CN109160359B - Film pasting device - Google Patents

Film pasting device Download PDF

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Publication number
CN109160359B
CN109160359B CN201811095642.9A CN201811095642A CN109160359B CN 109160359 B CN109160359 B CN 109160359B CN 201811095642 A CN201811095642 A CN 201811095642A CN 109160359 B CN109160359 B CN 109160359B
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China
Prior art keywords
dry film
rod
vertical plate
rotating rod
roller
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CN201811095642.9A
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CN109160359A (en
Inventor
钟金荣
肖清明
刘利涓
王平
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Shenzhen Mingda Technology Co ltd
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Shenzhen Mingda Technology Co ltd
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Priority to CN201811095642.9A priority Critical patent/CN109160359B/en
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65HHANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
    • B65H37/00Article or web delivery apparatus incorporating devices for performing specified auxiliary operations
    • B65H37/04Article or web delivery apparatus incorporating devices for performing specified auxiliary operations for securing together articles or webs, e.g. by adhesive, stitching or stapling
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65HHANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
    • B65H35/00Delivering articles from cutting or line-perforating machines; Article or web delivery apparatus incorporating cutting or line-perforating devices, e.g. adhesive tape dispensers
    • B65H35/04Delivering articles from cutting or line-perforating machines; Article or web delivery apparatus incorporating cutting or line-perforating devices, e.g. adhesive tape dispensers from or with transverse cutters or perforators
    • B65H35/06Delivering articles from cutting or line-perforating machines; Article or web delivery apparatus incorporating cutting or line-perforating devices, e.g. adhesive tape dispensers from or with transverse cutters or perforators from or with blade, e.g. shear-blade, cutters or perforators

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  • Engineering & Computer Science (AREA)
  • Textile Engineering (AREA)
  • Folding Of Thin Sheet-Like Materials, Special Discharging Devices, And Others (AREA)

Abstract

The invention provides a film sticking device, which comprises: the dry film collecting and conveying device comprises a bracket, an upper dry film collecting and conveying mechanism, an upper press roller, a lower press roller and a dry film collecting and conveying mechanism, wherein the upper dry film collecting and conveying mechanism, the upper press roller, the lower press roller and the dry film collecting and conveying mechanism are sequentially arranged on the bracket in a rotating mode from top to bottom, and a feeding channel is reserved between the upper press roller and the; the uncut upper dry film is wound on the upper dry film receiving part, the separated upper dry film waste is collected by the upper dry film waste collecting part, and the upper dry film standby material is transmitted to the feeding channel through the upper dry film standby material transmitting part; the uncut dry film is wound on the lower dry film receiving part, the separated dry film waste is collected by the dry film waste collecting part, and the dry film standby material is conveyed to the feeding channel through the dry film standby material conveying part; the upper dry film standby material and the lower dry film standby material are simultaneously conveyed to the feeding channel and then are pasted on the upper surface and the lower surface of a product under the combined action of the upper pressing roller and the lower pressing roller.

Description

Film pasting device
Technical Field
The invention relates to the technical field of FPC (flexible printed circuit) and PCB (printed circuit board) laminating procedures, in particular to a film laminating device.
Background
With the continuous improvement of the requirements of the customer group on the excellent rate and the production efficiency of the circuit board products, the prior art can not meet the production requirements. The existing equipment from the sheet to the roll to the sheet in the market at present is used for producing the dry film by cutting the dry film into a specific length and covering the dry film on a product in a pre-pasting mode before pasting the film on the product. The prior art has the following defects:
1. cutting the dry film in the film pasting process of the product to generate dry film scraps, wherein the scraps can cover the surface of the product, and finally the product is poor;
2. dry film cutting is carried out in the film sticking process of the product, and the belt drives the cutter to move and wear, so that dust directly causes the defect of the product;
3. the mode of cutting earlier then covering pastes can lead to the product afterbody dry film because of there is not tension to pull the problem that causes the afterbody dry film fold, bubble.
Disclosure of Invention
The invention aims to provide a film sticking device, which aims to solve the technical problems that in the prior art, dry film scraps are generated by cutting a dry film in a film sticking process of a product, the scraps can cover the surface of the product, the product is poor, and wrinkles and bubbles are easy to appear at the tail of the product.
The invention provides a film sticking device, which comprises: the dry film collecting and conveying mechanism comprises a support, an upper dry film collecting and conveying mechanism, an upper press roller, a lower press roller and a dry film collecting and conveying mechanism, wherein the upper dry film collecting and conveying mechanism, the upper press roller, the lower press roller and the dry film collecting and conveying mechanism are sequentially and rotatably arranged on the support from top to bottom; a feeding channel is reserved between the upper pressing roller and the lower pressing roller;
go up dry film and accomodate transmission device and include: the device comprises an upper dry film receiving part, an upper dry film waste collecting part and an upper dry film standby material conveying part; the uncut upper dry film is wound on the upper dry film receiving part, the separated upper dry film waste is collected by the upper dry film waste collecting part, and the upper dry film standby material is transmitted to the feeding channel through the upper dry film standby material transmitting part;
the dry film storage and transmission mechanism comprises: a dry film collecting part, a dry film waste collecting part and a dry film material conveying part; the uncut dry membrane is wound on the dry membrane receiving part, the separated dry membrane waste is collected by the dry membrane waste collecting part, and the dry membrane standby material is conveyed to the feeding channel through the dry membrane standby material conveying part;
the upper dry film standby material and the lower dry film standby material are simultaneously conveyed to the feeding channel and then are attached to the upper surface and the lower surface of a product under the combined action of the upper pressing roller and the lower pressing roller.
Further, the bracket comprises a left vertical plate and a right vertical plate which are symmetrically arranged, and an upper beam and a lower beam which are symmetrically arranged; the upper beam and the lower beam are both fixedly arranged between the left vertical plate and the right vertical plate;
the upper dry film accommodating part comprises a first upper dry film stick shaft, two ends of the first upper dry film stick shaft are respectively and rotatably arranged with the left vertical plate and the right vertical plate, and an uncut upper dry film is wound on the first upper dry film stick shaft; the upper dry film waste collecting part comprises a second upper dry film roller shaft, and two ends of the second upper dry film roller shaft are respectively and rotatably arranged with the left vertical plate and the right vertical plate; the upper dry film standby material conveying part comprises a first upper dry film mold-reversing rod and a second upper dry film mold-reversing rod, the first upper dry film mold-reversing rod and the second upper dry film mold-reversing rod are rotatably arranged with the left vertical plate and the right vertical plate, and the first upper dry film mold-reversing rod and the second upper dry film mold-reversing rod are positioned on the same horizontal plane;
when the film sticking device works, upper dry film waste materials are separated from an upper dry film which is not cut under the rotation of the second upper dry film roller shaft, and the remained materials to be used sequentially pass through the first upper dry film stripping rod and the second upper dry film stripping rod in an S shape and are transmitted to the feeding channel through the first upper dry film stripping rod and the second upper dry film stripping rod in a rotating manner;
the dry film storage part comprises a first dry film roller, two ends of the first dry film roller are respectively and rotatably arranged with the left vertical plate and the right vertical plate, and the uncut dry film is wound on the first dry film roller; the lower dry film waste collecting part comprises a second dry film stick shaft, and two ends of the second dry film stick shaft are respectively and rotatably arranged with the left vertical plate and the right vertical plate; the dry film waiting material conveying part comprises a first dry film stripping rod and a second dry film stripping rod, the first dry film stripping rod and the second dry film stripping rod are rotatably arranged with the left vertical plate and the right vertical plate, and the first dry film stripping rod and the second dry film stripping rod are positioned on the same horizontal plane;
the pad pasting device during operation, dry film waste material is in under the rotation of second dry film rod axle with the dry film separation of uncut, the material of waiting to leave is S-shaped and passes through in proper order first dry film back mold pole with second dry film back mold pole, via first dry film back mold pole with second dry film back mold pole rotates the transmission extremely feed channel.
Further, the film drying device further comprises a first adjusting mechanism and a second adjusting mechanism, wherein the first adjusting mechanism and the second adjusting mechanism are respectively used for adjusting the positions of the first upper dry film roller shaft and the first lower dry film roller shaft in the Y-axis direction.
Further, the first adjusting mechanism comprises a first rotary motion part, a first linear motion part and a first sliding positioning part; the first rotating motion part is rotationally arranged on the bracket, and the first linear motion part is arranged on the first rotating motion part;
the first sliding positioning part comprises a first driving unit and a first positioning unit, one end of the first driving unit is connected with the first linear motion part, and the other end of the first driving unit is connected with the first upper dry film roller shaft; the first positioning unit is arranged on the bracket, limits the movement of the first upper dry film roller shaft in the X-axis direction and can generate relative movement with the first active unit;
the first linear motion part can be driven by the first rotary motion part to do linear motion along the Y-axis direction, so that the first upper dry film rod shaft is driven by the first driving unit to do linear motion along the Y-axis direction.
Furthermore, the first rotary motion part comprises a first knob and a first upper rotating rod, two ends of the first upper rotating rod are respectively and rotatably arranged on the left vertical plate and the right vertical plate, and the first knob is arranged at one end of the first upper rotating rod and can drive the first upper rotating rod to rotate relative to the bracket;
the first linear motion part comprises a first upper connecting plate and a second upper connecting plate, the first upper connecting plate is sleeved on the first upper rotating rod and can make linear motion along the axis direction of the first upper rotating rod, and one end of the second upper connecting plate is connected with the first upper connecting plate;
the first driving unit comprises a first guide rail and a first connecting sleeve, the first connecting sleeve is sleeved on the first upper dry film rod shaft, the first guide rail is arranged on the first connecting sleeve, and the first guide rail is connected with the other end of the second upper connecting plate;
the first positioning unit comprises a first sliding block, and the first sliding block is arranged on a wing plate of the support and can slide relative to the first guide rail.
Further, the second adjusting mechanism comprises a second rotary motion part, a second linear motion part and a second sliding positioning part; the second rotary motion part is rotationally arranged on the bracket, and the second linear motion part is arranged on the second rotary motion part;
the second sliding positioning part comprises a second driving unit and a second positioning unit, one end of the second driving unit is connected with the second linear motion part, and the other end of the second driving unit is connected with the first lower dry film stick shaft; the second positioning unit is arranged on the bracket, limits the movement of the first lower dry film stick shaft in the X-axis direction, and can generate relative movement with the second driving unit;
the second linear motion part can be driven by the second rotary motion part to perform linear motion along the Y-axis direction, so that the first lower dry film rod shaft is driven by the second driving unit to perform linear motion along the Y-axis direction.
Further, the second rotary motion part comprises a second knob, a first lower rotating rod, a first steering gear, a second lower rotating rod, a second steering gear and a third lower rotating rod;
two ends of the first lower rotating rod are respectively and rotatably arranged on the left vertical plate and the right vertical plate, and the second knob is arranged at one end of the first lower rotating rod and can drive the first lower rotating rod to rotate relative to the bracket; the second lower rotating rod is perpendicular to the first lower rotating rod, and the first steering gear is arranged between the second lower rotating rod and the first lower rotating rod; the third lower rotating rod is perpendicular to the second lower rotating rod, the second steering gear is arranged between the third lower rotating rod and the second lower rotating rod, and the third lower rotating rod is in rotating connection with a wing plate of the support;
the second linear motion part comprises a first lower connecting plate, the second driving unit comprises a second guide rail and a second connecting sleeve, one end of the first lower connecting plate is sleeved on the third lower rotating rod, and the other end of the first lower connecting plate is connected with the second guide rail; the second connecting sleeve is sleeved on the first lower dry film stick shaft, and the second guide rail is arranged on the second connecting sleeve;
the first lower connecting plate can do linear motion along the axial direction of the third lower rotating rod, and the first lower dry film stick shaft is driven to do linear motion in the Y-axis direction under the action of the second guide rail and the second connecting sleeve;
the second positioning unit comprises a second sliding block, and the second sliding block is arranged on a wing plate of the bracket and can slide relative to the second guide rail.
Further, the device also comprises a third adjusting mechanism, wherein the third adjusting mechanism is used for adjusting the position of the upper pressing roller in the Z-axis direction;
the third adjusting mechanism comprises a left adjusting part, a right adjusting part and a cross beam, the cross beam is connected with the left end and the right end of the upper pressing roller, the left adjusting part and the right adjusting part are respectively arranged on the left vertical plate and the right vertical plate and are respectively connected with the two ends of the cross beam, and the third adjusting mechanism is used for lifting or pressing the upper pressing roller from the left end and the right end.
Furthermore, the third adjusting mechanism further comprises a balance rod, a left connecting part and a right connecting part, and two ends of the balance rod are respectively connected with the left vertical plate and the right vertical plate;
one end of the left connecting part is sleeved at the left end of the balancing rod, and the other end of the left connecting part is connected with the upper compression roller; one end of the right connecting part is sleeved at the right end of the balancing rod, and the other end of the right connecting part is connected with the upper compression roller.
Furthermore, the left adjusting part comprises a power source and a lifting rod, the power source is fixed on the left vertical plate, one end of the lifting rod is connected with an output shaft of the power source, and the other end of the lifting rod is connected with the left part of the cross beam;
the left connecting part comprises a sleeve ring and a connecting plate, the sleeve ring is sleeved on the balancing rod, and two ends of the connecting plate are hinged to the sleeve ring and the upper compression roller respectively.
According to the film sticking device provided by the invention, an uncut upper dry film and an uncut lower dry film are respectively wound on the upper dry film accommodating part and the lower dry film accommodating part, then the upper dry film and the lower dry film are simultaneously stuck and coated on the upper surface and the lower surface of products such as PCBs under the combined action of the upper pressing roller and the lower pressing roller, and the pasted and coated PCBs enter the cutting device for cutting; adopt above-mentioned pad pasting device, earlier the pad pasting cuts again, and whole process can not produce the dry film piece, also can not produce the dust, also can not lead to product afterbody dry film to drag the phenomenon appearance that causes dry film fold, bubble to appear in the afterbody because of no tension simultaneously.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly described below, and it is obvious that the drawings in the following description are some embodiments of the present invention, and other drawings can be obtained by those skilled in the art without creative efforts.
FIG. 1 is an isometric view of a film applicator according to an embodiment of the present invention;
FIG. 2 is a front view of the film attachment apparatus shown in FIG. 1;
fig. 3 is a rear view of the film application device shown in fig. 1.
Reference numerals:
11-a left vertical plate; 12-a right vertical plate; 13-upper beam; 14-a lower beam; 15-wing plate; 21-a first upper dry film roller shaft; 22-second upper dry film roller shaft; 23-a first upper dry film stripping bar; 24-a second upper dry film stripping bar; 3, pressing the roller; 4-pressing the roller; 51-a first lower dry film roller; 52-second dry film roller shaft; 53-first lower dry film stripper bar; 54-second dry film pouring rod; 61-a first knob; 62-a first upper rotating rod; 63-a first upper connecting plate; 64-a second upper connecting plate; 65-a first guide rail; 66-a first coupling sleeve; 67-a first slider; 71-a first knob; 72-a first lower swivel; 73-a first steering gear; 74-a second lower turn bar; 75-a second steering gear; 76-a third lower rotating bar; 77-a first lower connecting plate; 78-a second guide rail; 79-a second connecting sleeve; 70-a second slider; 81-a power source; 82-lifting rod; 83-a cross beam; 84-a collar; 85-connecting plate; 86-a balance bar; 9-feed channel.
Detailed Description
The technical solutions of the present invention will be described clearly and completely with reference to the accompanying drawings, and it should be understood that the described embodiments are some, but not all embodiments of the present invention. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
In the description of the present invention, it should be noted that the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", etc., indicate orientations or positional relationships based on the orientations or positional relationships shown in the drawings, and are only for convenience of description and simplicity of description, but do not indicate or imply that the device or element being referred to must have a particular orientation, be constructed and operated in a particular orientation, and thus, should not be construed as limiting the present invention. Furthermore, the terms "first," "second," and "third" are used for descriptive purposes only and are not to be construed as indicating or implying relative importance.
In the description of the present invention, it should be noted that, unless otherwise explicitly specified or limited, the terms "mounted," "connected," and "connected" are to be construed broadly, e.g., as meaning either a fixed connection, a removable connection, or an integral connection; can be mechanically or electrically connected; they may be connected directly or indirectly through intervening media, or they may be interconnected between two elements. The specific meanings of the above terms in the present invention can be understood in specific cases to those skilled in the art.
As shown in fig. 1 to 3, the film sticking apparatus provided in this embodiment includes: the dry film collecting and conveying mechanism comprises a support, an upper dry film collecting and conveying mechanism, an upper press roller 3, a lower press roller 4 and a dry film collecting and conveying mechanism, wherein the upper dry film collecting and conveying mechanism, the upper press roller 3, the lower press roller 4 and the dry film collecting and conveying mechanism are sequentially and rotatably arranged on the support from top to bottom; a feeding channel 9 is reserved between the upper pressing roller 3 and the lower pressing roller 4; go up dry film and accomodate transmission device and include: the device comprises an upper dry film receiving part, an upper dry film waste collecting part and an upper dry film standby material conveying part; the uncut upper dry film is wound on the upper dry film receiving part, the separated upper dry film waste is collected by the upper dry film waste collecting part, and the upper dry film standby material is transmitted to the feeding channel 9 through the upper dry film standby material transmitting part; dry membrane accomodates transmission device includes: a dry film collecting part, a dry film waste collecting part and a dry film material conveying part; the uncut dry film is wound on the lower dry film receiving part, the separated dry film waste is collected by the dry film waste collecting part, and the dry film standby material is conveyed to the feeding channel 9 through the dry film standby material conveying part; the upper dry film standby material and the lower dry film standby material are simultaneously conveyed to a feeding channel 9 and then are attached to the upper surface and the lower surface of the product under the combined action of an upper pressing roller 3 and a lower pressing roller 4.
When the film sticking device is used, firstly, an uncut upper dry film and an uncut lower dry film are respectively wound on an upper dry film accommodating part and a lower dry film accommodating part, and the upper dry film and the lower dry film are three layers of photosensitive dry films; when in use, taking the dry film as an example, firstly separating the first film from the other two films, wherein the first film is waste, the waste is collected by the upper dry film waste collecting part, the remaining two layers of dry films are standby materials, and the standby materials are conveyed to the feeding channel 9 by the upper dry film standby material conveying part; the lower dry film is used in the same way as the upper dry film.
According to the film sticking device provided by the embodiment, an uncut upper dry film and an uncut lower dry film are respectively wound on the upper dry film accommodating part and the lower dry film accommodating part, then the upper dry film and the lower dry film are simultaneously stuck and covered on the upper surface and the lower surface of products such as PCBs under the combined action of the upper pressing roller 3 and the lower pressing roller 4, the finished PCBs are stuck and covered, and then the PCB enters the cutting device for cutting; adopt above-mentioned pad pasting device, earlier the pad pasting cuts again, and whole process can not produce the dry film piece, also can not produce the dust, also can not lead to product afterbody dry film to drag the phenomenon appearance that causes dry film fold, bubble to appear in the afterbody because of no tension simultaneously.
On the basis of the above embodiment, specifically, as shown in fig. 2-3, the bracket includes a left upright plate 11 and a right upright plate 12 which are symmetrically arranged, and an upper beam 13 and a lower beam 14 which are symmetrically arranged; the upper beam 13 and the lower beam 14 are both fixedly arranged between the left vertical plate 11 and the right vertical plate 12; the upper dry film accommodating part comprises a first upper dry film roller shaft 21, two ends of the first upper dry film roller shaft 21 are respectively and rotatably arranged with the left vertical plate 11 and the right vertical plate 12, and the uncut upper dry film is wound on the first upper dry film roller shaft 21; the upper dry film waste collecting part comprises a second upper dry film roller shaft 22, and two ends of the second upper dry film roller shaft 22 are respectively and rotatably arranged with the left vertical plate 11 and the right vertical plate 12; the upper dry film material waiting transmission part comprises a first upper dry film mold-reversing rod 23 and a second upper dry film mold-reversing rod 24, the first upper dry film mold-reversing rod 23 and the second upper dry film mold-reversing rod 24 are rotatably arranged with the left vertical plate 11 and the right vertical plate 12, and the first upper dry film mold-reversing rod 23 and the second upper dry film mold-reversing rod 24 are positioned on the same horizontal plane; when the film sticking device works, the upper dry film waste is separated from the uncut upper dry film under the rotation of the second upper dry film roller shaft 22, and the remained material to be used sequentially passes through the first upper dry film stripping rod 23 and the second upper dry film stripping rod 24 in an S shape and is transmitted to the feeding channel 9 through the rotation of the first upper dry film stripping rod 23 and the second upper dry film stripping rod 24; the dry film storage part comprises a first dry film roller 51, two ends of the first dry film roller 51 are respectively and rotatably arranged with the left vertical plate 11 and the right vertical plate 12, and the uncut dry film is wound on the first dry film roller 51; the lower dry film waste collecting part comprises a second dry film roller shaft 52, and two ends of the second dry film roller shaft 52 are respectively and rotatably arranged with the left vertical plate 11 and the right vertical plate 12; the dry film standby material conveying part comprises a first dry film stripping rod 53 and a second dry film stripping rod 54, the first dry film stripping rod 53 and the second dry film stripping rod 54 are rotatably arranged with the left vertical plate 11 and the right vertical plate 12, and the first dry film stripping rod 53 and the second dry film stripping rod 54 are positioned on the same horizontal plane; when the film sticking device works, the dry film waste is separated from the uncut dry film under the rotation of the second dry film roller shaft 52, and the remained material to be used sequentially passes through the first dry film stripping rod 53 and the second dry film stripping rod 54 in an S shape and is rotationally conveyed to the feeding channel 9 through the first dry film stripping rod 53 and the second dry film stripping rod 54.
Taking the above dry film as an example: the upper dry film waste collecting part is a second upper dry film roller shaft 22, and when the upper dry film waste collecting part is used for collecting, waste is directly wound on the second upper dry film roller shaft 22, so that the collection is convenient and rapid, and the collection is convenient; the upper dry film material waiting transmission part adopts a first upper dry film stripping rod 23 and a second upper dry film stripping rod 24 which are arranged in parallel, so that the function of transmitting the material waiting for use can be achieved, and meanwhile, certain tension is provided, and smooth transmission can be ensured; the same principle is applied to dry film.
On the basis of the above embodiment, specifically, the film drying apparatus further includes a first adjusting mechanism and a second adjusting mechanism, and the first adjusting mechanism and the second adjusting mechanism are respectively used for adjusting the positions of the first upper dry film roller shaft 21 and the first lower dry film roller shaft 51 in the Y-axis direction.
The Y-axis direction defined in this embodiment is: the first drying film stick shaft 21 is perpendicular to the left vertical plate 11 and the right vertical plate 12, that is, the first drying film stick shaft 21 moves toward the direction close to the left vertical plate 11 or the direction close to the right vertical plate 12, and the direction is the Y-axis direction; similarly, in the space between the left vertical plate 11 and the right vertical plate 12, the upward movement in the horizontal direction is the X-axis direction, and the upward and downward movement in the vertical direction is the Z-axis direction; the definition of the X/Y/Z axis is common in this application.
In order to ensure that the standby material of the upper dry film can be completely attached to the surface of the product such as the PCB, that is, the width of the standby material of the upper dry film is equal to the width of the product such as the PCB, and the left and right sides of the standby material of the upper dry film are flush with each other during attachment, so that the waste of the material cannot occur, a first adjusting mechanism is arranged to adjust the position of the first upper dry film stick shaft 21 in the Y-axis direction. The same principle is applied to dry film.
On the basis of the above embodiment, specifically, the first adjustment mechanism includes a first rotational movement portion, a first linear movement portion, and a first slide positioning portion; the first rotating motion part is rotationally arranged on the bracket, and the first linear motion part is arranged on the first rotating motion part; the first sliding positioning part comprises a first driving unit and a first positioning unit, one end of the first driving unit is connected with the first linear motion part, and the other end of the first driving unit is connected with the first upper dry film rod shaft 21; the first positioning unit is arranged on the bracket, limits the movement of the first upper dry film roller shaft 21 in the X-axis direction, and can move relative to the first active unit; the first linear motion part can be driven by the first rotary motion part to perform linear motion along the Y-axis direction, so that the first driving unit drives the first upper dry film rod shaft 21 to perform linear motion along the Y-axis direction.
On the basis of the above embodiment, specifically, the first rotating portion includes a first knob 61 and a first upper rotating rod 62, two ends of the first upper rotating rod 62 are respectively rotatably disposed on the left vertical plate 11 and the right vertical plate 12, the first knob 61 is disposed at one end of the first upper rotating rod 62, and can drive the first upper rotating rod 62 to rotate relative to the bracket; the first linear motion part comprises a first upper connecting plate 63 and a second upper connecting plate 64, the first upper connecting plate 63 is sleeved on the first upper rotating rod 62 and can do linear motion along the axial direction of the first upper rotating rod 62, and one end of the second upper connecting plate 64 is connected with the first upper connecting plate 63; the first active unit comprises a first guide rail 65 and a first connecting sleeve 66, the first connecting sleeve 66 is sleeved on the first upper dry film roller shaft 21, the first guide rail 65 is arranged on the first connecting sleeve 66, and the first guide rail 65 is connected with the other end of the second upper connecting plate 64; the first positioning unit includes a first slider 67, and the first slider 67 is disposed on the wing plate 15 of the bracket and is capable of sliding relative to the first guide rail 65.
When the device is used, the first knob 61 is rotated to drive the first upper rotating rod 62 to perform spiral motion, and at the moment, the first upper connecting plate 63 performs linear motion along the axial direction of the first upper rotating rod 62, namely, moves along the Y-axis direction; at this time, the second connecting plate 85 also makes the same linear motion, and since the first guide rail 65 is connected to both the second connecting plate 85 and the first connecting sleeve 66 sleeved on the first upper dry film roller shaft 21, the first knob 61 is rotated to drive the first upper dry film roller shaft 21 to move in the Y-axis direction. In order to prevent the first upper film roll shaft 21 from being slightly displaced in the X direction during movement, a first slide 67 is provided, the first slide 67 being capable of sliding relative to the first guide 65, while the first slide 67 is also fixedly connected to the wing 15 of the frame.
The first and second adjusting mechanisms may have the same or different structures. If the two adjusting mechanisms are the same, the using method of the second adjusting mechanism is the same as the using direction of the first adjusting mechanism.
On the basis of the above embodiment, specifically, the second adjustment mechanism includes the second rotational movement portion, the second linear movement portion, and the second slide positioning portion; the second rotary motion part is rotationally arranged on the bracket, and the second linear motion part is arranged on the second rotary motion part; the second sliding positioning part comprises a second driving unit and a second positioning unit, one end of the second driving unit is connected with the second linear motion part, and the other end of the second driving unit is connected with the first lower dry film stick shaft 51; the second positioning unit is arranged on the bracket, limits the movement of the first lower dry film roller shaft 51 in the X-axis direction, and can generate relative movement with the second driving unit; the second linear motion part can be driven by the second rotational motion part to perform linear motion along the Y-axis direction, so that the second driving unit drives the first lower dry film roller 51 to perform linear motion along the Y-axis direction.
On the basis of the above-described embodiment, specifically, the second rotational movement portion includes the second knob 71, the first lower rotation lever 72, the first steering gear 73, the second lower rotation lever 74, the second steering gear 75, and the third lower rotation lever 76; two ends of the first lower rotating rod 72 are respectively and rotatably arranged on the left vertical plate 11 and the right vertical plate 12, and the second knob 71 is arranged at one end of the first lower rotating rod 72 and can drive the first lower rotating rod 72 to rotate relative to the bracket; the second lower rotating rod 74 is arranged perpendicular to the first lower rotating rod 72, and a first steering gear 73 is arranged between the second lower rotating rod and the first lower rotating rod; the third lower rotating rod 76 is perpendicular to the second lower rotating rod 74, a second steering gear 75 is arranged between the third lower rotating rod 76 and the second lower rotating rod 74, and the third lower rotating rod 76 is rotatably connected with the wing plate 15 of the bracket; the second linear motion part comprises a first lower connecting plate 77, the second driving unit comprises a second guide rail 78 and a second connecting sleeve 79, one end of the first lower connecting plate 77 is sleeved on the third lower rotating rod 76, and the other end of the first lower connecting plate is connected with the second guide rail 78; the second connecting sleeve 79 is sleeved on the first lower dry film roller shaft 51, and the second guide rail 78 is arranged on the second connecting sleeve 79; the first lower connecting plate 77 can make linear motion along the axial direction of the third lower rotating rod 76, and drives the first lower dry film roller 51 to make linear motion along the Y-axis direction under the action of the second guide rail 78 and the second connecting sleeve 79; the second positioning unit includes a second slider 70, and the second slider 70 is provided on the wing plate 15 of the bracket and is capable of sliding relative to the second guide rail 78.
Since the first lower turning lever 72 is far from the first lower dry film roller shaft 51 in the Z-axis direction, the second knob 71, the first lower turning lever 72, the first steering gear 73, the second lower turning lever 74, the second steering gear 75, and the third lower turning lever 76 are provided to meet the requirements for the accuracy and stability of adjustment; other functions and principles are the same as those of the first adjusting mechanism.
On the basis of the above embodiment, specifically, a third adjusting mechanism for adjusting the position of the upper press roll 3 in the Z-axis direction is further included; the third adjustment mechanism comprises a left adjustment part, a right adjustment part and a cross beam 83, the cross beam 83 is connected with the left end and the right end of the upper press roller 3, the left adjustment part and the right adjustment part are respectively arranged on the left vertical plate 11 and the right vertical plate 12 and are respectively connected with the two ends of the cross beam 83, and the third adjustment mechanism is used for lifting or pressing the upper press roller 3 from the left end and the right end.
Set up third adjustment mechanism and change the position of compression roller 3 in Z axle direction on, can make the pad pasting device that this embodiment provided satisfy the pad pasting demand of more different model products, also make convenient operations such as overhauing simultaneously.
On the basis of the above embodiment, specifically, the third adjusting mechanism further includes a balance bar 86, a left connecting portion and a right connecting portion, and two ends of the balance bar 86 are respectively connected to the left vertical plate 11 and the right vertical plate 12; one end of the left connecting part is sleeved at the left end of the balancing rod 86, and the other end of the left connecting part is connected with the upper compression roller 3; one end of the right connecting part is sleeved at the right end of the balance bar 86, and the other end of the right connecting part is connected with the upper compression roller 3.
The balance bar 86, the left connecting part and the right connecting part are arranged, so that the left end and the right end of the upper compression roller 3 can be lifted or pressed down simultaneously, and good balance is guaranteed.
On the basis of the above embodiment, specifically, the left adjusting portion includes a power source 81 and a lifting rod 82, the power source 81 is fixed on the left vertical plate 11, one end of the lifting rod 82 is connected with an output shaft of the power source 81, and the other end is connected with the left part of the cross beam 83; the left connecting part comprises a sleeve ring 84 and a connecting plate 85, the sleeve ring 84 is sleeved on the balance rod 86, and two ends of the connecting plate 85 are respectively hinged with the sleeve ring 84 and the upper press roller 3.
The structure of the right adjustment part may be the same as or different from that of the left adjustment part, and is preferably the same. The structure of the right connecting portion and the structure of the left connecting portion may be the same or different, and preferably, the same.
The left connecting part adopts a lever principle, so that the left end and the right end of the upper compression roller 3 are ensured to be lifted or pressed down simultaneously.
Finally, it should be noted that: the above embodiments are only used for illustrating the technical solution of the present embodiment, and not for limiting the same; although the present embodiment has been described in detail with reference to the foregoing embodiments, it will be understood by those skilled in the art that: the technical solutions described in the foregoing embodiments may still be modified, or some or all of the technical features may be equivalently replaced; and these modifications or substitutions do not make the essence of the corresponding technical solutions depart from the scope of the technical solutions of the embodiments of the present embodiment.

Claims (1)

1. A film laminating apparatus, comprising: the dry film collecting and conveying mechanism comprises a support, an upper dry film collecting and conveying mechanism, an upper press roller, a lower press roller and a dry film collecting and conveying mechanism, wherein the upper dry film collecting and conveying mechanism, the upper press roller, the lower press roller and the dry film collecting and conveying mechanism are sequentially and rotatably arranged on the support from top to bottom; a feeding channel is reserved between the upper pressing roller and the lower pressing roller;
go up dry film and accomodate transmission device and include: the device comprises an upper dry film receiving part, an upper dry film waste collecting part and an upper dry film standby material conveying part; the uncut upper dry film is wound on the upper dry film receiving part, the separated upper dry film waste is collected by the upper dry film waste collecting part, and the upper dry film standby material is transmitted to the feeding channel through the upper dry film standby material transmitting part;
the dry film storage and transmission mechanism comprises: a dry film collecting part, a dry film waste collecting part and a dry film material conveying part; the uncut dry membrane is wound on the dry membrane receiving part, the separated dry membrane waste is collected by the dry membrane waste collecting part, and the dry membrane standby material is conveyed to the feeding channel through the dry membrane standby material conveying part;
the upper dry film standby material and the lower dry film standby material are simultaneously conveyed to the feeding channel and then are attached to the upper surface and the lower surface of a product under the combined action of the upper pressing roller and the lower pressing roller;
the bracket comprises a left vertical plate and a right vertical plate which are symmetrically arranged, and an upper beam and a lower beam which are symmetrically arranged; the upper beam and the lower beam are both fixedly arranged between the left vertical plate and the right vertical plate;
the upper dry film accommodating part comprises a first upper dry film stick shaft, two ends of the first upper dry film stick shaft are respectively and rotatably arranged with the left vertical plate and the right vertical plate, and an uncut upper dry film is wound on the first upper dry film stick shaft; the upper dry film waste collecting part comprises a second upper dry film roller shaft, and two ends of the second upper dry film roller shaft are respectively and rotatably arranged with the left vertical plate and the right vertical plate; the upper dry film standby material conveying part comprises a first upper dry film mold-reversing rod and a second upper dry film mold-reversing rod, the first upper dry film mold-reversing rod and the second upper dry film mold-reversing rod are rotatably arranged with the left vertical plate and the right vertical plate, and the first upper dry film mold-reversing rod and the second upper dry film mold-reversing rod are positioned on the same horizontal plane;
when the film sticking device works, upper dry film waste materials are separated from an upper dry film which is not cut under the rotation of the second upper dry film roller shaft, and the remained materials to be used sequentially pass through the first upper dry film stripping rod and the second upper dry film stripping rod in an S shape and are transmitted to the feeding channel through the first upper dry film stripping rod and the second upper dry film stripping rod in a rotating manner;
the dry film storage part comprises a first dry film roller, two ends of the first dry film roller are respectively and rotatably arranged with the left vertical plate and the right vertical plate, and the uncut dry film is wound on the first dry film roller; the lower dry film waste collecting part comprises a second dry film stick shaft, and two ends of the second dry film stick shaft are respectively and rotatably arranged with the left vertical plate and the right vertical plate; the dry film waiting material conveying part comprises a first dry film stripping rod and a second dry film stripping rod, the first dry film stripping rod and the second dry film stripping rod are rotatably arranged with the left vertical plate and the right vertical plate, and the first dry film stripping rod and the second dry film stripping rod are positioned on the same horizontal plane;
when the film sticking device works, the dry film waste is separated from the uncut dry film under the rotation of the second dry film roller shaft, and the remained material to be used sequentially passes through the first dry film stripping rod and the second dry film stripping rod in an S shape and is transmitted to the feeding channel through the rotation of the first dry film stripping rod and the second dry film stripping rod;
the first adjusting mechanism and the second adjusting mechanism are respectively used for adjusting the positions of the first upper dry film roller shaft and the first lower dry film roller shaft in the Y-axis direction;
the first adjusting mechanism comprises a first rotating movement part, a first linear movement part and a first sliding positioning part; the first rotating motion part is rotationally arranged on the bracket, and the first linear motion part is arranged on the first rotating motion part;
the first sliding positioning part comprises a first driving unit and a first positioning unit, one end of the first driving unit is connected with the first linear motion part, and the other end of the first driving unit is connected with the first upper dry film roller shaft; the first positioning unit is arranged on the bracket, limits the movement of the first upper dry film roller shaft in the X-axis direction and can generate relative movement with the first active unit;
the first linear motion part can be driven by the first rotary motion part to do linear motion along the Y-axis direction, so that the first upper dry film roller shaft is driven by the first driving unit to do linear motion along the Y-axis direction;
the first rotary motion part comprises a first knob and a first upper rotating rod, two ends of the first upper rotating rod are respectively and rotatably arranged on the left vertical plate and the right vertical plate, and the first knob is arranged at one end of the first upper rotating rod and can drive the first upper rotating rod to rotate relative to the bracket;
the first linear motion part comprises a first upper connecting plate and a second upper connecting plate, the first upper connecting plate is sleeved on the first upper rotating rod and can make linear motion along the axis direction of the first upper rotating rod, and one end of the second upper connecting plate is connected with the first upper connecting plate;
the first driving unit comprises a first guide rail and a first connecting sleeve, the first connecting sleeve is sleeved on the first upper dry film rod shaft, the first guide rail is arranged on the first connecting sleeve, and the first guide rail is connected with the other end of the second upper connecting plate;
the first positioning unit comprises a first sliding block, and the first sliding block is arranged on a wing plate of the bracket and can slide relative to the first guide rail;
the second adjusting mechanism comprises a second rotary motion part, a second linear motion part and a second sliding positioning part; the second rotary motion part is rotationally arranged on the bracket, and the second linear motion part is arranged on the second rotary motion part;
the second sliding positioning part comprises a second driving unit and a second positioning unit, one end of the second driving unit is connected with the second linear motion part, and the other end of the second driving unit is connected with the first lower dry film stick shaft; the second positioning unit is arranged on the bracket, limits the movement of the first lower dry film stick shaft in the X-axis direction, and can generate relative movement with the second driving unit;
the second linear motion part can be driven by the second rotary motion part to do linear motion along the Y-axis direction, so that the first lower dry film rod shaft is driven by the second driving unit to do linear motion along the Y-axis direction;
the second rotary motion part comprises a second knob, a first lower rotating rod, a first steering gear, a second lower rotating rod, a second steering gear and a third lower rotating rod;
two ends of the first lower rotating rod are respectively and rotatably arranged on the left vertical plate and the right vertical plate, and the second knob is arranged at one end of the first lower rotating rod and can drive the first lower rotating rod to rotate relative to the bracket; the second lower rotating rod is perpendicular to the first lower rotating rod, and the first steering gear is arranged between the second lower rotating rod and the first lower rotating rod; the third lower rotating rod is perpendicular to the second lower rotating rod, the second steering gear is arranged between the third lower rotating rod and the second lower rotating rod, and the third lower rotating rod is in rotating connection with a wing plate of the support;
the second linear motion part comprises a first lower connecting plate, the second driving unit comprises a second guide rail and a second connecting sleeve, one end of the first lower connecting plate is sleeved on the third lower rotating rod, and the other end of the first lower connecting plate is connected with the second guide rail; the second connecting sleeve is sleeved on the first lower dry film stick shaft, and the second guide rail is arranged on the second connecting sleeve;
the first lower connecting plate can do linear motion along the axial direction of the third lower rotating rod, and the first lower dry film stick shaft is driven to do linear motion in the Y-axis direction under the action of the second guide rail and the second connecting sleeve;
the second positioning unit comprises a second sliding block, and the second sliding block is arranged on a wing plate of the bracket and can slide relative to the second guide rail;
the third adjusting mechanism is used for adjusting the position of the upper pressing roller in the Z-axis direction;
the third adjusting mechanism comprises a left adjusting part, a right adjusting part and a cross beam, the cross beam is connected with the left end and the right end of the upper pressing roller, the left adjusting part and the right adjusting part are respectively arranged on the left vertical plate and the right vertical plate and are respectively connected with two ends of the cross beam, and the third adjusting mechanism is used for lifting or pressing the upper pressing roller from the left end and the right end;
the third adjusting mechanism further comprises a balancing rod, a left connecting part and a right connecting part, and two ends of the balancing rod are respectively connected with the left vertical plate and the right vertical plate;
one end of the left connecting part is sleeved at the left end of the balancing rod, and the other end of the left connecting part is connected with the upper compression roller; one end of the right connecting part is sleeved at the right end of the balancing rod, and the other end of the right connecting part is connected with the upper compression roller;
the left adjusting part comprises a power source and a lifting rod, the power source is fixed on the left vertical plate, one end of the lifting rod is connected with an output shaft of the power source, and the other end of the lifting rod is connected with the left part of the cross beam;
the left connecting part comprises a sleeve ring and a connecting plate, the sleeve ring is sleeved on the balancing rod, and two ends of the connecting plate are hinged to the sleeve ring and the upper compression roller respectively.
CN201811095642.9A 2018-09-19 2018-09-19 Film pasting device Active CN109160359B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201811095642.9A CN109160359B (en) 2018-09-19 2018-09-19 Film pasting device

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Application Number Priority Date Filing Date Title
CN201811095642.9A CN109160359B (en) 2018-09-19 2018-09-19 Film pasting device

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CN109160359A CN109160359A (en) 2019-01-08
CN109160359B true CN109160359B (en) 2020-09-25

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Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB2412907A (en) * 2004-04-05 2005-10-12 Chen Hsiu-Man Yu A dispenser for carpet protective-film
CN101166619A (en) * 2005-04-27 2008-04-23 康宁日本有限公司 Film adhering apparatus
CN203093103U (en) * 2013-01-19 2013-07-31 东莞市鸿铭机械有限公司 Automatic locating mechanism for automatically set-up box machine
CN106494065A (en) * 2016-10-14 2017-03-15 广东思沃精密机械有限公司 Many film roll laminators
CN206358428U (en) * 2016-11-30 2017-07-28 广东思沃精密机械有限公司 Film sticking apparatus and laminator
CN207107014U (en) * 2017-08-17 2018-03-16 江门市膜先生塑料实业有限公司 A kind of full-automatic multi-joint laminator
CN207208582U (en) * 2017-09-30 2018-04-10 重庆凯歌电子股份有限公司 Circuit board photographic negative diaphragm film laminator

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB2412907A (en) * 2004-04-05 2005-10-12 Chen Hsiu-Man Yu A dispenser for carpet protective-film
CN101166619A (en) * 2005-04-27 2008-04-23 康宁日本有限公司 Film adhering apparatus
CN203093103U (en) * 2013-01-19 2013-07-31 东莞市鸿铭机械有限公司 Automatic locating mechanism for automatically set-up box machine
CN106494065A (en) * 2016-10-14 2017-03-15 广东思沃精密机械有限公司 Many film roll laminators
CN206358428U (en) * 2016-11-30 2017-07-28 广东思沃精密机械有限公司 Film sticking apparatus and laminator
CN207107014U (en) * 2017-08-17 2018-03-16 江门市膜先生塑料实业有限公司 A kind of full-automatic multi-joint laminator
CN207208582U (en) * 2017-09-30 2018-04-10 重庆凯歌电子股份有限公司 Circuit board photographic negative diaphragm film laminator

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