CN113002108A - Die-cutting product transferring device and transferring process applying same - Google Patents

Die-cutting product transferring device and transferring process applying same Download PDF

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Publication number
CN113002108A
CN113002108A CN202110238571.9A CN202110238571A CN113002108A CN 113002108 A CN113002108 A CN 113002108A CN 202110238571 A CN202110238571 A CN 202110238571A CN 113002108 A CN113002108 A CN 113002108A
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CN
China
Prior art keywords
pyrolysis
product
material belt
sticky
die
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Pending
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CN202110238571.9A
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Chinese (zh)
Inventor
燕子梁
黄军政
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Zhengzhou Triumphlead Technology Co ltd
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Zhengzhou Triumphlead Technology Co ltd
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Priority to CN202110238571.9A priority Critical patent/CN113002108A/en
Publication of CN113002108A publication Critical patent/CN113002108A/en
Pending legal-status Critical Current

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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B32LAYERED PRODUCTS
    • B32BLAYERED PRODUCTS, i.e. PRODUCTS BUILT-UP OF STRATA OF FLAT OR NON-FLAT, e.g. CELLULAR OR HONEYCOMB, FORM
    • B32B37/00Methods or apparatus for laminating, e.g. by curing or by ultrasonic bonding
    • B32B37/06Methods or apparatus for laminating, e.g. by curing or by ultrasonic bonding characterised by the heating method
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B32LAYERED PRODUCTS
    • B32BLAYERED PRODUCTS, i.e. PRODUCTS BUILT-UP OF STRATA OF FLAT OR NON-FLAT, e.g. CELLULAR OR HONEYCOMB, FORM
    • B32B37/00Methods or apparatus for laminating, e.g. by curing or by ultrasonic bonding
    • B32B37/10Methods or apparatus for laminating, e.g. by curing or by ultrasonic bonding characterised by the pressing technique, e.g. using action of vacuum or fluid pressure
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B32LAYERED PRODUCTS
    • B32BLAYERED PRODUCTS, i.e. PRODUCTS BUILT-UP OF STRATA OF FLAT OR NON-FLAT, e.g. CELLULAR OR HONEYCOMB, FORM
    • B32B38/00Ancillary operations in connection with laminating processes
    • B32B38/18Handling of layers or the laminate

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  • Physics & Mathematics (AREA)
  • Fluid Mechanics (AREA)
  • Processing Of Solid Wastes (AREA)

Abstract

The utility model provides a cross cutting product changes device, including the first drop feed mechanism that sets gradually, first laminating device, first receiving mechanism, the second drop feed mechanism, second laminating device, heating device and second receiving mechanism, first laminating device can be with the laminating of pyrolysis sticky material area on the raw materials area, first receiving mechanism can be to the rolling of raw materials area, second laminating device can be with the laminating of shipment material area and the pyrolysis sticky material area of pasting with the product, heating device can eliminate the stickness of pyrolysis sticky material area, second receiving mechanism can be with the rolling of the pyrolysis sticky material area of eliminating the stickness so that the product changes and pastes on shipment material area, the change technology of using above-mentioned change device is provided simultaneously. The automatic transfer-pasting device for the die-cutting products has the advantages that the automatic transfer-pasting device is simple in process, convenient to operate, low in labor intensity, high in transfer-pasting precision and not easy to cause pollution, damage and the like of the products, labor force is saved, production efficiency and the yield of the products are improved, and production cost is reduced.

Description

Die-cutting product transferring device and transferring process applying same
Technical Field
The disclosure relates to a transfer of die-cut products, in particular to a transfer device of die-cut products and a transfer process using the same.
Background
The die cutting process mainly comprises die cutting of single-sided and double-sided adhesive stickers, protective films, gaskets, dust screens, copper foils, aluminum foils and other products in various shapes, and is widely applied to die cutting of parts such as front and back shells, windows, displays, microphones, receivers, keyboards, batteries and the like in electronic products such as mobile phones, portable computers, palm computers, digital cameras, audios and the like and post-printing die cutting of labels and the like. At present, after the raw material belt is subjected to die cutting and is processed and molded to form a corresponding product, the product is generally transferred and pasted to a corresponding discharging material belt, for example, the pasting paper material belt is convenient for subsequent processing, transferring, storage and the like of the product, but the existing equipment is difficult to transfer and paste the die cutting product to the discharging material belt, and the traditional manual transferring and pasting mode is inconvenient to operate, poor in transferring and pasting precision, low in efficiency, more manpower is consumed, high in labor intensity and easy to cause pollution, damage and the like of the product, so that the production efficiency and the yield of the product are low, and the production cost is high.
Disclosure of Invention
The purpose of the disclosure is to provide a die-cutting product transfer device and a transfer process using the same, which can solve at least one of the above technical problems, and the technical scheme of the disclosure is as follows:
the utility model provides a cross cutting product is changeed and is pasted device, including the first drop feed mechanism that sets gradually, first laminating device, first receiving mechanism, the second drop feed mechanism, the second laminating device, heating device and second receiving mechanism, first laminating device can paste the glutinous material area laminating of the pyrolysis of first drop feed mechanism output on the raw materials area that product cross cutting processing was accomplished, first receiving mechanism can be to the raw materials area rolling so that the product stays on the glutinous material area of pyrolysis, second laminating device can be with the shipment material area of second drop feed mechanism output with paste the glutinous material area laminating of pyrolysis with the product, heating device can eliminate the stickness in the glutinous material area of pyrolysis, second receiving mechanism can paste the glutinous material area rolling of the pyrolysis of eliminating the stickness so that the product is changeed on the shipment material area.
In some embodiments, the first discharging mechanism is located above the first attaching device, the first receiving mechanism is located below the first attaching device, the second discharging mechanism is located below the second attaching device, and the second receiving mechanism is located above the heating device.
In some embodiments, a first feeding plate is arranged between the first laminating device and the second laminating device, the first material receiving mechanism is located below the first feeding plate, a first scraping plate correspondingly matched with the first material receiving mechanism is arranged on the first feeding plate, and after the conveyed material belt passes along the first scraping plate, the raw material belt is rolled by the first material receiving mechanism below the raw material belt.
In some embodiments, the first feeding plate is provided with a first pressing plate matched with the first scraper, the first pressing plate is positioned above the first scraper, and the conveyed material belt can pass through the space between the first pressing plate and the first scraper.
In some embodiments, the heating device is disposed on the second feeding plate, the second feeding plate is provided with a second scraper blade correspondingly matched with the second material receiving mechanism, the heating device is located between the second attaching device and the second scraper blade, and after the conveyed material belt passes through the second feeding plate from the lower part of the second scraper blade, the pyrolysis adhesive belt is wound by the second material receiving mechanism above the second feeding plate.
In some embodiments, the device further comprises a third discharging mechanism for outputting the raw material belt and a third rolling mechanism for rolling the shipment belt with the products.
In some embodiments, a first guide roller is arranged between the third discharging mechanism and the first attaching device.
In some embodiments, the heating device comprises a heating plate, on which an electric heating tube and a first passage for the passage of the material strip are arranged.
A transfer process applying the transfer device comprises the following steps:
the pyrolysis sticky material belt is output by a first discharging mechanism, the pyrolysis sticky material belt is attached to a raw material belt after the product is subjected to die cutting processing through a first attaching device, and the product is attached to the pyrolysis sticky material belt simultaneously;
then the first material receiving mechanism winds the attached raw material belt, and the attached force between the pyrolysis sticky material belt and the product is larger than the attached force between the product and the raw material belt, so that the product is left on the pyrolysis sticky material belt;
then the discharging material belt is output by a second discharging mechanism, the discharging material belt is attached to the pyrolysis adhesive material belt attached with the product through a second attaching device, and the product is attached to the discharging material belt simultaneously;
then the heating device heats the attached material belt, the viscosity of the pyrolysis sticky material belt is eliminated, and the attaching force between the product and the pyrolysis sticky material belt is eliminated;
then the second receiving agencies rolls the pyrolysis sticky material area after will heating again to the product breaks away from and changes the subsides on the shipment material area with the pyrolysis sticky material area.
In some embodiments, the raw material belt after the product die cutting process is output by the third discharging mechanism, and the shipment material belt with the product attached is rolled by the third rolling mechanism.
The beneficial effects of this disclosure are: the first laminating device laminates the pyrolysis sticky material belt output by the first discharging mechanism on the raw material belt processed by product die cutting, the product is positioned between the raw material belt and the pyrolysis sticky material belt, then the first receiving mechanism winds the raw material belt, because the laminating force between the pyrolysis sticky material belt and the product is greater than the laminating force between the product and the raw material belt, the product is left on the pyrolysis sticky material belt, then the second laminating device laminates the delivery material belt output by the second discharging mechanism with the pyrolysis sticky material belt attached with the product, the product is positioned between the pyrolysis sticky material belt and the delivery material belt, the product is respectively laminated with the pyrolysis sticky material belt and the delivery material belt, after the laminated material belt is heated by the heating device, because the heating device removes the viscosity of the pyrolysis sticky material belt, the laminating force between the product and the pyrolysis sticky material belt is eliminated, the second receiving mechanism can wind the pyrolysis sticky material belt without viscosity, the automatic transfer-pasting machine has the advantages that products are left on the discharging material belt at last, so that automatic transfer-pasting of die-cutting products is achieved, the problem that the die-cutting products are difficult to transfer-pasting is solved, the process is simple, the operation is convenient, the labor intensity is low, manpower is saved, the transfer-pasting precision is high, pollution, damage and the like of the products are not prone to being caused, the production efficiency and the yield of the products are improved, and the production cost is reduced.
In addition, in the technical solutions of the present disclosure, the technical solutions can be implemented by adopting conventional means in the art, unless otherwise specified.
Drawings
In order to more clearly illustrate the embodiments of the present disclosure or the technical solutions in the prior art, the drawings needed to be 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 disclosure, and other drawings can be obtained by those skilled in the art without creative efforts.
Fig. 1 is a schematic structural view of a die-cut product transfer device according to an embodiment of the present disclosure.
Fig. 2 is a partial enlarged view at a in fig. 1 of an embodiment of the present disclosure.
Fig. 3 is a schematic structural diagram of a heating device according to an embodiment of the present disclosure.
Fig. 4 is a flow chart of a transfer process according to an embodiment of the present disclosure.
The number in the drawing indicates that the first discharging mechanism 1, the first attaching device 2, the first receiving mechanism 3, the second discharging mechanism 4, the second attaching device 5, the heating device 6, the heating plate 61, the electric heating pipe 62, the first channel 63, the second receiving mechanism 7, the first feeding plate 8, the first scraping plate 81, the first pressing plate 82, the mounting frame 83, the second feeding plate 9, the second scraping plate 91, the third discharging mechanism 10, the third winding mechanism 11, the first guide roller 12, the third attaching device 13, the rack 14 and the first foot wheel 15.
Detailed Description
In order to make the objects, technical solutions and advantages of the present disclosure more clearly understood, the present disclosure is further described in detail below with reference to the accompanying drawings and embodiments. It is to be understood that the specific embodiments described herein are merely illustrative of some, but not all, embodiments of the disclosure and are not to be considered as limiting the disclosure. All other embodiments, which can be derived by a person skilled in the art from the embodiments disclosed herein without making any creative effort, shall fall within the protection scope of the present disclosure.
In the description of the present disclosure, it should be noted that the terms "center", "upper", "lower", "left", "right", "front", "rear", "vertical", "horizontal", "inner", "outer", "both ends", "both sides", "bottom", "top", and the like indicate orientations or positional relationships based on those shown in the drawings, and are only for convenience of description and simplicity of description, but do not indicate or imply that the elements referred to must have a particular orientation or be constructed and operated in a particular orientation, and thus, should not be construed as limiting the present disclosure. Furthermore, the terms "first," "second," "upper," "lower," "primary," "secondary," and the like are used for descriptive purposes only and may be used for purposes of simplicity in more clearly distinguishing between various components and not to indicate or imply relative importance.
In the description of the present disclosure, it should be noted that, unless otherwise explicitly stated or limited, the terms "mounted," "connected," and "connected" are used in a broad sense and can be, for example, fixedly connected, detachably connected, integrally connected, mechanically connected, electrically connected, directly connected, indirectly connected through an intermediate medium, or connected through the inside of two elements. The specific meaning of the above terms in the present disclosure can be understood in specific instances by those of ordinary skill in the art.
The first embodiment is as follows:
as shown in fig. 1-4, schematically showing a die-cutting product transfer device according to the present disclosure, including a first discharging mechanism 1, a first attaching device 2, a first receiving mechanism 3, a second discharging mechanism 4, a second attaching device 5, a heating device 6 and a second receiving mechanism 7 which are arranged in sequence. Generally, the first attaching device 2, the second attaching device 5 and the heating device 6 are horizontally arranged in sequence, the first material discharging mechanism 1 is located above the first attaching device 2, the first material receiving mechanism 3 is located below the first attaching device 2, the second material discharging mechanism 4 is located below the second attaching device 5, and the second material receiving mechanism 7 is located above the heating device 6. The pyrolysis sticky material belt is output by the first discharging mechanism 1, the first laminating device 2 can laminate the pyrolysis sticky material belt on the raw material belt processed by product die cutting, the product is positioned between the raw material belt and the pyrolysis sticky material belt, the first receiving mechanism 3 can roll the raw material belt, the laminating force between the pyrolysis sticky material belt and the product is greater than the laminating force between the product and the raw material belt, so that the product is remained on the pyrolysis sticky material belt, namely, the product on the raw material belt is firstly transferred onto the pyrolysis sticky material belt, the shipment material belt is output by the second discharging mechanism 4, the second laminating device 5 can laminate the shipment material belt and the pyrolysis sticky material belt attached with the product, the product is positioned between the pyrolysis sticky material belt and the shipment material belt, the heating device 6 can eliminate the stickiness of the pyrolysis sticky material belt, the second receiving mechanism 7 can roll the pyrolysis sticky material belt eliminating stickiness, so that the product is separated from the pyrolysis sticky material belt and is remained on the shipment material belt, the products are finally transferred and pasted on the discharging material belt, so that the automatic transfer and pasting of the die-cutting products are realized.
The sticky material area of pyrolysis has the sticky film material area of coating the pyrolysis promptly, for example the sticky PET transparent film material area of coating the sticky acryl of pyrolysis is glued, the sticky material area of pyrolysis also can be other thermosetting membrane that lose the stickness after heating, under the room temperature, the stickness between sticky material area of pyrolysis and the product is greater than the laminating power between product and the former material area, after the sticky material area of pyrolysis is heated certain temperature, the sticky material area of pyrolysis can lose the stickness, and the laminating power between sticky material area of pyrolysis and the product is eliminated promptly. In order to facilitate the storage, transportation and the like of the pyrolysis sticky tape, a layer of release film or release paper is usually attached to the adhesive surface of the pyrolysis sticky tape, so the pyrolysis sticky tape output by the first discharging mechanism 1 can be removed from the release film or the release paper on the surface through the corresponding receiving mechanism, and then enters the first laminating device 2 to be laminated with the raw material tape.
Be provided with between first laminating device 2 and the second laminating device 5 and be used for the material to take first delivery sheet 8 through, first delivery sheet 8 is installed in frame 14, first receiving agencies 3 is located the below of first delivery sheet 8, be provided with the first scraper blade 81 with the corresponding complex of first receiving agencies 3 on the first delivery sheet 8, first scraper blade 81 is located the one end of first receiving agencies usually, the material area of transport is along first delivery sheet 8 and from first scraper blade 81 back, the rolling of the first receiving agencies 3 of raw materials area by the below, thereby can make raw materials area peel off from the material area of laminating better, and is more stable, reliable. The first feeding plate 8 is further provided with a first pressing plate 82 matched with the first scraper 81, the first pressing plate 82 is located above the first scraper 81, the first scraper 81 and the first pressing plate 82 are generally mounted on the mounting frame 83, and conveyed material belts can pass through the space between the first pressing plate 82 and the first scraper 81, so that the stability and the reliability are higher.
Heating device 6 sets up on second delivery sheet 9, second delivery sheet 9 is installed in frame 14, be provided with on the second delivery sheet 9 with the corresponding complex second scraper blade 91 of second receiving agencies 7, heating device 6 is located between second laminating device 5 and the second scraper blade 91, the material area of transport passes through the back from second scraper blade 91 below along second delivery sheet 9, the sticky material area of pyrolysis is by the 7 rolling of second receiving agencies of top, thereby can make the sticky material area of pyrolysis peel off from the material area of laminating better, and is more stable, reliable.
First drop feed mechanism 1, first laminating device 2, first receiving agencies 3, second drop feed mechanism 4, second laminating device 5, heating device 6 and second receiving agencies 7 are installed usually in frame 14, still be provided with the third drop feed mechanism 10 that is used for exporting the raw materials area and be used for the rolling to change the third winding mechanism 11 that has the shipment material area of product, the raw materials area that the processing of product cross cutting was accomplished is exported by third drop feed mechanism 10, the product is changeed and is pasted the back on the shipment material area, the shipment material area is again rolled by third winding mechanism 11. A first guide roller 12 is arranged between the third discharging mechanism 10 and the first attaching device 2, the number of the first guide rollers 12 can be one, two or more, the number, arrangement and the like of the first guide rollers 12 are determined according to specific conditions, and the raw material belt can better enter the first attaching device 2 through the first guide rollers 12. In addition, the third discharging mechanism 10 and the third winding mechanism 11 are not required to be arranged, the transfer device is matched with the corresponding die cutting equipment and the subsequent processing equipment respectively, namely, a raw material belt which is output by the corresponding die cutting equipment and is subjected to die cutting processing directly enters the first laminating device 2, and a discharged material belt after the product is transferred directly enters the corresponding subsequent processing equipment, so that automatic line connection production is realized conveniently, and the efficiency is higher.
Heating device 6's heating temperature is decided according to the pyrolysis temperature etc. in the sticky material area of pyrolysis, and heating device 6 includes hot plate 61, is provided with electric heating pipe 62 on hot plate 61 and is used for the first passageway 63 that the material area passes through, simple structure, convenient operation.
The first discharging mechanism 1, the second discharging mechanism 4, the third discharging mechanism 10, the first winding mechanism, the second winding mechanism and the third winding mechanism 11 have basically the same structure, and generally comprise a roller shaft for placing a material roll or a material belt and a motor for driving the roller shaft.
After the product is changeed and is pasted on the shipment material area, can also make the product attach on shipment material area more steadily through third laminating device 13, second scraper blade 91 is located between heating device 6 and the third laminating device 13, third laminating device 13 is unanimous with 5 level of second laminating device, first laminating device 2, the structure of second laminating device 5 and third laminating device 13 is the same basically, generally include the drive roll and with drive roll matched with compression roller, the drive roll is driven by corresponding motor, the compression roller is located the top of drive roll.
The bottom of the frame 14 is also provided with a first caster 15 or a caster with an adjusting block, etc. for facilitating the movement and leveling of the equipment.
Compared with the prior art, the transfer device has the advantages that: utilize the laminating power between pyrolysis sticky material area and the product under the room temperature to be greater than the laminating power between product and the former material area, shift the product on the former material area to pyrolysis sticky material area earlier, rethread heating device 6 heats pyrolysis sticky material area, make pyrolysis sticky material area lose the stickness, finally change the product to paste on the shipment material area, thereby realized the automatic change of cross cutting product and pasted, the difficult problem of changing the subsides of cross cutting product has been solved, heating plate 61 of heating device 6 heats through electric heating pipe 62, moreover, the steam generator is simple in structure, first scraper blade 81 and second scraper blade 91 are convenient for raw material area and pyrolysis sticky material area respectively to peel off, stability and reliability are high, third laminating device 13 can make the product attach on shipment material area more steadily, simple process, convenient operation, low in labor strength, manpower has been saved, and change high, effectual, be difficult for causing the pollution of product, Damage and the like, thereby improving the production efficiency and the yield of products and reducing the production cost.
Example two:
as shown in fig. 1 to 4, a transfer process using the transfer device at least includes the following steps:
the pyrolysis sticky material belt is output by the first discharging mechanism, the pyrolysis sticky material belt is attached to a raw material belt after the product is subjected to die cutting processing through the first attaching device, and the product is attached to the pyrolysis sticky material belt at the same time, namely the product is located between the raw material belt and the pyrolysis sticky material belt;
then the first material receiving mechanism winds the attached raw material belt, and the attachment force between the pyrolysis sticky material belt and the product is larger than the attachment force between the product and the raw material belt, so that the product is left on the pyrolysis sticky material belt, namely the product is transferred to the pyrolysis sticky material belt from the raw material belt;
then the discharging material belt is output by a second discharging mechanism, the discharging material belt is attached to the pyrolysis sticky material belt attached with the product through a second attaching device, and the product is attached to the discharging material belt at the same time, namely the product is located between the pyrolysis sticky material belt and the discharging material belt;
then the heating device heats the attached material belt, the viscosity of the pyrolysis sticky material belt is eliminated, and the attaching force between the product and the pyrolysis sticky material belt is eliminated;
then the second receiving agencies rolls the sticky material area of pyrolysis after will heating again to the product breaks away from with the sticky material area of pyrolysis, and the product is stayed on the material area of shipment, finally pastes the product on the material area of shipment promptly.
The raw material area that product cross cutting processing was accomplished is exported by the third drop feed mechanism, then the raw material area is laminated through first laminating device with the sticky material area of pyrolysis of first drop feed mechanism output. The shipment material area that changes to paste the product is by the rolling of third winding mechanism, and the product changes to paste the shipment material area on the back, and the shipment material area carries out the rolling through third winding mechanism, is convenient for carry out corresponding subsequent processing.
The material belt of first laminating device output is along first delivery sheet and follow the back between first clamp plate and the first scraper blade, and former material belt is by the first receiving agencies rolling of below to can make former material belt peel off from the material belt of laminating better, more stable, reliable. The material area after through heating device passes the back from second scraper blade below along the second delivery sheet, and the sticky material of pyrolysis area is by the second receiving agencies rolling of top to can make the sticky material of pyrolysis take and peel off from the material area of laminating better, more stable, reliable.
Compared with the prior art, the transfer process has the advantages that: utilize the laminating power between pyrolysis sticky material area and the product under the room temperature to be greater than the laminating power between product and the former material area, shift the product on the former material area to pyrolysis sticky material area earlier, rethread heating makes pyrolysis sticky material area lose the stickness, finally change the product and paste on the material area of delivering goods, thereby realized the automation of cross cutting product and changeed the subsides, the difficult problem of changeing the subsides of cross cutting product has been solved, moreover, the steam generator is simple in process, and convenient for operation, low in labor strength, the manpower is saved, and change the subsides precision height, and is effectual, be difficult for causing the pollution of product, damage etc., thereby the yield of production efficiency and product has been improved, and the production cost is reduced.
The foregoing is directed to embodiments of the present disclosure, which are provided for illustration only and not for limitation, and it is understood that modifications and substitutions may be made by those skilled in the art without departing from the spirit of the disclosure and all such modifications and substitutions are to be considered within the scope of the appended claims. In this case all the details may be replaced with equivalent elements, and the materials, shapes and dimensions may be any.

Claims (10)

1. A die-cutting product transfer device is characterized by comprising a first discharging mechanism (1), a first laminating device (2), a first material receiving mechanism (3), a second discharging mechanism (4), a second laminating device (5), a heating device (6) and a second material receiving mechanism (7) which are arranged in sequence, the first laminating device (2) can laminate the pyrolysis sticky material belt output by the first discharging mechanism (1) on a raw material belt after the die cutting of the product is finished, the first material receiving mechanism (3) can roll the raw material belt so as to enable the product to be left on the pyrolysis sticky belt, the second laminating device (5) can laminate the discharging material belt output by the second discharging mechanism (4) with the pyrolysis adhesive material belt attached with the product, heating device (6) can eliminate the stickness in pyrolysis glutinous material area, second receiving agencies (7) can paste the rolling in the pyrolysis glutinous material area of elimination stickness so that the product changes and pastes on the shipment material area.
2. The die-cut product transfer device according to claim 1, wherein the first discharging mechanism (1) is located above the first attaching device (2), the first receiving mechanism (3) is located below the first attaching device (2), the second discharging mechanism (4) is located below the second attaching device (5), and the second receiving mechanism (7) is located above the heating device (6).
3. The die-cut product transfer device according to claim 2, wherein a first feeding plate (8) for feeding the material belt is arranged between the first attaching device (2) and the second attaching device (5), the first material receiving mechanism (3) is arranged below the first feeding plate (8), a first scraping plate (81) correspondingly matched with the first material receiving mechanism (3) is arranged on the first feeding plate (8), and after the conveyed material belt passes along the first scraping plate (81), the material belt is rolled by the first material receiving mechanism (3) below.
4. The die-cut product transfer device according to claim 3, wherein a first pressing plate (82) matched with the first scraper (81) is arranged on the first feeding plate (8), the first pressing plate (82) is positioned above the first scraper (81), and a conveyed material belt can pass through between the first pressing plate (82) and the first scraper (81).
5. The die-cut product transfer device according to claim 4, wherein the heating device (6) is arranged on a second feeding plate (9), a second scraping plate (91) correspondingly matched with the second material receiving mechanism (7) is arranged on the second feeding plate (9), the heating device (6) is positioned between the second bonding device (5) and the second scraping plate (91), and after the conveyed material belt passes through the second feeding plate (9) from the lower part of the second scraping plate (91), the pyrolysis sticky material belt is rolled by the second material receiving mechanism (7) from the upper part.
6. The die-cut product transfer device according to claim 1, further comprising a third discharging mechanism (10) for discharging the raw material tape and a third winding mechanism (11) for winding the shipment tape with the products transferred thereon.
7. The die-cut product transfer device according to claim 6, characterized in that a first guide roller (12) is arranged between the third discharging mechanism (10) and the first applying device (2).
8. The die-cut product transfer device according to any one of claims 1 to 7, wherein the heating device (6) comprises a heating plate (61), and the heating plate (61) is provided with an electric heating tube (62) and a first channel (63) for the material belt to pass through.
9. A transfer process using the transfer apparatus for die-cut products of any one of claims 1 to 8, comprising the steps of:
the pyrolysis sticky material belt is output by a first discharging mechanism, the pyrolysis sticky material belt is attached to a raw material belt after the product is subjected to die cutting processing through a first attaching device, and the product is attached to the pyrolysis sticky material belt simultaneously;
then the first material receiving mechanism winds the attached raw material belt, and the attached force between the pyrolysis sticky material belt and the product is larger than the attached force between the product and the raw material belt, so that the product is left on the pyrolysis sticky material belt;
then the discharging material belt is output by a second discharging mechanism, the discharging material belt is attached to the pyrolysis adhesive material belt attached with the product through a second attaching device, and the product is attached to the discharging material belt simultaneously;
then the heating device heats the attached material belt, the viscosity of the pyrolysis sticky material belt is eliminated, and the attaching force between the product and the pyrolysis sticky material belt is eliminated;
then the second receiving agencies rolls the pyrolysis sticky material area after will heating again to the product breaks away from and changes the subsides on the shipment material area with the pyrolysis sticky material area.
10. The transfer process of claim 9, wherein the raw material tape after the die cutting of the product is discharged from the third discharging mechanism, and the shipment tape with the product transferred thereon is wound by the third winding mechanism.
CN202110238571.9A 2021-03-03 2021-03-03 Die-cutting product transferring device and transferring process applying same Pending CN113002108A (en)

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113968373A (en) * 2021-10-21 2022-01-25 广州市安旭特电子有限公司 Method and device for improving surface energy of reinforcing sheet
CN113968063A (en) * 2021-10-13 2022-01-25 赛柯赛斯新能源科技(苏州)有限公司 Heating sheet, processing equipment and processing method
CN115431347A (en) * 2022-07-27 2022-12-06 深圳市领略数控设备有限公司 Gapless die-cutting transfer system and process

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Application publication date: 20210622