Identification medium
09643444 ยท 2017-05-09
Assignee
Inventors
- Hidekazu Hoshino (Yokohama, JP)
- Itsuo Takeuchi (Yokohama, JP)
- Tohru Ida (Yokohama, JP)
- Seiya Shibuya (Yokohama, JP)
Cpc classification
B42D25/328
PERFORMING OPERATIONS; TRANSPORTING
G03H1/00
PHYSICS
B42D25/425
PERFORMING OPERATIONS; TRANSPORTING
G03H2250/14
PHYSICS
G02F1/0045
PHYSICS
International classification
G02F1/1335
PHYSICS
B42D25/425
PERFORMING OPERATIONS; TRANSPORTING
G03H1/02
PHYSICS
G02F1/00
PHYSICS
Abstract
An identification medium can be affixed to cloth or leather products by sewing. A cholesteric liquid crystal layer on which an embossed surface for forming a hologram is formed, is sandwiched between a first supporting member and a second supporting member. A mounting region that can be affixed to clothing, etc., by sewing, is formed.
Claims
1. An identification medium comprising a cholesteric liquid crystal layer on which a hologram is formed, a first supporting member and a second supporting member between which the cholesteric liquid crystal layer is sandwiched, and at least one thereof is made of transparent material which does not disturb circularly polarized light reflected from the cholesteric liquid crystal layer, and a mounting region to be sewn onto an object, the first supporting member and the second supporting member extending to the mounting region and being adhered directly to each other by an adhesive layer in the mounting region, wherein the first supporting member is a polyurethane film or a cloth, and the cholesteric liquid crystal layer is affixed to both of the first supporting member and the second supporting member by adhesive layers.
2. The identification medium according to claim 1, further comprising a resin coating layer on the cloth.
3. The identification medium according to claim 2, further comprising a third supporting member made of resin over the cloth.
4. The identification medium according to claim 3, further comprising an ink layer in which printing designation is overlappingly carried out on the cholesteric liquid crystal layer, wherein the ink layer is visible over the cholesteric liquid crystal layer.
5. The identification medium according to claim 2, further comprising an ink layer in which printing designation is overlappingly carried out on the cholesteric liquid crystal layer, wherein the ink layer is visible over the cholesteric liquid crystal layer.
6. The identification medium according to claim 1, further comprising a third supporting member made of resin over the cloth.
7. The identification medium according to claim 6, further comprising an ink layer in which printing designation is overlappingly carried out on the cholesteric liquid crystal layer, wherein the ink layer is visible over the cholesteric liquid crystal layer.
8. The identification medium according to claim 1, further comprising an ink layer in which printing designation is overlappingly carried out on the cholesteric liquid crystal layer, wherein the ink layer is visible over the cholesteric liquid crystal layer.
9. The identification medium according to claim 8, further comprising a film for printing in which the ink layer is formed.
10. The identification medium according to claim 9, wherein the mounting region is sewn onto the object, in a state in which the film for printing is arranged between the cholesteric liquid crystal layer and the object to be sewn.
11. The identification medium according to claim 1, wherein the first supporting member and the second supporting member have flexibility and can be bent anywhere.
12. The identification medium according to claim 1, wherein the mounting region is provided at one side of the identification medium.
13. The identification medium according to claim 1, wherein the first supporting member is configured to be contactable with skin.
14. An identification medium comprising a cholesteric liquid crystal layer on which a hologram is formed, a first supporting member and a second supporting member between which the cholesteric liquid crystal layer is sandwiched, and at least one thereof is made of transparent material which does not disturb circularly polarized light reflected from the cholesteric liquid crystal layer, and a mounting region to be sewn onto an object, the first supporting member and the second supporting member extending to the mounting region and being adhered directly to each other by an adhesive layer in the mounting region, wherein the first supporting member is a polyurethane film.
15. The identification medium according to claim 14, wherein the first supporting member is configured to be contactable with skin.
Description
BRIEF EXPLANATION OF DRAWINGS
(1)
(2)
(3)
(4)
(5)
(6)
(7)
(8)
(9)
(10)
EXPLANATION OF REFERENCE NUMERALS
(11) Reference numeral 100 denotes an identification medium, 101 denotes a supporting film, 102 denotes an adhesive layer, 103 denotes a cholesteric liquid crystal layer, 104 denotes an embossed surface for forming a hologram, 105 denotes an adhesive layer, 106 denotes a supporting film, 107 denotes an ink layer, 108 denotes a printing film, 109 denotes an adhesive layer, 110 denotes a mounting region, 200 denotes an identification medium, 300 denotes an identification medium, 400 denotes an identification medium, 500 denotes an identification medium, 600 denotes an identification medium, 700 denotes an identification medium, 701 denotes fabric, 702 denotes a resin coating layer, 703 denotes an adhesive layer, 704 denotes a resin film layer, 705 denotes a printing layer, 800 denotes an identification medium, 910 denotes an identification medium, and 911 denotes a printing layer.
MODE FOR CARRYING OUT THE INVENTION
1. First Embodiment
(12) Structure
(13)
(14) The supporting films 101 and 106 are adhered by an adhesive layer 102 formed of a transparent adhesive. A cholesteric liquid crystal layer 103 is sandwiched and held between the supporting films 101 and 106. The cholesteric liquid crystal layer 103 is set to have optical characteristics in which, for example, red right circularly polarized light is selectively reflected. Here, color (wavelength) of selective reflection and a turning direction of circularly polarized light that is selectively reflected are optionally set, and for example, green left circularly polarized light can be selectively reflected. A structure in which multiple cholesteric liquid crystal layers which selectively reflect colors having a different wavelength are stacked and a structure in which a circularly polarized filter layer is combined with a cholesteric liquid crystal layer, can be used.
(15) The cholesteric liquid crystal layer 103 has a thickness of about 1 to 10 m, and an embossed surface for forming hologram 104 is formed on one surface thereof. The embossed surface for forming hologram 104 is formed by pressing an embossing die to the cholesteric liquid crystal layer 103. According to the embossed surface for forming hologram 104, a hologram image can be observed by optical interference when reflected light of the cholesteric liquid crystal layer 103 is observed. As a hologram image, drawn patterns, character information, various pattern code designations, etc., can be used.
(16) In the structure shown in
(17) Production Method
(18) First, a cholesteric liquid crystal layer 103 is formed on a substrate (not shown). After the cholesteric liquid crystal layer 103 is formed on the substrate (not shown), a hologram die (an embossing die) is pressed to an exposed surface thereof, and thereby an embossed surface for forming hologram 104 is formed. Next, the cholesteric liquid crystal layer 103 is peeled off from the substrate (not shown), and it is adhered to one surface of a supporting film 106 by a transparent adhesive layer 105. As a result, an intermediate member at a supporting film 106 side is produced. Here, when the substrate that supports the liquid crystal layer 103 is made of material that does not disturb a state of polarized light that will penetrate, the cholesteric liquid crystal layer 103 may be adhered to the supporting film 106 with the substrates.
(19) On the other hand, a supporting film 101 having a transparent adhesive layer 102 is prepared, and an adhering surface thereof is adhered to the intermediate member at the supporting film 106 side as described above, and therefore, an identification medium 100 having a cross sectional structure shown in
(20) Applied Embodiment
(21) The identification medium 100 is affixed to an object using a mounting region (a sewing region) shown by reference numeral 110. The mounting region 110 is a part in which the supporting films 101 and 106 are adhered by the adhesive layer 102. For example, when an object is clothing or leather products, the part of the mounting region 110 is sewn to a part of the clothing or the leather products or to a tag attached on the clothing or the leather products by a thread. In particular, when a polyurethane film is used for the supporting films 101 and 106, usual sewing can be carried out, and mounting to the object can be carried out by sewing using a usual sewing technique. Here, as a method for affixing the identification medium 100 to the object, methods such as a hot melting method, etc., can be used. Furthermore, in
(22) Optical Function
(23) The identification medium 100 has the same authentication function on both surfaces thereof. For example, it is viewed from above in the figures. Here, the cholesteric liquid crystal layer 103 is set to selectively reflect red right circularly polarized light. In this case, when the identification medium 100 is directly viewed in an environment in which natural light is irradiated, light reflected from the cholesteric liquid crystal layer 103 is observed, and therefore, a red hologram image is seen.
(24) Then, when the identification medium 100 is observed through a right circularly polarized filter through which the right circularly polarized light selectively penetrates, the red hologram image is more clearly observed, since the right circularly polarized light which is selectively reflected from the cholesteric liquid crystal layer is selectively observed.
(25) In addition, when the identification medium 100 is observed through a left circularly polarized filter through which left circularly polarized light selectively penetrates, the right circularly polarized light which is selectively reflected from the cholesteric liquid crystal layer 103 is cut off by the left circularly polarized filter. Therefore, the light reflected from the cholesteric liquid crystal layer 103 cannot be observed, and when it is viewed by an observer, the identification medium 100 is transparent, the hologram is not visible, and the identification medium 100 can be seen through an opposite side thereof.
(26) The above optical function is the same as that in the case in which the identification medium 100 is viewed from below in the figure. Similar optical function can be obtained by irradiating the right circularly polarized light instead of observing through the right circularly polarized filter, or by irradiating the left circularly polarized light instead of observing through the left circularly polarized filter.
(27) Advantages
(28) Using a mounting region 110 without the cholesteric liquid crystal layer 103, the identification medium 100 can be sewn onto clothing or leather products using thread. In particular, when a polyurethane film is used for the support films 101 and 106, it can be easily sewn and has high strength in a sewn state. By sewing the identification medium 100 onto an object, it is difficult to remove the identification medium 100 from the object, and illegal reuse of the identification medium 100 can be prevented.
(29) In addition, since the polyurethane film has flexibility and is waterproof, a structure in which the polyurethane film is used for the supporting films 101 and 106, is preferable to apply to clothing which is likely to contact skin and which is washable. Furthermore, since cholesteric liquid crystal material is inferior in abrasion resistance, a structure in which the material is sandwiched and sealed by polyurethane films is preferable from the point of view of durability.
(30) The cholesteric liquid crystal layer 103 has the same optical characteristics on both surfaces, and therefore, when the identification medium 100 is used as a tag for clothing or leather products, it can be authenticated from both surfaces of the tag. It is useful to have a structure that can be authenticated from both surfaces thereof, because two sides of the tag attached to clothing are often inverted by bending.
(31) Additionally, in the case in which the polyurethane film is used for the supporting films 101 and 106, flexibility that is sufficient to simply bend by bending with fingers, can be obtained. The cholesteric liquid crystal layer 103 has a color shift function in which color changes depending on viewing angle. However, when the identification medium 100 is also bent, a color shift can be observed, since viewing angles of the cholesteric liquid crystal layer 103 change. Therefore, for example, when the identification medium 100 is used as a tag for clothing, the color shift of the cholesteric liquid crystal layer 103 is observed by bending the tag using fingers, and thereby, it can be used for authentication. This color shift is strongly produced when selectively reflected light is observed using a circularly polarized filter, and as a result, in an observation through the circularly polarized filter, the identification medium 100 can be authenticated by observing color changes of hologram image when bending.
(32) In addition, when the identification medium 100 is observed while bending, two sides thereof can be compared. In this case, one of the two bent sides is formed to be convex and the other is formed to be concave, and therefore, a color shift partially having gradation is observed, and moreover, shift states are different on the two sides and are uniquely viewed. The shift state in which the color shift partially showing gradation is observed on the two sides is characteristic and unique and cannot be reproduced by forgery, and a superior authentication function can be produced.
2. Second Embodiment
(33)
(34) The identification medium 200 shown in
3. Third Embodiment
(35)
4. Fourth Embodiment
(36)
(37)
(38) In the case in which the identification medium has a structure shown in
(39) In addition, designation of the printing pattern of the ink layer 107 does not exhibit color shift. Therefore, in an observation of a part in which the hologram image of the cholesteric liquid crystal layer 103 is overlapped with the printing pattern of the ink layer 107, the color of the hologram image changes by the color shift when the identification medium 400 is inclined or bent. However, a state in which the color of the designation of the printing layer 107 does not change is observed.
5. Fifth Embodiment
(40)
(41) In the structure shown in
(42) In the case in which polyurethane film is used as a supporting film 101, it is difficult to support ink material on the polyurethane film, depending on the type of the ink. In such a case, the ink layer 107 is easily formed by adding a material film on which the ink may be preferably supported, as a film for printing 108.
6. Sixth Embodiment
(43)
(44) When the identification medium 600 is attached to clothing, the supporting film 106 made of a polyurethane film is arranged so as to contact skin. That is, in a state in which the identification medium 600 is affixed to clothing, which is an object, by sewing, the printing film 108 is arranged between the cholesteric liquid crystal layer 103 and the clothing, and in this case, at a position which contacts cloth of the clothing. In this way, the identification medium 600 is used in a state in which the printing film 108 does not contact the skin and the supporting film 106 side contacts the skin, and texture of the polyurethane film can be maintained.
(45) According to the identification medium 600, the texture of the polyurethane film can be maintained, printing designation can be easily carried out, and moreover, a simple structure can be formed by using the polyurethane film and as a result, production cost can be reduced.
7. Seventh Embodiment
(46)
(47) A printing layer 705 is provided close to the resin coating layers 702 at an upper side in the figure. The printing layer 705 is formed by printing ink. Characters or drawn patterns are formed at the printing layer 705. The resin coating layer 702 at an upper side in the figure functions as an undercoating of the printing layer 705. When the cloth 701 is used alone, it is difficult to print or it is not suitable for printing fine patterns, depending on the type of ink. However, a suitable state for printing is obtained by providing the resin coating layer 702.
(48) In addition, the resin coating layer 702 functions also as an infiltrating resistance layer which prevents infiltration of liquids. For example, the clothing is generally washed using a detergent and water or is dry-cleaned. In this case, there are problems in that the printing layer 705, the adhesive layer 102, and the cholesteric liquid crystal layer 103 are deteriorated or degraded by coming into contact with a cleaning solution. In the structure shown in
(49) The cloth 701 is cloth formed by weaving thread made of nylon or polyester. The cloth 701 in which the printing layer 705 is formed is adhered to the cholesteric liquid crystal layer 103 and the supporting film 106 by the adhesive layer 102 made of an adhesive. In addition, the same parts as those of the identification medium 100 shown in
(50) In deciding authenticity, the identification medium 700 is observed from a side of the supporting film 106. In this case, when the identification medium 700 is observed through a right circularly polarized filter, right circularly polarized light selectively reflected from the cholesteric liquid crystal layer 103 is observed, a red hologram image due to an embossed surface for forming hologram 104 is clearly visible, and moreover, the drawn patterns of the printing layer 705 are simultaneously visible.
(51) Then, when the identification medium 700 is observed through a left circularly polarized filter, right circularly polarized light reflected from the cholesteric liquid crystal layer 103 is cut off, and therefore, the cholesteric liquid crystal layer 103 appears transparent, the hologram image is not seen, and the drawn patterns of the printing layer 705 are preferentially seen. The decision on authenticity is carried out by switching this image.
(52) The identification medium 700 is affixed to an object by sewing a mounting region (a sewing region) 110 onto the object using thread. Because the cloth 701 is cloth, perforations are formed at a sewn part, even if it is sewn onto the object by the thread, and a state in which it is easily torn off from the part is not formed. Therefore, durability against force in which the identification medium 700 is torn off from the state in which it is sewn onto the object, is high.
(53) When a polyurethane film is used instead of the cloth 701, the perforation is formed at the sewn part using thread in the mounting region (the sewing region) 110, and strength at the part is lower than that at the other part. Therefore, when the identification medium 700 is separated from the object by applying more force, the probability that the polyurethane film will break at the sewn part depends on the additional force; however, it is higher than in the case in which the cloth 701 is used.
(54) In addition, the resin coating layer 702 has a structure in which the printing layer 705 is easily formed since it is easily printed. Furthermore, by the resin coating layer 702, the cleaning solution is prevented from infiltrating when it is washed using water or is dry-cleaned, and therefore, the printing layer 705, the adhesive layer 102, the cholesteric liquid crystal layer 103, etc., can be prevented from deteriorating or degrading.
(55) When permeability of visible light through the cloth 701 is low, it is difficult to see the hologram due to embossed surface 104 from the cloth 701 side. However, when a cloth 701 is used that is optically transparent through which the hologram due to the embossed surface 104 is visible, the resin coating layer 702 and the adhesive layer 102 are made of transparent material, and the printing layer 705 is formed so that an opposite side is visible therethrough, and therefore, the hologram due to the embossed surface 104 can also be seen from the cloth 701 side.
(56) As a method for providing optical transparency to the cloth 701 so that the hologram due to the embossed surface 104 can be seen, a method in which a cloth having roughness through which visible light can penetrate is used, a method in which a fine thread which is woven in the above cloth having optical transparency is used, a method in which cloth is woven using transparent fiber, and a combination of these methods, can be used.
(57) The identification medium 700 may have a structure in which the supporting film 106 is replaced with cloth. In this case, it is preferable that waterproofing processing, such as formation of a resin layer, be carried out, so that the cloth will not be infiltrated by liquids. Here, an embodiment in which cloth is used as a supporting member of the identification medium 100 is shown; however, supporting members in identification mediums of other embodiments may also be replaced with the cloth. For example, alone or combination, in the identification medium 100 shown in
8. Eighth Embodiment
(58)
(59) By arranging the resin film 704, a cleaning solution can be prevented from infiltrating into the adhesive layers 102 and 703 during cleaning, and the adhesive layers 102 and 703 can be prevented from deteriorating or degrading. In addition, texture can be obtained by using a polyurethane film as the resin film 704. Here, an infiltrating resistance function for liquids in the structure shown in
9. Ninth Embodiment
(60)
10. Tenth Embodiment
(61)
(62) In the printing on the polyurethane film, there is a problem in that it is difficult to form a good printing film when compatibility between polyurethane and the ink is not good. Printing designation can be added to the hologram designation of the cholesteric liquid crystal layer in the structure shown in
(63) The present invention can be used for confirming authenticity.