CN110241737A - A kind of control system and implementation method for Bridge Seismic - Google Patents

A kind of control system and implementation method for Bridge Seismic Download PDF

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Publication number
CN110241737A
CN110241737A CN201910533221.8A CN201910533221A CN110241737A CN 110241737 A CN110241737 A CN 110241737A CN 201910533221 A CN201910533221 A CN 201910533221A CN 110241737 A CN110241737 A CN 110241737A
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CN
China
Prior art keywords
chamber
shaft
gear
brush
brushing
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Granted
Application number
CN201910533221.8A
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Chinese (zh)
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CN110241737B (en
Inventor
李月萍
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Anhui Mingfeng Construction Engineering Co., Ltd
Original Assignee
Jiaxing Guxinda Trading Co Ltd
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Priority to CN201910533221.8A priority Critical patent/CN110241737B/en
Publication of CN110241737A publication Critical patent/CN110241737A/en
Application granted granted Critical
Publication of CN110241737B publication Critical patent/CN110241737B/en
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    • EFIXED CONSTRUCTIONS
    • E01CONSTRUCTION OF ROADS, RAILWAYS, OR BRIDGES
    • E01DCONSTRUCTION OF BRIDGES, ELEVATED ROADWAYS OR VIADUCTS; ASSEMBLY OF BRIDGES
    • E01D21/00Methods or apparatus specially adapted for erecting or assembling bridges

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  • Engineering & Computer Science (AREA)
  • Architecture (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Cleaning In General (AREA)

Abstract

The invention discloses a kind of control systems and implementation method for Bridge Seismic, wherein, the control system of the Bridge Seismic includes apparatus main body, is set to the intracorporal attachment device of described device master, is set to the intracorporal painting device of described device master and is set to the intracorporal cleaning plant of described device master, the attachment device includes power device and clamping apparatus, the upper end of the power device is provided with fluid chamber, the painting device includes being set to the intracorporal brushing chamber of described device master, and the brushing is intracavitary to be rotatably provided with conveyer belt;The present apparatus is automatable to carry out initial application to coating, effective dust of removing is uniformly coated with primer again, portion is collected dust in the device after removing dust, collection device is effectively and not waste of energy, collect the easily disassembled cleaning in position, it removes with brushing work in device the same side and successively progress, processed coating will not be impacted.

Description

A kind of control system and implementation method for Bridge Seismic
Technical field
The present invention relates to bridge technology field, specially a kind of control system and implementation method for Bridge Seismic.
Background technique
Damping paint should have good sound insulation damping performance, and use in bridge construction field and its extensively, existing The coating of coating is carried out by professional construction team by hand mostly in technology, efficiency is lower and cannot be guaranteed the uniform painting of coating It covers, there are larger drawback, needs to improve.
Summary of the invention
It is existing for overcoming the purpose of the present invention is to provide a kind of control system and implementation method for Bridge Seismic Drawbacks described above in technology.
A kind of control system and implementation method for Bridge Seismic according to the present invention, wherein the control of the Bridge Seismic System processed includes apparatus main body, is set to the intracorporal attachment device of described device master, is set to the intracorporal brushing of described device master Device and it being set to the intracorporal cleaning plant of described device master, the attachment device includes power device and clamping apparatus, The upper end of the power device is provided with fluid chamber, and the painting device includes being set to the intracorporal brushing chamber of described device master, The brushing is intracavitary to be rotatably provided with conveyer belt, and the painting device is by one group of bevel gear by the power device band It is dynamic, brushing brush and deashing brush are fixedly connected on the conveyer belt, conveyer belt drives brushing brush and deashing brush To ground carry out deashing then brush successive movement, the cleaning plant be set to it is described brush it is intracavitary, when deashing brush receive Enter to brush intracavitary arrival cleaning plant, roller carries out clearing up to make it into falling grey chamber to the dust on deashing brush in cleaning plant Interior and collect, the roller is driven by Bevel Gear Transmission by the power device, is provided with and can connect on the upside of the brushing chamber The clamping apparatus of power device, the clamping apparatus is driven brushing brush and dynamic intermittent drive of dust cleaning brush subband clears up dress It sets and power device connects.
Further technical solution, the attachment device includes being set to the intracorporal power device of described device master, described The brushing chamber of opening backward is provided in the downside inner wall of power device, the brushing is intracavitary to be rotatably provided with conveyer belt, The upper end of the shaft in the left side of the conveyer belt is connected to the rear end of the power device, the power dress by bevel-gear sett Fluid chamber is provided in the upper inside walls set, what is be connected in the downside inner wall of the fluid chamber is provided with through-hole, the through-hole In the inner wall of outside be connected connection be provided with annular slide track, ring slider is slidably provided in the annular slide track, it is described It is rotatably provided with the switch block being fixedly connected with the ring slider in through-hole, is connected in the downside inner wall of the through-hole It is provided with first turn of chamber, described first turn intracavitary to be rotatably provided with first gear, and the first gear, which is fixedly connected with, to be turned Axis and shaft are rotatably assorted on the downside inner wall for being connected to first turn of chamber by bearing, described first turn intracavitary be provided with The second gear that the first gear is meshed, the second gear is fixedly connected with shaft and the upper end of the shaft passes through axis Dynamic mating connection is forwarded on the downside inner wall of the switch block, and suction pump is fixedly connected on the switch block, the suction pump Lower end is fixedly connected with pipeline, and the lower end of the pipeline extends through switch block and second gear is passed through intracavitary, the institute of the brushing State first turn it is intracavitary be provided with the third gear that can be meshed with the first gear, the third gear is fixedly connected with first Shaft, is provided with second turn of chamber in the upper inside walls of first turn of chamber, and the upper end of the first rotating shaft, which extends, is passed through described the Two turns intracavitary and be arranged with the first belt, the right side inner wall of first turn of chamber and is located in the downside inner wall of second turn of chamber It is provided with third and turns chamber, the third turns intracavitary and is rotatably provided with first bevel gear, and the first bevel gear is fixedly connected Have the second shaft, the upper end of second shaft extend be passed through described second turn it is intracavitary and be arranged between the first rotating shaft First belt, the third turn to be provided with clamping apparatus in the right side inner wall of chamber.
Further technical solution, the power device include being fixedly installed in the upper inside walls of first turn of chamber First motor, the upper and lower side power of the first motor are connected with third shaft, in the upper inside walls of the first motor Be provided with the 4th turn of chamber, the upper end of the third shaft extend be passed through described 4th turn it is intracavitary and be fixedly connected with the second cone tooth Wheel, described 4th turn intracavitary to be provided with the third hand tap gear being meshed with the second bevel gear, and the third hand tap gear is fixed It is connected with shaft and shaft is connected on the bevel-gear sett of the transmission band connection, the lower end of the third shaft, which extends, to be passed through Described first turn intracavitary and be rotatably assorted on the downside inner wall for being connected to first turn of chamber by bearing, and described first turn intracavitary Be arranged with the second belt being meshed with the first gear in the third shaft, described first turn intracavitary be provided with it is described The 4th gear that second gear is meshed, the 4th gear are fixedly connected with the 4th shaft, and the upper end of the 4th shaft is prolonged Stretch the blade for being passed through in the fluid chamber and being fixedly connected with annular array.
Further technical solution, the clamping apparatus include the 4th cone for being rotatably set to the third and turning intracavitary Gear, the 4th bevel gear is fixedly connected with shaft and shaft is connect with the cleaning plant by belt, and the third turns The 5th bevel gear that intracavitary setting can be meshed with the first bevel gear and the 4th bevel gear, the 5th bevel gear It is fixedly connected with connecting shaft, the third turns to be provided with sliding chamber in the right side inner wall of chamber, and the cunning is intracavitary to be slidably provided with Sliding block, it is intracavitary and be rotatably assorted by bearing and be connected to a left side for the sliding block that the right end extension of the connecting shaft is passed through the cunning End, is fixedly connected with spring between the left end of the sliding block and the inner left wall of the sliding chamber, in the right side inner wall of the sliding chamber It is provided with push chamber in being connected, sliding surface switch block is rotatably provided in the push chamber, the sliding surface switch block is fixed to be connected It is connected to transmission shaft, the rotation chamber that Open Side Down is provided in the right side inner wall of the push chamber, the right end of the transmission shaft extends It is intracavitary and be fixedly connected with ratchet to be passed through the rotation, the rotation is intracavitary to be slidably provided with and can nibble with the ratchet one-way The rack gear of conjunction, the lower end of the rack gear, which extends, is passed through the brushing chamber, is fixedly installed reset in the right side inner wall of the rack gear Device.
Further technical solution, the painting device include the rotation for being fixedly connected on array arrangement on the conveyer belt Block is fixedly connected with the second motor in the rotating block, and the lower end power of second motor is connected with the 5th shaft, institute The elevator for being provided on the downside of rotating block and being cooperatively connected with the 5th shaft thread is stated, it is symmetrical in the elevator It is provided with guide runner, the slide guide bar being fixedly connected with the rotating block, the lifting are slidably provided in the guide runner The lower end of block is fixedly connected with deashing brush and brushing brush, the lower end of the pipeline extend on a wherein rotating block and It is fixed on elevator by gear, being fixedly connected in the intracavitary inner left wall of brushing can be with the gear on the elevator The rack gear being meshed.
Further technical solution, the cleaning plant include being fixedly installed on consolidating on the downside inner wall of the brushing chamber Determine frame, roller chamber up and down is provided in the fixed frame, array is provided with roller in the fixed frame, and the roller is solid Surely it is connected with the 6th shaft, the front end of the 6th shaft, which extends, to be passed through in described device main body and be arranged with belt, described solid That determines to be connected in the downside inner wall of frame the be provided with grey channel that falls that Open Side Down, in the downside opposed inner walls for falling grey channel It falls grey channel and is fixedly connected with link block, the link block is provided with opening towards the connecting cavity of the 6th shaft, the connection It is intracavitary to be slidably provided with sliding shoe, it is fixedly connected with to connect between the sliding shoe and falls ash box, be provided in the sliding shoe Opening upwards fall grey chamber, and friction block is fixedly connected on the downside inner wall of the brushing chamber, and the lower end of described device main body turns It is dynamic to be connected with wheel.
The beneficial effects of the present invention are: the configuration of the present invention is simple, easy to operate, the present apparatus is automatable to carry out coating Initial application, effective dust of removing are uniformly coated with primer again, remove after dust that portion is collected dust in the device, collect Device effectively and not waste of energy, collects the easily disassembled cleaning in position, removes with brushing work in device the same side and successively It carries out, processed coating will not be impacted.
Detailed description of the invention
Fig. 1 is the overall structure diagram inside the control system of Bridge Seismic of the invention;
Fig. 2 is the top view of Fig. 1 in the present invention " A-A ";
Fig. 3 is the enlarged diagram of Fig. 1 in the present invention " B ".
Specific embodiment
Below with reference to Fig. 1-3, the present invention is described in detail, for sake of convenience, now such as to hereafter described orientation regulation Under: hereafter described front-rear direction up and down is consistent with the front-rear direction up and down of Fig. 1 projection relation itself.
Referring to Fig.1-3, a kind of control system and implementation method for Bridge Seismic of embodiment according to the present invention, In, the control system of the Bridge Seismic includes apparatus main body 11, the attachment device being set in described device main body 11, is set to Painting device in described device main body 11 and the cleaning plant being set in described device main body 11, the attachment device packet Power device and clamping apparatus are included, the upper end of the power device is provided with fluid chamber 12, and the painting device includes setting In being rotatably provided with conveyer belt 30 in the brushing chamber 21 in described device main body 11, the brushing chamber 21, the brushing is filled It sets and is driven by one group of bevel gear by the power device, be fixedly connected with brushing brush 71 and deashing on the conveyer belt 30 Brush 26, conveyer belt 30 drive brushing brush 71 and deashing brush 26 to carry out then successive movement that deashing is brushed to ground, The cleaning plant is set in the brushing chamber 21, is taken in brushing chamber 21 when deashing brush 26 and is reached cleaning plant, is cleared up Roller 35 carries out clearing up to make it into falling in grey chamber 49 and collecting to the dust on deashing brush 26 in device, and the roller 35 is logical Bevel Gear Transmission is crossed to be driven by the power device, be provided on the upside of the brushing chamber 21 can connecting power device clamping dress It sets, the clamping apparatus is driven brushing brush 71 and deashing brush 26 drives intermittent drive cleaning plant and power dress Set connection;
The application method are as follows: apparatus main body 11 is placed in and needs to carry out at coating coating, starts power device, drives conveyer belt 30 rotations, and then deashing brush 26 and brushing brush 71 is driven to rotate, deashing brush 26 turning initially to apparatus main body 11 outside, this When, painting device drives deashing brush 26 to move down contact ground and carries out deashing, and brushing brush 71 goes to dress after the completion of deashing It sets outside main body 11, ground is brushed, brushing brush 71 drives clamping apparatus to drive cleaning when rotating device main body 11 is outer Device work, while brushing to ground, cleaning plant is handled and is collected to the dust on deashing brush 26 brushing brush 71, It drives clamping apparatus that cleaning plant is driven to stop working when deashing brush 26 produces apparatus main body 11, completes a movement and follow Ring.
Valuably or illustratively, the attachment device includes the power device being set in described device main body 11, institute The brushing chamber 21 being provided in the downside inner wall of power device Kai Kou backward is stated, is rotatably provided with biography in the brushing chamber 21 Band 30 is sent, the upper end of the shaft in the left side of the conveyer belt 30 is connected to the rear end of the power device by bevel-gear sett, Fluid chamber 12 is provided in the upper inside walls of the power device, what is be connected in the downside inner wall of the fluid chamber 12 is provided with Through-hole 72, the connection that is connected in the 72 outside inner wall of through-hole are provided with annular slide track 68, in the annular slide track 68 slidably Be provided with ring slider 67, the switch block being fixedly connected with the ring slider 67 is rotatably provided in the through-hole 72 33, what is be connected in the downside inner wall of the through-hole 72 is provided with first turn of chamber 17, rotatably sets in first turn of chamber 17 It is equipped with first gear 66, the first gear 66, which is fixedly connected with shaft, and shaft is rotatably assorted by bearing is connected to described On the downside inner wall of one turn of chamber 17, the second gear being meshed with the first gear 66 is provided in first turn of chamber 17 38, the upper end that the second gear 38 is fixedly connected with shaft and the shaft is rotatably assorted by bearing is connected to the switch block On 33 downside inner wall, suction pump 70 is fixedly connected on the switch block 33, the lower end of the suction pump 70 is fixedly connected with pipe Road 41, the lower end of the pipeline 41 extends through switch block 33 and second gear 38 is passed through in the brushing chamber 21, and described first Turn to be provided with the third gear 64 that can be meshed with the first gear 66 in chamber 17, the third gear 64 is fixedly connected with One shaft 65, second turn of chamber 62 is provided in the upper inside walls of first turn of chamber 17, and the upper end of the first rotating shaft 65 extends It is passed through in second turn of chamber 62 and is arranged with the first belt 63, the right side inner wall of first turn of chamber 17 and be located at described second Turn to be provided with third in the downside inner wall of chamber 62 and turn chamber 52, the third turns rotatably to be provided with first bevel gear in chamber 52 60, the first bevel gear 60 is fixedly connected with the second shaft 61, and the upper end of second shaft 61, which extends, is passed through described second Turn to be arranged with the first belt 63 in chamber 62 and between the first rotating shaft 65, the third turns setting in the right side inner wall of chamber 52 There is clamping apparatus;
In use, power device drives conveyer belt 30 to rotate, while driving 66 rotations, and then second gear 38 is driven to rotate, into And pipeline 41 is driven to rotate, pipeline 41 is connected to fluid chamber 12 by suction pump 70, while the rotation of second gear 38 drives third tooth 64 rotation of wheel, and then drive first rotating shaft 65 and then drive the rotation of the first belt 63 that can transmit kinetic energy by clamping apparatus.
Valuably or illustratively, the power device includes being fixedly installed in the upper inside walls of first turn of chamber 17 First motor 59, the upper and lower side power of the first motor 59 is connected with third shaft 18, the first motor 59 The 4th turn of chamber 14 is provided in upper inside walls, the upper end of the third shaft 18, which extends, to be passed through in the 4th turn of chamber 14 and fix It is connected with second bevel gear 16, is provided with the third hand tap gear being meshed with the second bevel gear 16 in the 4th turn of chamber 14 15, the third hand tap gear 15 is fixedly connected with shaft and shaft is connected on the bevel-gear sett that the conveyer belt 30 connects, The lower end of the third shaft 18, which extends to be passed through in first turn of chamber 17 and be rotatably assorted by bearing, is connected to described first Turn on the downside inner wall of chamber 17, is arranged in the third shaft 18 in first turn of chamber 17 and is nibbled with 66 phase of first gear The second belt 19 closed is provided with the 4th gear 31 being meshed with the second gear 38 in first turn of chamber 17, described 4th gear 31 is fixedly connected with the 4th shaft 32, and the upper end extension of the 4th shaft 32 is passed through in the fluid chamber 12 and solid Surely it is connected with the blade 13 of annular array;
In use, first motor 59 drives third shaft 18 to rotate, and then drives second bevel gear 16 to rotate, and then drive third Bevel gear 15 rotates, and then conveyer belt 30 is driven to rotate, and device is operable, while the rotation of third shaft 18 drives the second skin Band 19, and then drive first gear 66 to rotate, and then drive the rotation of the 4th gear 31, and then with movable vane piece 13 in fluid chamber 12 Liquid be stirred.
Valuably or illustratively, the clamping apparatus include rotatably be set to the third turn in chamber 52 the 4th Bevel gear 58, the 4th bevel gear 58 is fixedly connected with shaft and shaft is connect with the cleaning plant by belt, described Third turns the 5th bevel gear 53 that setting can be meshed with the first bevel gear 60 and the 4th bevel gear 58 in chamber 52, 5th bevel gear 53 is fixedly connected with connecting shaft 54, and the third turns to be provided with sliding chamber 57, institute in the right side inner wall of chamber 52 It states and is slidably provided with sliding block 56 in sliding chamber 57, the right end extension of the connecting shaft 54 is passed through in the sliding chamber 57 and passes through axis Forward dynamic be cooperatively connected between the left end of the sliding block 56, the left end of the sliding block 56 and the inner left wall of the sliding chamber 57 admittedly Surely be connected with spring 55, be connected in the right side inner wall of the sliding chamber 57 in be provided with push chamber 78, in the push chamber 78 It rotatably is provided with sliding surface switch block 79, the sliding surface switch block 79 is fixedly connected with transmission shaft 75, the right side of the push chamber 78 The rotation chamber 77 that Open Side Down is provided in inner wall, the right end extension of the transmission shaft 75 is passed through in the rotation chamber 77 and fixed Be connected with ratchet 76, be slidably provided in the rotation chamber 77 can with the rack gear 73 of 76 one way engagement of ratchet, it is described The lower end of rack gear 73, which extends, is passed through the brushing chamber 21, is fixedly installed resetting apparatus 74 in the right side inner wall of the rack gear 73;
It drives ratchet 76 to rotate in use, rack gear 73 is moved up by the effect of brushing brush 26, and then transmission shaft 75 is driven to rotate, And then sliding surface switch block 79 is driven to rotate, and then be moved to the left with movable slider 56, and then drive the 5th bevel gear 53 and the first cone tooth Wheel 60 and the 4th bevel gear 58 are meshed, when rack gear 73 is not acted on by brushing brush 26, the rack gear 73 of resetting apparatus 74 It moves down.
Valuably or illustratively, the painting device includes turn for being fixedly connected on array arrangement on the conveyer belt 30 Motion block 27 is fixedly connected with the second motor 22 in the rotating block 27, and the lower end power of second motor 22 is connected with 5th shaft 25, the downside of the rotating block 27 are provided with the elevator 39 that connection is threadedly engaged with the 5th shaft 25, institute State it is symmetrical in elevator 39 be provided with guide runner 24, be slidably provided in the guide runner 24 and the rotating block The 27 slide guide bars 23 being fixedly connected, the lower end of the elevator 39 are fixedly connected with deashing brush 26 and brushing brush 71, institute The lower end for stating pipeline 41 extends on a wherein rotating block 27 and is fixed on elevator 39 by gear, the brushing chamber 21 The rack gear 20 that can be meshed with the gear on the elevator 39 is fixedly connected in interior inner left wall;
In use, conveyer belt 30 drives rotating block 27 to rotate, and then drives deashing brush 26 and brushing brush 71 to rotate, second The rotation of motor 22 drives deashing brush 26 and brushing brush 71 to move up and down, and passes through transmission belt 30 and 22 phase interworking of the second motor Conjunction makes device complete the completion of ashman's work and then carry out brushing work and so on.
Valuably or illustratively, the cleaning plant includes being fixedly installed on the downside inner wall of the brushing chamber 21 Fixed frame 34 is provided with roller chamber 36 up and down in the fixed frame 34, and array is provided with roller in the fixed frame 34 35, the roller 35 is fixedly connected with the 6th shaft 47, and the front end of the 6th shaft 47, which extends, to be passed through in described device main body And it is arranged with belt, what is be connected in the downside inner wall of the fixed frame 34 is provided with the grey channel 48 that falls that Open Side Down, described It falls in the downside opposed inner walls in grey channel 48 and falls grey channel 48 and be fixedly connected with link block 45, the link block 45 is provided with opening Towards the connecting cavity 51 of the 6th shaft 47, sliding shoe 46, the sliding shoe 46 are slidably provided in the connecting cavity 51 Between be fixedly connected with to connect and fall ash box, the grey chamber 49 that falls of opening upwards is provided in the sliding shoe 46, the brushing chamber 21 Friction block 37 is fixedly connected on the inner wall of downside, the lower end of described device main body 11, which is rotatably assorted, is connected with wheel 28;
In use, the rotation of the 6th shaft 47 drives roller 35 to rotate, the dust on deashing brush 26 is cleared up, it is logical that dust falls into ash It collects and can be taken off in road 48, friction block 37 makes deashing brush 26 restore the adsorption capacity to dust.
When present apparatus work, start first motor 59, third shaft 18 is driven to rotate, and then drives second bevel gear 16 Rotation, and then drive third hand tap gear 15 to rotate, and then shaft is driven to drive bevel-gear sett rotation that conveyer belt 30 is driven to rotate, And then drive rotating block 27 mobile, and then drive elevator 39 mobile, and then deashing brush 26 is driven to be moved to below, at this time the The starting of two motors 22 drives the rotation of the 5th shaft 25, and then drives elevator 39 to move down and abut against carry out deashing with ground, Third shaft 18 drives the rotation of the second belt 19 simultaneously, and then first gear 66 is driven to rotate, and then drives 38 turns of second gear It is dynamic, and then the rotation of the 4th gear 31 is driven, and then drive the rotation of the 4th shaft 32, and then rotate to fluid chamber 12 with movable vane piece 13 Middle liquid is stirred, and when 26 front deashing of deashing brush finishes and returns to brushing chamber 21, brushing brush 71 is reached exactly to below, The starting of second motor 22 drives the rotation of the 5th shaft 25, and then drives brushing brush 71 to move down and brush to pontic, takes out Liquid in fluid chamber 12 is uniformly extracted and is transmitted on brushing brush 71 by water pump 70, makes the brushing uniform in effect of pontic, while One gear 66 drives third gear 64 to rotate, and then first rotating shaft 65 is driven to rotate, and then drives the rotation of the first belt 63, in turn It drives the second shaft 61 to rotate, and then first bevel gear 60 is driven to rotate, behind brushing brush 71 is just gone to, rotating block 27 It just turns in brushing chamber 21, rotating block 27 is moved up with carry-over bar 73, and then ratchet 76 is driven to rotate, and then is driven and passed Moving axis 75 rotates, and then drives sliding surface switch block 79 to rotate, and then be moved to the left with movable slider 56, and then drives connecting shaft 54 to the left It is mobile, and then drive the 5th bevel gear 53 to be meshed with first bevel gear 60 and the 4th bevel gear 58, and then first bevel gear 60 drive the rotation of the 4th bevel gear 58, and then drive shaft that belt is driven to drive the rotation of the 6th shaft 47, when rotating block 27 reaches At cleaning, the rotation of the 6th shaft 47 drives roller 35 to rotate, and is cleared up to rotating block 27, and dust falls into grey chamber 49, transmission Band 30 continues to rotate, and then drives the adsorption effect of the mobile enhancing dust on friction block 37 of rotating block 27, when rotating block 27 after Continuous to be rotated into below, rotating block 27 is moved up with carry-over bar 73 at this time, and then ratchet 76 is driven to rotate, and then drives transmission Axis 75 rotates, and then sliding surface switch block 79 is driven to rotate, and then 55 band movable sliders 56 move right, and then drives when a place applies The transfer of 28 driving device main bodys 11 is brushed to brush next place.
The beneficial effects of the present invention are: the configuration of the present invention is simple, easy to operate, the present apparatus is automatable to carry out coating Initial application, effective dust of removing are uniformly coated with primer again, remove after dust that portion is collected dust in the device, collect Device effectively and not waste of energy, collects the easily disassembled cleaning in position, removes with brushing work in device the same side and successively It carries out, processed coating will not be impacted.
Those skilled in the art can define, can in the case of not departing from overall spirit of the invention and design To make the various modifications for above embodiments.It falls within the scope of protection of the present invention.Protection scheme of the invention It is subject to claims appended hereto.

Claims (6)

1. a kind of control system and implementation method for Bridge Seismic, wherein the control system of the Bridge Seismic includes device Main body is set to the intracorporal attachment device of described device master, is set to the intracorporal painting device of described device master and is set to The intracorporal cleaning plant of described device master, the attachment device include power device and clamping apparatus, the power device Upper end is provided with fluid chamber, and the painting device includes being set to the intracorporal brushing chamber of described device master, and the brushing is intracavitary can Rotation is provided with conveyer belt, and the painting device is driven by one group of bevel gear by the power device, on the conveyer belt It is fixedly connected with brushing brush and deashing brush, conveyer belt drives brushing brush and deashing brush, and progress deashing in face is right over the ground The successive movement brushed afterwards, the cleaning plant be set to it is described brush it is intracavitary, when deashing brush income brush it is intracavitary reach it is clear Device is managed, roller clear up to the dust on deashing brush making it into and falls grey intracavitary and collect, the rolling in cleaning plant Cylinder is driven by Bevel Gear Transmission by the power device, be provided on the upside of the brushing chamber can the clamping of connecting power device fill It sets, the clamping apparatus is driven brushing brush and the dynamic intermittent drive cleaning plant of dust cleaning brush subband and power device connects It connects;
Being technically characterized in that for apparatus main body to be placed in of this method needs to carry out at coating coating, starts power device, drives Conveyer belt rotation, and then drive deashing brush and brushing brush rotation, deashing brush turning initially to apparatus main body outside, at this point, apply Brush device drives deashing brush to move down contact ground and carries out deashing, and brushing brush is gone to outside apparatus main body after the completion of deashing, Ground is brushed, brushing brush drives clamping apparatus to drive cleaning plant work when outside rotating device main body, brushes brush While brushing to ground, cleaning plant is handled and is collected to the dust on deashing brush, produces device in deashing brush It drives clamping apparatus that cleaning plant is driven to stop working when main body, completes an actuation cycle.
2. a kind of control system and implementation method for Bridge Seismic according to claim 1, wherein the connection dress It sets including being set to the intracorporal power device of described device master, is provided with and is open backward in the downside inner wall of the power device Brushing chamber, the brushing is intracavitary to be rotatably provided with conveyer belt, and the upper end of the shaft in the left side of the conveyer belt passes through a pair Bevel gear is connected to the rear end of the power device, and fluid chamber, the liquid are provided in the upper inside walls of the power device What is be connected in the downside inner wall of chamber is provided with through-hole, on the outside of the through-hole in inner wall be connected connection be provided with annular slide track, It is slidably provided with ring slider in the annular slide track, is rotatably provided in the through-hole solid with the ring slider Surely the switch block connected, what is be connected in the downside inner wall of the through-hole is provided with first turn of chamber, and described first turn intracavitary rotatable Be provided with first gear, the first gear, which is fixedly connected with shaft, and shaft is rotatably assorted by bearing is connected to described On the downside inner wall of one turn of chamber, described first turn intracavitary to be provided with the second gear being meshed with the first gear, and described The upper end that two gears are fixedly connected with shaft and the shaft is rotatably assorted by bearing is connected to the downside inner wall of the switch block On, suction pump is fixedly connected on the switch block, the lower end of the suction pump is fixedly connected with pipeline, and the lower end of the pipeline is prolonged Extend through switch block and second gear be passed through it is described brush intracavitary, described first turn intracavitary be provided with can be with the first gear phase The third gear of engagement, the third gear are fixedly connected with first rotating shaft, are provided in the upper inside walls of first turn of chamber Second turn of chamber, the upper end of the first rotating shaft extend be passed through described second turn it is intracavitary and be arranged with the first belt, described first turn The right side inner wall of chamber and it is located at and is provided with third in the downside inner wall of second turn of chamber and turns chamber, the third turns intracavitary rotatable Be provided with first bevel gear, the first bevel gear is fixedly connected with the second shaft, and the upper end of second shaft extends logical Enter described second turn it is intracavitary and the first belt is arranged between the first rotating shaft, the third turns to set in the right side inner wall of chamber It is equipped with clamping apparatus;
It is characterized by: power device drives conveyer belt rotation, while rotation is driven, and then drive second gear rotation, in turn Pipeline rotation is driven, pipeline is connected to fluid chamber by suction pump, while second gear rotation drives the rotation of third gear, and then band Dynamic first rotating shaft drives the rotation of the first belt that can transmit kinetic energy by clamping apparatus in turn.
3. a kind of control system and implementation method for Bridge Seismic according to claim 1, wherein the power dress Set including be fixedly installed on first turn of chamber upper inside walls in first motor, the upper and lower side power of the first motor matches Conjunction is connected with third shaft, and the 4th turn of chamber is provided in the upper inside walls of the first motor, and the upper end of the third shaft is prolonged Stretch be passed through described 4th turn it is intracavitary and be fixedly connected with second bevel gear, described 4th turn intracavitary to be provided with and the second cone tooth The third hand tap gear being meshed is taken turns, the third hand tap gear is fixedly connected with shaft and shaft is connected to the transmission band connection On bevel-gear sett, the lower end of the third shaft extend be passed through described first turn it is intracavitary and be rotatably assorted and be connected to by bearing On the downside inner wall of first turn of chamber, it is arranged in first turn of intracavitary third shaft and is mutually nibbled with the first gear The second belt closed, described first turn intracavitary to be provided with the 4th gear being meshed with the second gear, the 4th gear It is fixedly connected with the 4th shaft, the upper end of the 4th shaft, which extends, to be passed through in the fluid chamber and be fixedly connected with annular array The blade of arrangement;
It is characterized by: first motor drives the rotation of third shaft, and then drives second bevel gear rotation, and then drive third cone Gear rotation, and then conveyer belt rotation is driven, device is operable, while the rotation of third shaft drives the second belt, in turn First gear rotation is driven, and then drives the rotation of the 4th gear, and then be stirred to the liquid in fluid chamber with movable vane piece.
4. a kind of control system and implementation method for Bridge Seismic according to claim 1, wherein the clamping dress Set and turn intracavitary the 4th bevel gear including being rotatably set to the third, the 4th bevel gear be fixedly connected with shaft and Shaft is connect with the cleaning plant by belt, and the third turns intracavitary setting can be with the first bevel gear and described the The 5th bevel gear that four bevel gears are meshed, the 5th bevel gear are fixedly connected with connecting shaft, and the third turns the right side of chamber Sliding chamber is provided in inner wall, the cunning is intracavitary to be slidably provided with sliding block, and the right end extension of the connecting shaft is passed through the cunning It is intracavitary and be rotatably assorted by bearing and be connected to the left end of the sliding block, the inner left wall of the left end of the sliding block and the sliding chamber Between be fixedly connected with spring, be connected in the right side inner wall of the sliding chamber in be provided with push chamber, can in the push chamber Rotation is provided with sliding surface switch block, and the sliding surface switch block is fixedly connected with transmission shaft, setting in the right side inner wall of the push chamber There is a rotation chamber that Open Side Down, it is intracavitary and be fixedly connected with ratchet that the right end extension of the transmission shaft is passed through the rotation, described Rotate it is intracavitary be slidably provided with the rack gear that can engage with the ratchet one-way, the lower end extension of the rack gear is passed through the painting Brush chamber is fixedly installed resetting apparatus in the right side inner wall of the rack gear;
It is characterized by: rack gear is moved up drive ratchet wheel by the effect of brushing brush, and then drives transmission shaft rotation, in turn The rotation of sliding surface switch block is driven, and then is moved to the left with movable slider, and then drives the 5th bevel gear and first bevel gear and described 4th bevel gear is meshed, and when rack gear is not acted on by brushing brush, the rack gear of resetting apparatus is moved down.
5. a kind of control system and implementation method for Bridge Seismic according to claim 1, wherein the brushing dress The rotating block including being fixedly connected on array arrangement on the conveyer belt is set, the second motor is fixedly connected in the rotating block, The lower end power of second motor is connected with the 5th shaft, is provided on the downside of the rotating block and the 5th shaft It is threadedly engaged the elevator of connection, it is symmetrical in the elevator to be provided with guide runner, it is slidable in the guide runner It is provided with the slide guide bar being fixedly connected with the rotating block, the lower end of the elevator is fixedly connected with deashing brush and brushing Brush, the lower end of the pipeline extend on a wherein rotating block and are fixed on elevator by gear, the brushing chamber The rack gear that can be meshed with the gear on the elevator is fixedly connected in interior inner left wall;
It is characterized by: conveyer belt drives rotating block rotation, and then drive deashing brush and the rotation of brushing brush, the second motor Rotation drives deashing brush and brushing brush to move up and down, and completes device by transmission belt and the mutual cooperation of the second motor clear Ash work is completed and then carries out brushing work and so on.
6. a kind of control system and implementation method for Bridge Seismic according to claim 1, wherein the cleaning dress Set including be fixedly installed on the brushing chamber downside inner wall on fixed frame, rolling up and down is provided in the fixed frame Barrel chamber, array is provided with roller in the fixed frame, and the roller is fixedly connected with the 6th shaft, the front end of the 6th shaft Extension is passed through in described device main body and is arranged with belt, be connected in the downside inner wall of the fixed frame be provided with opening to Under fall grey channel, fall grey channel in the downside opposed inner walls for falling grey channel and be fixedly connected with link block, the link block It is provided with the connecting cavity being open towards the 6th shaft, is slidably provided with sliding shoe, the sliding shoe in the connecting cavity Between be fixedly connected with to connect and fall ash box, the grey chamber that falls of opening upwards is provided in the sliding shoe, in the downside of the brushing chamber Friction block is fixedly connected on wall, the lower end of described device main body, which is rotatably assorted, is connected with wheel;
It is characterized by: the rotation of the 6th shaft drives roller rotation, the dust on deashing brush is cleared up, dust falls into grey channel Interior to collect and can be taken off, friction block makes deashing brush restore the adsorption capacity to dust.
CN201910533221.8A 2019-06-19 2019-06-19 Equipment for damping bridge Active CN110241737B (en)

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CN110983952A (en) * 2019-12-26 2020-04-10 重庆三峡学院 Wind-resistant damping device and damping suspender suitable for bridge structure
CN112031153A (en) * 2020-09-16 2020-12-04 郑秀平 Assembly type building structure

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CN112031153A (en) * 2020-09-16 2020-12-04 郑秀平 Assembly type building structure

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