WO2014199774A1 - Système de production entièrement automatisé destiné à un cylindre de gravure et procédé de production d'un cylindre de gravure faisant appel à ce système - Google Patents
Système de production entièrement automatisé destiné à un cylindre de gravure et procédé de production d'un cylindre de gravure faisant appel à ce système Download PDFInfo
- Publication number
- WO2014199774A1 WO2014199774A1 PCT/JP2014/063049 JP2014063049W WO2014199774A1 WO 2014199774 A1 WO2014199774 A1 WO 2014199774A1 JP 2014063049 W JP2014063049 W JP 2014063049W WO 2014199774 A1 WO2014199774 A1 WO 2014199774A1
- Authority
- WO
- WIPO (PCT)
- Prior art keywords
- processing chamber
- industrial robot
- gravure cylinder
- gravure
- plate
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Ceased
Links
Images
Classifications
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B41—PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
- B41N—PRINTING PLATES OR FOILS; MATERIALS FOR SURFACES USED IN PRINTING MACHINES FOR PRINTING, INKING, DAMPING, OR THE LIKE; PREPARING SUCH SURFACES FOR USE AND CONSERVING THEM
- B41N1/00—Printing plates or foils; Materials therefor
- B41N1/16—Curved printing plates, especially cylinders
- B41N1/20—Curved printing plates, especially cylinders made of metal or similar inorganic compounds, e.g. plasma coated ceramics, carbides
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B41—PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
- B41C—PROCESSES FOR THE MANUFACTURE OR REPRODUCTION OF PRINTING SURFACES
- B41C1/00—Forme preparation
- B41C1/18—Curved printing formes or printing cylinders
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B41—PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
- B41N—PRINTING PLATES OR FOILS; MATERIALS FOR SURFACES USED IN PRINTING MACHINES FOR PRINTING, INKING, DAMPING, OR THE LIKE; PREPARING SUCH SURFACES FOR USE AND CONSERVING THEM
- B41N1/00—Printing plates or foils; Materials therefor
- B41N1/04—Printing plates or foils; Materials therefor metallic
- B41N1/06—Printing plates or foils; Materials therefor metallic for relief printing or intaglio printing
Definitions
- the present invention relates to an invention of a fully automatic production system for gravure cylinders, and more particularly to a fully automatic production system for gravure cylinders that can be operated unattended even at night.
- Patent Documents 1 to 3 conventionally, a production line for a gravure printing roll has been constituted by a combination of an industrial robot and a stacker crane.
- processing is performed for each of various processing units while chucking a plate-making roll using a cassette type roll chuck rotary conveyance unit with the stacker crane.
- the present invention has been made in view of the current state of the prior art described above, and can produce a gravure cylinder more quickly than before, can save space, and can be operated unattended even at night. Further, it is an object of the present invention to provide a fully automatic production system for a gravure cylinder capable of reducing dust generation between processes.
- a fully automatic manufacturing system for a gravure cylinder is a fully automatic manufacturing system for a gravure cylinder, and a process having a handling area of a first industrial robot that chucks and handles a plate-making roll.
- a chamber A and a processing chamber B having a handling area of a second industrial robot for chucking and handling the plate-making roll, and the processing chamber A and the processing chamber B are connected to each other.
- At least one vacuum film forming apparatus is disposed in the handling area of the first industrial robot or the handling area of the second industrial robot in the processing chamber B, and the handling area of the first industrial robot in the processing chamber A
- At least one processing device selected from a grease device, a grindstone polishing device, an ultrasonic cleaning device, a copper plating device, a developing device, a corrosion device, a resist image removing device, and a paper polishing device is arranged, and the first of the processing chamber B
- at least one of the processing devices not disposed in the processing chamber A is disposed, and the processing devices in the processing chamber A and the processing chamber B are installed.
- the plate base material and the surface of the plate base material provided on the surface of the plate base material by passing the plate-making roll between the first industrial robot and the second industrial robot.
- the copper plating layer on which a number of gravure cells are formed and the copper plating layer on which the gravure cells are formed, nickel, tungsten, chromium, titanium, silver, stainless steel
- the gravure cylinder is manufactured, and the formation process of the base film formation layer and the formation process of the DLC film are performed in the vacuum film formation apparatus.
- the vacuum film forming apparatus only needs to be capable of forming a base film forming layer and forming a DLC film, and any vacuum film forming apparatus for performing sputtering, CVD, plasma CVD, vacuum vapor deposition, or the like can be used. included.
- a vapor phase film forming apparatus that performs film formation using a raw material in a gas phase state is suitable.
- the plate-making roll By passing the plate-making roll between the first industrial robot and the second industrial robot, it can be manufactured more quickly than a conventional gravure cylinder manufacturing line using a stacker crane. . Further, since the plate-making roll is transferred between the first industrial robot and the second industrial robot, there is an advantage that a stacker crane is not required and space can be saved. Furthermore, since a series of processes can be performed automatically based on a predetermined program, there is an advantage that unattended operation is possible even at night. Further, dust generation can be prevented compared to the case where a stacker crane is used.
- the formation process of the underlying film formation layer and the formation process of the DLC film are performed in the vacuum film formation apparatus, the formation process of the DLC film can be performed in a vacuum following the formation process of the underlying film formation layer.
- the surface of the deposited layer is not oxidized. Thereby, the adhesiveness of a DLC film improves.
- two or more vacuum film forming apparatuses are arranged so that the formation process of the underlying film forming layer and the DLC film forming process can be simultaneously performed in each of the vacuum film forming apparatuses. .
- This configuration has the advantage that the processing time can be shortened because the formation process of the underlying film formation layer and the formation process of the DLC film can be performed simultaneously.
- the gravure cylinder manufacturing method of the present invention is a gravure cylinder manufacturing method using the above-described fully automatic gravure cylinder manufacturing system, and includes a step of preparing a plate base material, and a copper plating layer on the surface of the plate base material.
- the gravure cylinder of the present invention is manufactured using a fully automatic manufacturing system of the gravure cylinder.
- a wireless read / write IC tag is attached to the plate-making roll, and the main computer that manages inventory and plate-making controls the records of the IC tag and outputs the necessary signals to each processing device that processes the roll.
- the technique disclosed in Patent Document 8 can be adopted.
- Either one or both of the processing chambers in which the first industrial robot and the second industrial robot are arranged may be a clean room. Thereby, it is possible to further reduce dust generation.
- Gravure cylinders can be manufactured more quickly than before, space can be saved, unmanned operation is possible even at night, and dust generation between processes can be reduced. It has a remarkable effect that it can provide a fully automatic production system for gravure cylinders.
- FIG. 1 is a schematic plan view showing an embodiment of a fully automatic production system for a gravure cylinder according to the present invention.
- FIG. 1 the code
- symbol 10 shows the fully automatic manufacturing system of the gravure cylinder which concerns on this invention.
- the fully automatic manufacturing system 10 is roughly divided into a processing chamber A and a processing chamber B.
- the processing chamber A is further divided into processing chambers C.
- the processing chamber A and the processing chamber B, and the processing chamber A and the processing chamber C are separated by walls 12 and 13 and communicated with each other through a shutter 14 that can be opened and closed.
- reference numeral 16 denotes a first industrial robot, which has a multi-axis robot arm 18 that can turn freely.
- Numeral 20 is a plate making roll
- 22a and 22b are roll stock apparatuses.
- the roll stock apparatus for example, roll stock apparatuses disclosed in Patent Documents 4 to 6 can be used.
- a chuck means 72 is provided at the tip of the robot arm 18, and the plate making roll 20 can be detachably chucked by the chuck means 72.
- reference numeral 30 denotes a second industrial robot, which has a multi-axis robot arm 32 that can turn freely.
- a chuck means 74 is provided at the tip of the robot arm 32, and the plate making roll 20 can be detachably chucked by the chuck means 74.
- Reference numeral 24 denotes a photosensitive film coating apparatus
- reference numeral 26 denotes a laser exposure apparatus.
- a photosensitive film coating device 24 is provided on the laser exposure device 26.
- Conventionally known apparatuses can be applied to these apparatuses, and for example, a photosensitive film coating apparatus and a laser exposure apparatus disclosed in Patent Documents 4 to 6 can be used.
- Reference numeral 50 denotes a roll relay mounting table for placing the plate-making roll 20 for relay, and is provided at a position where the handling area of the first industrial robot 16 and the handling area of the second industrial robot 30 overlap.
- Reference numeral 70 denotes an ultrasonic cleaning device with a drying function for performing ultrasonic cleaning processing and drying processing on the plate-making roll 20, and the ultrasonic cleaning device 70 with a drying function is close to the roll relay mounting table 50. Is provided.
- the ultrasonic cleaning device 70 includes a storage tank for storing cleaning water and an ultrasonic vibrator provided at a lower portion of the storage tank, and vibrates the cleaning water by the ultrasonic vibration of the ultrasonic vibrator. It is an apparatus that can be cleaned.
- the ultrasonic cleaning device 70 with a drying function is further provided with a drying function.
- the ultrasonic cleaning device 70 with a drying function can perform ultrasonic cleaning and drying as necessary for each process.
- the fully automatic gravure cylinder manufacturing system 10 is electrically controlled by a computer 28, and the first industrial robot 16 and the second industrial robot 30 are also controlled by the computer 28.
- Reference numeral 42 denotes a developing device.
- a developing device disclosed in Patent Documents 4 to 6 can be used.
- Numeral 38 is a degreasing apparatus
- numeral 40 is a copper plating apparatus.
- a degreasing device 38 is provided on the copper plating device 40.
- Conventionally known devices can be applied to these devices.
- electrolytic degreasing devices and copper plating devices as disclosed in Patent Documents 4 to 6 can be used.
- Numeral 44 is a corrosion apparatus
- numeral 46 is a resist stripping apparatus.
- a resist stripping device 46 is provided on the corrosion device 44.
- Conventionally known apparatuses can be applied to these apparatuses.
- a corrosion apparatus and a resist stripping apparatus disclosed in Patent Documents 4 to 6 can be used.
- Reference numerals 48a and 48b denote vacuum film forming apparatuses, which are only required to be capable of forming a base film forming layer and a DLC film, and perform vacuum formation for performing sputtering, CVD, plasma CVD, vacuum deposition, and the like. Any membrane device is included.
- the vacuum film forming apparatuses 48a and 48b an example of a gas phase film forming apparatus that forms a film using a raw material in a gas phase state is shown.
- the vacuum film forming apparatuses 48a and 48b can accommodate a plurality of plate-making rolls 20 in an upright state, and the plurality of plate-making rolls 20 can be processed simultaneously.
- an ultrasonic cleaning device may be provided in the handling area of the second industrial robot 30 as necessary.
- the ultrasonic cleaning apparatus has a storage tank for storing cleaning water and an ultrasonic vibrator provided at a lower portion of the storage tank, and vibrates the cleaning water by ultrasonic vibration of the ultrasonic vibrator. It is an apparatus that can be cleaned.
- reference numeral 21 is a paper polishing apparatus for performing paper polishing
- reference numeral 34 is a grindstone polishing apparatus.
- a conventionally known apparatus can be applied to the grindstone polishing apparatus 34.
- a grindstone polishing apparatus disclosed in Patent Documents 4 to 6 can be used.
- the paper polishing device 21 is provided on the grindstone polishing device 34.
- a paper polishing apparatus as disclosed in Patent Documents 4 to 6 can be used.
- the processing chamber A and the processing chamber C are communicated with each other via the shutter 14, and the grindstone polishing device 34 and the paper polishing device 21 are arranged in the handling area of the first industrial robot 16.
- the processing chamber A is a clean room.
- the processing chamber A and the processing chamber B can each be a clean room as required.
- Doors 58 and 60 are provided on the wall 56 of the processing chamber A, and a plate-making roll made of a plate is taken out or a new plate-making roll (plate base material) is put therein.
- the engraved gravure cylinder is placed on one of the roll stock devices 22a and 22b and then carried out.
- the plate making roll from which plate making will be performed is placed on the other roll stock device.
- a computer 28 is placed outside the processing chamber A. Various computers are checked and managed, various programs are set, and the gravure cylinder fully automatic manufacturing system 10 is controlled. .
- the plate making roll 20 is placed on the roll stock device 22a, and the gravure cylinder 64 after plate making is placed on the roll stock device 22b.
- the fully automatic gravure cylinder manufacturing system 10 of the present invention chucks the processing chamber A having the handling area of the first industrial robot 16 that chucks and handles the plate-making roll 20 and the plate-making roll.
- a processing chamber B having a handling area for the second industrial robot 30 to be handled, and the processing chamber A and the processing chamber B are connected to each other, and the first industrial robot 16 in the processing chamber A is handled.
- At least one vacuum film forming device 48a, 48b is arranged in the area or the handling area of the second industrial robot 30 in the processing chamber B, and the roll is placed in the handling area of the first industrial robot 16 in the processing chamber A.
- the apparatus 70, the grindstone polishing apparatus 34, and the paper polishing apparatus 21 are arranged, and in the handling area of the second industrial robot in the processing chamber B, the processing apparatus that is not arranged in the processing chamber A among the processing apparatuses.
- a degreasing device 38, a copper plating device 40, a developing device 42, a corrosion device 44, and a resist image removing device 46 are arranged, and the processing devices in the processing chamber A and the processing chamber B can be installed and removed.
- the plate making roll 20 is transferred between the first industrial robot 16 and the second industrial robot 30, thereby providing a plate base material and a number of gravure provided on the surface of the plate base material.
- a gravure cylinder 64 having a base film-forming layer made of at least one material selected from the group consisting of nickel, cobalt, indium, tin, silicon, and tantalum, and a DLC film covering the surface of the base film-forming layer
- the under film forming layer forming process and the DLC film forming process are performed.
- the base film-forming layer is at least one selected from the group consisting of nickel, tungsten, chromium, titanium, silver, stainless steel, iron, copper, aluminum, cobalt, indium, tin, silicon, and tantalum. Any material can be applied as long as it is made of a material.
- the base film forming process and the DLC film forming process are simultaneously performed in each of the vacuum film forming apparatuses 48a and 48b. It is possible to do.
- the first industrial robot 16 chucks the plate making roll 20 placed on one of the roll stock devices 22 a and 22 b, places it on the roll relay placement table 50, and delivers it to the second industrial robot 30.
- the plate making roll 20 is chucked by the second industrial robot 30, and is carried to the degreasing device 38 to release the plate making roll 20 and set in the degreasing device 38.
- the second industrial robot 30 chucks the plate making roll 20 and carries it to the copper plating apparatus 40 to release the plate making roll 20 and set it in the copper plating apparatus 40.
- the second industrial robot 30 chucks the plate making roll 20 and carries it to the roll relay mounting table 50, and delivers it to the first industrial robot 16.
- the first industrial robot 16 chucks the plate making roll 20 and carries it to the grindstone polishing apparatus 34 to release the plate making roll 20 and set it on the grindstone polishing apparatus 34.
- the first industrial robot 16 chucks the plate making roll 20 and carries it to the ultrasonic cleaning device 70 to release the plate making roll 20 and set it in the ultrasonic cleaning device 70. To do.
- the first industrial robot 16 chucks the plate making roll 20 and carries it to the photosensitive film coating apparatus 24 to release the plate making roll 20 and releases the photosensitive film coating apparatus 24.
- the first industrial robot 16 chucks the plate making roll 20 and carries it to the laser exposure apparatus 26 to release the plate making roll 20 and set it in the laser exposure apparatus 26. To do.
- the first industrial robot 16 chucks the plate making roll 20 and places it on the roll relay mounting table 50 and delivers it to the second industrial robot 30.
- the plate-making roll 20 is chucked by the second industrial robot 30 and conveyed to the developing device 42, and the plate-making roll 20 is released and set on the developing device 42.
- the second industrial robot 30 chucks the plate-making roll 20 and carries it to the corrosion device 44 to release the plate-making roll 20 and set it in the corrosion device 44.
- the second industrial robot 30 chucks the plate making roll 20 and carries it to the resist peeling apparatus 46 to release the plate making roll 20 and set it in the resist peeling apparatus 46. .
- the second industrial robot 30 chucks the plate-making roll 20 and carries it to an ultrasonic cleaning device (not shown) to release the plate-making roll 20 and ultrasonically clean Set in the device.
- the second industrial robot 30 chucks the plate making roll 20 and carries it to the vacuum film forming apparatus 48a to release the plate making roll 20 and release the plate forming roll 20a. Set to. And the formation process of a base film-forming layer is performed with the vacuum film-forming apparatus 48a.
- the second industrial robot 30 chucks the plate making roll 20 and carries it to the vacuum film forming apparatus 48b to release the plate making roll 20.
- the vacuum film forming apparatus 48b is set. Then, the DLC film is formed by the vacuum film forming apparatus 48b.
- the plate making roll 20 after the formation process of the base film formation layer or the DLC film formation process is transferred to the outside of the vacuum film formation apparatus 48a or the vacuum film formation apparatus 48b by the second industrial robot 30. Then, the next plate making roll 20 to be subjected to the formation process of the underlying film formation layer or the formation process of the DLC film is sequentially transferred into the vacuum film formation apparatuses 48a and 48b. In this way, the formation process of the underlying film formation layer and the formation process of the DLC film are sequentially performed simultaneously.
- the second industrial robot 30 chucks the plate making roll 20 and places it on the roll relay mounting table 50, and delivers it to the first industrial robot 16.
- the first industrial robot 16 chucks the plate making roll 20 and carries it to the paper polishing apparatus 21 to release the plate making roll 20 and set it on the paper polishing apparatus 21.
- the gravure cylinder 64 is formed and placed on the roll stock apparatus 22b in the illustrated example.
- an industrial robot as disclosed in Patent Documents 1 to 6 is used to carry the plate making roll 20 to each processing apparatus. Then, the plate making roll 20 is separated and set in the processing apparatus, and the plate making roll is rotated by the driving means provided in the processing apparatus.
- the plate making roll 20 is gripped by carrying the plate making roll 20 to each processing apparatus using the industrial robot with driving means disclosed in Patent Document 7. It is good also as a structure which is set to this processing apparatus as it is, and a plate-making roll is rotated by the drive means provided in this industrial robot.
- Example 1 The gravure cylinder (gravure plate making roll) was manufactured as follows using the fully automatic manufacturing system of the gravure cylinder of the structure mentioned above.
- An aluminum hollow roll (plate base material) having a circumference of 600 mm and a surface length of 1100 mm is mounted on a copper plating bath, the plating solution is overflowed, and the aluminum hollow roll is completely submerged to be 30 A / dm 2 , 7.0 V of 40 ⁇ m copper.
- a plating layer was formed. The plating time was 8 minutes, and the surface of the plating was free of spots and pits, and a uniform copper plating layer was obtained.
- the copper plating layer formed above is coated with a photosensitive film with a photosensitive film coating device, the image is laser exposed and developed, a resist image is formed, and then wet etching is performed with a corrosive device to engrave an image composed of gravure cells. Thereafter, the resist image was removed to form a printing plate. At this time, a plate-making roll having a gravure cell depth of 10 ⁇ m was produced.
- Titanium sample solid titanium target, atmosphere: argon gas atmosphere, deposition temperature: 200 to 300 ° C., deposition time: 3 minutes, deposition thickness: 0.1 ⁇ m.
- a DLC film was formed on the upper surface of the underlying film formation layer by a CVD method.
- the CVD conditions are as follows.
- a DLC layer having a thickness of 2 ⁇ m was formed in an argon / hydrogen gas atmosphere, toluene as a source gas, a film formation temperature of 80 to 120 ° C., and a film formation time of 60 minutes. In this way, a gravure cylinder (gravure plate making roll) was completed.
- Example 2 An experiment similar to that of Example 1 was performed except that a tungsten sample, a nickel sample, a silicon sample, a chromium sample, a tantalum sample, or a cobalt sample was used instead of the titanium sample, and it was confirmed that almost the same result was obtained. did.
Landscapes
- Engineering & Computer Science (AREA)
- Manufacturing & Machinery (AREA)
- Chemical & Material Sciences (AREA)
- Ceramic Engineering (AREA)
- Inorganic Chemistry (AREA)
- Manufacture Or Reproduction Of Printing Formes (AREA)
- Printing Plates And Materials Therefor (AREA)
Abstract
L'invention concerne un système de production entièrement automatisé destiné à un cylindre de gravure, selon lequel des cylindres de gravure peuvent être produits plus rapidement que par le passé, les exigences d'espace peuvent être réduites, un fonctionnement sans personnel est possible même pendant la nuit, et la production de poussière sur l'ensemble du procédé peut être réduite. Le système possède une chambre de traitement (A) possédant une zone de manipulation pour un premier robot industriel qui serre et manipule un rouleau de photogravure, et une chambre de traitement (B) possédant une zone de manipulation pour un second robot industriel qui serre et manipule un rouleau de photogravure. La chambre de traitement (A) et la chambre de traitement (B) communiquent, et un dispositif de dépôt de film sous vide est situé dans au moins une parmi la zone de manipulation pour le premier robot industriel dans la chambre de traitement (A) et la zone de manipulation pour le second robot industriel dans la chambre de traitement (B). Un procédé pour former une couche de film déposé de base et un procédé pour former un film de carbone sous forme de diamant amorphe sont effectués par le dispositif de dépôt de film sous vide.
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| JP2014543391A JPWO2014199774A1 (ja) | 2013-06-11 | 2014-05-16 | グラビアシリンダーの全自動製造システム及びそれを用いたグラビアシリンダーの製造方法 |
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| JP2013-122567 | 2013-06-11 | ||
| JP2013122567 | 2013-06-11 |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| WO2014199774A1 true WO2014199774A1 (fr) | 2014-12-18 |
Family
ID=52022075
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| PCT/JP2014/063049 Ceased WO2014199774A1 (fr) | 2013-06-11 | 2014-05-16 | Système de production entièrement automatisé destiné à un cylindre de gravure et procédé de production d'un cylindre de gravure faisant appel à ce système |
Country Status (2)
| Country | Link |
|---|---|
| JP (1) | JPWO2014199774A1 (fr) |
| WO (1) | WO2014199774A1 (fr) |
Cited By (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| WO2021182023A1 (fr) * | 2020-03-09 | 2021-09-16 | 株式会社シンク・ラボラトリー | Système de fabrication de base de plaque d'impression entièrement automatisée et procédé de fabrication de base de plaque d'impression |
Citations (4)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| JPH04290697A (ja) * | 1991-03-18 | 1992-10-15 | Sekisui Chem Co Ltd | 導電線の表面処理方法 |
| JP2000287913A (ja) * | 1999-04-09 | 2000-10-17 | Olympus Optical Co Ltd | 内視鏡装置 |
| WO2008133251A1 (fr) * | 2007-04-23 | 2008-11-06 | Think Laboratory Co., Ltd. | Installation de photogravure |
| WO2011125926A1 (fr) * | 2010-04-06 | 2011-10-13 | 株式会社シンク・ラボラトリー | Système de traitement pour la fabrication d'une plaque de gravure entièrement automatique |
Family Cites Families (4)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| JPH03225995A (ja) * | 1990-01-31 | 1991-10-04 | Hitachi Chem Co Ltd | 配線板 |
| JPH06295475A (ja) * | 1993-04-07 | 1994-10-21 | Canon Inc | 光記録媒体製造用スタンパーの製造方法 |
| JP4475864B2 (ja) * | 2002-09-11 | 2010-06-09 | 大日本印刷株式会社 | 混流型製造ラインシステム |
| JP2010282672A (ja) * | 2009-06-02 | 2010-12-16 | Fujifilm Corp | 光ディスク原盤、光ディスク原盤の製造方法、及び光ディスクの製造方法 |
-
2014
- 2014-05-16 JP JP2014543391A patent/JPWO2014199774A1/ja active Pending
- 2014-05-16 WO PCT/JP2014/063049 patent/WO2014199774A1/fr not_active Ceased
Patent Citations (4)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| JPH04290697A (ja) * | 1991-03-18 | 1992-10-15 | Sekisui Chem Co Ltd | 導電線の表面処理方法 |
| JP2000287913A (ja) * | 1999-04-09 | 2000-10-17 | Olympus Optical Co Ltd | 内視鏡装置 |
| WO2008133251A1 (fr) * | 2007-04-23 | 2008-11-06 | Think Laboratory Co., Ltd. | Installation de photogravure |
| WO2011125926A1 (fr) * | 2010-04-06 | 2011-10-13 | 株式会社シンク・ラボラトリー | Système de traitement pour la fabrication d'une plaque de gravure entièrement automatique |
Cited By (7)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| WO2021182023A1 (fr) * | 2020-03-09 | 2021-09-16 | 株式会社シンク・ラボラトリー | Système de fabrication de base de plaque d'impression entièrement automatisée et procédé de fabrication de base de plaque d'impression |
| JPWO2021182023A1 (fr) * | 2020-03-09 | 2021-09-16 | ||
| KR20220136414A (ko) | 2020-03-09 | 2022-10-07 | 가부시키가이샤 씽크. 라보라토리 | 판 모재 전자동 제조 시스템 및 판 모재 제조 방법 |
| CN115190842A (zh) * | 2020-03-09 | 2022-10-14 | 株式会社新克 | 版母材全自动制造系统以及版母材的制造方法 |
| JP7623012B2 (ja) | 2020-03-09 | 2025-01-28 | 株式会社シンク・ラボラトリー | 版母材全自動製造システム及び版母材の製造方法 |
| TWI878474B (zh) * | 2020-03-09 | 2025-04-01 | 日商新克股份有限公司 | 附銅電鍍層之鋁中空輥的全自動製造系統以及附銅電鍍層之鋁中空輥的製造方法 |
| KR102860705B1 (ko) * | 2020-03-09 | 2025-09-17 | 가부시키가이샤 씽크. 라보라토리 | 판 모재 전자동 제조 시스템 및 판 모재 제조 방법 |
Also Published As
| Publication number | Publication date |
|---|---|
| JPWO2014199774A1 (ja) | 2017-02-23 |
Similar Documents
| Publication | Publication Date | Title |
|---|---|---|
| JP5757667B2 (ja) | 全自動グラビア製版用処理システム | |
| JP5834012B2 (ja) | 全自動グラビア製版用処理システム | |
| JP5086668B2 (ja) | グラビア製版用ロボット | |
| JP6042029B2 (ja) | モジュール式処理ユニット及びそれを用いたグラビアシリンダーの全自動製造システム | |
| WO2014199774A1 (fr) | Système de production entièrement automatisé destiné à un cylindre de gravure et procédé de production d'un cylindre de gravure faisant appel à ce système | |
| KR100537308B1 (ko) | 턴테이블식의 로울적재장치, 그라비아인쇄용 피제판로울의도금공장 | |
| JP5004362B2 (ja) | グラビア製版ロールの全自動製造システム | |
| JPWO2015076180A1 (ja) | パターン付ロールの製造方法 | |
| JP2004232028A (ja) | グラビア印刷用被製版ロールのメッキ工場及びグラビア製版工場 | |
| JP6297327B2 (ja) | 連続めっき用パターン付ロール及びその製造方法 | |
| JP4522766B2 (ja) | 感光膜塗布装置及び製版工場 | |
| JPWO2008133251A1 (ja) | グラビア製版工場 | |
| JP7623012B2 (ja) | 版母材全自動製造システム及び版母材の製造方法 | |
| JPS6034020Y2 (ja) | 蒸着用メタルマスク | |
| JP2014056033A (ja) | パターン付ロール全自動製造システム | |
| CN104220647A (zh) | 连续镀覆用图案形成滚筒及其制造方法 | |
| JP4606602B2 (ja) | グラビア印刷用被製版ロールの処理方法 |
Legal Events
| Date | Code | Title | Description |
|---|---|---|---|
| ENP | Entry into the national phase |
Ref document number: 2014543391 Country of ref document: JP Kind code of ref document: A |
|
| 121 | Ep: the epo has been informed by wipo that ep was designated in this application |
Ref document number: 14811210 Country of ref document: EP Kind code of ref document: A1 |
|
| NENP | Non-entry into the national phase |
Ref country code: DE |
|
| 122 | Ep: pct application non-entry in european phase |
Ref document number: 14811210 Country of ref document: EP Kind code of ref document: A1 |