CN114029273A - Coating equipment is washd to intelligence - Google Patents
Coating equipment is washd to intelligence Download PDFInfo
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- CN114029273A CN114029273A CN202111440273.4A CN202111440273A CN114029273A CN 114029273 A CN114029273 A CN 114029273A CN 202111440273 A CN202111440273 A CN 202111440273A CN 114029273 A CN114029273 A CN 114029273A
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- chamber
- coating
- drying
- shaft
- cleaning
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B08—CLEANING
- B08B—CLEANING IN GENERAL; PREVENTION OF FOULING IN GENERAL
- B08B3/00—Cleaning by methods involving the use or presence of liquid or steam
- B08B3/02—Cleaning by the force of jets or sprays
- B08B3/022—Cleaning travelling work
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B05—SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
- B05C—APPARATUS FOR APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
- B05C13/00—Means for manipulating or holding work, e.g. for separate articles
- B05C13/02—Means for manipulating or holding work, e.g. for separate articles for particular articles
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B08—CLEANING
- B08B—CLEANING IN GENERAL; PREVENTION OF FOULING IN GENERAL
- B08B1/00—Cleaning by methods involving the use of tools
- B08B1/10—Cleaning by methods involving the use of tools characterised by the type of cleaning tool
- B08B1/12—Brushes
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B08—CLEANING
- B08B—CLEANING IN GENERAL; PREVENTION OF FOULING IN GENERAL
- B08B1/00—Cleaning by methods involving the use of tools
- B08B1/20—Cleaning of moving articles, e.g. of moving webs or of objects on a conveyor
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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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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F26—DRYING
- F26B—DRYING SOLID MATERIALS OR OBJECTS BY REMOVING LIQUID THEREFROM
- F26B21/00—Arrangements for supplying or controlling air or other gases for drying solid materials or objects
- F26B21/001—Air generating units, e.g. movable or independent of drying enclosure
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F26—DRYING
- F26B—DRYING SOLID MATERIALS OR OBJECTS BY REMOVING LIQUID THEREFROM
- F26B5/00—Drying solid materials or objects by processes not involving the application of heat
- F26B5/14—Drying solid materials or objects by processes not involving the application of heat by applying pressure, e.g. wringing; by brushing; by wiping
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- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- General Engineering & Computer Science (AREA)
- Health & Medical Sciences (AREA)
- Life Sciences & Earth Sciences (AREA)
- Molecular Biology (AREA)
- ing And Chemical Polishing (AREA)
- Coating Apparatus (AREA)
Abstract
The invention relates to the field of metal plate etching, and discloses intelligent cleaning and coating equipment which comprises a conveying belt, clamps and a box body, wherein the clamps are distributed at equal intervals along the conveying direction of the conveying belt, the box body is divided into a cleaning chamber, a drying chamber and a coating chamber by a partition plate, the lower belt surface of the conveying belt passes through the cleaning chamber, the drying chamber and the coating chamber, the clamps comprise suction plates for sucking and fixing metal plates, the suction plates are arranged on a passive mechanism, the passive mechanism comprises stand columns, the stand columns are arranged on the conveying belt by a matching mechanism, trigger mechanisms are arranged in the cleaning chamber, the drying chamber and the coating chamber, the trigger mechanisms are used for matching with the matching mechanism to drive the suction plates to rotate around the conveying direction of the conveying belt at different angles, the intelligent cleaning and coating equipment provided by the invention can realize continuous and automatic washing, scrubbing, wiping, drying and coating treatment on the metal plates, degree of automation is high, and machining efficiency is high, can cooperate different mechanisms to adjust the gesture of metal sheet.
Description
Technical Field
The invention relates to the field of metal plate etching, in particular to intelligent cleaning and coating equipment.
Background
Etching is a technique in which material is removed using a chemical reaction or physical impact. The etching technique can be classified into wet etching and dry etching.
The method can be used for manufacturing printing embossing plates such as coppers, zincs and the like at the earliest time, and is also widely used for processing weight-reducing instrument paneling, nameplates, thin workpieces which are difficult to process by the traditional processing method and the like; through continuous improvement and development of process equipment, the method can also be used for processing precision etching products of electronic thin-sheet parts in aviation, machinery and chemical industries, and particularly, etching is an indispensable technology in semiconductor manufacturing processes.
The metal plate needs to be subjected to preorder treatment before being etched, so that the existing treatment steps are more, equipment is more, the processing efficiency is lower, and the existing use requirements cannot be met.
Disclosure of Invention
The invention provides intelligent cleaning and coating equipment which comprises a conveying belt, clamps and a box body, wherein the clamps are distributed at equal intervals along the conveying direction of the conveying belt, the box body is divided into a cleaning chamber, a drying chamber and a coating chamber through a partition plate, the lower belt surface of the conveying belt penetrates through the cleaning chamber, the drying chamber and the coating chamber, the clamps comprise suction plates for sucking and fixing metal plates, the suction plates are arranged on a driven mechanism, the driven mechanism comprises stand columns, the stand columns are arranged on the conveying belt through a matching mechanism, and triggering mechanisms are arranged in the cleaning chamber, the drying chamber and the coating chamber and are used for matching with the matching mechanism to drive the suction plates to rotate around the conveying direction of the conveying belt to form different angles.
Preferably: the cooperation mechanism includes the pivot, and the pivot is arranged along the direction of delivery of conveyer belt, and pivot and stand are vertical form and distribute, and the pivot is rotated and is installed on the conveyer belt area, pivot one end and stand fixed connection, and C drive assembly is connected to the pivot other end, and C drive assembly is used for cooperating with trigger mechanism.
Preferably: the C transmission assembly comprises a C shaft, the C shaft is arranged along the bandwidth direction of the conveying belt, the C shaft is rotatably installed on the conveying belt, a worm is installed at one end, close to the rotating shaft, of the C shaft, the axis of the worm is collinear with the axis of the C shaft, a worm wheel is installed at one end, close to the C shaft, of the rotating shaft, the worm wheel is meshed with the worm, a driven part is installed at the other end of the C shaft, and the driven part is used for being matched with the trigger mechanism.
Preferably: the driven piece is a C gear, the trigger mechanism comprises a trigger gear, and the trigger gear and the C gear are matched and correspondingly arranged in position.
Preferably: the purge chamber bottom has arranged in proper order along the direction of delivery of conveyer belt washing unit, has scrubbed the unit and has wiped the unit futilely, and the washing unit is including being the washing terminals who arranges the form, and the washing terminals slope arranges up.
Preferably: the brushing unit comprises a brush roller which is horizontally arranged, the brush roller is arranged along the conveying direction of the conveying belt, two ends of the brush roller are arranged at the bottom of the cleaning chamber through elastic supports, and the brush roller is used for being in contact with the metal plate surface and rotating.
Preferably: a trigger mechanism in the washing chamber is disposed above the brush roller.
Preferably: the wiping unit comprises a wiping roller, the surface of the wiping roller is wrapped with a wiping sleeve, the wiping roller is arranged along the width direction of the conveying belt, two ends of the wiping roller are installed at the bottom of the cleaning chamber through elastic supports, and the wiping roller is used for contacting and rotating with the metal plate.
Preferably: the inner side surface of the drying chamber is provided with a drying mechanism which is used for spraying hot air to the metal plate surface which is vertically arranged.
Preferably: the top of the coating chamber is provided with a coating mechanism which is used for coating materials on the surface of the metal plate which is horizontally arranged and faces upwards.
The invention has the beneficial effects that: the intelligent cleaning and coating equipment provided by the invention can continuously and automatically wash, scrub, dry and coat the metal plate, has high automation degree and high processing efficiency, can be matched with different mechanisms to adjust the posture of the metal plate, and meets the current use requirements.
Drawings
FIG. 1 is a schematic structural diagram of an intelligent cleaning and coating device proposed in the present invention;
fig. 2 is a schematic structural diagram of a passive mechanism in the intelligent cleaning and coating device provided by the invention.
FIG. 3 is a schematic structural view of a plate etching apparatus according to embodiment 3 of the present invention;
FIG. 4 is a schematic side view of a plate etching apparatus according to embodiment 3 of the present invention;
FIG. 5 is a schematic structural view of a jig and a conveyor belt in a flat plate etching apparatus according to embodiment 3 of the present invention;
FIG. 6 is a schematic structural view of a lifting unit in a lithographic apparatus according to embodiment 3 of the present invention;
FIG. 7 is a schematic view of another aspect of a chuck in a lithographic apparatus according to embodiment 3 of the present invention;
FIG. 8 is a schematic structural view of an A drive unit in a flat panel etching apparatus according to embodiment 3 of the present invention;
in the figure: 100. a conveyor belt; 200. etching the box; 210. a spray system; 220. a power mechanism; 221. b, driving the gear; 222. a, driving a gear; 300. a clamp; 310. a ball bearing; 320. a limiting unit; 321. a, a limiting part; 322. b, a limiting part; 330. a rotating unit; 331. b, a fluted disc; 332. a B axis; 333. b1 gear; 334. b2 gear; 340. a lifting unit; 341. a mating member; 342. a screw rod; 343. a slide base; 344. a driving toothed belt wheel; 345. a driven gear; 346. a toothed belt; 350. a ring plate; 360. sucking a plate; 370. a column; 371. a fluted disc; 372. an A1 axis; 372a, a1 gear; 372b, a1 bevel gear; 373. an A2 axis; 373a, a2 bevel gear; 373b, a3 bevel gear; 374. an A3 axis; 374a, a4 bevel gear; 374b, a2 gear; 380. a support frame; 400. a mating mechanism; 410. a rotating shaft; 411. a worm gear; 420. a C axis; 421. a worm; 422. c gear; 500. a trigger mechanism; 510. triggering a gear; 600. a cleaning chamber; 610. washing the spray head; 620. a brush roll; 630. wiping the roller; 700. a drying chamber; 710. a drying mechanism; 800. a coating chamber; 810. and a coating mechanism.
Detailed Description
The subject matter described herein will now be discussed with reference to example embodiments. It should be understood that these embodiments are discussed only to enable those skilled in the art to better understand and thereby implement the subject matter described herein, and are not intended to limit the scope, applicability, or examples set forth in the claims. Changes may be made in the function and arrangement of elements discussed without departing from the scope of the disclosure. Various examples may omit, substitute, or add various procedures or components as needed. In addition, features described with respect to some examples may also be combined in other examples.
Example 1
Referring to fig. 1 to 2, there is provided in the present embodiment an intelligent cleaning and coating apparatus, this coating equipment is washd to intelligence arranges in etching case 200 the place ahead, this coating equipment is washd to intelligence includes conveyer belt 100, anchor clamps 300 and box, anchor clamps 300 is along the direction of delivery equidistance interval distribution of conveyer belt 100, divide into purge chamber 600 through the baffle in the box, drying chamber 700 and coating chamber 800, the belt face passes purge chamber 600 under the conveyer belt 100, drying chamber 700 and coating chamber 800, anchor clamps 300 is including being used for attracting the suction disc 360 of fixed metal sheet, suction disc 360 installs on passive mechanism, passive mechanism includes stand 370, stand 370 installs on conveyer belt 100 through cooperation mechanism 400, purge chamber 600, trigger mechanism 500 is equipped with in drying chamber 700 and the coating chamber 800, trigger mechanism 500 is used for cooperating with cooperation mechanism 400, the realization drives suction disc 360 and rotates around the direction of delivery of conveyer belt 100 and is different angles.
The matching mechanism 400 comprises a rotating shaft 410, the rotating shaft 410 is arranged along the conveying direction of the conveying belt 100, the rotating shaft 410 and the upright column 370 are vertically distributed, the rotating shaft 410 is rotatably installed on the belt surface of the conveying belt 100, one end of the rotating shaft 410 is fixedly connected with the upright column 370, the other end of the rotating shaft 410 is connected with a C transmission component, and the C transmission component is used for matching with the trigger mechanism 500.
The C transmission assembly comprises a C shaft 420, the C shaft 420 is arranged along the bandwidth direction of the conveyor belt 100, the C shaft 420 is rotatably installed on the conveyor belt 100, one end, close to the rotating shaft, of the C shaft 420 is provided with a worm 421, the axis of the worm 421 is collinear with the axis of the C shaft 420, one end, close to the C shaft 420, of the rotating shaft 410 is provided with a worm wheel 411, the worm wheel 411 is meshed with the worm 421, the other end of the C shaft 420 is provided with a driven part, and the driven part is used for being matched with the trigger mechanism 500.
The driven piece is a C gear 422, the trigger mechanism comprises a trigger gear 510, and the trigger gear 510 and the C gear 422 are matched and correspondingly arranged.
The bottom of the cleaning room 600 is sequentially provided with a washing unit, a brushing unit and a wiping unit along the conveying direction of the conveying belt 100, the washing unit comprises a row-shaped washing nozzle 610, and the washing nozzle 610 is obliquely arranged upwards.
The brushing unit includes a brush roller 620, the brush roller 620 is horizontally arranged, the brush roller 620 is arranged along the conveying direction of the conveyor belt 100, both ends of the brush roller 620 are installed at the bottom of the cleaning chamber 600 through elastic brackets, and the brush roller 620 is used to contact and rotate the metal plate surface.
The trigger mechanism 500 in the cleaning chamber 600 is disposed above the brush roller 620.
The wiping unit comprises a wiping roller 630, the surface of the wiping roller 630 is wrapped with a wiping sleeve, the wiping roller 630 is arranged along the width direction of the conveying belt 100, two ends of the wiping roller 630 are installed at the bottom of the cleaning chamber 600 through elastic supports, and the wiping roller 630 is used for contacting and rotating with a metal plate.
The drying mechanism 710 is installed on the inner side of the drying chamber 700, and the drying mechanism 710 is used for spraying hot air to the metal plate surfaces which are vertically arranged.
The coating chamber 800 is provided with a coating means 810 at the top thereof, and the coating means 810 is used for coating the material on the surface of the metal plate horizontally arranged facing upward.
When the intelligent cleaning and coating device provided by the embodiment works, firstly the clamp 300 is conveyed into the cleaning chamber 600 by the conveying belt 100, at this time, the metal plate clamped by the clamp 300 is in a state of facing downwards, firstly the cleaning spray head 610 washes the etched surface of the metal plate strip, then the clamp 300 is conveyed above the brush roller 620 by the conveying belt 100, the brush roller 620 is positioned above the metal plate, the length of the brush roller 620 is larger than that of the metal plate, at this time, the trigger gear 510 is meshed with the C gear 422, the surface of the metal plate to be etched is attached to the brush roller 620, the trigger gear 510 drives the C gear 422 to rotate in a reciprocating manner, the C gear 422 drives the worm 421 to rotate through the C shaft 420, the worm 421 is meshed with the worm wheel 411, the rotating shaft 410 is driven to rotate in a reciprocating manner, the metal plate is driven to swing in a reciprocating manner, the brush roller 620 rotates, the edge of the metal plate is pressed against the brush roller 620 to drive the elastic support to continuously lift, the metal plate is thoroughly and effectively brushed; after the completion, the conveyer belt 100 conveys the metal plate through the wiping roller 630, and the wiping roller 630 rotates to wipe the metal plate;
then the metal plate is conveyed into the drying chamber 700 by the conveying belt 100, the trigger gear 510 in the drying chamber 700 is meshed with the C gear 422, the conveying belt 100 is suspended, the metal plate is adjusted to rotate to be vertical, the surface of the metal plate to be etched faces the drying mechanism 710, and the drying mechanism 710 rapidly dries the metal plate;
after the process is finished, the metal plate is conveyed into the coating chamber 800 by the conveying belt 100, the trigger gear 510 in the coating chamber 800 is meshed with the C gear 422, the conveying belt 100 is paused, the rotation of the metal plate is adjusted to be in a state that the surface to be etched faces upwards and is opposite to the coating mechanism 810, then the coating mechanism 810 coats the surface to be etched of the metal plate, and after the process is finished, the metal plate is conveyed into the next mechanism by the conveying belt 100.
Example 2
In this embodiment, a process for plate etching is provided, which includes the following steps:
s1: firstly, cleaning and drying the surface of a metal plate to be etched;
s2: carrying out film pasting or coating treatment on the metal plate treated in the step S1;
s3: drying the metal plate stuck or coated in the step S2;
s4: exposing and developing the metal plate subjected to drying treatment in the step S3, wherein the exposed and developed patterns are consistent with the preset patterns, and the section width of any one line in the exposed and developed patterns is smaller than the section width of the line corresponding to the preset pattern;
s5: drying the metal plate;
s6: etching the metal plate;
s7: finally, demoulding is carried out.
Example 3
Referring to fig. 3-8, in the present embodiment, a flat plate etching apparatus is provided, including a conveying belt 100, a fixture 300 and an etching chamber 200, the fixture 300 is equidistantly spaced along a conveying direction of the conveying belt 100, the conveying belt 100 is used to drive the fixture 300 to pass through the etching chamber 200, the fixture 300 includes a suction plate 360 for sucking and fixing a metal plate, the suction plate 360 is installed on a passive mechanism, a spraying system 210 for etching the metal plate and a power mechanism 220 are installed in the etching chamber 200, the power mechanism 220 and the passive mechanism are correspondingly arranged, the power mechanism 220 can be combined with or separated from the passive mechanism, the power mechanism 220 is used to transmit power to the passive mechanism, and the passive mechanism is used to drive the suction plate 360 to swing in cooperation with the spraying system.
The passive mechanism includes ball hinge 310, ring dish 350 and fitting piece 341, ball hinge 310's expansion end fixed mounting is on suction disc 360, the stiff end of ball hinge 310 is installed on stand 370, the quotation of ring dish 350 and suction disc 360's face are parallel, ring dish 350 fixed mounting is on suction disc 360, ball hinge 310 is located the centre of a circle position of ring dish 350, fitting piece 341 and ring dish 350 move towards along its circumference and constitute the sliding guide cooperation, fitting piece 341 constitutes along the direction of perpendicular to ring dish 350 quotation and leans on limit fit with ring dish 350, fitting piece 341 connection adjusting unit, adjusting unit is used for adjusting fitting piece 341 and rotates around stand 370 and adjusts fitting piece 371 and remove along stand 370 direction of height.
The lower end of the fitting member 341 has two fitting portions, the distance between the two fitting portions is the same as the thickness of the circular disc 350, and the two fitting portions are in point contact with the disc surface of the circular disc 350.
The passive mechanism further includes a limiting unit 320, the limiting unit 320 is configured to restrict the movable end of the ball bearing 310 from rotating around the column 370 in a process that the mating member 341 rotates around the column 370, the limiting unit 320 includes an a limiting member 321 and a B limiting member 322, the a limiting member 321 is disposed at the fixed end of the ball bearing 310, the B limiting member 322 is mounted at the movable end of the ball bearing 310, the a limiting member 321 and the B limiting member 322 form a limiting fit around an axial direction of the column 370, and the a limiting member 321 and the B limiting member 322 form an elastic fit along a height direction of the column 370.
The a limiting part 321 is an annular plate-shaped member, the plate surface of the a limiting part 321 is perpendicular to the height direction of the upright column 370, the fixed end of the ball bearing 310 is located at the position of the center of the a limiting part 321, one side plate surface of the a limiting part 321 close to the suction plate 360 is provided with limiting teeth, the limiting teeth are distributed around the axial direction of the a limiting part 321 at equal intervals, the B limiting part 322 is an elastic plate-shaped member, one end of the B limiting part 322 abuts against between adjacent limiting teeth of the a limiting part 321, and the other end of the B limiting part 322 is fixedly connected with the movable end of the ball bearing 310.
The B limiting parts 322 are arc-shaped elastic sheet-shaped members, two groups of the B limiting parts 322 are arranged, and the two B limiting parts 322 are distributed in a splayed shape.
Two groups of B-position-limiting members 322 distributed in a splayed shape are marked as position-limiting members, and the position-limiting members are distributed in a circumferential array around the upright column 370.
The adjusting unit comprises a supporting frame 380, a lifting unit 340 and a rotating unit 330, wherein the lifting unit 340 is arranged along the height direction of the upright column 370, the fixed end of the lifting unit 340 is installed on the supporting frame 380, the movable end of the lifting unit 340 is connected with the matching piece 341, the supporting frame 380 is connected with the rotating unit 330, and the rotating unit 330 is used for driving the supporting frame 380 to rotate around the upright column 370.
The lifting unit 340 comprises a sliding seat 343, the sliding seat 343 is arranged along the length direction of the upright column 370, a lead screw 342 is arranged in the sliding seat 343, the length direction of the lead screw 342 is consistent with the length direction of the sliding seat 343, a movable nut is assembled on the lead screw 342 and fixedly connected with a matching piece 341, the lead screw 342 is connected with an A transmission assembly, the power mechanism comprises an A power unit and a B power unit, and the A transmission assembly is used for being combined with the A power unit to drive the lead screw 341 to rotate.
The A transmission assembly comprises a driven toothed belt wheel 344, a driving toothed belt wheel 345 and a gear transmission assembly, the driven toothed belt wheel 344 is installed at the upper end of the screw 341, the driving toothed belt wheel 345 is rotatably installed on the upright column 370, the central axis of the driving toothed belt wheel 345 is collinear with the central axis of the upright column 370, the driving toothed belt wheel 345 is connected with the driven toothed belt wheel 344 through a toothed belt 346, and the driving toothed belt wheel 345 is connected with the gear transmission assembly.
The gear transmission assembly comprises an A fluted disc 371, the A fluted disc 371 and the driven toothed belt wheel 345 are distributed in parallel and fixedly connected, the A upright post 370 is hollow, an A1 shaft 372 is arranged in the A upright post 370, the A2 shaft 373 and the A3 shaft 734 are arranged vertically, the A1 shaft 372 and the A2 shaft 373 are arranged vertically, the axis of the A2 shaft 373 is collinear with the axis of the upright post 370, one end of the A1 shaft 372 penetrates through the upright post 370, the penetrating end of the A1 shaft 372 is provided with the A1 gear 372a, the A1 gear 372a is meshed with the A fluted disc 371, the other end of the A1 shaft 372 is provided with the A1 bevel gear 372b, one end of the A2 shaft 373, which is close to the A1 shaft 372, is provided with the A2 bevel gear a, the A1 bevel gear 372b is meshed with the A2 bevel gear 373a, the other end of the A2 shaft is provided with the A3 bevel gear 373, the A3 shaft 373 is parallel with the A1 shaft 372, one end of the A3 shaft 374 extends out of the upright post 370, one end of the A3 shaft 374, which is positioned in the upright post 370 is provided with the A4 bevel gear 374a, the A4 bevel gear 374a is meshed with the A3 bevel gear 374a, the A4 bevel gear 374a is meshed with the A2 b matched with the A3 gear 374b arranged at the penetrating end of the A4 shaft.
The rotating unit 330 comprises a B fluted disc 331 and a B shaft 332, the B fluted disc 331 is rotatably installed on the upright column 370, the central axis of the B fluted disc 331 is collinear with the central axis of the upright column 370, the B fluted disc 331 is arranged above the support frame 380, the B fluted disc 331 is fixedly connected with the support frame 380, the teeth of the B fluted disc 331 are arranged towards the direction far away from the support frame 380, the B shaft 332 and the A3 shaft 374 are axially consistent, the B shaft 332 is rotatably installed on the bearing seat, the bearing seat is fixedly connected with the upright column 370, one end of the B shaft 332 is provided with a B1 gear 333 meshed with the B fluted disc 331, and the other end of the B shaft 332 is provided with a B2 gear 334 matched with the B power unit.
The A power unit includes an A drive gear 222 that mates with the A2 gear and the B power unit includes a B drive gear 221 that mates with the B2 gear.
In the etching device provided by the embodiment, when the etching device works, the conveying belt 100 conveys the clamp 300 into the etching box 200 and pauses above the spraying system 210, the gear 374B of the A2 is meshed with the gear 222 of the A, the gear 334 of the B2 is meshed with the gear 221 of the B, and the surface of the metal plate to be etched faces downwards to the spraying system 210;
the etching device provided by the embodiment can adjust different swing modes of the metal plate according to different etching requirements, and can adjust the actions of the metal plate such as left-right, front-back, circumferential swing and the like;
when the metal plate needs to be adjusted to rock left and right, the B driving gear 221 drives the B2 gear 334 to rotate, the B2 gear 334 drives the B1 gear 333 to rotate through the B shaft 332, the B1 gear 333 drives the B fluted disc 331 to rotate around the upright column 370, the B fluted disc 331 drives the support frame 380 to rotate to the left side or the right side to pause, then the a driving gear 222 drives the a2 gear 374B to rotate, the a2 gear 374 drives the a4 piebald horse driving wheel 374a to rotate through the A3 shaft 374, the a4 bevel gear 374a drives the A3 bevel gear 373B to rotate, the A3 bevel gear 373B drives the a2 bevel gear 373a to rotate through the a2 shaft, the a2 bevel gear 373a drives the a1 bevel gear 372B to rotate, the a1 bevel gear 372B drives the a1 gear 372a to rotate through the a1 shaft 372, the a1 gear 372a is meshed with the a fluted disc 371, the a fluted disc 371 is driven pulley 344 is driven by the a fluted disc 371 to rotate, the a drive the driving pulley 345, the driven toothed belt wheel 344 drives the screw rod 341 to rotate, the screw rod 341 drives the matching piece 341 to continuously lift, the matching piece 341 continuously drives the circular ring disc 350 to swing up and down, the suction plate 360 is driven to continuously swing up and down through the arrangement of the ball bearing 310, the function of driving the metal plate to swing left and right is realized, the lifting distance of the matching piece 341 can be adjusted, the amplitude of the metal plate to swing is adjusted, the etching liquid sprayed by a spraying system is matched, and the metal plate is uniformly and effectively etched;
when the adjusting metal plate is shaken back and forth, the distance is the same as the above, and the fitting member 341 is adjusted to the front or rear position;
when the metal plate is adjusted to shake along the circumferential direction, the B gear 221 continuously rotates, the B2 gear 334 drives the B1 gear 333 to rotate through the B shaft 332, the B1 gear 333 drives the B fluted disc 331 to continuously rotate around the upright post 370, when attention needs to be paid, the rotation of the screw rod 341 around the upright post 370 cannot affect the transmission of the screw rod 341 through the arrangement of the driving toothed belt wheel 345, the toothed belt 346 and the driven toothed belt wheel 344, so that the screw rod 341 can be stably driven by the power transmitted by the gear transmission assembly, the control is accurate, in the process that the screw rod 341 continuously rotates around the upright post 370, the screw rod 341 also continuously moves to drive the matching piece 341 to continuously lift, and the purpose of adjusting the metal plate to shake around the circumference of the upright post 371 is achieved;
in the above process, it should be noted that, when the fitting member 341 and the circular ring disc 350 are engaged, a torque may be applied to the circular ring disc 350, the circular ring disc 350 may drive the movable end of the ball bearing 310 to rotate around the upright post 370, and the arrangement of the limiting unit 320 may effectively avoid the occurrence of such a situation, the B limiting member 322 may form a snap with the a limiting member 321, so as to achieve a limiting function, in addition, when the suction plate 360 is shaken, the movable end of the ball bearing 310 may move synchronously, because the B limiting member 322 is an arc-shaped elastic sheet, the B limiting member 322 may be compressed, and the shaking may not be hindered.
The embodiments of the present invention have been described with reference to the drawings, but the present invention is not limited to the above-mentioned specific embodiments, which are only illustrative and not restrictive, and those skilled in the art can make many forms without departing from the spirit and scope of the present invention and the protection scope of the claims.
Claims (10)
1. The intelligent cleaning and coating equipment is characterized by comprising a conveying belt (100), clamps (300) and a box body, wherein the clamps (300) are distributed at equal intervals along the conveying direction of the conveying belt (100), the box body is divided into a cleaning chamber (600), a drying chamber (700) and a coating chamber (800) through partition plates, the lower surface of the conveying belt (100) penetrates through the cleaning chamber (600), drying chamber (700) and coating chamber (800), anchor clamps (300) are including being used for attracting suction disc (360) of fixed metal sheet, suction disc (360) are installed on passive mechanism, passive mechanism includes stand (370), stand (370) are installed on conveyer belt (100) through cooperation mechanism (400), purge chamber (600), trigger mechanism (500) are equipped with in drying chamber (700) and the coating chamber (800), trigger mechanism (500) are used for cooperating with cooperation mechanism (400), it is different angles to realize driving suction disc (360) and rotate around the direction of delivery of conveyer belt (100).
2. The intelligent cleaning and coating device as claimed in claim 1, wherein the matching mechanism (400) comprises a rotating shaft (410), the rotating shaft (410) is arranged along the conveying direction of the conveying belt (100), the rotating shaft (410) and the upright column (370) are vertically distributed, the rotating shaft (410) is rotatably mounted on the belt surface of the conveying belt (100), one end of the rotating shaft (410) is fixedly connected with the upright column (370), the other end of the rotating shaft (410) is connected with a C transmission component, and the C transmission component is used for matching with the trigger mechanism (500).
3. The intelligent cleaning and coating device is characterized in that the C transmission assembly comprises a C shaft (420), the C shaft (420) is arranged along the bandwidth direction of the conveyor belt (100), the C shaft (420) is rotatably installed on the conveyor belt (100), a worm (421) is installed at one end, close to the rotating shaft, of the C shaft (420), the axis of the worm (421) is collinear with the axis of the C shaft (420), a worm wheel (411) is installed at one end, close to the C shaft (420), of the rotating shaft (410), the worm wheel (411) is meshed with the worm (421), a driven part is installed at the other end of the C shaft (420), and the driven part is used for being matched with the trigger mechanism (500).
4. The intelligent cleaning and coating device of claim 3, wherein the driven member is a C gear (422), the trigger mechanism comprises a trigger gear (510), and the trigger gear (510) and the C gear (422) are matched and correspondingly arranged.
5. The intelligent cleaning and coating equipment according to claim 4, wherein a washing unit, a brushing unit and a wiping unit are sequentially arranged at the bottom of the cleaning chamber (600) along the conveying direction of the conveying belt (100), the washing unit comprises a row of washing nozzles (610), and the washing nozzles (610) are obliquely arranged upwards.
6. The intelligent cleaning and coating device of claim 5, wherein the brushing unit comprises a brush roller (620), the brush roller (620) is horizontally arranged, the brush roller (620) is arranged along the conveying direction of the conveying belt (100), two ends of the brush roller (620) are arranged at the bottom of the cleaning chamber (600) through elastic brackets, and the brush roller (620) is used for being in surface contact with the metal plate and rotating.
7. The intelligent cleaning and coating device according to claim 6, wherein the trigger mechanism (500) in the cleaning chamber (600) is arranged above the brush roller (620).
8. The intelligent cleaning and coating device according to claim 7, wherein the drying unit comprises a drying roller (630), a drying sleeve is wrapped on the surface of the drying roller (630), the drying roller (630) is arranged along the width direction of the conveyor belt (100), two ends of the drying roller (630) are installed at the bottom of the cleaning chamber (600) through elastic supports, and the drying roller (630) is used for contacting and rotating with the metal plate.
9. The intelligent cleaning and coating device as claimed in claim 1, wherein a drying mechanism (710) is installed on the inner side surface of the drying chamber (700), and the drying mechanism (710) is used for spraying hot air to the metal plate surfaces which are vertically arranged.
10. The intelligent cleaning and coating device as claimed in claim 1, wherein the coating chamber (800) is provided with a coating mechanism (810) at the top, and the coating mechanism (810) is used for coating materials on the surface of the metal plate which is horizontally arranged and faces upwards.
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| CN202111440273.4A CN114029273B (en) | 2021-11-30 | 2021-11-30 | Coating equipment is washd to intelligence |
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| CN114029273B CN114029273B (en) | 2022-09-20 |
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Cited By (1)
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| CN116641197A (en) * | 2023-06-19 | 2023-08-25 | 山东海汇环保设备有限公司 | An automatic production system of filter material for flue gas treatment |
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|---|---|
| CN114029273B (en) | 2022-09-20 |
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Denomination of invention: An intelligent cleaning and coating equipment Granted publication date: 20220920 Pledgee: Agricultural Bank of China Limited Dongtai City Branch Pledgor: JIANGSU BAIYUANHONG METAL TECHNOLOGY Co.,Ltd. Registration number: Y2024980039225 |
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