CN211075095U - Template-based large-batch rotary gold stamping machine - Google Patents

Template-based large-batch rotary gold stamping machine Download PDF

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Publication number
CN211075095U
CN211075095U CN201921670649.9U CN201921670649U CN211075095U CN 211075095 U CN211075095 U CN 211075095U CN 201921670649 U CN201921670649 U CN 201921670649U CN 211075095 U CN211075095 U CN 211075095U
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China
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cylinder
transparent
template
die
transparent cylinder
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CN201921670649.9U
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Chinese (zh)
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倪水林
董连平
谢建华
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Zhejiang Jinkang Industrial Co ltd
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Zhejiang Jinkang Industrial Co ltd
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Abstract

The utility model provides a rotatory gilding press in batches based on template, includes laser generator, rotatory moulding-die mechanism, base, die cylinder, conveyer belt, template, rotatory moulding-die mechanism includes stand, motor, transparent cylinder, radials, column mouting is in the positive rear of base, the motor is installed on the stand, and transparent cylinder passes through radials and motor axis of rotation and just is connected, installs die cylinder under the transparent cylinder, and the conveyer belt passes the clearance between transparent cylinder and die cylinder, the template is high temperature resistant transparent soft board, scribbles the part black as required, leaves transparent light-transmitting part, the template is installed in transparent cylinder inboard, laser generator installs directly over the cylinder inboard, during gilding, puts thermoprint paper tinsel and stock on the conveyer belt, and the starter motor is opened laser generator, when thermoprint paper tinsel and stock pass through transparent cylinder and die cylinder along with the conveyer belt, laser penetrates through the light-transmitting part of the template to heat part of the hot stamping foil, and hot stamping is completed.

Description

Template-based large-batch rotary gold stamping machine
Technical Field
The utility model belongs to the field of machinery, concretely relates to rotatory gilding press in batches based on template.
Background
The gold stamping process mainly utilizes the principle of hot-pressing transfer. Under the combined pressing action, the alumite is contacted with the hot stamping plate and the printing stock, the hot stamping plate has certain heat due to the temperature rise of the electric heating plate, the alumite is heated to melt the hot-melt dyeing resin layer and the adhesive, the viscosity of the dyeing resin layer is reduced, the viscosity of the special heat-sensitive adhesive is increased after the special heat-sensitive adhesive is melted, the aluminum layer and the alumite film are peeled off and simultaneously transferred onto the printing stock, the adhesive is rapidly cooled and solidified along with the removal of pressure, and the aluminum layer is firmly attached to the printing stock to complete a hot stamping process.
The plate-free stamping machines are high in manufacturing cost and long in period, the zinc plates are difficult to manufacture when complex patterns are met, the plate-free stamping machines are not required to manufacture the zinc plates, the efficiency is improved in small-batch processing compared with the plate-containing stamping machines, and the efficiency of the plate-free stamping machines is not high enough in large-scale continuous stamping processing.
Both the plateless bronzing and the plateless bronzing need to be heated by heat conduction, which undoubtedly limits the processing speed.
SUMMERY OF THE UTILITY MODEL
Not enough to prior art, the utility model provides a rotatory gilding press in batches based on template.
The utility model discloses technical scheme as follows: the utility model provides a rotatory gilding press in batches based on template, includes laser generator, rotatory moulding-die mechanism, base, die cylinder, conveyer belt, template, its characterized in that, rotatory moulding-die mechanism includes stand, motor, transparent cylinder, radials, the column mouting is in the positive rear of base, the motor is installed on the stand, and the axis of rotation just to the place ahead, transparent cylinder passes through the radials with motor axis of rotation is just connected, install under the transparent cylinder die cylinder, transparent cylinder with die cylinder's center pin is parallel, transparent cylinder with there is less clearance between die cylinder, the conveyer belt passes transparent cylinder with the clearance between die cylinder, transparent cylinder with die cylinder is right certain pressure is applyed to the conveyer belt, die cylinder has certain elasticity, the template is a high-temperature-resistant transparent soft plate, a part of the template is blackened as required, a transparent light-transmitting part is left, the template is installed on the inner side of the transparent roller, the laser generator is installed right above the inner side of the roller and enables emitted laser to be vertical downwards, the laser generator emits linear laser, and the width of the laser is equal to the width of the transparent roller.
When gold stamping is carried out, a paperboard with a required pattern is manufactured according to the requirement, the paperboard is placed at the designated position of the high-temperature resistant transparent soft board, black spraying treatment is carried out on the high-temperature resistant transparent soft board, after the paperboard is taken off, a light transmission part of the required pattern is left on the high-temperature resistant transparent soft board, the high-temperature resistant transparent soft board is installed on the transparent roller and just covers the inner surface of the transparent roller, a hot stamping foil and a printing stock are placed on the conveying belt, the motor is started, the transparent roller rotates, the conveying belt and the die roller move together and presses the hot stamping foil and the printing stock together, when the hot stamping foil and the printing stock pass through the transparent roller and the die roller along with the conveying belt, the laser generator is simultaneously opened, the laser generator downwards emits linear laser, and part of the laser is blocked by the black sprayed high-temperature resistant transparent soft board, and part of laser penetrates through the light-transmitting part of the high-temperature-resistant transparent soft plate and the transparent roller to heat the hot stamping foil pressed together, so that the hot stamping is completed.
Further, the laser generator power is adjusted to change the heating intensity as needed.
Further, the speed of the conveying belt is self-powered and is equal to the linear speed of the transparent roller.
The utility model has the advantages that: in the large-batch processing, zinc plates do not need to be processed, the efficiency of manufacturing the template by black spraying treatment of the high-temperature-resistant transparent soft plate is greatly improved, the template manufacturing of some complex figures is simplified, and meanwhile, the combination of the roller and the conveyor belt and the laser direct heating enable the processing to be more continuous and the processing speed to be faster.
Drawings
Fig. 1 is a schematic structural diagram of the present invention.
Reference numerals
FIG. 1: the device comprises a base 1, a conveyor belt 2, a stand column 3, a motor 4, a web plate 5, a transparent roller 6, a template 7, a laser generator 8 and a die pressing roller 9.
Detailed Description
As shown in the attached figure 1, a large-batch rotary stamping machine based on a template comprises a laser generator 8, a rotary die-filling mechanism, a base 1, a die roller 9, a conveyor belt 2 and a template 7, and is characterized in that the rotary die-filling mechanism comprises an upright post 3, a motor 4, a transparent roller 6 and a radial plate 5, the upright post 3 is installed right behind the base 1, the motor 4 is installed on the upright post 3, the rotating shaft of the motor is right opposite to the front, the transparent roller 6 is just connected with the rotating shaft of the motor 4 through the radial plate 5, the die roller 9 is installed right below the transparent roller 6, the transparent roller 6 is parallel to the central shaft of the die roller 9, a small gap is reserved between the transparent roller 6 and the die roller 9, and the conveyor belt 2 passes through the gap reserved between the transparent roller 6 and the die roller 9, the transparent roller 6 and the die pressing roller 9 apply certain pressure to the conveying belt 2, the template 7 is a high-temperature-resistant transparent soft plate, the part is blackened according to needs, a transparent light-transmitting part is left, the template 7 is installed on the inner side of the transparent roller 6, the laser generator 8 is installed right above the inner side of the transparent roller 6, the emitted laser is vertical downwards, the laser generator 8 emits linear laser, and the width of the linear laser is equal to the width of the transparent roller 6.
When gold stamping is carried out, a paperboard with a required pattern is manufactured according to the requirement, the paperboard is placed at the designated position of the high-temperature resistant transparent soft board, black spraying treatment is carried out on the high-temperature resistant transparent soft board, after the paperboard is taken off, a light transmission part of the required pattern is left on the high-temperature resistant transparent soft board, the high-temperature resistant transparent soft board is installed on the transparent roller 6 and just covers the inner surface of the transparent roller 6, a hot stamping foil and a printing stock are placed on a conveying belt, the motor 4 is started, the transparent roller 6 rotates, the conveying belt 2 and the die pressing roller 9 move together, the hot stamping foil and the printing stock are pressed together, when the hot stamping foil and the printing stock pass through the transparent roller 6 and the die pressing roller 9 along with the conveying belt 2, the laser generator 8 is simultaneously opened, linear laser is downwards emitted by the laser generator 8, and part of the laser is blocked by the black spraying high-temperature resistant transparent soft board, and part of laser penetrates through the light-transmitting part of the high-temperature-resistant transparent soft plate and the transparent roller 6 to heat the hot stamping foil pressed together, so that the hot stamping is completed.
Further, the power of the laser generator 8 is adjusted to change the heating intensity as needed.
Further, the speed of the conveying belt is self-powered and is equal to the linear speed of the transparent roller.

Claims (6)

1. The utility model provides a rotatory gilding press in batches based on template, includes laser generator, rotatory moulding-die mechanism, base, die cylinder, conveyer belt, template, its characterized in that, rotatory moulding-die mechanism includes stand, motor, transparent cylinder, radials, the column mouting is in the positive rear of base, the motor is installed on the stand, and the axis of rotation just to the place ahead, transparent cylinder passes through the radials with motor axis of rotation is just connected, install under the transparent cylinder die cylinder, transparent cylinder with die cylinder's center pin is parallel, just transparent cylinder with there is less clearance between die cylinder, the conveyer belt passes transparent cylinder with clearance between die cylinder makes transparent cylinder with die cylinder is right certain pressure of conveyer belt is applied, the template is high temperature resistant transparent soft board, the part is blackened as required, a transparent light-transmitting part is left, the template is installed on the inner side of the transparent roller and just covers the inner surface of the transparent roller, and the laser generator is installed right above the inner side of the roller and enables the emitted laser to be vertically downward.
2. The stencil-based bulk rotary stamping press of claim 1, wherein the laser generator is power-adjustable.
3. The stencil-based bulk rotary stamping press of claim 1, wherein the laser generator emits line laser light having a width equal to the width of the transparent cylinder.
4. The stencil-based bulk rotary stamping press of claim 1, wherein the transparent cylinder is made of polycarbonate material.
5. The stencil-based bulk rotary stamping press of claim 1, wherein the die cylinder has a certain elasticity.
6. The stencil-based bulk rotary bronzing machine of claim 1, wherein the conveyor speed is self-powered and is equal to the transparent cylinder line speed.
CN201921670649.9U 2019-10-08 2019-10-08 Template-based large-batch rotary gold stamping machine Active CN211075095U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921670649.9U CN211075095U (en) 2019-10-08 2019-10-08 Template-based large-batch rotary gold stamping machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921670649.9U CN211075095U (en) 2019-10-08 2019-10-08 Template-based large-batch rotary gold stamping machine

Publications (1)

Publication Number Publication Date
CN211075095U true CN211075095U (en) 2020-07-24

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201921670649.9U Active CN211075095U (en) 2019-10-08 2019-10-08 Template-based large-batch rotary gold stamping machine

Country Status (1)

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CN (1) CN211075095U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN116604120A (en) * 2023-07-21 2023-08-18 中国科学院宁波材料技术与工程研究所 Anti-counterfeiting mark welding method, device and application based on diamond substrate

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN116604120A (en) * 2023-07-21 2023-08-18 中国科学院宁波材料技术与工程研究所 Anti-counterfeiting mark welding method, device and application based on diamond substrate
CN116604120B (en) * 2023-07-21 2023-09-22 中国科学院宁波材料技术与工程研究所 Anti-counterfeiting mark welding method, device and application based on diamond substrate

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