CN112756350A - Construction anti-collision barrel cleaning system and method - Google Patents
Construction anti-collision barrel cleaning system and method Download PDFInfo
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- CN112756350A CN112756350A CN202011569506.6A CN202011569506A CN112756350A CN 112756350 A CN112756350 A CN 112756350A CN 202011569506 A CN202011569506 A CN 202011569506A CN 112756350 A CN112756350 A CN 112756350A
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B08—CLEANING
- B08B—CLEANING IN GENERAL; PREVENTION OF FOULING IN GENERAL
- B08B9/00—Cleaning hollow articles by methods or apparatus specially adapted thereto
- B08B9/08—Cleaning containers, e.g. tanks
- B08B9/087—Cleaning containers, e.g. tanks by methods involving the use of tools, e.g. brushes, scrapers
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B08—CLEANING
- B08B—CLEANING IN GENERAL; PREVENTION OF FOULING IN GENERAL
- B08B13/00—Accessories or details of general applicability for machines or apparatus for cleaning
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B08—CLEANING
- B08B—CLEANING IN GENERAL; PREVENTION OF FOULING IN GENERAL
- B08B9/00—Cleaning hollow articles by methods or apparatus specially adapted thereto
- B08B9/08—Cleaning containers, e.g. tanks
- B08B9/093—Cleaning containers, e.g. tanks by the force of jets or sprays
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- Cleaning In General (AREA)
- Cleaning By Liquid Or Steam (AREA)
Abstract
The invention discloses a construction anti-collision barrel cleaning system and a construction anti-collision barrel cleaning method. The anti-collision barrel cleaning device is provided with the water-saving cleaning device, so that the anti-collision barrel can be sequentially subjected to wetting, rinsing and thorough washing, the cleanliness is improved, the water spraying device does not need to be opened for a long time, a large amount of water resources can be saved, and the environmental protection performance of equipment is effectively enhanced.
Description
The invention is a divisional application of anti-collision barrel rapid cleaning equipment for road and bridge construction, wherein the application date is 2018, 5, month and 3, and the application number is CN 201810416599.5.
Technical Field
The invention relates to the field of road and bridge construction, in particular to a system and a method for cleaning a construction anti-collision barrel.
Background
The anti-collision barrel is mainly arranged on the road and the urban road at the position where the automobile is easy to collide with the fixed facilities in the road, such as: the anti-collision barrel is made of high-elasticity and high-strength modified plastics, and can effectively reduce impact force when an automobile collides with the anti-collision barrel, so that the damage to the automobile and the ground can be obviously reduced. The reflective film stuck on the surface of the label can be stuck with an indicating label according to the requirement. However, the existing anti-collision barrel rapid cleaning equipment for road and bridge construction has the following disadvantages:
1. the water spraying device of the equipment is in an open state for a long time, and water waste can be caused.
2. The intelligent control water spraying can not be realized, and the intelligent degree is lower.
Disclosure of Invention
Aiming at the defects in the prior art, the invention aims to provide a construction anti-collision barrel cleaning system and a construction anti-collision barrel cleaning method, so as to overcome the defects that a water spraying device of anti-collision barrel rapid cleaning equipment for road and bridge construction in the prior art is in an open state for a long time, water waste is caused, intelligent control of water spraying cannot be realized, and the intelligent degree is low.
In order to achieve the purpose, the invention is realized by the following technical scheme:
a cleaning system and a method for a construction anti-collision barrel structurally comprise a driving cab, a cleaning car hopper, four moving rollers, a water storage car box, a water-saving cleaning device and cleaning brush wheels, wherein the driving cab is arranged at the front end of the cleaning car hopper, the four moving rollers are arranged on the two sides below the driving cab and the cleaning car hopper in a pairwise equal distribution mode, the water storage car box is arranged above the cleaning car hopper and is connected with the cleaning car hopper through electric welding, the water-saving cleaning device is arranged in front of the water storage car box and is in through connection through a water supply pipe, the water-saving cleaning device is electrically connected with the driving cab, the cleaning brush wheels are arranged below the water-saving cleaning device, a cleaning driving shaft of the water-saving cleaning device vertically penetrates through the center of the cleaning brush wheels and is fixedly connected through the electric welding, and the water-saving cleaning device comprises a device shell, an electromagnetic control mechanism, The device comprises a driving starting mechanism, a driving mechanism, a time-delay transmission mechanism and a thorough cleaning control mechanism, wherein the device shell is of a hollow rectangular structure, the electromagnetic control mechanism is arranged above the middle inside the device shell and is electrically connected with a driving control room, the water-saving spraying control mechanism is arranged at the right side of the electromagnetic control mechanism and is movably connected with the driving control room through a connecting rod, the high-pressure water spraying device is arranged at the right side of the water-saving spraying control mechanism and is electrically connected with the water storage truck box through an electric welding through connection pipe, the driving starting mechanism is arranged at the left side of the electromagnetic control mechanism and is wound and connected through a traction wire, the driving mechanism is arranged at the left side inside the device shell and is electrically connected with the driving starting mechanism, the driving mechanism vertically penetrates through the center of the cleaning brush wheel through a cleaning driving shaft and, delay drive mechanism locates the actuating mechanism rear and through teeth of a cogwheel meshing swing joint, rinse thoroughly control mechanism locate delay drive mechanism right side and through teeth of a cogwheel meshing swing joint, rinse thoroughly control mechanism is connected with high-pressure water jet equipment electricity.
As a further scheme of the invention, the electromagnetic control mechanism consists of a control electromagnet, a U-shaped rod frame, a sliding part, an armature block, a transverse rack, a first spring, a spur gear, a movable connecting rod and a winding gear, wherein the control electromagnet is embedded in the middle of the upper inner wall of a device shell and is electrically connected with a driving control room, the U-shaped rod frame is arranged below the control electromagnet, two points of the U-shaped rod frame are vertically connected with the upper inner wall of the device shell through electric welding, the sliding part is embedded in the lower part of the U-shaped rod frame and is in sliding connection, the armature block is arranged above the sliding part, the transverse rack is arranged below the sliding part, the first spring is arranged on the right side of the sliding part and is connected with the sliding part through electric welding, the spur gear is arranged below the transverse rack and is movably connected through gear tooth meshing, one end of the movable connecting rod is movably connected with the edge of the front, the kinking gear is arranged on the left lower side of the spur gear and movably connected with the spur gear through gear teeth in a meshed mode, and the kinking gear is connected with the driving starting mechanism in a wound mode through a traction line.
As a further scheme of the invention, the water-saving spraying control mechanism consists of a sliding track, a sliding roller, an electric connecting rod and a water-saving control power-leading end block, wherein the sliding track is arranged at the right side of the U-shaped rod frame and is connected with the upper inner wall of the device shell through electric welding, the sliding roller is embedded in the sliding track and is in sliding connection, the sliding roller is movably connected with a spur gear through a movable connecting rod, one end of the electric connecting rod is fixedly connected with a wheel shaft of the sliding roller through electric welding, the other end of the electric connecting rod is connected with the water-saving control power-leading end block, and the water-saving control power-leading end block is electrically connected.
The water-saving control power connection end block and the thorough cleaning power connection end block are arranged on the left side of the booster pump and are electrically connected, the water-saving control power connection end block is electrically connected with the water-saving control power connection end block, the thorough cleaning power connection end block is electrically connected with the thorough cleaning control mechanism, one end of the water supply pipe is in through connection with the water storage compartment through electric welding, the other end of the water supply pipe is in through connection with the water inlet of the booster pump through electric welding, the water delivery pipe is in through connection with the water outlet of the booster pump through electric welding, and the high-pressure spray heads are uniformly and equidistantly arranged on the water delivery pipe and are in threaded connection.
As a further scheme of the invention, the driving starting mechanism comprises a traction wire, a guide wheel, a driving switch control piece, a suspension plate frame, an auxiliary roller and a second spring, wherein one end of the traction wire is wound and connected with a winding gear, the other end of the traction wire is wound and connected with the lower part of the driving switch control piece in a clockwise needle shape around the guide wheel, the guide wheel is arranged below the suspension plate frame, a wheel shaft of the guide wheel is connected with the suspension plate frame, the auxiliary roller is embedded in a sliding groove of the suspension plate frame, the driving switch control piece is connected with the suspension plate frame in a sliding mode through the auxiliary roller, the second spring is arranged above the driving switch control piece and is connected with the upper part of the driving switch control piece through an electric welding plate frame, and the driving switch control piece is.
As a further proposal of the invention, the driving mechanism consists of a driving motor, a power output shaft, a transmission belt pulley, a first transmission belt, a belt gear and a cleaning driving shaft, the driving motor is arranged at the upper left part in the device shell, the power output shaft is vertically arranged below the driving motor, the upper end of the power output shaft is embedded into the driving motor and movably connected with the driving motor through meshing, the lower end of the driving belt pulley penetrates through the center of the power output shaft and is connected vertically through electric welding, the first transmission belt is arranged between the transmission belt pulley and the belt gear, the belt gear is arranged above the cleaning driving shaft, the upper end of the cleaning driving shaft penetrates through the center of the belt gear and is connected vertically through electric welding, the lower end of the cleaning driving shaft penetrates through the center of the cleaning brush wheel and is fixedly connected with the cleaning brush wheel through electric welding, and the belt gear is movably connected with the delay transmission mechanism through gear teeth in a meshed mode.
As a further scheme of the invention, the time-delay transmission mechanism consists of a threaded belt pulley, a second transmission belt, a central belt gear, a circular rod frame and a sliding gear, wherein the threaded belt pulley is arranged behind the belt gear and is movably connected through gear teeth and thread meshing, the second transmission belt is arranged between the threaded belt pulley and the central belt gear, the central belt gear is arranged in the center of the circular rod frame and is connected through electric welding, the sliding gear is embedded in the circular rod frame and is in sliding connection, and the sliding gear is movably connected with the thorough cleaning control mechanism through gear teeth meshing.
As a further scheme of the invention, the thorough-cleaning control mechanism comprises a lifting slide bar, a lifting slide piece, a vertical rack, a connecting rod and a thorough-cleaning electricity-leading end block, wherein the lifting slide bar is arranged at the right side of the delay transmission mechanism, the lifting slide piece is sleeved on the outer surface of the lifting slide bar and adopts clearance fit, the vertical rack is arranged at the left side of the lifting slide piece and is welded through the connecting rod, the vertical rack is movably connected with a slide gear through gear teeth meshing, the thorough-cleaning electricity-leading end block is arranged above the connecting rod and is positioned under the thorough-cleaning electricity-leading end block, and the thorough-cleaning electricity-leading end block is electrically connected with the thorough-cleaning electricity-.
Advantageous effects of the invention
The invention relates to a construction anti-collision barrel cleaning system and a method, wherein water is filled into a water storage compartment, the device is integrally moved to the side of an anti-collision barrel for road and bridge construction through a movable roller, a cleaning brush wheel is controlled in a cab to contact with the anti-collision barrel, an intelligent water-saving cleaning function is started, an electromagnet is controlled to be electrified to generate magnetism to attract an armature block, the armature block drives a sliding piece to horizontally slide leftwards along a U-shaped rod frame, a transverse rack welded with the sliding piece slides leftwards along the transverse rack, the transverse rack drives a spur gear meshed with the transverse rack to rotate through gear teeth, the rotating spur gear pulls a sliding roller to slide leftwards along a sliding track through a movable connecting rod, a water-saving control lead end block is driven to slide leftwards, the water-saving control lead end block and the water-saving control lead end block are changed into a contact state from an original separation state and then are, the booster pump machine sucks and pressurizes water in the water storage compartment through a water supply pipe, and then realizes water spraying through a high-pressure spray head through a water delivery pipe to perform wet spraying treatment on the anti-collision barrel; meanwhile, the rotating spur gear drives the winding gear to rotate through gear teeth, the winding gear rotates to wind one end of the traction line, the other end of the traction rope clockwise bypasses the guide wheel and then pulls the driving switch control piece to move downwards along the sliding groove of the hanging plate frame under the matching action of the auxiliary roller wheel, the switch of the driving motor is pulled, the driving motor is in a working state, the power output shaft drives the transmission belt pulley to rotate, the transmission belt pulley drives the central belt gear to rotate through a second transmission belt, and finally the central belt gear drives the cleaning brush wheel to rotate through the cleaning driving shaft to scrub the wetted anti-collision barrel; along with the rotation of belt gear, locate its rear and rotatory thereupon through teeth of a cogwheel and thread engagement's threaded pulley, threaded pulley rethread second driving belt drives central belt gear rotatory, the sliding gear who inlays on circular bar frame is under central belt gear's drive, slide along circular bar frame right side, and drive vertical rack rebound through the teeth of a cogwheel, through connecting rod and vertical rack welded lift slider along lift slide bar rebound, and drive the thorough washing of locating the connecting rod top and draw the electrical end block rebound and connect the electrical end block contact with thorough washing, switch on booster pump machine once more, booster pump machine is with the same reason and thoroughly washes scrubbed crashproof bucket through high pressure nozzle, so save a large amount of water.
According to the construction anti-collision barrel cleaning system and method, the water-saving cleaning device is arranged, so that the anti-collision barrel can be sequentially subjected to wetting, rinsing and thorough washing, the cleanliness is improved, the water spraying device does not need to be opened for a long time, a large amount of water resources can be saved, and the environmental protection performance of equipment is effectively enhanced.
Drawings
Other features, objects and advantages of the invention will become more apparent from a reading of the detailed description of non-limiting embodiments with reference to the attached drawings.
In the drawings:
fig. 1 is a schematic structural diagram of a construction anti-collision barrel cleaning system and method of the present invention.
FIG. 2 is a plan view showing the structure of a water saving washing apparatus according to the present invention.
Fig. 3 is a detailed structural schematic diagram of a water-saving washing device of the present invention.
Fig. 4 is a first working state diagram of the water-saving cleaning device of the invention.
Fig. 5 is a second working state diagram of the water-saving cleaning device of the present invention.
In the figure: a driving control room-1, a cleaning car hopper-2, a movable roller-3, a water storage car box-4, a water-saving cleaning device-5, a cleaning brush wheel-6, a device shell-50, an electromagnetic control mechanism-51, a water-saving wet spraying control mechanism-52, a high-pressure water spraying device-53, a driving starting mechanism-54, a driving mechanism-55, a time delay transmission mechanism-56, a thorough cleaning control mechanism-57, a control electromagnet-510, a U-shaped rod frame-511, a sliding piece-512, an armature block-513, a transverse rack-514, a first spring-515, a spur gear-516, a movable connecting rod-517, a winding gear-518, a sliding track-520, a sliding roller-521, an electric connecting rod-522, a water-saving control electricity leading end block-523, a water storage car box-4, A booster pump machine-530, a water-saving control power connection end block-531, a thorough cleaning power connection end block-532, a water supply pipe-533, a water delivery pipe-534, a high-pressure spray head-535, a traction wire-540, a guide wheel-541, a drive switch control piece-542, a suspension plate frame-543, an auxiliary roller-544, a second spring-545, a drive motor-550, a power output shaft-551, a drive pulley-552, a first drive belt-553, a belt gear-554, a cleaning drive shaft-555, a threaded pulley-560, a second drive belt-561, a central belt gear-562, a circular bar frame-563, a sliding gear-564, a lifting slide bar-570, a lifting slide-571, a vertical rack-572, a connecting rod-573, a, The conducting end block-574 was thoroughly cleaned.
Detailed Description
In order to make the technical means, the creation characteristics, the achievement purposes and the effects of the invention easy to understand, the invention is further described with the specific embodiments.
As shown in fig. 1 to 5, the present invention provides a technical scheme of a construction anti-collision barrel cleaning system and method:
a construction anti-collision barrel cleaning system and a construction anti-collision barrel cleaning method structurally comprise a driving control room 1, a cleaning car hopper 2, a movable roller 3, a water storage car box 4, a water-saving cleaning device 5 and a cleaning brush wheel 6, wherein the driving control room 1 is arranged at the front end of the cleaning car hopper 2, the movable roller 3 is provided with four movable rollers, every two of the four movable rollers are equally arranged on two sides below the driving control room 1 and the cleaning car hopper 2, the water storage car box 4 is arranged above the cleaning car hopper 2 and is connected through electric welding, the water-saving cleaning device 5 is arranged in front of the water storage car box 4 and is communicated through a water supply pipe, the water-saving cleaning device 5 is electrically connected with the driving control room 1, the cleaning brush wheel 6 is arranged below the water-saving cleaning device 5, a cleaning driving shaft of the water-saving cleaning device 5 vertically penetrates through the center of the cleaning brush wheel 6 and is fixedly connected through, The device comprises an electromagnetic control mechanism 51, a water-saving spraying wet control mechanism 52, a high-pressure water spraying device 53, a driving starting mechanism 54, a driving mechanism 55, a delay transmission mechanism 56 and a thorough cleaning control mechanism 57, wherein the device shell 50 is of a hollow rectangular structure, the electromagnetic control mechanism 51 is arranged above the middle inside the device shell 50 and is electrically connected with a driving control room 1, the water-saving spraying wet control mechanism 52 is arranged at the right side of the electromagnetic control mechanism 51 and is movably connected through a connecting rod, the high-pressure water spraying device 53 is arranged at the right side of the water-saving spraying wet control mechanism 52 and is electrically connected, the high-pressure water spraying device 53 is in through connection with a water storage compartment 4 through an electric welding through a water supply pipe, the driving starting mechanism 54 is arranged at the left side of the electromagnetic control mechanism 51 and is wound and connected through a pull wire, the driving mechanism 55 is arranged, the driving mechanism 55 is vertically penetrated through the center of the cleaning brush wheel 6 through the cleaning driving shaft and is fixedly connected through electric welding, the delay transmission mechanism 56 is arranged at the rear of the driving mechanism 55 and is movably connected through gear teeth meshing, the thorough cleaning control mechanism 57 is arranged at the right side of the delay transmission mechanism 56 and is movably connected through gear teeth meshing, the thorough cleaning control mechanism 57 is electrically connected with the high-pressure water spraying device 53, the electromagnetic control mechanism 51 consists of a control electromagnet 510, a U-shaped rod frame 511, a sliding part 512, an armature block 513, a transverse rack 514, a first spring 515, a spur gear 516, a movable connecting rod 517 and a winding gear 518, the control electromagnet 510 is embedded in the middle of the upper inner wall of the device shell 50 and is electrically connected with the driving control room 1, the U-shaped rod frame 511 is arranged below the control electromagnet 510 and two points of the control electromagnet are electrically welded with the upper inner wall of the device shell, the sliding part 512 is embedded in the lower part of the U-shaped rod frame 511 and is in sliding connection with the lower part of the U-shaped rod frame 511, the armature block 513 is arranged above the sliding part 512, the transverse rack 514 is arranged below the sliding part 512, the first spring 515 is arranged on the right side of the sliding part 512 and is connected with the sliding part by electric welding, the spur gear 516 is arranged below the transverse rack 514 and is movably connected with the transverse rack by gear teeth meshing, one end of the movable connecting rod 517 is movably connected with the edge of the front surface of the spur gear 516 by gear teeth meshing, the other end of the movable connecting rod 517 is movably connected with the water-saving moisture spraying control mechanism 52 by a hinge, the winding gear 518 is arranged below the left side of the spur gear 516 and is movably connected with the driving and starting mechanism 54 by gear teeth meshing, the water-saving moisture spraying control mechanism 52 is composed of a sliding track 520, the sliding track 520 is arranged on the right side of the U-shaped rod frame 511 and is connected with the upper inner wall of the device shell 50 through electric welding, the sliding roller 521 is embedded in the sliding track 520 and is in sliding connection, the sliding roller 521 is movably connected with the spur gear 516 through a movable connecting rod 517, one end of the electric connecting rod 522 is fixedly connected with a wheel shaft of the sliding roller 521 through electric welding, the other end of the electric connecting rod 522 is connected with a water-saving control electric leading end block 523, the water-saving control electric leading end block 523 is electrically connected with the high-pressure water spraying device 53, the high-pressure water spraying device 53 consists of a booster pump 530, a water-saving control electric connecting end block 531, a thorough cleaning electric connecting end block 532, a water supply pipe 533, a water conveying pipe 534 and a high-pressure spray head 535, the booster pump 530 is arranged on the right upper side in the device shell 50, and the water-, the water-saving control power connection end block 531 is electrically connected with the water-saving control power connection end block 523, the thorough cleaning power connection end block 532 is electrically connected with the thorough cleaning control mechanism 57, one end of the water supply pipe 533 is in through connection with the water storage compartment 4 through electric welding, the other end of the water supply pipe 533 is in through connection with the water inlet of the booster pump 530 through electric welding, the water supply pipe 534 is in through connection with the water outlet of the booster pump 530 through electric welding, the high-pressure spray nozzle 535 is uniformly and equidistantly arranged on the water supply pipe 534 and is spirally connected through threads, the driving starting mechanism 54 is composed of a pull wire 540, a guide wheel 541, a driving switch control member 542, a hanging plate frame 543, an auxiliary roller 544 and a second spring 545, one end of the pull wire 540 is wound and connected with the winding gear 518, and the other end of the pull wire 540 is wound and connected with the, the directive wheel 541 is arranged below the suspension plate frame 543, the wheel shaft of the directive wheel 541 is connected with the suspension plate frame 543, the auxiliary roller 544 is embedded in the sliding groove of the suspension plate frame 543, the driving switch control 542 is slidably connected with the suspension plate frame 543 through the auxiliary roller 544, the second spring 545 is arranged above the driving switch control 542 and is connected with the upper portion of the driving switch control by electric welding, the driving switch control 542 is movably connected with the driving mechanism 55 by switch engagement, the driving mechanism 55 is composed of a driving motor 550, a power output shaft 551, a driving pulley 552, a first driving belt 553, a belt gear 554 and a cleaning driving shaft 555, the driving motor 550 is arranged at the upper left inside of the device shell 50, the power output shaft 551 is vertically arranged below the driving motor 550, the upper end of the power output shaft 551 is embedded inside the driving motor 550 by movable connection through engagement, the lower end of the driving pulley 552 penetrates through the center of the power output shaft, the first transmission belt 553 is arranged between the transmission belt wheel 552 and the belt gear 554, the belt gear 554 is arranged above the cleaning driving shaft 555, the upper end of the cleaning driving shaft 555 penetrates through the center of the belt gear 554 and is vertically connected through electric welding, the lower end of the cleaning driving shaft 555 penetrates through the center of the cleaning brush wheel 6 and is fixedly connected through electric welding, the belt gear 554 is movably connected with the delay transmission mechanism 56 through gear tooth meshing, the delay transmission mechanism 56 is composed of a threaded belt wheel 560, a second transmission belt 561, a central belt gear 562, a circular rod frame 563 and a sliding gear 564, the threaded belt wheel 560 is arranged at the rear part of the belt gear 554 and is movably connected through gear tooth and thread meshing, the second transmission belt 561 is arranged between the threaded belt wheel 560 and the central belt gear 562, the central belt gear 562 is arranged at the center of the circular rod frame 563 and is connected through electric welding, the sliding gear 564 is embedded on the circular rod frame 563 and is in sliding connection, the sliding gear 564 is movably connected with the thorough-cleaning control mechanism 57 through gear tooth meshing, the thorough-cleaning control mechanism 57 is composed of a lifting slide rod 570, a lifting slide member 571, a vertical rack 572, a connecting rod 573 and a thorough-cleaning power-leading end block 574, the lifting slide rod 570 is arranged on the right side of the delay transmission mechanism 56, the lifting slide member 571 is sleeved on the outer surface of the lifting slide rod 570 and adopts clearance fit, the vertical rack 572 is arranged on the left side of the lifting slide member 571 and is welded through the connecting rod 573, the vertical rack 572 is movably connected with the sliding gear 564 through gear tooth meshing, the thorough-cleaning power-leading end block 574 is arranged above the connecting rod 573 and is positioned under the thorough-cleaning power-leading end block 532, and the thorough-cleaning power-leading end block 574 is electrically.
The invention relates to a construction anti-collision barrel cleaning system and a method, and the working principle is as follows: the water storage compartment 4 is filled with water, the device is integrally moved to the side of an anti-collision barrel for road and bridge construction through a movable roller 3, a cleaning brush wheel 6 is controlled in a cab 1 to contact with the anti-collision barrel, an intelligent water-saving cleaning function is started, at the moment, the control electromagnet 510 is electrified to generate magnetism to attract an armature block 513, the armature block 513 drives a sliding piece 512 to horizontally slide leftwards along a U-shaped rod frame 511, a transverse rack 514 welded with the sliding piece 512 slides leftwards along the transverse rack, the spur gear 516 meshed with the sliding piece through gear teeth is driven to rotate, the rotating spur gear 516 pulls a sliding roller 521 to slide leftwards along a sliding track 520 through a movable connecting rod 517, at the same time, the water-saving control electricity-leading end block 523 slides leftwards, at the moment, the water-saving control electricity-leading end block 523 and the water-saving control electricity-leading end block 531 are changed from an original separated state into a contact state, the booster pump machine 530 sucks and pressurizes the water in the water storage compartment 4 through the water supply pipe 533, and then realizes water spraying through the high-pressure spray head 535 through the water delivery pipe 534 to perform wet spraying treatment on the anti-collision barrel; meanwhile, the rotating spur gear 516 drives the winding gear 518 to rotate through gear teeth, the winding gear 518 rotates to wind one end of the traction wire 540, the other end of the traction rope 540 clockwise bypasses the guide wheel 541 and pulls the driving switch control piece 542 to move downwards along the sliding groove of the hanging plate frame 543 under the matching action of the auxiliary roller 544, the switch of the driving motor 550 is pulled, the driving motor 550 is in a working state, the power output shaft 551 drives the transmission belt pulley 552 to rotate, the transmission belt pulley 552 drives the central belt gear 562 to rotate through the second transmission belt 561, and finally the central belt gear 562 drives the cleaning brush wheel 6 to rotate through the cleaning driving shaft 555 to brush the sprayed anti-collision barrel; with the rotation of the belt gear 554, the threaded belt pulley 560 which is arranged behind the belt gear 554 and engaged with the threads through the gear teeth and the threads rotates along with the belt gear, the threaded belt pulley 560 drives the central belt gear 562 to rotate through the second transmission belt 561, the sliding gear 564 embedded on the circular rack 563 is driven by the central belt gear 562 to slide along the right side direction of the circular rack 563, and drives the vertical rack 572 to move upwards through the gear teeth, the lifting sliding piece 571 welded with the vertical rack 572 through the connecting rod 573 slides upwards along the lifting sliding rod 570, and drives the thorough-cleaning electricity-leading end block 574 arranged above the connecting rod 573 to move upwards to be in contact with the thorough-cleaning electricity-leading end block 532, the booster pump 530 is switched on again, and the booster pump 530 similarly and thoroughly washes the scrubbed crash bucket through the high-pressure spray nozzle 535, so that a large.
The invention solves the problems that the water spraying device of the anti-collision barrel rapid cleaning equipment for road and bridge construction in the prior art is in an open state for a long time, water waste can be caused, intelligent control of water spraying cannot be realized, the intelligent degree is low, the anti-collision barrel rapid cleaning equipment can be sequentially subjected to wetting, rinsing and thorough washing through the mutual combination of the components and the arrangement of the water-saving cleaning device, the cleanliness is improved, the water spraying device does not need to be opened for a long time, a large amount of water resources can be saved, and the environmental protection performance of the equipment is effectively enhanced.
While there have been shown and described what are at present considered the fundamental principles and essential features of the invention and its advantages, it will be apparent to those skilled in the art that the invention is not limited to the details of the foregoing exemplary embodiments, but is capable of other specific forms without departing from the spirit or essential characteristics thereof. The present embodiments are therefore to be considered in all respects as illustrative and not restrictive, the scope of the invention being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference sign in a claim should not be construed as limiting the claim concerned.
Furthermore, it should be understood that although the present description refers to embodiments, not every embodiment may contain only a single embodiment, and such description is for clarity only, and those skilled in the art should integrate the description, and the embodiments may be combined as appropriate to form other embodiments understood by those skilled in the art.
Claims (8)
1. The utility model provides a quick cleaning equipment of anticollision bucket for road and bridge construction, its structure includes driver's cabin (1), washing car hopper (2), removal gyro wheel (3), water storage railway carriage (4), water conservation belt cleaning device (5), washing brush wheel (6), its characterized in that: the cleaning device is characterized in that the driving cab (1) is arranged at the front end of the cleaning car hopper (2), the moving rollers (3) are four, every two of the four moving rollers are equally arranged on two sides below the driving cab (1) and the cleaning car hopper (2), the water storage car box (4) is arranged above the cleaning car hopper (2) and is connected through electric welding, the water-saving cleaning device (5) is arranged in front of the water storage car box (4) and is communicated and connected through a water supply pipe, the water-saving cleaning device (5) is electrically connected with the driving cab (1), the cleaning brush wheels (6) are arranged below the water-saving cleaning device (5), and a cleaning driving shaft of the water-saving cleaning device (5) vertically penetrates through the centers of the cleaning brush wheels (6) and is fixedly connected through electric welding;
water conservation belt cleaning device (5) is by device shell (50), electromagnetism control mechanism (51), water conservation spout wet control mechanism (52), high pressure water jet equipment (53), drive actuating mechanism (54), actuating mechanism (55), time delay drive mechanism (56), rinse thoroughly control mechanism (57) and constitute, device shell (50) are hollow rectangle structure, electromagnetism control mechanism (51) are located inside middle top of device shell (50) and are controlled room (1) electricity with the driver and be connected, water conservation spouts wet control mechanism (52) and locates electromagnetism control mechanism (51) right side and through connecting rod swing joint, water conservation spouts wet control mechanism (52) right side and through the electricity connection is located in high pressure water jet equipment (53), high pressure water jet equipment (53) link up through electric welding through delivery pipe and water storage railway carriage (4), drive actuating mechanism (54) are located electromagnetism control mechanism (51) left side and are through pull wire winding The device is characterized in that the driving mechanism (55) is arranged on the left side inside the device shell (50) and is electrically connected with the driving starting mechanism (54), the driving mechanism (55) vertically penetrates through the center of the cleaning brush wheel (6) through a cleaning driving shaft and is fixedly connected through electric welding, the delay transmission mechanism (56) is arranged behind the driving mechanism (55) and is movably connected through gear tooth meshing, the thorough cleaning control mechanism (57) is arranged on the right side of the delay transmission mechanism (56) and is movably connected through gear tooth meshing, and the thorough cleaning control mechanism (57) is electrically connected with the high-pressure water spraying device (53);
the electromagnetic control mechanism (51) consists of a control electromagnet (510), a U-shaped rod frame (511), a sliding piece (512), an armature block (513), a transverse rack (514), a first spring (515), a spur gear (516), a movable connecting rod (517) and a winding gear (518), wherein the control electromagnet (510) is embedded in the middle of the upper inner wall of a device shell (50) and is electrically connected with a driving control room (1), the U-shaped rod frame (511) is arranged below the control electromagnet (510), two points of the U-shaped rod frame (511) are vertically connected with the upper inner wall of the device shell (50) through electric welding, the sliding piece (512) is embedded in the lower part of the U-shaped rod frame (511) and is in sliding connection, the armature block (513) is arranged above the sliding piece (512), the transverse rack (514) is arranged below the sliding piece (512), the first spring (515) is arranged on the right side of the sliding piece (512) and is, spur gear (516) are located horizontal rack (514) below and are through teeth of a cogwheel meshing swing joint, swing joint pole (517) one end passes through teeth of a cogwheel meshing swing joint with spur gear (516) front surface edge, the swing joint pole (517) other end and water conservation spout wet control mechanism (52) and pass through hinge swing joint, spur gear (516) left side below and through teeth of a cogwheel meshing swing joint are located to kinking gear (518), kinking gear (518) are connected through the pull wire and drive actuating mechanism (54) winding.
2. The rapid cleaning equipment for the anti-collision barrel for road and bridge construction according to claim 1 or 1, wherein: the water-saving wet spraying control mechanism (52) is composed of a sliding track (520), a sliding roller (521), an electric connection rod (522) and a water-saving control electric leading end block (523), the sliding track (520) is arranged on the right side of a U-shaped rod frame (511) and is connected with the upper inner wall of a device shell (50) through electric welding, the sliding roller (521) is embedded in the sliding track (520) and is in sliding connection, the sliding roller (521) is movably connected with a spur gear (516) through a movable connecting rod (517), one end of the electric connection rod (522) is fixedly connected with a wheel shaft of the sliding roller (521) through electric welding, the other end of the electric connection rod (522) is connected with the water-saving control electric leading end block (523), and the water-saving control electric leading end block (523) is electrically connected with a high-pressure water.
3. The rapid cleaning equipment for the anti-collision barrel for road and bridge construction according to claim 1, characterized in that: the high-pressure water spraying device (53) consists of a booster pump machine (530), a water-saving control power connection end block (531), a thorough cleaning power connection end block (532), a water supply pipe (533), a water conveying pipe (534) and a high-pressure spray head (535), wherein the booster pump machine (530) is arranged at the upper right part inside a device shell (50), the water-saving control power connection end block (531) and the thorough cleaning power connection end block (532) are arranged at the left side of the booster pump machine (530) and are electrically connected, the water-saving control power connection end block (531) is electrically connected with the water-saving control power connection end block (523), the thorough cleaning power connection end block (532) is electrically connected with a thorough cleaning control mechanism (57), one end of the water supply pipe (533) is in through connection with the water storage compartment (4) through electric welding, the other end of the water supply pipe (533) is in through connection with a water inlet of the booster pump machine (530) through electric welding, the high-pressure nozzles (535) are uniformly and equidistantly arranged on the water conveying pipe (534) and are in threaded connection.
4. The rapid cleaning equipment for the anti-collision barrel for road and bridge construction according to claim 1 or 1, wherein: the driving starting mechanism (54) consists of a pull wire (540), a guide wheel (541), a driving switch control piece (542), a hanging plate frame (543), an auxiliary roller (544) and a second spring (545), wherein one end of the pull wire (540) is wound and connected with a winding gear (518), the other end of the pull wire (540) is wound and connected with the lower part of the driving switch control piece (542) in a clockwise needle shape and bypasses the guide wheel (541) and is connected with the lower part of the driving switch control piece (543) in a winding way, the guide wheel (541) is arranged below the hanging plate frame (543) and the wheel shaft of the guide wheel is connected with the hanging plate frame (543), the auxiliary roller (544) is embedded in a sliding groove of the hanging plate frame (543), the driving switch control piece (542) is connected with the hanging plate frame (543) in a sliding way through the auxiliary roller (544), the second spring (545) is arranged above the driving switch control, the driving switch control piece (542) is movably connected with the switch of the driving mechanism (55) in an engaged manner.
5. The rapid cleaning equipment for the anti-collision barrel for road and bridge construction according to claim 1, characterized in that: the driving mechanism (55) consists of a driving motor (550), a power output shaft (551), a transmission belt pulley (552), a first transmission belt (553), a belt gear (554) and a cleaning driving shaft (555), the driving motor (550) is arranged at the upper left part inside the device shell (50), the power output shaft (551) is vertically arranged below the driving motor (550), the upper end of the power output shaft (551) is embedded into the driving motor (550) and movably connected through meshing, the lower end of the transmission belt pulley (552) penetrates through the center of the power output shaft (551) and is vertically connected through electric welding, the first transmission belt (553) is arranged between the transmission belt pulley (552) and the belt gear (554), the belt gear (554) is arranged above the cleaning driving shaft (555), the upper end of the cleaning driving shaft (555) penetrates through the center of the belt gear (554) and is vertically connected through electric welding, the lower end of the cleaning driving shaft (555) penetrates through the center of the cleaning brush wheel (6) and is fixedly connected with the cleaning brush wheel through electric welding, and the belt gear (554) is movably connected with the time delay transmission mechanism (56) through gear teeth in a meshed mode.
6. The rapid cleaning equipment for the anti-collision barrel for road and bridge construction according to claim 1, characterized in that: delay drive mechanism (56) comprises threaded belt pulley (560), second drive belt (561), central belt gear (562), circular pole frame (563), sliding gear (564), belt gear (554) rear is located in threaded belt pulley (560) through teeth of a cogwheel and thread engagement swing joint, second drive belt (561) are located between threaded belt pulley (560) and central belt gear (562), the center of circular pole frame (563) is located in central belt gear (562) and is connected through the electric welding, sliding gear (564) inlay on circular pole frame (563) and sliding connection, sliding gear (564) and thorough washing control mechanism (57) are through teeth of a cogwheel engagement swing joint.
7. The rapid cleaning equipment for the anti-collision barrel for road and bridge construction according to claim 1, 3 or 6, wherein: the thorough-cleaning control mechanism (57) comprises a lifting slide bar (570), a lifting slide piece (571), a vertical rack (572), a connecting rod (573) and a thorough-cleaning power connection end block (574), the lifting slide bar (570) is arranged on the right side of the time delay transmission mechanism (56), the lifting slide piece (571) is sleeved on the outer surface of the lifting slide bar (570) and adopts clearance fit, the vertical rack (572) is arranged on the left side of the lifting slide piece (571) and welded through the connecting rod (573), the vertical rack (572) is movably connected with a sliding gear (564) through gear tooth meshing, the thorough-cleaning power connection end block (574) is arranged above the connecting rod (573) and is positioned under the thorough-cleaning power connection end block (532), and the thorough-cleaning power connection end block (574) is electrically connected with the thorough-cleaning power connection end block (532).
8. The construction anti-collision barrel cleaning system and method as claimed in any one of claims 1 to 7, wherein:
filling water into a water storage compartment (4), moving the equipment to the side of an anti-collision barrel for road and bridge construction through a movable roller (3), controlling a cleaning brush wheel (6) to contact with the anti-collision barrel in a driving control room (1), starting an intelligent water-saving cleaning function, electrifying a control electromagnet (510) to generate magnetism, attracting an armature block (513), driving a sliding piece (512) to horizontally slide leftwards along a U-shaped rod frame 511 through the armature block (513), driving a transverse rack (514) welded with the sliding piece (512) to slide leftwards along the transverse rack, driving a spur gear (516) meshed with the transverse rack to rotate, pulling a sliding roller (521) to slide leftwards along a sliding track (520) through a movable connecting rod (517), driving a water-saving control electric lead end block (523) to slide leftwards, and changing the water-saving control electric lead end block (523) and a water-saving control electric lead end block (531) from an original separated state into a contact state at the moment, then the water is separated, the circuit of the booster pump machine (530) is switched on for a certain time, the booster pump machine (530) sucks and pressurizes the water in the water storage compartment (4) through a water supply pipe (533), and then the water is sprayed through a high-pressure nozzle (535) through a water conveying pipe (534) to perform wet spraying treatment on the anti-collision barrel;
meanwhile, the rotating spur gear (516) drives the winding gear (518) to rotate through gear teeth, the winding gear (518) rotates to wind one end of the traction wire (540), the other end of the traction rope (540) clockwise bypasses the guide wheel (541), then pulls the driving switch control piece (542) to move downwards along the sliding groove of the hanging plate frame (543) under the matching action of the auxiliary roller (544), the switch of the driving motor (550) is pulled, the driving motor (550) is in a working state, the power output shaft (551) drives the transmission belt pulley (552) to rotate, the transmission belt pulley (552) drives the central belt gear (562) to rotate through the second transmission belt (561), and finally the central belt gear (562) drives the cleaning brush wheel (6) to rotate through the cleaning driving shaft (555) to brush the wetted crash-proof barrel; along with the rotation of the belt gear (554), the threaded belt pulley (560) which is arranged behind the belt gear and is meshed with the teeth of the, thus saving a large amount of water.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202011569506.6A CN112756350A (en) | 2018-05-03 | 2018-05-03 | Construction anti-collision barrel cleaning system and method |
Applications Claiming Priority (2)
Application Number | Priority Date | Filing Date | Title |
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CN202011569506.6A CN112756350A (en) | 2018-05-03 | 2018-05-03 | Construction anti-collision barrel cleaning system and method |
CN201810416599.5A CN108746107B (en) | 2018-05-03 | 2018-05-03 | A quick cleaning equipment of anticollision bucket for road and bridge construction |
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CN201810416599.5A Division CN108746107B (en) | 2018-05-03 | 2018-05-03 | A quick cleaning equipment of anticollision bucket for road and bridge construction |
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CN112756350A true CN112756350A (en) | 2021-05-07 |
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CN201810416599.5A Active CN108746107B (en) | 2018-05-03 | 2018-05-03 | A quick cleaning equipment of anticollision bucket for road and bridge construction |
CN202011569506.6A Withdrawn CN112756350A (en) | 2018-05-03 | 2018-05-03 | Construction anti-collision barrel cleaning system and method |
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CN201810416599.5A Active CN108746107B (en) | 2018-05-03 | 2018-05-03 | A quick cleaning equipment of anticollision bucket for road and bridge construction |
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Citations (5)
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DK170917B1 (en) * | 1993-07-30 | 1996-03-11 | Finn Damberg | Method and agent for surface treatment of building facades and similar surfaces |
CN2387139Y (en) * | 1999-07-29 | 2000-07-12 | 广西壮族自治区南宁专用汽车厂 | Cleaning appts. for street guard rail |
CN2430224Y (en) * | 2000-05-18 | 2001-05-16 | 杨振武 | Cleaning device for road rail |
CN1403657A (en) * | 2002-09-25 | 2003-03-19 | 戴福康 | Vehicular road parapet washing plant |
CN206701798U (en) * | 2017-04-21 | 2017-12-05 | 山东交通学院 | A kind of green belt along highway trees cleaning vehicle |
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Publication number | Priority date | Publication date | Assignee | Title |
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CN200995201Y (en) * | 2006-09-26 | 2007-12-26 | 游谊生 | Traffic sweeper for guarding rail |
CN100427684C (en) * | 2006-11-02 | 2008-10-22 | 常熟市梅李镇高思达机械厂 | Fence and wall cleaning machine |
CN202606432U (en) * | 2012-01-30 | 2012-12-19 | 李桂钟 | Multifunctional cleaning vehicle |
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2018
- 2018-05-03 CN CN201810416599.5A patent/CN108746107B/en active Active
- 2018-05-03 CN CN202011569506.6A patent/CN112756350A/en not_active Withdrawn
Patent Citations (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
DK170917B1 (en) * | 1993-07-30 | 1996-03-11 | Finn Damberg | Method and agent for surface treatment of building facades and similar surfaces |
CN2387139Y (en) * | 1999-07-29 | 2000-07-12 | 广西壮族自治区南宁专用汽车厂 | Cleaning appts. for street guard rail |
CN2430224Y (en) * | 2000-05-18 | 2001-05-16 | 杨振武 | Cleaning device for road rail |
CN1403657A (en) * | 2002-09-25 | 2003-03-19 | 戴福康 | Vehicular road parapet washing plant |
CN206701798U (en) * | 2017-04-21 | 2017-12-05 | 山东交通学院 | A kind of green belt along highway trees cleaning vehicle |
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CN108746107A (en) | 2018-11-06 |
CN108746107B (en) | 2021-07-13 |
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Application publication date: 20210507 |