CN117464521A - An automatic glass fiber board surface treatment production line and surface treatment method - Google Patents
An automatic glass fiber board surface treatment production line and surface treatment method Download PDFInfo
- Publication number
- CN117464521A CN117464521A CN202311729847.9A CN202311729847A CN117464521A CN 117464521 A CN117464521 A CN 117464521A CN 202311729847 A CN202311729847 A CN 202311729847A CN 117464521 A CN117464521 A CN 117464521A
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- Prior art keywords
- plate
- fixedly connected
- surface treatment
- motor
- conveyor
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Classifications
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B24—GRINDING; POLISHING
- B24B—MACHINES, DEVICES, OR PROCESSES FOR GRINDING OR POLISHING; DRESSING OR CONDITIONING OF ABRADING SURFACES; FEEDING OF GRINDING, POLISHING, OR LAPPING AGENTS
- B24B27/00—Other grinding machines or devices
- B24B27/0076—Other grinding machines or devices grinding machines comprising two or more grinding tools
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B24—GRINDING; POLISHING
- B24B—MACHINES, DEVICES, OR PROCESSES FOR GRINDING OR POLISHING; DRESSING OR CONDITIONING OF ABRADING SURFACES; FEEDING OF GRINDING, POLISHING, OR LAPPING AGENTS
- B24B41/00—Component parts such as frames, beds, carriages, headstocks
- B24B41/005—Feeding or manipulating devices specially adapted to grinding machines
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B24—GRINDING; POLISHING
- B24B—MACHINES, DEVICES, OR PROCESSES FOR GRINDING OR POLISHING; DRESSING OR CONDITIONING OF ABRADING SURFACES; FEEDING OF GRINDING, POLISHING, OR LAPPING AGENTS
- B24B47/00—Drives or gearings; Equipment therefor
- B24B47/10—Drives or gearings; Equipment therefor for rotating or reciprocating working-spindles carrying grinding wheels or workpieces
- B24B47/12—Drives or gearings; Equipment therefor for rotating or reciprocating working-spindles carrying grinding wheels or workpieces by mechanical gearing or electric power
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B24—GRINDING; POLISHING
- B24B—MACHINES, DEVICES, OR PROCESSES FOR GRINDING OR POLISHING; DRESSING OR CONDITIONING OF ABRADING SURFACES; FEEDING OF GRINDING, POLISHING, OR LAPPING AGENTS
- B24B9/00—Machines or devices designed for grinding edges or bevels on work or for removing burrs; Accessories therefor
- B24B9/02—Machines or devices designed for grinding edges or bevels on work or for removing burrs; Accessories therefor characterised by a special design with respect to properties of materials specific to articles to be ground
- B24B9/06—Machines or devices designed for grinding edges or bevels on work or for removing burrs; Accessories therefor characterised by a special design with respect to properties of materials specific to articles to be ground of non-metallic inorganic material, e.g. stone, ceramics, porcelain
- B24B9/08—Machines or devices designed for grinding edges or bevels on work or for removing burrs; Accessories therefor characterised by a special design with respect to properties of materials specific to articles to be ground of non-metallic inorganic material, e.g. stone, ceramics, porcelain of glass
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02P—CLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
- Y02P40/00—Technologies relating to the processing of minerals
- Y02P40/50—Glass production, e.g. reusing waste heat during processing or shaping
- Y02P40/57—Improving the yield, e-g- reduction of reject rates
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- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- Chemical & Material Sciences (AREA)
- Ceramic Engineering (AREA)
- Inorganic Chemistry (AREA)
- Grinding And Polishing Of Tertiary Curved Surfaces And Surfaces With Complex Shapes (AREA)
Abstract
The invention belongs to the technical field of glass fiber board processing, in particular to an automatic glass fiber board surface treatment production line, which aims at the problems that the existing equipment is clamped on a board by manpower and then polished, the board needs to be moved and turned over in the polishing process, the manual labor force is increased, the board clamping and replacing process needs to be stopped, continuous processing cannot be performed, and the working efficiency is reduced; the turnover mechanism is arranged at the other end of the sliding table and is used for driving the plate to rotate 90 degrees and turn over 180 degrees; according to the invention, through the matched use of the conveyor, the second motor, the first motor and the motor in the base, the surface of the plate can be fully automatically treated, so that the treatment efficiency is improved, the manual transfer and turnover time is saved, and the use is convenient.
Description
Technical Field
The invention relates to the technical field of glass fiber board processing, in particular to an automatic glass fiber board surface treatment production line and a surface treatment method.
Background
As an artificial fiber board, glass fiber board is widely used for a housing of an electronic device due to its superior heat resistance, chemical resistance and tensile strength. The glass fiber board is formed by superposing multiple layers of glass fiber cloth and pressing the glass fiber cloth at high pressure, and because the single-layer glass fiber cloth is formed by intersecting and weaving multiple glass fiber wires, a certain height difference exists on the surface of the single-layer glass fiber cloth.
Through searching, the application with the publication number of CN113043113B discloses efficient deburring equipment for glass fiber plates for product processing. According to the invention, the burr mechanism is arranged and matched with the transposition mechanism, so that the glass fiber plates on the transposition mechanism can be polished relatively quickly by the burr mechanism, and the polishing efficiency can be effectively improved; through pushing forward mechanism and burr mechanism cooperation, pushing forward mechanism can drive burr mechanism and rotate fast, and then can make the effect of polishing better.
The device also has the following disadvantages during use: the equipment is clamped on the plate by manpower and then polished, the plate needs to be moved and turned over in the polishing process, the manual labor force is increased, the plate clamping and replacing process needs to be stopped, continuous processing cannot be performed, and the working efficiency is reduced.
Disclosure of Invention
The invention provides an automatic glass fiber board surface treatment production line and a surface treatment method, which solve the defects that in the prior art, equipment is manually clamped on a board and then polished, the board needs to be moved and turned over in the polishing process, the manual labor force is increased, the board clamping and replacing process needs to be stopped, continuous processing is not performed, and the working efficiency is reduced.
The invention provides the following technical scheme:
an automatic glass fiber board surface treatment production line, comprising: the device comprises a conveyor, wherein one side of the conveyor is fixedly connected with a sliding table, and a polishing mechanism for deburring and polishing plates is arranged on the sliding table;
the turnover mechanism is arranged at the other end of the sliding table and is used for driving the plate to rotate 90 degrees and turn over 180 degrees;
the moving mechanism is arranged above the sliding table, and one side of the moving mechanism is provided with a compression bar in a sliding manner and is used for driving the plate to push from the inside of the conveyor to the turnover mechanism and returning from the turnover mechanism to the conveyor so as to polish the plate comprehensively;
the sliding table further comprises two connecting frames fixedly connected to one side of the conveyor, a plurality of first rotating shafts are connected between the two connecting frames in a penetrating and rotating mode, rubber rollers used for increasing friction force with the plates are fixedly sleeved on the first rotating shafts, connecting strips are fixedly connected to the inner sides of the connecting frames, guide rollers used for guiding the plates are connected to the bottoms of the connecting strips in a penetrating and rotating mode, rectangular openings are formed in one sides of the connecting frames, and the polishing mechanism is arranged in the two rectangular openings.
In a possible design, grinding machanism includes the connecting plate of fixed connection in two rectangle mouths, the top of connecting plate runs through and rotates and be connected with two second axis of rotation, the surface mounting cover of second axis of rotation is equipped with two chamfer cutters that are used for polishing the turning, the outer wall fixed cover of second axis of rotation is equipped with the synchronizing wheel, and the outer wall transmission of two synchronizing wheels is connected with same hold-in range, the outside fixedly connected with of hold-in range is a plurality of L shape fixed blocks, the top of L shape fixed block is equipped with the grinding dish, the bottom fixedly connected with first motor of connecting plate, the output and one of them second axis of rotation fixed connection of first motor.
In one possible design, the top of L shape fixed block runs through and rotates and be connected with the third axis of rotation, the dish of polishing fixed connection is at the top of third axis of rotation, the fixed cover of outer wall of third axis of rotation is equipped with first gear, fixedly connected with a plurality of first gear engaged with first ring gear on the connecting plate.
In one possible design, tilting mechanism is including setting up the base in slide table one side, the top of base rotates and is connected with the rolling disc, the top fixedly connected with solid fixed ring of rolling disc, gu the inside of fixed ring is equipped with the rectangle box, the opening has all been seted up to the adjacent both sides of rectangle box, be equipped with the motor in the base, motor output and rolling disc fixed connection.
In one possible design, the top fixedly connected with second ring gear of base, the rolling disc rotates the top of connecting at the second ring gear, the top of second ring gear runs through and rotates and be connected with the connecting axle, the inner wall of solid fixed ring rotates and is connected with outer ring gear, rectangle box fixed connection is in the ring of outer ring gear, one side of solid fixed ring rotates and is connected with the fourth axis of rotation, the outer wall fixed cover of fourth axis of rotation is equipped with the second gear with ring gear meshing, the outer wall fixed cover of connecting axle and fourth axis of rotation is equipped with the bevel gear of meshing, the outer wall fixed cover of connecting axle is equipped with the third gear with ring gear meshing.
In a possible design, moving mechanism includes a plurality of L shape backup pads of fixed connection at one of them link top, a plurality of one side fixedly connected with of L shape backup pad is same deflector, the bottom fixedly connected with guide rail of deflector, the outer wall slip cap of guide rail is equipped with the sliding block, one side fixedly connected with guide ring of sliding block, the depression bar slides and establishes in the guide ring, the spout has been seted up to one side of deflector, the inner wall slip of spout is equipped with the slide bar, slide bar fixed connection is at the outer wall of depression bar, the equal fixedly connected with limiting plate in both ends of guide rail, two run through rotation is connected with same screw rod between the limiting plate, the sliding block thread bush is established on the screw rod, one of them one side fixedly connected with second motor of limiting plate, the output and the screw rod fixed connection of second motor.
In one possible design, a rubber pad is fixedly connected to the bottom of the compression bar.
A glass fiber board surface treatment method comprises the following steps:
s1, firstly, placing a plate on a conveyor for conveying, then starting a second motor to drive a pressing rod to move, and pushing the plate from the conveyor to a sliding table through the pressing rod;
s2, starting a first motor, wherein the first motor drives two groups of chamfering cutters to rotate and a plurality of polishing discs to rotate, when the plate moves to the polishing disc, the two groups of chamfering cutters can polish the corner of the plate, and meanwhile the polishing discs polish the bottom of the plate;
s3, continuously pushing the plate to move into the rectangular box, starting a motor in the base to drive the rectangular box to rotate, and turning the rectangular box over to drive the plate to turn 180 degrees and rotate 90 degrees;
s4, then, starting a second motor to reversely rotate to drive a compression bar to reset, driving the plate to move from the rectangular box to the conveyor, and polishing the plate and the surface in the process of passing through the sliding table;
and S5, finally, starting the conveyor to drive the plate to move, and polishing the plate.
It is to be understood that both the foregoing general description and the following detailed description are exemplary and explanatory only and are not restrictive of the invention as claimed.
According to the invention, the second motor is started to drive the compression bar to move along the track of the chute, so that the compression bar is convenient to drive the rubber pad to abut against the plate and drive the plate to move, and the compression bar can drive the plate to reciprocate on the sliding table, so that manual pushing is saved;
according to the invention, the first motor is started to drive the chamfering tool to rotate so as to polish the corner of the plate, the polishing disc can be driven to rotate around two second rotating shafts, and the polishing disc can be driven to rotate through the first inner gear ring and the first gear while rotating, so that the polishing effect is improved;
according to the invention, the motor in the base is started to drive the rectangular box to rotate, so that the plate can be driven to rotate for 90 degrees, the corners around the plate can be sequentially polished when the plate moves back and forth, and meanwhile, the rectangular box can be driven to rotate for 180 degrees, the polished bottom surface is rotated upwards, and the other surface of the plate can be polished in the resetting movement process;
according to the invention, through the matched use of the conveyor, the second motor, the first motor and the motor in the base, the surface of the plate can be fully automatically treated, so that the treatment efficiency is improved, the manual transfer and turnover time is saved, and the use is convenient.
Drawings
FIG. 1 is a schematic view of a three-dimensional structure of an automatic glass fiber board surface treatment line according to an embodiment of the present invention;
FIG. 2 is a schematic diagram of a guide plate structure of an automatic glass fiber board surface treatment line according to an embodiment of the present invention;
FIG. 3 is a schematic diagram of a sliding block structure of an automatic glass fiber board surface treatment line according to an embodiment of the present invention;
FIG. 4 is a schematic diagram of a sliding table of an automatic glass fiber board surface treatment line according to an embodiment of the present invention;
FIG. 5 is a schematic diagram of a polishing mechanism of an automatic glass fiber board surface treatment line according to an embodiment of the present invention;
FIG. 6 is a schematic cross-sectional view of FIG. 5;
fig. 7 is a schematic diagram of a cross-sectional structure of a base of an automatic glass fiber board surface treatment line according to an embodiment of the present invention.
Reference numerals:
1. a conveyor; 2. a sliding table; 3. a polishing mechanism; 4. a turnover mechanism; 5. a moving mechanism; 6. a compression bar; 21. a connecting frame; 22. a first rotation shaft; 23. a rectangular opening; 24. a rubber roller; 25. a connecting strip; 26. a guide roller; 31. a connecting plate; 32. a second rotation shaft; 33. chamfering tool; 34. a synchronous belt; 35. polishing the grinding disc; 36. a first ring gear; 37. a first motor; 38. an L-shaped fixed block; 39. a third rotation shaft; 40. a first gear; 41. a base; 42. a second ring gear; 43. a rotating disc; 44. a fixing ring; 45. an outer toothed ring; 46. a rectangular box; 47. a fourth rotation shaft; 48. a second gear; 49. a bevel gear; 50. a connecting shaft; 501. a third gear; 51. an L-shaped support plate; 52. a guide plate; 53. a chute; 54. a guide rail; 55. a second motor; 56. a sliding block; 57. a screw; 58. a limiting plate; 61. a guide ring; 62. a rubber pad; 63. a sliding rod.
Detailed Description
Embodiments of the present invention will be described below with reference to the accompanying drawings in the embodiments of the present invention.
In describing embodiments of the present invention, it should be noted that, unless explicitly stated and limited otherwise, the terms "coupled" and "mounted" should be interpreted broadly, and for example, "coupled" may or may not be detachably coupled; may be directly connected or indirectly connected through an intermediate medium. In addition, "communication" may be direct communication or may be indirect communication through an intermediary. Wherein, "fixed" means that the relative positional relationship is not changed after being connected to each other. References to orientation terms, such as "inner", "outer", "top", "bottom", etc., in the embodiments of the present invention are merely to refer to the orientation of the drawings and, therefore, the use of orientation terms is intended to better and more clearly illustrate and understand the embodiments of the present invention, rather than to indicate or imply that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and are therefore not to be construed as limiting the embodiments of the present invention.
Example 1
Referring to fig. 1 and 4, an automatic glass fiber board surface treatment line includes: the device comprises a conveyor 1, wherein one side of the conveyor 1 is fixedly connected with a sliding table 2, and a polishing mechanism 3 for deburring and polishing plates is arranged on the sliding table 2;
the turnover mechanism 4 is arranged at the other end of the sliding table 2 and is used for driving the plate to rotate 90 degrees and turn over 180 degrees;
the moving mechanism 5 is arranged above the sliding table 2, and a compression bar 6 is arranged on one side of the moving mechanism 5 in a sliding manner and is used for driving the plates to push from the inside of the conveyor 1 to the turnover mechanism 4 and returning from the turnover mechanism 4 to the conveyor 1 so as to polish the plates comprehensively;
the sliding table 2 further comprises two connecting frames 21 fixedly connected to one side of the conveyor 1, a plurality of first rotating shafts 22 are connected between the two connecting frames 21 in a penetrating and rotating mode, rubber rollers 24 used for increasing friction force with plates are fixedly sleeved on the first rotating shafts 22, connecting strips 25 are fixedly connected to the inner sides of the connecting frames 21, guide rollers 26 used for guiding the plates are connected to the bottoms of the connecting strips 25 in a penetrating and rotating mode, rectangular openings 23 are formed in one side of the connecting frames 21, the polishing mechanism 3 is arranged in the two rectangular openings 23, the pressing rods 6 are driven to slide on the moving mechanism 5 through pushing the pressing rods 6, plates on the conveyor 1 can be driven to move through the pressing rods 6 while sliding, polishing and deburring can be carried out on the front side, the rear side and the bottom of the plates through the polishing mechanism 3 while the sliding table 2, the plates can be driven to rotate and overturn through the overturning mechanism 4, polishing and deburring can be carried out on the other sides through the sliding table 2 in the process of moving to the conveyor 1 again, and processing efficiency is improved.
Example 2
Referring to fig. 1 and 4, an automatic glass fiber board surface treatment line includes: the device comprises a conveyor 1, wherein one side of the conveyor 1 is fixedly connected with a sliding table 2, and a polishing mechanism 3 for deburring and polishing plates is arranged on the sliding table 2;
the turnover mechanism 4 is arranged at the other end of the sliding table 2 and is used for driving the plate to rotate 90 degrees and turn over 180 degrees;
the moving mechanism 5 is arranged above the sliding table 2, and a compression bar 6 is arranged on one side of the moving mechanism 5 in a sliding manner and is used for driving the plates to push from the inside of the conveyor 1 to the turnover mechanism 4 and returning from the turnover mechanism 4 to the conveyor 1 so as to polish the plates comprehensively;
the sliding table 2 further comprises two connecting frames 21 fixedly connected to one side of the conveyor 1, a plurality of first rotating shafts 22 are connected between the two connecting frames 21 in a penetrating and rotating mode, rubber rollers 24 used for increasing friction force with plates are fixedly sleeved on the first rotating shafts 22, connecting strips 25 are fixedly connected to the inner sides of the connecting frames 21, guide rollers 26 used for guiding the plates are connected to the bottoms of the connecting strips 25 in a penetrating and rotating mode, rectangular openings 23 are formed in one side of the connecting frames 21, the polishing mechanism 3 is arranged in the two rectangular openings 23, the pressing rods 6 are driven to slide on the moving mechanism 5 through pushing the pressing rods 6, plates on the conveyor 1 can be driven to move through the pressing rods 6 while sliding, polishing and deburring can be carried out on the front side, the rear side and the bottom of the plates through the polishing mechanism 3 while the sliding table 2, the plates can be driven to rotate and overturn through the overturning mechanism 4, polishing and deburring can be carried out on the other sides through the sliding table 2 in the process of moving to the conveyor 1 again, and processing efficiency is improved.
Referring to fig. 5 and 6, the polishing mechanism 3 includes a connecting plate 31 fixedly connected in two rectangular openings 23, the top of the connecting plate 31 is connected with two second rotating shafts 32 in a penetrating and rotating manner, two chamfering cutters 33 for polishing corners are fixedly sleeved on the outer surfaces of the second rotating shafts 32, a synchronous wheel is fixedly sleeved on the outer wall of each second rotating shaft 32, a synchronous belt 34 is connected to the outer wall of each synchronous wheel in a transmission manner, a plurality of L-shaped fixing blocks 38 are fixedly connected to the outer sides of the synchronous belt 34, polishing discs 35 are arranged at the tops of the L-shaped fixing blocks 38, a first motor 37 is fixedly connected to the bottoms of the connecting plate 31, the output ends of the first motor 37 are fixedly connected with one second rotating shaft 32, the second rotating shafts 32 can be driven to rotate by starting the first motor 37, the other second rotating shafts 32 can be driven to rotate by the synchronous belt 34, the corners can be polished by the chamfering cutters 33, and the polishing discs 35 can be driven to rotate around the two second rotating shafts 32 simultaneously, and the bottoms of materials can be polished.
Referring to fig. 5 and 6, the top of the l-shaped fixing block 38 is connected with a third rotating shaft 39 through rotation, the grinding disc 35 is fixedly connected to the top of the third rotating shaft 39, a first gear 40 is fixedly sleeved on the outer wall of the third rotating shaft 39, a first inner gear ring 36 meshed with a plurality of first gears 40 is fixedly connected to the connecting plate 31, and in the above technical scheme, when the synchronous belt 34 drives the grinding disc 35 to move, the third rotating shaft 39 can be driven to rotate through the first inner gear ring 36 and the first gear 40, so that the grinding disc 35 can be driven to rotate around the two second rotating shafts 32 while moving, and the grinding effect is improved.
Referring to fig. 1 and 7, the turnover mechanism 4 includes a base 41 disposed at one side of the sliding table 2, a rotating disc 43 is rotatably connected to the top of the base 41, a fixing ring 44 is fixedly connected to the top of the rotating disc 43, a rectangular box 46 is disposed in the fixing ring 44, openings are formed in two adjacent sides of the rectangular box 46, a motor is disposed in the base 41, an output end of the motor is fixedly connected with the rotating disc 43, the fixing ring 44 can be driven to rotate by starting the motor, and the rectangular box 46 can be driven to rotate, so that another opening on the rectangular box 46 corresponds to the sliding table 2.
Referring to fig. 7, a second ring gear 42 is fixedly connected to the top of the base 41, a rotating disc 43 is rotatably connected to the top of the second ring gear 42, a connecting shaft 50 is rotatably connected to the top of the second ring gear 42, an outer ring gear 45 is rotatably connected to the inner wall of the fixed ring 44, a rectangular box 46 is fixedly connected to the outer ring gear 45, a fourth rotating shaft 47 is rotatably connected to one side of the fixed ring 44, a second gear 48 meshed with the outer ring gear 45 is fixedly sleeved on the outer wall of the fourth rotating shaft 47, a bevel gear 49 meshed with the outer ring gear 45 is fixedly sleeved on the outer walls of the connecting shaft 50 and the fourth rotating shaft 47, a third gear 501 meshed with the second ring gear 42 is fixedly sleeved on the outer wall of the connecting shaft 50, the connecting shaft 50 can be driven to rotate while the rotating disc 43 rotates in the above technical scheme, the connecting shaft 50 can be rotated through the third gear 501 and the second ring gear 42, the connecting shaft 50 can be rotated through the third gear 501, the fourth rotating shaft 47 can be driven to rotate through the second gear 48 and the outer ring gear 45, the rectangular box 46 can be driven to rotate, and the polished plate can be driven to turn.
Referring to fig. 1-3, the moving mechanism 5 includes a plurality of L-shaped support plates 51 fixedly connected to the top of one of the connecting frames 21, one side of each L-shaped support plate 51 is fixedly connected with a same guide plate 52, the bottom of each guide plate 52 is fixedly connected with a guide rail 54, a sliding block 56 is sleeved on the outer wall of each guide rail 54 in a sliding manner, one side of each sliding block 56 is fixedly connected with a guide ring 61, a compression bar 6 is slidably arranged in each guide ring 61, a sliding groove 53 is formed in one side of each guide plate 52, a sliding rod 63 is slidably arranged on the inner wall of each sliding groove 53, the sliding rods 63 are fixedly connected to the outer wall of each compression bar 6, limiting plates 58 are fixedly connected to two ends of each guide rail 54, the same screw 57 is connected between the two limiting plates 58 in a penetrating and rotating manner, each sliding block 56 is sleeved on the screw 57 in a threaded manner, one side of each limiting plate 58 is fixedly connected with a second motor 55, and the output end of each second motor 55 is fixedly connected with the screw 57.
Referring to fig. 2 and 3, a rubber pad 62 is fixedly connected to the bottom of the compression bar 6, and in the above technical scheme, the friction force between the compression bar 6 and the plate can be increased by setting the rubber pad 62, so that the plate can be pushed to move conveniently.
A glass fiber board surface treatment method comprises the following steps:
s1, firstly, placing a plate on a conveyor 1 for conveying, then starting a second motor 55 to drive a pressing rod 6 to move, and pushing the plate from the conveyor 1 to a sliding table 2 through the pressing rod 6;
s2, starting a first motor 37, wherein the first motor 37 drives the two groups of chamfering cutters 33 to rotate and the plurality of polishing discs 35 to rotate, when the plate moves to the polishing discs 35, the two groups of chamfering cutters 33 can polish the corners of the plate, and meanwhile the polishing discs 35 polish the bottom of the plate;
s3, continuously pushing the plate to move into the rectangular box 46, starting a motor in the base 41 to drive the rectangular box 46 to rotate, and turning over the rectangular box 46 to drive the plate to turn over 180 degrees and rotate 90 degrees;
s4, then, starting a second motor 55 to reversely rotate to drive a compression bar 6 to reset, and driving the plate to move from the inside of the rectangular box 46 to the conveyor 1 to polish the surface of the plate through the sliding table 2;
and S5, finally, starting the conveyor 1 to drive the plate to move, and polishing the plate.
However, as is well known to those skilled in the art, the working principles and wiring methods of the conveyor 1, the first motor 37, and the second motor 55 are well known, which are all conventional or common knowledge, and are not described herein in detail, and any choice can be made by those skilled in the art according to their needs or convenience.
The working principle and the using flow of the technical scheme are as follows: during the use, put the power on with the device, put the panel on conveyer 1 and carry, when the panel removes to one side of sliding table 2, start second motor 55 drive screw 57 and rotate, can drive sliding block 56 and remove, sliding block 56 removes and can drive depression bar 6 and remove, depression bar 6 moves simultaneously and contradicts the panel and drive the panel and remove through sliding rod 63 and spout 53, make the panel remove to sliding table 2, when the panel removes to polishing mechanism 3, start first motor 37, first motor 37 can drive two second axis of rotation 32 and rotate simultaneously through hold-in range 34 and synchronizing wheel, drive two sets of chamfer sword 33 and carry out the chamfer burring to the front and back both sides of panel, drive simultaneously and polish disc 35 and rotate around two second axis of rotation 32, rotate simultaneously and can drive through first gear 40 and first ring gear 36 and polish disc 35, polish the panel bottom, move and polish simultaneously until the panel removes to the rectangle box 46, at this moment, the motor drive in the base 41 rotates the carousel 43, can drive 90 degrees of rotation, simultaneously through the third gear drive the connecting axle 50 and drive the panel and remove through the second gear 50 and drive bevel gear 48 and rotate, drive the panel and remove through the 45 and rotate to the 45, then drive the panel and remove from the reverse rotation of drive motor to the 45, drive the panel through the reverse rotation of drive bevel gear 50, and drive the panel is rotated to rotate to the 45, and then move from the panel is carried out to the reverse rotation to the 45, the panel is rotated, and is rotated to the panel is rotated to the motion through the rotation to the rotation, and is rotated, the panel is rotated.
The present invention is not limited to the above embodiments, and any person skilled in the art can easily think about the changes or substitutions within the technical scope of the present invention, and the changes or substitutions are intended to be covered by the scope of the present invention; embodiments of the invention and features of the embodiments may be combined with each other without conflict. Therefore, the protection scope of the invention is subject to the protection scope of the claims.
Claims (10)
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| Application Number | Priority Date | Filing Date | Title |
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| CN202311729847.9A CN117464521A (en) | 2023-12-15 | 2023-12-15 | An automatic glass fiber board surface treatment production line and surface treatment method |
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| Application Number | Priority Date | Filing Date | Title |
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| CN202311729847.9A CN117464521A (en) | 2023-12-15 | 2023-12-15 | An automatic glass fiber board surface treatment production line and surface treatment method |
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Cited By (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN119873325A (en) * | 2025-02-05 | 2025-04-25 | 柳州乾锦智能装备股份有限公司 | Intelligent feeding automatic mechanism of production line |
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|---|---|---|---|---|
| CN108723923A (en) * | 2018-07-11 | 2018-11-02 | 湖州平坦物流有限公司 | A kind of device of removal surface of steel plate burr |
| CN211841305U (en) * | 2020-01-19 | 2020-11-03 | 电子科技大学中山学院 | Agricultural machine production is with automatic burring device, actuating mechanism and tilting mechanism |
| CN215036056U (en) * | 2020-12-02 | 2021-12-07 | 蒋智 | Bottle opener pendant has production and processing equipment that can polish along limit automatically |
| CN217596638U (en) * | 2022-03-25 | 2022-10-18 | 浙江名旗展示科技股份有限公司 | Plate integrated processing equipment |
| CN116423388A (en) * | 2023-06-05 | 2023-07-14 | 合肥合锻智能制造股份有限公司 | Turnover plate control equipment for large tonnage research and assembly |
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| Publication number | Priority date | Publication date | Assignee | Title |
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| CN119873325A (en) * | 2025-02-05 | 2025-04-25 | 柳州乾锦智能装备股份有限公司 | Intelligent feeding automatic mechanism of production line |
| CN119873325B (en) * | 2025-02-05 | 2025-10-31 | 柳州乾锦智能装备股份有限公司 | A production line intelligent feeding automation mechanism |
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