CN210312744U - Gold stamping die cutting assembly line equipment - Google Patents

Gold stamping die cutting assembly line equipment Download PDF

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Publication number
CN210312744U
CN210312744U CN201921150107.9U CN201921150107U CN210312744U CN 210312744 U CN210312744 U CN 210312744U CN 201921150107 U CN201921150107 U CN 201921150107U CN 210312744 U CN210312744 U CN 210312744U
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China
Prior art keywords
deflector roll
paper
guide roller
fixed
gold stamping
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CN201921150107.9U
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Chinese (zh)
Inventor
陈少荣
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Wenzhou Guangya Machinery Co ltd
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Wenzhou Guangya Machinery Co ltd
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Priority to CN201921150107.9U priority Critical patent/CN210312744U/en
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Abstract

The utility model discloses a gilt cross cutting assembly line equipment, including unwinding device, gilt device, cutting device and sheet output device, a serial communication port, be equipped with paper storage device between gilt device and the cutting device, paper storage device includes tension controller A and supplies paper to wind fixed deflector roll A, activity deflector roll C and fixed deflector roll D of establishing in proper order, activity deflector roll C is connected with tension controller A transmission, activity deflector roll C makes back and forth round trip movement for fixed deflector roll A and fixed deflector roll D, activity deflector roll C has the thrust to the back-pull paper by tension controller A drive, the transmission power of fixed deflector roll D is greater than the thrust that tension controller A drove activity deflector roll C backward, form a high-speed automatic flow production line, make the paper once only accomplish gilt and cross cutting in transportation process, high production efficiency; the movable guide roller C moves back and forth to store and feed paper, so that the gold stamping and the die cutting are better connected, and the condition that enough paper is stored for subsequent die cutting is ensured.

Description

Gold stamping die cutting assembly line equipment
Technical Field
The utility model relates to a gilt cross cutting field, in particular to gilt cross cutting assembly line equipment.
Background
Gold stamping is a printing decoration process, which is characterized in that a metal printing plate is heated and applied with foil, gold characters or patterns are impressed on a printed matter, a die cutting machine utilizes a steel knife, a hardware die and a steel wire (or a template carved by a steel plate) to apply certain pressure through the impressing plate, the printed matter is rolled and cut into a certain shape, and the gold stamping is important equipment for packaging, processing and forming after printing. The existing materials are usually unreeled through an unreeling device, then are gilded on a gilding press, are collected through a reeling device, and are manually conveyed to a die cutting machine for die cutting, so that the gilding and the die cutting cannot be realized on one production line, and the problems of multiple processing devices, complex process, low production efficiency and high labor cost are solved.
SUMMERY OF THE UTILITY MODEL
In view of the technical problem who exists among the background art, the utility model aims at providing a gilt cross cutting assembly line equipment.
In order to solve the technical problem, the utility model discloses a following technical scheme: gilt cross cutting assembly line equipment, including unwinding device, gilt device, cutting device and sheet output device, its characterized in that, be equipped with between gilt device and the cutting device and hold the paper device, it includes tension controller A and supplies paper and winds fixed deflector roll A, activity deflector roll C and the fixed deflector roll D of establishing in proper order to hold the paper device, fixed deflector roll D and activity deflector roll C locate fixed deflector roll A front and back respectively, activity deflector roll C is connected with tension controller A transmission, back and forth movement is made for fixed deflector roll A and fixed deflector roll D to activity deflector roll C, activity deflector roll C has the thrust of back-pull paper by tension controller A drive, fixed deflector roll D's driving force is greater than the thrust that tension controller A drive activity deflector roll C is backward.
The fixed guide roller A pair roller is provided with a fixed guide roller B, and the fixed guide roller A and the fixed guide roller B are matched with each other to feed paper.
Still include the color code locator, the color code locator is located on the paper transfer route, the color code locator is connected with servo motor B and servo motor D respectively, the fixed deflector roll B of servo motor B drive rotates, the fixed deflector roll D of servo motor D drive rotates.
The tension controller A adopts an air cylinder, and the movable guide roller C is connected with an air cylinder shaft of the air cylinder.
The unwinding device comprises a fixed seat, a sliding seat, a coil rack and a coil positioning detector, wherein the sliding seat moves left and right relative to the fixed seat, the coil rack is arranged on the sliding seat, the sliding seat is in transmission connection with a power source A, the coil positioning detector transmits a detected signal to the power source A, and the power source A drives the sliding seat to move left and right.
The automatic stamping device is characterized in that a deviation correcting device is arranged between the unwinding device and the stamping device and between the stamping device and the die cutting device, the deviation correcting device comprises a base, a power source B and a deviation correcting rotating frame, two front rollers and two rear rollers which are parallel to each other are arranged above the deviation correcting rotating frame, a sliding block is arranged below the deviation correcting rotating frame, a guide rod is arranged on the base and is connected with the guide rod in a sliding fit mode, and the power source B drives the deviation correcting rotating frame to swing left and right.
Between unwinding device and the gilt device and hold and be equipped with between the paper device and prepare adsorption paper feeding device, prepare adsorption paper feeding device and include tension controller B, the preparation deflector roll A of fixed setting and the preparation deflector roll B that the activity set up, prepare deflector roll B and locate on the roller frame, prepare deflector roll A and prepare deflector roll B crisscross setting from top to bottom, tension controller B drives the roller frame up-and-down motion.
The utility model has the advantages that: the hot stamping and die cutting production line equipment realizes the unreeling of roll paper, hot stamping, paper storage, die cutting, sheet output and folding into bags, and forms a high-speed automatic production line, so that the hot stamping and die cutting of paper can be finished at one time in the conveying process, the output sheet can be directly folded into a paper bag, the production efficiency is high, and the hot stamping and die cutting production line equipment is suitable for mass production; because continuous paper feeding is carried out before die cutting, and the die cutting needs to be stopped, the movable guide roller C moves back and forth to store and feed paper, the gold stamping and the die cutting are better connected, and the paper storage device is ensured to store enough paper for subsequent die cutting.
Drawings
FIG. 1 is a schematic structural view of the front half of the present invention;
FIG. 2 is a schematic structural view of the latter half of the present invention;
FIG. 3 is a schematic structural view of an unwinding device;
FIG. 4 is a schematic structural view of a paper splicing apparatus;
FIG. 5 is a schematic view of a deviation correcting device;
FIG. 6 is a schematic view of a paper feeding apparatus;
FIG. 7 is a schematic view of a paper storage device.
Detailed Description
As shown in fig. 1 and 2, the gold stamping and die cutting assembly line equipment includes an unwinding device 1, a paper receiving device 2, a gold stamping device 6, a die cutting device 7 and a sheet output device 8, a paper storage device 5 is arranged between the gold stamping device 6 and the die cutting device 7, a deviation correction device 3 is arranged between the unwinding device 1 and the gold stamping device 6 and between the gold stamping device 6 and the die cutting device 7, the deviation correction device 3 between the unwinding device 1 and the gold stamping device 6 is a first deviation correction device 3a, the deviation correction device 3 between the gold stamping device 6 and the die cutting device 7 is a second deviation correction device 3b, and the first deviation correction device 3a and the second deviation correction device 3b are identical in structure.
A paper preparation feeding device 4 is arranged between the unreeling device 1 and the gold stamping device 6 and between the gold stamping device 6 and the paper storage device 5, the preparation paper feeding device 4 between the unreeling device 1 and the gold stamping device 6 is a first preparation paper feeding device 4a, the paper preparation device 4 between the gold stamping device 6 and the paper storage device 5 is a second paper preparation device 4b, the first paper preparation device 4a and the second paper preparation device 4b have the same structure, in this embodiment, the assembly line layout sequence includes an unwinding device 1, a paper receiving device 2, a first prepared paper feeding device 4a, a first deviation correcting device 3a, a gold stamping device 6, a second prepared paper feeding device 4b, a second deviation correcting device 3b, a paper storage device 5, a die cutting device 7 and a sheet material output device 8. Since the gold stamping device, the die cutting device and the sheet material output device are all of the existing structure, they will not be described in detail.
As shown in fig. 3, the unwinding device includes a fixed seat 11, a sliding seat 12, a coil holder 13, a coil positioning detector and an ultrasonic coil diameter detector, the sliding seat 12 moves left and right relative to the fixed seat 11, the coil holder 13 is disposed on the sliding seat 12, the sliding seat 12 is in transmission connection with a power source a, the coil positioning detector transmits a detected signal to the power source a, and the power source a drives the sliding seat to move left and right. The sliding seat 12 and the fixed seat 11 are connected in a sliding manner through a guide rail 14, and the power source a drives the sliding seat 12 to slide left and right along the guide rail 14. The coil rack 13 is rotatably connected with the sliding seat 12 through a fulcrum 15, the coil rack 13 is in transmission connection with a power source B16, and the power source B16 drives the coil rack 13 to ascend and descend vertically so as to facilitate material changing. The coil stock positioning detector is arranged on the paper conveying path. When the coil stock positioning detector detects that the paper is conveyed to deviate, the power source A drives the sliding seat to move left and right to correct the deviation. The ultrasonic roll diameter detector can detect the size of a roll diameter, so that the braking force of the material rolling roller is adjusted.
As shown in fig. 4, the paper receiving device 2 includes a paper receiving table 21, a paper cutting measuring scale 22 and two paper pressing blocks 23 which are parallel to each other and arranged in front and back are arranged on the paper receiving table 21, a paper passage is formed between the paper receiving table and the paper pressing blocks, and the paper pressing blocks 23 can move up and down. The paper passes through between the paper pressing blocks and the paper splicing table, the paper positioned between the two paper pressing blocks is cut along the paper cutting measuring ruler, and then the paper splicing is carried out.
As shown in fig. 5, the deviation correcting device 3 includes a seat body 31, a power source B32 and a deviation correcting rotating frame 33, two parallel front rollers 34 and rear rollers 35 are disposed above the deviation correcting rotating frame 33, a sliding block 36 is disposed below the deviation correcting rotating frame 33, a guide rod 37 is disposed on the seat body 31, the sliding block 36 is connected with the guide rod 37 in a sliding fit manner, and the power source B32 drives the deviation correcting rotating frame 33 to swing left and right. Before entering the gold stamping device and the die cutting device, correction is carried out, and deviation of gold stamping and die cutting is prevented.
As shown in fig. 6, the preparation paper feeding device 4 includes a tension controller B41, a fixedly arranged preparation guide roller a42 and a movably arranged preparation guide roller B43, the preparation guide roller B43 is arranged on the roller frame 44, the preparation guide rollers a42 and the preparation guide rollers B43 are arranged in a vertically staggered manner, and the tension controller B41 drives the roller frame 44 to move up and down. The tension controller B41 may be an air cylinder, the power of which is adjusted according to the thickness of the paper. The preparation paper feeding device can not only reserve enough paper for subsequent gold stamping and die cutting while providing tension for the paper, but also prevent the paper from deforming and breaking in the high-speed paper feeding process, so that the tension, the speed and the length in paper feeding are stably controlled.
As shown in fig. 7, the paper storage device 5 includes a tension controller a51, and a fixed guide roller a52, a movable guide roller C53, and a fixed guide roller D54, which are sequentially wound around the paper, wherein the fixed guide roller a52 is provided with a fixed guide roller B55, and the fixed guide roller a52 and the fixed guide roller B55 cooperate with each other to feed the paper. Fixed guide roller D54 and activity guide roller C53 are located fixed guide roller A52 front and back respectively, activity guide roller C53 is connected with tension controller A51 transmission, activity guide roller C53 makes back and forth motion for fixed guide roller A52 and fixed guide roller D54.
A paper feeding channel for feeding paper backwards is arranged between the fixed guide roller A52 and the fixed guide roller B55, the movable guide roller C53 is used for guiding the paper to be conveyed forwards, the fixed guide roller D54 is used for feeding the paper forwards, and the paper conveying path is as follows: the paper passes through between the fixed guide roller A and the fixed guide roller B from the upper side of the fixed guide roller A around the fixed guide roller A, is clamped by the fixed guide roller A and the fixed guide roller B to be conveyed backwards, then comes out from between the fixed guide roller A and the fixed guide roller B, turns the conveying direction of the paper into forward conveying around the movable guide roller C, and finally is conveyed forwards with the paper carried by the fixed guide roller D.
The movable guide roller C53 moves backwards to realize paper accumulation, and the forward movement is the die cutting paper supply. The tension controller a51 drives the movable guide roller C53 to move backwards, that is, the movable guide roller C53 is provided with a pushing force for pulling paper backwards to store paper. That is to say, what the activity deflector roll C moved backward is the power of cylinder for activity deflector roll C is in keeping away from the state of fixed deflector roll B and holds the paper, and what the activity deflector roll C moved forward is that fixed deflector roll D takes the paper pulling force that activity deflector roll C moved forward when carrying forward, makes activity deflector roll C be close to fixed deflector roll B and sends out the paper that holds, consequently, the transmission power that fixed deflector roll D conveyed the paper must be greater than the backward thrust of cylinder drive activity deflector roll C, pulls activity deflector roll C when guaranteeing that fixed deflector roll D rotates to take the paper to carry forward, makes activity deflector roll C move forward and is close to fixed deflector roll B.
The tension controller A can adopt an air cylinder and can also adopt other power modes.
The displacement of the back-and-forth movement of the movable guide roller C is larger than or equal to the length of the paper fed by the fixed guide roller D at one time, so that the accumulated paper can be guaranteed to be enough for the required amount of die cutting.
The gold stamping and die cutting assembly line equipment further comprises a color code positioner, the color code positioner is arranged on the paper conveying path, in the embodiment, the color code positioner is arranged before the paper enters the gold stamping device, the color code positioner is arranged before the paper enters the die cutting device, and the color code positioner is connected with the power supply of the whole machine. When the color mark positioner detects that the paper deviates, the paper feeding device is immediately stopped, namely, the paper feeding is suspended, so that more unqualified products are prevented from being produced, and larger loss is avoided.
In this embodiment, the color code locator is connected with servo motor B and servo motor D respectively, servo motor B drives fixed guide roller B and rotates, servo motor D drives fixed guide roller D and rotates. When the color mark positioner detects that the paper deviates, the fixed guide roller B and the fixed guide roller D stop rotating.

Claims (7)

1. Gilt cross cutting assembly line equipment, including unwinding device, gilt device, cutting device and sheet output device, its characterized in that, be equipped with between gilt device and the cutting device and hold the paper device, it includes tension controller A and supplies paper and winds fixed deflector roll A, activity deflector roll C and the fixed deflector roll D of establishing in proper order to hold the paper device, fixed deflector roll D and activity deflector roll C locate fixed deflector roll A front and back respectively, activity deflector roll C is connected with tension controller A transmission, back and forth movement is made for fixed deflector roll A and fixed deflector roll D to activity deflector roll C, activity deflector roll C has the thrust of back-pull paper by tension controller A drive, fixed deflector roll D's driving force is greater than the thrust that tension controller A drive activity deflector roll C is backward.
2. The gold stamping and die cutting assembly line equipment as claimed in claim 1, wherein the fixed guide roller A pair roller is provided with a fixed guide roller B, and the fixed guide roller A and the fixed guide roller B are matched with each other to feed paper.
3. The gold stamping and die cutting assembly line equipment as claimed in claim 2, further comprising a color mark positioner, wherein the color mark positioner is arranged on the paper conveying path and is respectively connected with a servo motor B and a servo motor D, the servo motor B drives the fixed guide roller B to rotate, and the servo motor D drives the fixed guide roller D to rotate.
4. The gold stamping and die cutting assembly line equipment as claimed in claim 1, wherein the tension controller A adopts a cylinder, and the movable guide roller C is connected with a cylinder shaft of the cylinder.
5. The gold stamping and die cutting assembly line equipment as claimed in claim 1, wherein the unwinding device comprises a fixed seat, a sliding seat, a coil rack and a coil positioning detector, the sliding seat moves left and right relative to the fixed seat, the coil rack is arranged on the sliding seat, the sliding seat is in transmission connection with a power source A, the coil positioning detector transmits a detected signal to the power source A, and the power source A drives the sliding seat to move left and right.
6. The gold stamping and die cutting assembly line equipment as claimed in claim 1, wherein a deviation correcting device is arranged between the unwinding device and the gold stamping device and between the gold stamping device and the die cutting device, the deviation correcting device comprises a base body, a power source B and a deviation correcting rotating frame, two parallel front rollers and two parallel rear rollers are arranged above the deviation correcting rotating frame, a sliding block is arranged below the deviation correcting rotating frame, a guide rod is arranged on the base body, the sliding block is connected with the guide rod in a sliding fit manner, and the power source B drives the deviation correcting rotating frame to swing left and right.
7. The gold stamping and die cutting assembly line equipment as claimed in claim 6, wherein a preparation paper feeding device is arranged between the unwinding device and the gold stamping device and between the gold stamping device and the paper storage device, the preparation paper feeding device comprises a tension controller B, a fixedly arranged preparation guide roller A and a movably arranged preparation guide roller B, the preparation guide roller B is arranged on the roller frame, the preparation guide roller A and the preparation guide roller B are arranged in a vertically staggered manner, and the tension controller B drives the roller frame to move up and down.
CN201921150107.9U 2019-07-22 2019-07-22 Gold stamping die cutting assembly line equipment Active CN210312744U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921150107.9U CN210312744U (en) 2019-07-22 2019-07-22 Gold stamping die cutting assembly line equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921150107.9U CN210312744U (en) 2019-07-22 2019-07-22 Gold stamping die cutting assembly line equipment

Publications (1)

Publication Number Publication Date
CN210312744U true CN210312744U (en) 2020-04-14

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ID=70124604

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201921150107.9U Active CN210312744U (en) 2019-07-22 2019-07-22 Gold stamping die cutting assembly line equipment

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Country Link
CN (1) CN210312744U (en)

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112172333A (en) * 2020-09-22 2021-01-05 东莞市嘉隆纸品有限公司 Automatic hot stamping, hot pressing and die cutting production line
CN113955561A (en) * 2021-09-18 2022-01-21 浙江君信服饰有限公司 Automatic continuous production equipment for hang tags
CN117003036A (en) * 2023-09-28 2023-11-07 云南欣城防水科技有限公司 Graphene waterproof coiled material pretreatment clamp

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112172333A (en) * 2020-09-22 2021-01-05 东莞市嘉隆纸品有限公司 Automatic hot stamping, hot pressing and die cutting production line
CN112172333B (en) * 2020-09-22 2022-03-11 东莞市嘉隆纸品有限公司 Automatic hot stamping, hot pressing and die cutting production line
CN113955561A (en) * 2021-09-18 2022-01-21 浙江君信服饰有限公司 Automatic continuous production equipment for hang tags
CN117003036A (en) * 2023-09-28 2023-11-07 云南欣城防水科技有限公司 Graphene waterproof coiled material pretreatment clamp
CN117003036B (en) * 2023-09-28 2023-12-01 云南欣城防水科技有限公司 Graphene waterproof coiled material pretreatment clamp

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