises a main body 1, a motor 2, a threaded rod 3, a conveying plate set 4 and a paint removing mechanism 5; the outer walls of the two ends of the main body 1 are connected with a transmission plate group 4 in a vertical sliding mode through a threaded rod 3, and the left end of the main body 1 is fixedly connected with a motor 2; a paint removing mechanism 5 is arranged inside the main body 1; the paint removing mechanism 5 comprises a rotating roller 51, a conveying belt 52, a mounting pipe 53, a first plug board 54, a second plug board 55, a pressure pipe 56, an elastic plate 57 and a sliding plate 58; the left end of each rotating roller 51 is rotatably connected with the motor 2, two rotating rollers 51 are arranged, the rotating rollers 51 are rotatably connected through a conveying belt 52, the initial time interval between the rotating rollers 51 is set to be five centimeters, the rotating rollers 51 are vertically and slidably mounted in the main body 1, and a first plugboard 54 is uniformly hinged to the outer surface of each rotating roller 51; the conveyor belt 52 is an elastic belt, and the conveyor belt 52 is arranged in a cross shape; the first plug board 54 is obliquely arranged, and the first plug board 54 is slidably plugged on the outer surface of the second plug board 55; the inner end of the second inserting plate 55 is uniformly hinged on the outer surface of the rotating roller 51, and a pressure pipe 56 is arranged on the inner side of the second inserting plate 55; the pressure tube 56 is made of an elastic rubber material, and the pressure tube 56 is arranged inside the first jack plate 54.
The outer side of the rotating roller 51 is provided with a mounting pipe 53; elastic plates 57 are uniformly and fixedly arranged in the outer wall of the mounting pipe 53; the elastic plate 57 is arc-shaped, the bending direction of the elastic plate 57 is the moving direction of the wooden door, and a sliding plate 58 is inserted in the elastic plate 57 in a sliding manner; the inner end of the sliding plate 58 is initially arranged on the right side of the first inserting plate 54 in the cavity between the rotating roller 51 and the mounting tube 53, the sliding plate 58 is arc-shaped, the outer end of the sliding plate 58 is knife-edge-shaped, and the radian of the sliding plate 58 is consistent with that of the elastic plate 57.
The outer end of the elastic plate 57 is fixedly connected with a compression rubber 6; the interior of the compressed rubber 6 is hollow, the inner surface of the compressed rubber 6 is attached to the outer end outer surface of the sliding plate 58, the outer end outer surface of the inner end of the compressed rubber 6 is fixedly connected with a telescopic rod 61, and the lower end cavity of the compressed rubber 6 is communicated with a pressure groove 62; the other end of the telescopic rod 61 is fixedly connected to the outer surface of the mounting tube 53.
The pressure groove 62 is formed in the middle wall of the sliding plate 58, the pressure groove 62 is elastically connected with a clamping block 63 through a spring, and a clamping groove 64 is formed in the inner side of the pressure groove 62; the clamping groove 64 is formed in the inner wall of the elastic plate 57, and the clamping groove 64 is staggered with the pressure groove 62 initially.
The outer wall of the upper end of the elastic plate 57 is uniformly provided with friction pipes 65; a pull rope 66 is fixedly connected to the outer surface of the upper end of the friction pipe 65; the inner end of the pull rope 66 is rotatably connected to the outer surface of a rotating pipe 67 provided with a torsion spring; the inner end of the rotating tube 67 is in rotational contact with the outer surface of the slide plate 58.
The friction tube 65 is made of ceramic silicon rubber material, the outer surface of the inner end of the friction tube 65 is fixedly connected with a friction plate 68, and the inner cavity of the friction tube 65 is initially communicated with the upper end cavity of the compressed rubber 6; the friction plate 68 is initially arranged inside the elastic plate 57, the friction plate 68 is arc-shaped, and the inner surface of the friction plate 68 is in fit connection with the outer surface of the friction pipe 65; when the wood door is used, a wood door can be transversely inserted into the transmission plate group 4 and fixed through the threaded rod 3, then the wood door is pushed to enable the end part of the wood door to enter the main body 1, when the front end part of the wood door enters the main body 1, the front end part of the wood door can contact the installation pipe 53 inside the wood door and is influenced by the thickness of the wood door, the rotating rollers 51 can slide along the upper side and the lower side inside the main body 1, the rotating rollers 51 can be driven to rotate along with the starting of the motor 2 towards the moving direction of the wood door, when the rotating rollers 51 rotate, the first insertion plate 54 and the second insertion plate 55 on the outer surfaces can rotate, when the first insertion plate 54 rotates to a certain degree, the outer surface of the first insertion plate 54 can contact the lower end of the sliding plate 58, and the sliding plate 58 slides on the upper surface of the first insertion plate 54 along the outer surface of the second insertion plate 55 and finally extrudes the pressure pipe 56 on the inner side, at the moment, the rotating roller 51 is in a rotating state all the time, namely when the pressure applied to the pressure pipe 56 reaches the maximum, the sliding plate 58 is forced to slide towards the outer side of the elastic plate 57, so that the knife edge at the end part of the sliding roller is contacted with and scrapes off the paint layer on the surface of the wooden door, namely, the paint on the outer surface of the wooden door is cleaned in a physical mode, the wooden door can be protected while the paint is effectively cleaned, the corrosion of the wooden door caused by paint remover is avoided, meanwhile, the sliding plate 58 slides outwards in an arc shape, namely, the end part of the sliding plate 58 is contacted with the wooden door in a tangent mode, so that the damage to the wooden door caused by cutting a trace on the outer surface of the wooden door by the end part of the sliding plate 58 is avoided while the paint layer on the surface of the wooden door is cleaned, and before the sliding plate 58 is contacted with the outer, that is, the elastic plate 57 will be pressed to cause it to bend inward, that is, the telescopic rod 61 at its end will be pressed to begin to contract, and at the same time, a relative pressure will be generated between the telescopic rod 61 and the compressed rubber 6, that is, the cavity at the lower end of the compressed rubber 6 will transmit its internal air pressure into the pressure groove 62, so as to generate a driving force to the clamping block 63, that is, when the sliding plate 58 slides to the outside of the elastic plate 57, the clamping block 63 will be finally pressed into the clamping groove 64, that is, the sliding plate 58 will be fixed during the paint removal process, and further, the outer end of the sliding plate 58 will contact with the paint layer on the outer surface of the wooden door to effectively scrape off the paint on the outer surface of the wooden door, and when the upper end of the compressed rubber 6 contacts with the outer surface of the wooden door, its internal air pressure will be transmitted into the friction tube 65, and when the sliding plate, thereby make friction pipe 65 take place to rotate, and then make its inboard friction plate 68 slide to the outside of elastic plate 57 and contact and produce the friction with the surface of timber to the realization is polished the surface of timber at the in-process of depainting, realizes depainting and polishes as an organic whole, reduces the required time of japanning again by a wide margin for the depainting rhythm.
The specific working process is as follows:
when the wood door is used, a wood door can be transversely inserted into the transmission plate group 4 and fixed through the threaded rod 3, then the wood door is pushed to enable the end part of the wood door to enter the main body 1, when the front end part of the wood door enters the main body 1, the front end part of the wood door can contact the installation pipe 53 inside the wood door and is influenced by the thickness of the wood door, the rotating rollers 51 can slide along the upper side and the lower side inside the main body 1, the rotating rollers 51 can be driven to rotate along with the starting of the motor 2 towards the moving direction of the wood door, when the rotating rollers 51 rotate, the first insertion plate 54 and the second insertion plate 55 on the outer surfaces can rotate, when the first insertion plate 54 rotates to a certain degree, the outer surface of the first insertion plate 54 can contact the lower end of the sliding plate 58, and the sliding plate 58 slides on the upper surface of the first insertion plate 54 along the outer surface of the second insertion plate 55 and finally extrudes the pressure pipe 56 on the inner side, at the moment, the rotating roller 51 is in a rotating state all the time, namely when the pressure applied to the pressure pipe 56 reaches the maximum, the sliding plate 58 is forced to slide towards the outer side of the elastic plate 57, so that the knife edge at the end part of the sliding roller is contacted with and scrapes off the paint layer on the surface of the wooden door, namely, the paint on the outer surface of the wooden door is cleaned in a physical mode, the wooden door can be protected while the paint is effectively cleaned, the corrosion of the wooden door caused by paint remover is avoided, meanwhile, the sliding plate 58 slides outwards in an arc shape, namely, the end part of the sliding plate 58 is contacted with the wooden door in a tangent mode, so that the damage to the wooden door caused by cutting a trace on the outer surface of the wooden door by the end part of the sliding plate 58 is avoided while the paint layer on the surface of the wooden door is cleaned, and before the sliding plate 58 is contacted with the outer, that is, the elastic plate 57 will be pressed to cause it to bend inward, that is, the telescopic rod 61 at its end will be pressed to begin to contract, and at the same time, a relative pressure will be generated between the telescopic rod 61 and the compressed rubber 6, that is, the cavity at the lower end of the compressed rubber 6 will transmit its internal air pressure into the pressure groove 62, so as to generate a driving force to the clamping block 63, that is, when the sliding plate 58 slides to the outside of the elastic plate 57, the clamping block 63 will be finally pressed into the clamping groove 64, that is, the sliding plate 58 will be fixed during the paint removal process, and further, the outer end of the sliding plate 58 will contact with the paint layer on the outer surface of the wooden door to effectively scrape off the paint on the outer surface of the wooden door, and when the upper end of the compressed rubber 6 contacts with the outer surface of the wooden door, its internal air pressure will be transmitted into the friction tube 65, and when the sliding plate, thereby make friction pipe 65 take place to rotate, and then make its inboard friction plate 68 slide to the outside of elastic plate 57 and contact and produce the friction with the surface of timber to the realization is polished the surface of timber at the in-process of depainting, realizes depainting and polishes as an organic whole, reduces the required time of japanning again by a wide margin for the depainting rhythm.
While the present invention has been described with reference to the embodiments shown in the drawings, the present invention is not limited to the embodiments, which are illustrative and not restrictive, and it will be apparent to those skilled in the art that various changes and modifications can be made therein without departing from the spirit and scope of the invention as defined in the appended claims.

Claims (6)

1. A quick paint removing device comprises a main body (1), a motor (2), a threaded rod (3), a conveying plate group (4) and a paint removing mechanism (5); the method is characterized in that: the outer walls of the two ends of the main body (1) are connected with a transmission plate group (4) in a vertical sliding mode through a threaded rod (3), and the left end of the main body (1) is fixedly connected with a motor (2); a paint removing mechanism (5) is arranged in the main body (1); the paint removing mechanism (5) comprises a rotating roller (51), a conveying belt (52), a mounting pipe (53), a first inserting plate (54), a second inserting plate (55), a pressure pipe (56), an elastic plate (57) and a sliding plate (58); the left end of each rotating roller (51) is rotatably connected with the motor (2), two rotating rollers (51) are arranged, the rotating rollers (51) are rotatably connected through a conveying belt (52), the initial time interval between the rotating rollers (51) is set to be five centimeters, the rotating rollers (51) are vertically and slidably mounted in the main body (1), and the outer surfaces of the rotating rollers (51) are uniformly hinged with a first plugboard (54); the conveying belt (52) is arranged as an elastic belt, and the conveying belt (52) is arranged in a cross shape; the first plug board (54) is obliquely arranged, and the first plug board (54) is slidably plugged on the outer surface of the second plug board (55); the inner end of the second inserting plate (55) is uniformly hinged to the outer surface of the rotating roller (51), and a pressure pipe (56) is arranged on the inner side of the second inserting plate (55); the pressure pipe (56) is made of elastic rubber materials, and the pressure pipe (56) is arranged on the inner side of the first plugboard (54).
2. A quick paint stripping apparatus as claimed in claim 2, wherein: a mounting pipe (53) is arranged on the outer side of the rotating roller (51); elastic plates (57) are uniformly and fixedly arranged in the outer wall of the mounting pipe (53); the elastic plate (57) is arc-shaped, the bending direction of the elastic plate (57) is the moving direction of the wooden door, and a sliding plate (58) is inserted in the elastic plate (57) in a sliding mode; the inner end of the sliding plate (58) is initially arranged on the right side of the first inserting plate (54) in the cavity between the rotating roller (51) and the mounting pipe (53), the sliding plate (58) is arc-shaped, the outer end of the sliding plate (58) is knife-edge-shaped, and the radian of the sliding plate (58) is consistent with that of the elastic plate (57).
3. A quick paint stripping apparatus as claimed in claim 2, wherein: the outer end of the elastic plate (57) is fixedly connected with a compression rubber (6); the interior of the compressed rubber (6) is hollow, the inner surface of the compressed rubber (6) is attached to the outer end outer surface of the sliding plate (58), the outer end outer surface of the inner end of the compressed rubber (6) is fixedly connected with a telescopic rod (61), and a cavity at the lower end of the compressed rubber (6) is communicated with a pressure groove (62); the other end of the telescopic rod (61) is fixedly connected to the outer surface of the mounting pipe (53).
4. A quick paint stripping apparatus as claimed in claim 3, characterised in that: the pressure groove (62) is formed in the middle wall of the sliding plate (58), the pressure groove (62) is elastically connected with a clamping block (63) through a spring, and the inner side of the pressure groove (62) is provided with a clamping groove (64); the clamping groove (64) is formed in the inner wall of the elastic plate (57), and the clamping groove (64) is staggered with the pressure groove (62) initially.
5. A quick paint stripping apparatus as claimed in claim 2, wherein: the outer wall of the upper end of the elastic plate (57) is uniformly provided with friction pipes (65); the outer surface of the upper end of the friction pipe (65) is fixedly connected with a pull rope (66); the inner end of the pull rope (66) is rotatably connected to the outer surface of a rotating pipe (67) provided with a torsion spring; the inner end of the rotating tube (67) is in rotational contact with the outer surface of the slide plate (58).
6. A quick paint stripping apparatus as claimed in claim 5, characterised in that: the friction pipe (65) is made of a ceramic silicon rubber material, a friction plate (68) is fixedly connected to the outer surface of the inner end of the friction pipe (65), and an inner cavity of the friction pipe (65) is initially communicated with an upper end cavity of the compressed rubber (6); the friction plate (68) is initially arranged inside the elastic plate (57), the friction plate (68) is arc-shaped, and the inner surface of the friction plate (68) is attached to the outer surface of the friction pipe (65).
CN202011515080.6A 2020-12-21 2020-12-21 Quick paint removing device Pending CN112775055A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202011515080.6A CN112775055A (en) 2020-12-21 2020-12-21 Quick paint removing device

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Application Number Priority Date Filing Date Title
CN202011515080.6A CN112775055A (en) 2020-12-21 2020-12-21 Quick paint removing device

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Publication Number Publication Date
CN112775055A true CN112775055A (en) 2021-05-11

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Application Number Title Priority Date Filing Date
CN202011515080.6A Pending CN112775055A (en) 2020-12-21 2020-12-21 Quick paint removing device

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114471834A (en) * 2022-02-16 2022-05-13 中山立为智能科技有限公司 Double-shaft paint removing device

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CN112025449A (en) * 2020-09-19 2020-12-04 董前友 Panel conveying grinding device
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