Foil transfer sheet
The foil transfer sheet, featuring a soft resin layer and a structured release member system, addresses the challenges of transferring metal vapor deposition layers to curved and irregular surfaces, achieving improved adhesion and glossiness.
Patent Information
- Application Number
- JP2023193892
- Authority / Receiving Office
- JP · JP
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2023-11-14
- Publication Date
- 2025-05-26
AI Technical Summary
Existing transfer foils struggle to neatly transfer metal vapor deposition layers to curved surfaces and surfaces with fine irregularities, often resulting in unevenness, wrinkles, and reduced glossiness.
A foil transfer sheet comprising a transfer foil with a release member, a metal vapor deposition layer, a soft resin layer for improved stretchability, an adhesive layer, and a second release member, which allows for easier peeling and adherence to curved surfaces, suppressing fine irregularities and enhancing glossiness.
The foil transfer sheet enables more precise and even transfer of metal vapor deposition layers to curved surfaces and surfaces with fine irregularities, reducing wrinkles and enhancing the glossiness of the transferred layer.
Smart Images

Figure 2025080618000001_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to a foil transfer sheet having a transfer foil.
Background Art
[0002] Conventionally, a transfer foil formed by sequentially laminating a release layer, a metal vapor deposition layer, and an adhesive layer on one surface of a base material is known (see, for example, Patent Document 1). In the transfer foil described in Patent Document 1, the base material is a film made of polyethylene terephthalate (PET). The metal vapor deposition layer is formed by vapor-depositing a metal on the release layer. The release layer also functions to protect the metal vapor deposition layer after transfer. In the case of the transfer foil described in Patent Document 1, when transferring the metal vapor deposition layer to a transfer object, heat and pressure are applied in a state where the adhesive layer side of the transfer foil is in close contact with the transfer object, and then the base material is peeled off from the transfer foil.
Prior Art Documents
Patent Documents
[0003]
Patent Document 1
Summary of the Invention
Problems to be Solved by the Invention
[0004] In the transfer foil described in Patent Document 1, since the base material cannot be peeled off from the transfer foil before being adhered to the object to be transferred, when transferring the metal vapor deposition layer to the object to be transferred, heat or the like is applied with the transfer foil having the base material attached being in close contact with the object to be transferred, and then the base material is peeled off from the transfer foil. However, since the base material, which is a film made of PET, is relatively hard and inferior in flexibility, in the transfer foil described in Patent Document 1, when transferring the metal vapor deposition layer to the curved surface portion of the object to be transferred where a curved surface is formed, there is a possibility that the transfer foil with the base material attached cannot be adhered to the curved surface portion of the object to be transferred. If the transfer foil cannot be adhered to the curved surface portion of the object to be transferred, unevenness and wrinkles will occur in the transferred metal vapor deposition layer, making it difficult to transfer the metal vapor deposition layer neatly to the curved surface portion of the object to be transferred.
[0005] Also, in the case of the transfer foil described in Patent Document 1, when transferring the metal vapor deposition layer to an object to be transferred having fine irregularities on its surface, such as clothing, it has been clarified by the study of the inventor of the present application that fine irregularities are likely to occur in the transferred metal vapor deposition layer due to the influence of the fine irregularities on the surface of the object to be transferred, and the glossiness of the metal vapor deposition layer is likely to decrease.
[0006] Therefore, the first object of the present invention is to provide a foil transfer sheet capable of transferring a metal vapor deposition layer more neatly to the curved surface portion of an object to be transferred than in the prior art. Further, the second object of the present invention is to provide a foil transfer sheet capable of suppressing the generation of fine irregularities in the metal vapor deposition layer caused by the fine irregularities on the surface of an object to be transferred and enhancing the glossiness of the metal vapor deposition layer even when transferring the metal vapor deposition layer to an object to be transferred having fine irregularities on its surface, such as clothing.
Means for Solving the Problems
[0007] To solve the above first and second problems, the foil transfer sheet of the present invention includes a transfer foil having a release member made of a release film and a metal vapor deposition layer, a resin layer made of resin overlapping the transfer foil, an adhesive layer overlapping the resin layer, and a second release member made of release paper or a release film overlapping the adhesive layer, and the resin layer is formed of a soft resin having better stretchability than the base material of the release member.
[0008] Also, in order to solve the above-described first and second problems, the foil transfer sheet of the present invention includes a transfer foil having a release member made of a release film and a metal vapor deposition layer, a resin layer made of resin that overlaps the transfer foil, and a second release member made of release paper or a release film that overlaps the resin layer. The resin layer is characterized in that it is formed of a soft resin having better stretchability than the base material of the release member.
[0009] According to the study of the inventor of the present application, when the foil transfer sheet does not include a resin layer that overlaps the transfer foil, when the release member and the second release member are peeled off from the foil transfer sheet before being adhered to the object to be transferred, wrinkles are generated in the metal vapor deposition layer. Therefore, it is difficult to peel off the release member and the second release member from the foil transfer sheet before being adhered to the object to be transferred. On the other hand, in the present invention, since the foil transfer sheet includes a resin layer that overlaps the transfer foil, according to the study of the inventor of the present application, even if the release member and the second release member are peeled off from the foil transfer sheet before being adhered to the object to be transferred, it is possible to prevent wrinkles from occurring in the metal vapor deposition layer. As a result, it becomes possible to peel off the release member and the second release member from the foil transfer sheet before being adhered to the object to be transferred.
[0010] Further, in the present invention, since the resin layer is formed of a soft resin having better stretchability than the base material of the release member, it becomes easier to adhere the foil transfer sheet in a state where the release member and the second release member are peeled off to the curved surface portion of the object to be transferred. Therefore, in the present invention, unevenness and wrinkles are less likely to occur in the metal vapor deposition layer transferred to the curved surface portion of the object to be transferred than in the prior art. As a result, it becomes possible to transfer the metal vapor deposition layer to the curved surface portion of the object to be transferred more neatly than in the prior art.
[0011] In addition, in the present invention, since the foil transfer sheet includes a resin layer disposed between the metal vapor deposition layer and the object to be transferred, even when transferring the metal vapor deposition layer to an object to be transferred having fine irregularities on its surface, such as clothing, the fine irregularities (a rough feeling) of the metal vapor deposition layer due to the fine irregularities on the surface of the object to be transferred are less likely to appear. That is, in the present invention, even when transferring the metal vapor deposition layer to an object to be transferred having fine irregularities on its surface, such as clothing, it is possible to suppress the generation of fine irregularities of the metal vapor deposition layer due to the fine irregularities on the surface of the object to be transferred. As a result, it is possible to enhance the glossiness of the metal vapor deposition layer.
[0012] Moreover, in the present invention, since the resin layer is formed of a soft resin that is more stretchable than the base material of the peeling member, for example, even if the resin layer is transferred together with the metal vapor deposition layer to clothing having excellent stretchability, it is possible to stretch and contract the resin layer according to the stretching and contracting of the clothing. In the present invention, for example, when transferring the metal vapor deposition layer to clothing, after applying heat or the like to the foil transfer sheet with the adhesive layer side of the foil transfer sheet where only the second peeling member has been peeled off in close contact with the clothing, the peeling member is peeled off from the foil transfer sheet.
[0013] In addition, to solve the above-mentioned second problem, the foil transfer sheet of the present invention includes a transfer foil having a peeling member made of a peeling film and a metal vapor deposition layer, a resin layer made of resin overlapping the transfer foil, an adhesive layer overlapping the resin layer, and a foil transfer portion having a second peeling member made of release paper or a peeling film that overlaps the adhesive layer and also includes an application film that is detachably attached to the peeling members of the plurality of foil transfer portions. The resin layer is characterized by being formed of a soft resin that is more stretchable than the base material of the peeling member.
[0014] Also, in order to solve the above-described second problem, the foil transfer sheet of the present invention includes a transfer foil having a release member made of a release film and a metal vapor deposition layer, a resin layer made of resin that overlaps the transfer foil, and a second release member made of release paper or a release film that overlaps the resin layer, and includes a plurality of foil transfer portions. The foil transfer sheet further includes an application film that is detachably attached to the release members of the plurality of foil transfer portions. The resin layer is formed of a soft resin that is more stretchable than the base material of the release member.
[0015] In the present invention, the foil transfer sheet includes a resin layer disposed between the metal vapor deposition layer and the object to be transferred. Therefore, in the present invention, even when the metal vapor deposition layer is transferred onto an object to be transferred having fine irregularities on its surface, such as clothing, the fine irregularities of the metal vapor deposition layer due to the fine irregularities on the surface of the object to be transferred are less likely to appear. That is, in the present invention, even when the metal vapor deposition layer is transferred onto an object to be transferred having fine irregularities on its surface, such as clothing, it is possible to suppress the generation of fine irregularities of the metal vapor deposition layer due to the fine irregularities on the surface of the object to be transferred. As a result, it is possible to enhance the glossiness of the metal vapor deposition layer.
[0016] Further, in the present invention, since the resin layer is formed of a soft resin that is more stretchable than the base material of the release member, for example, even when the resin layer is transferred together with the metal vapor deposition layer onto clothing having excellent stretchability, it is possible to stretch the resin layer in accordance with the stretching and shrinking of the clothing. Furthermore, in the present invention, since the foil transfer sheet includes an application film that is detachably attached to the release members of the plurality of foil transfer portions, for example, it is possible to simultaneously transfer the metal vapor deposition layers of the plurality of foil transfer portions arranged to form various patterns on the application film onto the object to be transferred. Therefore, in the present invention, even when the foil transfer sheet includes a plurality of foil transfer portions, it is possible to easily transfer the metal vapor deposition layer onto the object to be transferred.
[0017] In the present invention, for example, the base material of the release member is formed of polyethylene terephthalate, and the resin layer is formed of an acrylic-based or urethane-based resin.
Advantages of the Invention
[0018] As described above, in the foil transfer sheet of the present invention, it is possible to transfer the metal vapor deposition layer more neatly to the curved surface portion of the object to be transferred than before. Further, in the foil transfer sheet of the present invention, even when transferring the metal vapor deposition layer to an object to be transferred having fine irregularities on its surface, such as clothing, the generation of fine irregularities in the metal vapor deposition layer due to the fine irregularities on the surface of the object to be transferred can be suppressed, and the glossiness of the metal vapor deposition layer can be enhanced.
Brief Description of the Drawings
[0019]
Figure 1
Figure 2
Figure 3
Embodiments for Carrying Out the Invention
[0020] Hereinafter, embodiments of the present invention will be described with reference to the drawings.
[0021] (Configuration of the Foil Transfer Sheet) FIG. 1 is a schematic diagram for explaining the configuration of a foil transfer sheet 1 according to an embodiment of the present invention.
[0022] The foil transfer sheet 1 of this embodiment includes a transfer foil 2. The transfer foil 2 is, for example, a commercially available general-purpose product. The transfer foil 2 includes a release member 3 made of a release film, a protective layer 4, a metal vapor deposition layer 5, and an adhesive layer 6. The transfer foil 2 of this embodiment is composed of a release member 3, a protective layer 4, a metal vapor deposition layer 5, and an adhesive layer 6. The release member 3, the protective layer 4, the metal vapor deposition layer 5, and the adhesive layer 6 are laminated in this order in the thickness direction of the foil transfer sheet 1 (the thickness direction of the transfer foil 2).
[0023] Further, the foil transfer sheet 1 includes a resin layer 7 made of resin that overlaps with the transfer foil 2. The resin layer 7 overlaps with the adhesive layer 6. Also, the foil transfer sheet 1 includes an adhesive layer 8 that overlaps with the resin layer 7, and a release member 9 that overlaps with the adhesive layer 8 and serves as a second release member made of release paper or a release film. The foil transfer sheet 1 of this embodiment is composed of the transfer foil 2, the resin layer 7, the adhesive layer 8, and the release member 9. The release member 9 of this embodiment is a release film. Therefore, in the following description, the release member 9 is referred to as "release film 9". Also, in the following description, the release member 3 is referred to as "release film 3".
[0024] The release films 3 and 9 are transparent films. The release films 3 and 9 include a resin base material (base film). The base materials of the release films 3 and 9 are resin films formed of a resin that is relatively hard and inferior in flexibility. This base material is formed of, for example, polyethylene terephthalate (PET). The surface of the base material is coated with a release agent (release mold agent). The release agent is, for example, a silicone-based release agent. Note that the release films 3 and 9 do not have to be transparent.
[0025] The protective layer 4 functions to protect the metal vapor deposition layer 5 after it is transferred to the object to be transferred. The protective layer 4 is formed of a transparent resin. Also, the protective layer 4 is a thin film formed of a soft resin that is superior in stretchability to the base materials of the release films 3 and 9. The protective layer 4 is formed of, for example, an acrylic resin. The metal vapor deposition layer 5 is formed by vapor-depositing metal on the protective layer 4. The surface of the metal vapor deposition layer 5 on the side of the protective layer 4 is, for example, a mirror surface. The adhesive layer 6 is formed by, for example, coating a transparent adhesive on the metal vapor deposition layer 5.
[0026] Note that a part of the protective layer 4 may be colored. Also, if the protective layer 4 has a releasability that makes it easy to peel off the release film 3 from the protective layer 4, the surface of the base material of the release film 3 does not have to be coated with a release agent. Also, the transfer foil 2 may include a hologram layer. In this case, for example, the hologram layer is disposed between the protective layer 4 and the metal vapor deposition layer 5.
[0027] The resin layer 7 is formed, for example, by coating a transparent resin on the adhesive layer 6. The resin layer 7 is formed of a soft resin that is more stretchable than the base materials of the release films 3 and 9. Further, the resin layer 7 is formed of an ultraviolet curable resin. The resin layer 7 of the present embodiment is formed of an acrylic resin. Note that the resin layer 7 may be formed of a resin other than acrylic resin. For example, the resin layer 7 may be formed of a urethane resin. Further, the resin layer 7 may be formed of a resin other than ultraviolet curable resins such as solvent-based resins. Also, the resin layer 7 may not be transparent.
[0028] The adhesive layer 8 is formed, for example, by coating a transparent adhesive on the resin layer 7. Alternatively, the adhesive layer 8 is, for example, a double-sided tape of acrylic, olefin, silicone, urethane, or rubber type. Or, the adhesive layer 8 may be, for example, an ironing adhesive sheet of polyamide or polyester type.
[0029] (Method of using the foil transfer sheet) In the present embodiment, the metal vapor deposition layer 5 formed into a predetermined shape by cutting with a cutting plotter, or by press working, laser processing, etc. is transferred to a predetermined transfer object. Specifically, the portion of the foil transfer sheet 1 excluding the release films 3 and 9 is transferred to the transfer object. Also, due to the adhesive force (adhesion) of the adhesive layer 8 disposed on the transfer object side, the portion of the foil transfer sheet 1 excluding the release films 3 and 9 is transferred. The transfer object is formed of, for example, fabric (cloth), paper, leather, resin, or metal.
[0030] For example, when a curved surface (specifically, a convex or concave curved surface) is formed on the object to be transferred and the metal vapor deposition layer 5 is transferred to the curved surface portion of the object to be transferred, first, the release films 3 and 9 are peeled off from the foil transfer sheet 1. In this embodiment, since the resin layer 7 is provided, even if the release films 3 and 9 are peeled off from the foil transfer sheet 1 before being adhered to the object to be transferred, it is possible to prevent wrinkles from occurring in the metal vapor deposition layer 5. Then, the foil transfer sheet 1 with the release films 3 and 9 peeled off is adhered to the curved surface portion of the object to be transferred, and the metal vapor deposition layer 5 is attached along the curved surface portion of the object to be transferred so that no wrinkles occur in the metal vapor deposition layer 5. In this case, the adhesive layer 8 is a coated adhesive or a double-sided tape.
[0031] Also, for example, when a flat surface is formed on the object to be transferred and the metal vapor deposition layer 5 is transferred to the flat surface portion of the object to be transferred, first, only the release film 9 is peeled off from the foil transfer sheet 1. When the adhesive layer 8 is a coated adhesive or a double-sided tape, then, the foil transfer sheet 1 with only the release film 9 peeled off is adhered to the object to be transferred, and the metal vapor deposition layer 5 is attached to the object to be transferred so that no wrinkles occur in the metal vapor deposition layer 5. Then, the release film 3 is peeled off. Also, for example, when the object to be transferred is clothing (fabric) such as a T-shirt and the adhesive layer 8 is an iron-on adhesive sheet, then, after the foil transfer sheet 1 with only the release film 9 peeled off is adhered to the object to be transferred, heat and pressure are applied (that is, heat pressing is performed), and the metal vapor deposition layer 5 is attached to the object to be transferred. Then, the release film 3 is peeled off.
[0032] (Main effects of this embodiment) As described above, in this embodiment, the foil transfer sheet 1 includes a resin layer 7. As described above, even if the release films 3 and 9 are peeled off from the foil transfer sheet 1 before being adhered to the object to be transferred, it is possible to prevent wrinkles from occurring in the metal vapor deposition layer 5. Therefore, in this embodiment, it is possible to peel off the release films 3 and 9 from the foil transfer sheet 1 before being adhered to the object to be transferred. Further, in this embodiment, since the resin layer 7 is formed of a soft resin having better stretchability than the base materials of the release films 3 and 9, it becomes easier to adhere the foil transfer sheet 1 with the release films 3 and 9 peeled off to the curved surface portion of the object to be transferred.
[0033] Therefore, in this embodiment, compared with the case where the release film 3 is peeled off after transferring the metal vapor deposition layer 5 by adhering the foil transfer sheet 1 with the release film 3 attached to the curved surface portion of the object to be transferred, unevenness and wrinkles are less likely to occur in the metal vapor deposition layer 5 transferred to the curved surface portion of the object to be transferred. As a result, it becomes possible to transfer the metal vapor deposition layer 5 neatly to the curved surface portion of the object to be transferred.
[0034] In this embodiment, the foil transfer sheet 1 includes a resin layer 7 disposed between the metal vapor deposition layer 5 and the object to be transferred. Therefore, in this embodiment, even when transferring the metal vapor deposition layer 5 to an object to be transferred having fine irregularities on its surface, such as clothes, the fine irregularities of the metal vapor deposition layer 5 caused by the fine irregularities on the surface of the object to be transferred are less likely to appear. That is, in this embodiment, even when transferring the metal vapor deposition layer 5 to an object to be transferred having fine irregularities on its surface, such as clothes, it is possible to suppress the generation of fine irregularities of the metal vapor deposition layer 5 caused by the fine irregularities on the surface of the object to be transferred. As a result, it is possible to enhance the glossiness of the metal vapor deposition layer 5. Further, in this embodiment, since the resin layer 7 is formed of a soft resin having better stretchability than the base materials of the release films 3 and 9, for example, even if the resin layer 7 is transferred together with the metal vapor deposition layer 5 to clothes having excellent stretchability, it is possible to stretch and contract the resin layer 7 according to the stretching and contracting of the clothes.
[0035] (Modification Example 1 of Foil Transfer Sheet) In the above-described embodiment, the foil transfer sheet 1 may not include the adhesive layer 8. That is, the release film 9 may overlap with the resin layer 7. In this case, the user who uses the foil transfer sheet 1 can freely select an arbitrary adhesive layer instead of the adhesive layer 8. Also in this modification, when transferring the metal vapor deposition layer 5 to the curved surface portion of the object to be transferred, first, the release films 3 and 9 are peeled off from the foil transfer sheet 1. Then, the resin layer 7 is brought into close contact with the curved surface portion of the object to be transferred. When transferring the metal vapor deposition layer 5 to the flat surface portion of the object to be transferred, first, only the release film 9 is peeled off from the foil transfer sheet 1. Then, the resin layer 7 is brought into close contact with the flat surface portion of the object to be transferred. Also in this modification, the same effects as those of the above-described embodiment can be obtained.
[0036] (Modification Example 2 of Foil Transfer Sheet) FIG. 2 is a schematic diagram for explaining the configuration of the foil transfer sheet 1 according to another embodiment of the present invention. FIG. 3 is a plan view of the foil transfer sheet 1 shown in FIG. 2.
[0037] In the above-described embodiment, the foil transfer sheet 1 may include a plurality of foil transfer portions 11 having a transfer foil 2, a resin layer 7, an adhesive layer 8, and a release film 9. In this case, the foil transfer sheet 1 includes an application film 12 that is detachably attached to the release film 3 of the plurality of foil transfer portions 11. The application film 12 is a transparent slightly adhesive tape for transferring the metal vapor deposition layers 5 of the plurality of foil transfer portions 11 to the object to be transferred together. The application film 12 functions to hold the plurality of foil transfer portions 11 in a fixed position.
[0038] In the example shown in FIG. 3, the foil transfer sheet 1 includes five foil transfer portions 11 formed in a predetermined shape. The five foil transfer portions 11 are arranged so as to form a predetermined pattern. For example, the five foil transfer portions 11 are arranged so as to form an animal footprint. When manufacturing the foil transfer sheet 1, the application film 12 is attached to the release film 3 of the five foil transfer portions 11 formed in a predetermined shape by cutting with a cutting plotter or the like.
[0039] In the foil transfer sheet 1, the relative positions of the five foil transfer portions 11 are maintained by the application film 12. That is, the five foil transfer portions 11 are held by the application film 12 so as not to be separated. The colors of the metal vapor deposition layers 5 of the five foil transfer portions 11 may be the same, or the metal vapor deposition layers 5 of different colors may be included in the metal vapor deposition layers 5 of the five foil transfer portions 11.
[0040] In the foil transfer sheet 1 shown in FIG. 3, for example, the adhesive layer 8 is an iron adhesive sheet, and the five metal vapor deposition layers 5 are simultaneously transferred to the clothing, which is the object to be transferred. When transferring the five metal vapor deposition layers 5 to the clothing, the foil transfer sheet 1 with only the release film 9 peeled off is brought into close contact with the clothing, and then heat and pressure are applied to simultaneously attach the five metal vapor deposition layers 5 to the clothing. Thereafter, the application film 12 and the release film 3 are peeled off.
[0041] Also in this modified example, since the foil transfer sheet 1 includes the resin layer 7 disposed between the metal vapor deposition layer 5 and the object to be transferred, even when transferring the metal vapor deposition layer 5 to an object to be transferred having fine irregularities on its surface, such as clothing, the generation of fine irregularities in the metal vapor deposition layer 5 due to the fine irregularities on the surface of the object to be transferred can be suppressed, and the glossiness of the metal vapor deposition layer 5 can be enhanced. Also in this modified example, since the resin layer 7 is formed of a soft resin having better stretchability than the base materials of the release films 3 and 9, for example, even when the resin layer 7 is transferred together with the metal vapor deposition layer 5 to clothing having excellent stretchability, the resin layer 7 can be stretched and contracted according to the stretching and contraction of the clothing.
[0042] Also, in the modified example, since the foil transfer sheet 1 includes the application film 12 that is detachably attached to the release film 3 of the plurality of foil transfer portions 11, as described above, the metal vapor deposition layers 5 of the plurality of foil transfer portions 11 arranged to form a predetermined pattern can be simultaneously transferred to the object to be transferred. Therefore, even if the foil transfer sheet 1 includes a plurality of foil transfer portions 11, the transfer of the metal vapor deposition layer 5 to the object to be transferred can be easily performed.
[0043] (Modification Example 3 of the Foil Transfer Sheet) In the modification examples shown in FIGS. 2 and 3, the foil transfer portion 11 may not include the adhesive layer 8. In this case, an adhesive (adhesive agent) is applied to the object to be transferred. Alternatively, a double-sided tape or an iron-on adhesive sheet is attached to the object to be transferred. Even in this case, the same effects as those of the modification examples shown in FIGS. 2 and 3 can be obtained.
[0044] (Other Embodiments) In the above-described embodiments and modification examples, the transfer foil 2 may not include the protective layer 4. Also, in the above-described embodiments and modification examples, the transfer foil 2 may not include the adhesive layer 6. That is, the resin layer 7 may overlap the metal vapor deposition layer 5. In this case, for example, the resin layer 7 is formed by coating the metal vapor deposition layer 5 with resin.
[0045] In the above-described embodiments and modification examples, the base material of the release film 3 and the base material of the release film 9 may be formed of different resins. For example, the base material of the release film 9 may be formed of a soft resin having better stretchability than the base material of the release film 3. In this case, the resin layer 7 does not have to be formed of a soft resin having better stretchability than the base material of the release film 9. Also, in the above-described embodiments and modification examples, the release member 9 may be release paper. In this case, the release member 9 is composed of, for example, a paper base material, a blocking layer (barrier layer) overlapping the base material, and a release agent coated on the surface of the blocking layer.
Explanation of Reference Numerals
[0046] 1 Foil transfer sheet 2 Transfer foil 3 Release film (release member) 5 Metal vapor deposition layer 7 Resin layer 8 Adhesive layer 9 Release film (second release member) 11 Foil transfer portion 12 Application film
Claims
1. A transfer foil having a release member made of a release film and a metal vapor deposition layer, a resin layer made of resin that overlaps with the transfer foil, an adhesive layer that overlaps with the resin layer, and a second release member made of release paper or a release film that overlaps with the adhesive layer, wherein the resin layer is formed of a soft resin having better stretchability than the base material of the release member, and characterized by a foil transfer sheet.
2. A transfer foil having a release member made of a release film and a metal vapor deposition layer, a resin layer made of resin that overlaps with the transfer foil, and a second release member made of release paper or a release film that overlaps with the resin layer, wherein the resin layer is formed of a soft resin having better stretchability than the base material of the release member, and characterized by a foil transfer sheet.
3. A foil transfer sheet comprising a plurality of foil transfer portions each having a transfer foil having a release member made of a release film and a metal vapor deposition layer, a resin layer made of resin that overlaps with the transfer foil, an adhesive layer that overlaps with the resin layer, and a second release member made of release paper or a release film that overlaps with the adhesive layer, and an application film detachably attached to the release members of the plurality of foil transfer portions, wherein the resin layer is formed of a soft resin having better stretchability than the base material of the release member, and characterized by a foil transfer sheet.
4. A foil transfer sheet comprising a plurality of foil transfer portions each having a transfer foil having a release member made of a release film and a metal vapor deposition layer, a resin layer made of resin that overlaps with the transfer foil, and a second release member made of release paper or a release film that overlaps with the resin layer, and an application film detachably attached to the release members of the plurality of foil transfer portions, wherein the resin layer is formed of a soft resin having better stretchability than the base material of the release member, and characterized by a foil transfer sheet.
5. The base material of the release member is formed of polyethylene terephthalate, wherein the resin layer is formed of an acrylic or urethane resin, and characterized by the foil transfer sheet according to any one of Claims 1 to 4.
Citation Information
Patent Citations
Transfer foil, and transferred matter using the same
JP2013043403A