WO2002014159A1 - Dispositif de collage de film - Google Patents

Dispositif de collage de film Download PDF

Info

Publication number
WO2002014159A1
WO2002014159A1 PCT/JP2000/005431 JP0005431W WO0214159A1 WO 2002014159 A1 WO2002014159 A1 WO 2002014159A1 JP 0005431 W JP0005431 W JP 0005431W WO 0214159 A1 WO0214159 A1 WO 0214159A1
Authority
WO
WIPO (PCT)
Prior art keywords
label
sticking
outer peripheral
peripheral surface
drum
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
Application number
PCT/JP2000/005431
Other languages
English (en)
Japanese (ja)
Inventor
Yoshinori Hotta
Hisataka Takada
Tatsuya Masuda
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Fuji Seal Inc
Original Assignee
Fuji Seal Inc
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Priority to JP03367199A priority Critical patent/JP4152030B2/ja
Application filed by Fuji Seal Inc filed Critical Fuji Seal Inc
Priority to PCT/JP2000/005431 priority patent/WO2002014159A1/fr
Publication of WO2002014159A1 publication Critical patent/WO2002014159A1/fr
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

Links

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65CLABELLING OR TAGGING MACHINES, APPARATUS, OR PROCESSES
    • B65C9/00Details of labelling machines or apparatus
    • B65C9/20Gluing the labels or articles
    • B65C9/24Gluing the labels or articles by heat
    • B65C9/25Gluing the labels or articles by heat by thermo-activating the glue
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65CLABELLING OR TAGGING MACHINES, APPARATUS, OR PROCESSES
    • B65C3/00Labelling other than flat surfaces
    • B65C3/06Affixing labels to short rigid containers
    • B65C3/08Affixing labels to short rigid containers to container bodies
    • B65C3/10Affixing labels to short rigid containers to container bodies the container being positioned for labelling with its centre-line horizontal
    • B65C3/12Affixing labels to short rigid containers to container bodies the container being positioned for labelling with its centre-line horizontal by rolling the labels onto cylindrical containers, e.g. bottles
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65CLABELLING OR TAGGING MACHINES, APPARATUS, OR PROCESSES
    • B65C9/00Details of labelling machines or apparatus
    • B65C9/08Label feeding
    • B65C9/18Label feeding from strips, e.g. from rolls
    • B65C9/1803Label feeding from strips, e.g. from rolls the labels being cut from a strip
    • B65C9/1815Label feeding from strips, e.g. from rolls the labels being cut from a strip and transferred by suction means
    • B65C9/1819Label feeding from strips, e.g. from rolls the labels being cut from a strip and transferred by suction means the suction means being a vacuum drum

Definitions

  • the present invention relates to a film sticking apparatus for transferring a heat-sensitive adhesive film conveyed to a sticking position to a heated metal can by transferring the metal can to a sticking position while heating the metal can.
  • the labeling device 70 is a rotary cutter 71a that cuts a long strip-shaped label-forming base material M made of a synthetic resin film into a predetermined length to form a label L, and transports the label L to a delivery position ⁇ .
  • the cutting / conveying means 71 comprising the conveying rolls 71b and the label L conveyed to the delivery position by the cutting / conveying means 71 are received at the delivery position, and the label L is sucked and held on the outer peripheral surface.
  • the metal passes from the can supply position r to the can discharging position 5 through the attaching position 3 It has a mandrel 73 for transporting the can C, and the metal can C is used for the label L by being heated during the transport from the can supply position r to the application position / 3.
  • the heated metal can C is pressed to the label L sucked and held on the outer peripheral surface of the application drum 72 at the application position 3, and is rotated while rotating.
  • the label L is moved by a predetermined distance along the outer It is to be attached to the outer peripheral surface of the body of can C.
  • the label is attached to the metal can C while pressing the outer peripheral surface of the body of the metal can C over the entire length of the label L at the attaching position / 3.
  • the temperature of the metal can C at the application position / 3 was increased. It is possible to increase the pressing force of metal can C against label L, but if the temperature of metal can C is too high, label L will soften, or if the pressing force of metal can C is too high, the mandrel will increase. There will be new problems, such as the hindrance of smooth driving of 73. Therefore, it is impossible to improve the adhesion of the label L only by the temperature and the pressing force of the metal can C. In the case of a labeling device that operates at high speed, it is necessary to secure sufficient adhesive strength of the label L after all. It is not possible at present.
  • an object of the present invention is to provide a film sticking apparatus which can firmly adhere a film to a metal can even when the film is stuck to the metal can at high speed. Disclosure of the invention
  • the present invention provides a metal can inserted into a mandrel, while heating the metal can, transferring the metal can to a sticking position, and transferring the heat-sensitive adhesive film transferred to the sticking position to the metal can.
  • pressurized body is installed along the mandrel movement path after the sticking position Then, the film adhered to the metal can at the application position is pressed against the metal can by the pressurizing body.
  • the film stuck on the metal can at the sticking position is pressed again to the metal can by the pressing body, so that the film is stuck at the sticking position. Even if adhesion failure occurs during re-attachment, it is possible to secure sufficient adhesive strength by re-pressing with a pressing body thereafter.
  • FIG. 1 is a front view showing a preferred embodiment of a labeling device (film sticking device) according to the present invention
  • FIG. 2 is a schematic configuration diagram showing a cutting and conveying means and a delivery drum in the above labeling device.
  • FIG. 3 is a partially enlarged view showing the delivery drum in the labeling device of the above
  • FIG. 4 is a diagram conceptually showing a state of the transfer of the label from the delivery drum to the attaching drum in the same labeling device.
  • FIG. 6 is a schematic configuration diagram showing a conventional labeling device (film sticking device).
  • a labeling device 1 which is an embodiment of a film sticking device shown in FIG. 1 is a long band-shaped label-forming base material in which heat-sensitive adhesive labels (hereinafter, referred to as labels) of a predetermined length are continuously connected. While forming a label of a predetermined length by sequentially cutting M at a cutting position P1, the label is transferred to a predetermined label sticking position P4.
  • the aluminum label can be wrapped around the outer circumference of the body of C in order, and the label is thin, about 12 wm thick, and has no waist.
  • the labeling apparatus 1 is configured to supply a long label-forming base material M wound in a roll shape to a cutting position P 1 continuously.
  • Feed roller 10 and the label forming substrate M supplied by the feed roller 10 are sequentially cut at a predetermined cutting pitch at a cutting position P 1 while being conveyed to a first delivery position P 2.
  • Cutting / conveying means 20 for forming a label by means of labeling; label applying means 40 for applying a label L to the outer peripheral surface of the body of the aluminum can C at the label applying position P4; and label forming by the cutting / conveying means 20.
  • a delivery drum 30 that receives the label L cut from the base material M at the first delivery position P2 and delivers it to the label attaching means 40 at the second delivery position P3, and an aluminum can to the label attaching means 40 C can supply means 50 for supplying C; It comprises a can discharging means 60 for discharging the aluminum can C to which the label L has been attached by the bell attaching means 40.
  • the cutting and conveying means 20 has a cutting blade 21 on its outer peripheral surface. a, and the label forming substrate M supplied by the feed roller 10 is sucked and held on the outer peripheral surface to be conveyed to the first delivery position P 2 and the rotary cutter 21 is connected to the rotary cutter 21. And a cutting / conveying roll 22 for sequentially cutting the label-forming base material M into a predetermined length by the cooperative action.
  • the cutting / conveying roll 22 includes a roll main body 23 that is rotationally driven by a driving means (not shown), and a fixed portion with which the roll main body 23 is slidably contacted.
  • a plurality of through holes 23 a are formed at regular intervals in the circumferential direction on the outer peripheral surface of the roll main body 23, and the fixing portion has a contact surface with the roll main body 23.
  • a suction groove 24 a connected to suction means (not shown) communicating with the through hole 23 a from the cutting position P 1 to just before the first delivery position P 2, and a first delivery position P 2, a discharge groove 24b connected to the discharge means (not shown) is formed to communicate with the through hole 23a.
  • the label-forming base material M supplied to the cutting position P 1 is sucked and held on the outer peripheral surface of the rotating (rotating) roll body 23 by the suction action of the suction groove 24 a, and the first delivery is performed. It is transported to position P2.
  • the through hole 23a is disconnected from the suction groove 24a and then communicates with the discharge groove 24b, so the suction is temporarily released.
  • air is discharged from the outer peripheral surface of the roll main body 23 by the discharge action of the discharge grooves 24 b, and the label-forming base material M, which has been suction-held on the outer peripheral surface of the roll main body 23, is removed.
  • the transfer drum 30 is forcibly pressed against the outer peripheral surface of the delivery drum 30 described later, and is suction-held on the outer peripheral surface of the delivery drum 30.
  • the label is formed by the rotary cutter 21 and the cutting / conveying roll 22.
  • the label L is formed by cutting the bell forming base material M, and the formed label L is delivered to the delivery drum 30.
  • the delivery drum 30 has an outer peripheral surface approaching the outer peripheral surface of the cutting / conveying roll 22 at the first delivery position P2 and the label attaching means 4 at the second delivery position P3. This is installed so as to be close to the outer peripheral surface of the drum 4 ⁇ , and rotates (rotates) in a direction opposite to that of the cutting transport roll 22 at a peripheral speed larger than that of the cutting transport roll 22. I have.
  • the delivery drum 30 is composed of a drum main body 31, which is driven to rotate by driving means (not shown), and a fixed portion 33, which the drum main body 3 1 slidably contacts. Good slipperiness is secured by applying Teflon coating to the outer peripheral surface of 31.
  • the peripheral speed is higher than that of the cut-off conveyance roll 22.
  • the label forming base material M is pulled by the large delivery drum 30.
  • the delivery drum 30 has a good slipperiness on its outer peripheral surface.
  • the label forming substrate M sucked and held on the outer peripheral surface can easily slide on the outer peripheral surface. Therefore, no excessive tension is applied to the label-forming substrate M between the time when the label-forming substrate M is delivered to the delivery drum 30 and the time when the label-forming substrate M is cut off, and the tension is applied to the formed label L. No wrinkles occur.
  • the drum main body 31 is formed with a large number of through holes 32 opened to the outer peripheral surface thereof so as to be aligned at regular intervals in the circumferential direction and the width direction of the outer peripheral surface.
  • the plurality of through-holes 32 are open to the contact surface with the fixing portion 33 in a state where they are communicated with each other.
  • the through hole 32 is located at a position where it comes into contact with the leading end of the label forming base material M (label L) delivered at the first delivery position P2. And a suction hole 3 2b formed at other positions.
  • the suction and discharge hole 3 2a is formed in the drum main body 3 1.
  • the suction hole 32b is formed in a state in which the drum body 31 is inclined forward by 30 degrees with respect to the radial direction of the drum body 31 (moving direction front of the label L). It is formed along the radial direction of.
  • the fixing portion 33 includes a suction / discharge hole 32 a and a suction hole 32 on a contact surface with the drum main body 31 from a first delivery position P2 to a position just before a second delivery position P3.
  • the suction groove 3 3a communicating with the suction groove 3 3a and the discharge groove 3 3b communicating only with the suction and discharge hole 3 2a at the second delivery position P3 are formed.
  • 3b is connected to suction means and discharge means (not shown).
  • the label L delivered from the cutting / transporting means 20 at the first delivery position P2 is sucked and held on the outer peripheral surface of the drum main body 31 by the suction action of the suction groove 33a.
  • the suction is once released at the second transfer position P3, and as described above, the suction and discharge hole 32a communicates with the discharge groove 33b to form the suction and discharge hole 32a.
  • Air is discharged from the outer peripheral surface of the drum body 31 via the.
  • the leading end of the label L sucked and held on the outer peripheral surface of the drum body 31 is separated from the outer peripheral surface and is forcibly pressed against the outer peripheral surface of the sticking drum.
  • the suction / discharge holes 32 a are formed so as to be inclined by 30 degrees toward the front in the movement direction of the drum body 3 ⁇ , so that the air discharged at the second delivery position P 3 Is discharged toward the front side in the moving direction of the label L as shown in FIG. Therefore, as shown in the figure, the air blown to the label L is hard to wrap around the rear side in the moving direction of the label L, and the label to be delivered is a thin and rigid label. Also During the delivery, the label L is delivered so that the leading end of the label L does not become loose and passes on a straight line connecting the outer peripheral surface of the delivery drum 30 and the outer peripheral surface of the attaching drum 41. . As a result, the label L is reliably delivered to the predetermined position of the affixing drum 41, and the delivered label is not sucked and held in a state where the leading end is partially lifted.
  • the forming angle (air discharging angle) of the suction / discharge holes 32a is set to 30 degrees with respect to the radial direction of the delivery drum 30.
  • Air discharge angle may be appropriately set within a range of 20 to 60 degrees, more preferably 30 to 45 degrees. If the forming angle is smaller than 20 degrees, the sagging prevention effect is not exhibited, and if the forming angle is larger than 60 degrees, the label L cannot be smoothly delivered to the attaching drum 41. In the above, air is blown only at the leading end of the label, but it is also possible to blow air over the entire length from the leading end to the trailing end of the label.
  • the label affixing means 40 sucks and holds the label L delivered at the second delivery position P3 on the outer peripheral surface and transports the label L to the affixing position P4.
  • the drum 41 a radiant heat heater (near infrared heater) 42 for preliminarily heating the label L while being transported by the sticking drum 41, and the can supply means 50 at the can supply position P5.
  • a radiant heat heater near infrared heater
  • the sticking drum 41 is rotated by a driving means (not shown).
  • the drum main body 41 a (see FIG. 2) and the drum main body 41 a slides.
  • the drum body 41a is covered with an elastic member such as rubber.
  • the drum body 41 a is arranged such that a large number of suction holes 4 ⁇ b opened on the outer peripheral surface thereof are arranged at regular intervals in the circumferential direction and the width direction of the outer peripheral surface. It is formed (see FIG. 2), and a plurality of suction holes 41 b constituting each row of holes in the width direction are open to the contact surface with the fixing portion in a state where they are communicated with each other.
  • the fixing portion has a suction groove (not shown) communicating with the suction hole 41b from the second delivery position P3 to the sticking position P4 on a contact surface with the drum body 41a.
  • This suction groove is connected to suction means (not shown). Therefore, the label L delivered from the delivery drum 30 at the second delivery position P3 is transported to the application position P4 while being suction-held on the outer peripheral surface of the drum body 41a.
  • the mandrel 43 moves while rotating on a circular orbit passing through a can supply position P5, a sticking position P4, and a can discharge position P6 by the rotational driving force of a driving means (not shown).
  • the aluminum can C inserted at the can supply position P5 is transported to the sticking position P4.At the sticking position P4, the rotating aluminum can C is sucked and held on the outer peripheral surface of the sticking drum 41. A predetermined distance along the outer circumferential surface of the sticking drum 41 while pressing against the label L.
  • the aluminum radiant heater 44 is configured to transfer the aluminum can C to the can discharge position P 6 after attaching a label to the outer peripheral surface of the body of the aluminum can c by moving the radiant heat heater 44.
  • Each of the mandrels 43 is supported by a support member 43a such that a heating surface of the mandrel 43 opposes an outer peripheral surface of the mandrel 43 inside the rotation orbit of the mandrel 43. In conjunction with 3, it moves along a circular path passing through the can supply position P5, the sticking position P4, and the can discharge position P6.
  • the radiant heat heater 45 is disposed along the movement path of the mandrel 43 so that its heating surface faces the outer peripheral surface of the mandrel 43 between the can supply position P5 and the sticking position P4.
  • the aluminum can C inserted into the mandrel 43 is heated from outside the movement path of the mandrel 43.
  • the radiant heater 44 heats the mandrel 43 so that the mandrel 43 is heated. 43 is heated, and at the can supply position P5, the aluminum can C is fitted into the heated mandrel 43, whereby the heat of the mandrel 43 is transferred to the aluminum can C, and the aluminum can C C is heated.
  • the aluminum can C is transported from the can supply position P5 to the sticking position P4 with the aluminum can C inserted into the mandrel 43, the aluminum can C is radiated by the radiant heaters 44, 45 from two directions. The temperature is further increased by direct heating, and the aluminum can C is supplied to the application position P4 in a state where the temperature is raised to a predetermined application temperature.
  • the radiant heat heater 4 4 directly heats the label L attached to the aluminum can C.
  • the aluminum can C and the label L affixed to the aluminum can C are radiant heaters 44, There is no partial heating by 45, and aluminum can C and label L are always heated uniformly.
  • the guide member 46 is formed by an elastic member such as rubber disposed outside the mandrel 43 along the rotation orbit of the mandrel 43 between the attaching position P4 and the can discharging position P6.
  • the pressurized plate 46a formed and a heater 46b for heating the pressurized plate 46a, and the aluminum can C to which the label L is stuck at the sticking position P4 are Before reaching the can discharge position P6, the label L on the aluminum can C can be repressurized by moving while rotating while being pressed against the heated pressure plate 46a. Done. As described above, the label is continuously heated by the radiant heat heater 44 moving together with the mandrel 43 between the sticking position P4 and the can discharging position P6.
  • the can supply means 50 includes a supply shot 51 for continuously sending out a large number of aluminum cans C, and an aluminum can C sent and discharged by the supply shot 51.
  • An aluminum can C supplied to the can supply position P5 by the can supply means 50 is provided with a star wheel 52, which supplies the aluminum can C to the can supply position P5 at a predetermined timing.
  • the mandrel 43 is fitted and inserted by the fitting mechanism.
  • the can discharging means 60 is provided with a star wheel 61 that receives the aluminum can C to which the label L is attached at the attaching position P 4 at a predetermined timing at the can discharging position P 6. And a discharge shoot 62 for discharging the aluminum can C received by the star wheel 61.
  • the aluminum can C transported to the can discharging position P 6 by the mandrel 43 is extracted from the mandrel 43 by a extracting mechanism (not shown), and then discharged by the can discharging means 60. .
  • the labeling device 1 adopts a configuration in which the label attached to the aluminum can C at the attaching position P4 is repressurized by the guide member 46. Even if the label is not completely adhered to the aluminum can C in P4, the label L can be firmly adhered to the aluminum can C by subsequent re-pressing.
  • the pressing plate 46a of the guide member 46 is heated by the heater 46b so that the temperature of the pressing plate 46a is raised to a predetermined temperature. Therefore, even if an adhesion failure occurs during the application of the label L at the application position P4, the adhesion failure can be surely eliminated by re-pressing with the heated pressure plate 46a. Therefore, it is not always necessary to completely adhere the label L to the aluminum can C at the sticking position P4, and the temperature of the aluminum can C at the sticking position P4 can be set lower. This prevents the label L from being improperly softened by the heat of the aluminum can C when the label is applied to the aluminum can C, and has conventionally been used to apply the label to a metal can such as an aluminum can. It is possible to effectively prevent the label surface from waving, which has been caused by the softening of the label.
  • the labeling apparatus 1 even when the label L is re-pressed onto the outer peripheral surface of the body of the aluminum can C from the attaching position P4 to the can discharging position P6 by the guide member 46 described above.
  • the guide plate since the label L is continuously heated by the radiant heat heater 44 provided separately for each mandrel 43, the guide plate does not need to be heated so much. When it is possible to efficiently re-press the label with member 4 6 Has an effect.
  • the labeling device 1 since the sticking position P4 and the pressure plate 46a are provided on the rotating orbit of the mandrel 43, the entire device can be reduced in size and installed in a small space. Become.
  • various synthetic resin films such as a polypropylene film and the like other than the polyethylene terephthalate film described in the case where the heat-sensitive adhesive label L formed by the thin polyethylene terephthalate film is adhered. It is needless to say that a heat-sensitive adhesive label formed by a film can be used, and the present invention can also be applied to affixing various films other than a label.
  • the adherend is not limited to the aluminum can C.
  • various metal cans such as steel cans can be used. It is possible to apply. Industrial applicability
  • the film sticking apparatus is useful for sticking a heat-sensitive adhesive film to the outer peripheral surface of a body of a metal can such as an aluminum can or a steel can. Suitable when used as a labeling device.

Landscapes

  • Lining Or Joining Of Plastics Or The Like (AREA)
  • Labeling Devices (AREA)

Abstract

La présente invention concerne un dispositif d'étiquetage permettant de coller une étiquette adhésive thermosensible sur la surface périphérique externe de la partie rouleau d'une canette métallique. On transfère à une zone de collage (P4) des canettes d'aluminium (C) étroitement introduites dans des mandrins (43), tout en les chauffant avec des chauffages (44, 45) par rayonnement puis, ces canettes sont pressées contre une étiquette transférée à la zone de collage (P4), dans un état permettant de tenir cette dernière par aspiration sur la surface périphérique externe d'un rouleau de collage (41), de façon à la coller sur la surface périphérique externe de la partie rouleau des canettes (C) d'aluminium. Ces canettes (C) d'aluminium dont l'étiquette est collée dans la zone de collage (P4), sont transférées dans une zone d'évacuation (P6) et tournées sur leur axe dans un état permettant de les presser contre une plaque (46a) de pression chauffée par un chauffage (46) d'un élément de guidage (46), positionné le long de la route de déplacement des mandrins (43) à la suite de la zone de collage (P4) de façon à presser à nouveau l'étiquette contre ces canettes d'aluminium (C).
PCT/JP2000/005431 1999-02-12 2000-08-11 Dispositif de collage de film Ceased WO2002014159A1 (fr)

Priority Applications (2)

Application Number Priority Date Filing Date Title
JP03367199A JP4152030B2 (ja) 1999-02-12 1999-02-12 フィルム貼付装置
PCT/JP2000/005431 WO2002014159A1 (fr) 1999-02-12 2000-08-11 Dispositif de collage de film

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
JP03367199A JP4152030B2 (ja) 1999-02-12 1999-02-12 フィルム貼付装置
PCT/JP2000/005431 WO2002014159A1 (fr) 1999-02-12 2000-08-11 Dispositif de collage de film

Publications (1)

Publication Number Publication Date
WO2002014159A1 true WO2002014159A1 (fr) 2002-02-21

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Application Number Title Priority Date Filing Date
PCT/JP2000/005431 Ceased WO2002014159A1 (fr) 1999-02-12 2000-08-11 Dispositif de collage de film

Country Status (2)

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JP (1) JP4152030B2 (fr)
WO (1) WO2002014159A1 (fr)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US8591903B2 (en) 2003-02-21 2013-11-26 Max-Planck-Gesellschaft Zur Foerderung Der Wissenschaften E.V. Inhibition of TACE or amphiregulin for the modulation of EGF receptor signal transactivation

Families Citing this family (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP4609872B2 (ja) * 2001-02-23 2011-01-12 大和製罐株式会社 印刷済みフィルム貼着缶体の製造方法
JP5919601B2 (ja) * 2012-06-21 2016-05-18 株式会社フジシール ラベル装着装置
DE102012212491A1 (de) * 2012-07-17 2014-01-23 Krones Ag Flaschenetikettierung mit Lasertechnik

Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS59209823A (ja) * 1983-05-16 1984-11-28 Kishimoto Akira フイルム片の接着方法
JPH07242220A (ja) * 1994-03-02 1995-09-19 Kunimoto Yokozuka シークレットラベル貼着装置における加熱加圧機構

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS59209823A (ja) * 1983-05-16 1984-11-28 Kishimoto Akira フイルム片の接着方法
JPH07242220A (ja) * 1994-03-02 1995-09-19 Kunimoto Yokozuka シークレットラベル貼着装置における加熱加圧機構

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US8591903B2 (en) 2003-02-21 2013-11-26 Max-Planck-Gesellschaft Zur Foerderung Der Wissenschaften E.V. Inhibition of TACE or amphiregulin for the modulation of EGF receptor signal transactivation

Also Published As

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JP2000229359A (ja) 2000-08-22
JP4152030B2 (ja) 2008-09-17

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