Method for manufacturing artificial mother-of-pearl pattern transfer sticker, transfer method using transfer sticker, and screen printing plate used when manufacturing artificial mother-of-pearl pattern transfer sticker
The manufacturing method for artificial patterned warrior stickers using silk screen printing addresses the expense and inefficiency of conventional mother-of-pearl patterns by creating cost-effective, three-dimensionally enhanced designs that are easier to apply.
Patent Information
- Application Number
- PCT/KR2023/018511
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- Priority Date
- 2023-11-03
- Filing Date
- 2023-11-17
- Publication Date
- 2025-05-08
AI Technical Summary
Conventional mother-of-pearl patterns are expensive due to the use of costly shellfish shells, and existing heat transfer methods are inefficient, difficult to apply on vulnerable skin, and lack three-dimensional effects.
A method for manufacturing artificial patterned warrior stickers using a silk screen printing process, which includes forming a binder layer, a hologram layer, and an artificial pattern layer, followed by a protective film and a transparent epoxy resin coating, allowing for detachable and cost-effective production of screen printing plates.
The method enables the creation of artificial mother-of-pearl patterns with clear, excellent three-dimensional effects, reducing production costs and time, while being easier to apply on the skin compared to traditional methods.
Smart Images

Figure KR2023018511_08052025_PF_FP_ABST
Abstract
Description
Manufacturing method of artificial mother-of-pearl pattern transfer stickers, transfer method using the transfer stickers, and screen printing plate used in manufacturing artificial mother-of-pearl pattern transfer stickers
[0001] The present invention relates to a method for manufacturing an artificial mother-of-pearl pattern transfer sticker, a transfer method using the transfer sticker, and a screen printing plate used in manufacturing the artificial mother-of-pearl pattern transfer sticker. In manufacturing the artificial mother-of-pearl pattern transfer sticker, the artificial mother-of-pearl pattern expressed in color is formed by printing with four-color ink or silkscreen, and a design to be implemented is implemented by silkscreen printing with a binder on a transfer base, so that the mother-of-pearl pattern is firmly fixed to the substrate and has a clear and excellent three-dimensional effect. The present invention relates to a screen printing plate configured to significantly reduce the cost of screen printing by operating the plate in a structure in which a silkscreen member is detachably installed on a frame without having to remanufacture the entire plate each time screen printing is performed, by newly designing and manufacturing only the silkscreen member's silksha with a desired pattern by the manufacturer, and recycling the frame to replace the silksha with one frame.
[0002] Mother-of-pearl is made by hand-cutting and sawing the shells of shellfish such as pearl oysters or abalone, and attaching them to a conductor using an adhesive such as fish glue.
[0003] However, the conventional mother-of-pearl made in this way has the problem of long production time and high production cost because it is made by hand and uses expensive shells.
[0004] Some mother-of-pearl pattern transfer papers have been disclosed to solve these problems. However, as can be seen in Fig. 1a, conventional mother-of-pearl pattern transfer papers are thermal transfer papers (100), and are structured to include a transfer base (101), a mother-of-pearl pattern printing layer (102) formed on one surface of the transfer base (101), and a protective film (103) formed on the upper surface of the mother-of-pearl pattern printing layer (102), and a cover (104) formed to cover this laminated structure. The cover (104) is a portion that is removed after transfer.
[0005] Since the thermal transfer paper composed in this way must be fired in a furnace to develop the color of the mother-of-pearl pattern printing layer when transferred to the substrate, it is difficult to apply if the substrate is a material that is vulnerable to high temperatures, and since it is difficult to use a holographic film, the three-dimensional effect cannot be properly implemented in the mother-of-pearl pattern printing layer, so the mother-of-pearl pattern of the substrate to which the thermal transfer paper is attached is bound to have a lower quality than natural mother-of-pearl.
[0006] Meanwhile, silkscreen printing is mainly used when printing these mother-of-pearl patterns.
[0007] Silkscreen printing is a printing method that uses light to form a film on a porous cloth or mesh, then pours ink on it and pushes it out with a rubber or other squeegee to make the ink appear. It is a printing method that can be used in almost all fields due to its strong colors and visual effects.
[0008] In addition, silkscreen printing is done by applying photosensitive liquid to a silk screen with small holes, allowing it to dry sufficiently, fixing the film, and exposing it to light in an exposure device. The photosensitive liquid reacts to the transparent parts of the film to form a film, and the designed and marked parts cannot pass through the light, so they are washed away when washed. Afterwards, when ink is pressed using a squeegee, the ink penetrates the parts of the silk screen where the film has not formed, and a print is made on the printed fabric.
[0009] At this time, a plate made of a silk screen and a frame is used, but conventional plates are made with a structure in which the frame and silk screen are integrated, and each time screen printing is done, the manufacturer must design the desired pattern and re-make the entire plate made of the frame and silk screen, which causes a problem of high costs.
[0010] Prior art literature
[0011] Patent documents
[0012] Domestic Public Utility Model No. 2012-0004979
[0013] Domestic utility model registration No. 20-0397924
[0014] The present invention has been devised in consideration of the above-mentioned conventional problems, and its main purpose is to provide a method for manufacturing an artificial mother-of-pearl pattern transfer sticker that is environmentally friendly and has excellent quality such as a clear mother-of-pearl pattern and excellent three-dimensional effect or thickness by using a holographic film, and a transfer method using the transfer sticker.
[0015] Another object of the present invention is to provide a screen printing plate used in the manufacture of artificial mother-of-pearl pattern transfer stickers, which can be newly designed and manufactured with a desired pattern by a silk screen member manufacturer without having to remake the entire plate each time screen printing is performed, and the frame can be recycled.
[0016] The method for manufacturing an artificial mother-of-pearl pattern transfer sticker of the present invention for achieving the above-described object comprises the steps of: forming a binder layer by applying an adhesive to one surface of a transfer base and then silkscreen printing a binder with a design that the manufacturer wishes to implement; forming a hologram layer by pressing a material having a hologram pattern on the binder layer; forming an artificial mother-of-pearl pattern on the hologram layer by four-color ink or silkscreen printing; forming a protective film with a top coat binder on the artificial mother-of-pearl pattern; and forming a cover by silkscreen printing a transparent epoxy resin with 200 mesh so as to surround the binder layer, the hologram layer, the artificial mother-of-pearl pattern, and the protective film on the transfer base. The binder layer is characterized in that it is formed by printing a transparent epoxy resin on one side of a transfer base with a 200-mesh silk screen, printing a coating solution containing an epoxy resin and a pigment with a 150-mesh silk screen, and then printing a coating solution containing an epoxy resin and an epoxy hardener with a 200-mesh silk screen.
[0017] The transfer method using the artificial mother-of-pearl pattern transfer sticker of the present invention is characterized by including the steps of: immersing the artificial mother-of-pearl pattern transfer sticker in water to melt an adhesive applied to one side of the transfer base, thereby separating the transfer base from a binder layer; moving the artificial mother-of-pearl pattern transfer paper from which the transfer base has been separated onto a substrate, and smoothing it with a squeegee to attach a binder layer to the substrate; drying the substrate to which the artificial mother-of-pearl pattern transfer paper is attached at room temperature for 4 hours in the summer or drying it with hot air at 40 to 50°C for 1 hour in the winter; and firing the substrate in a kiln at 60 to 250°C after removing the cover.
[0018] A screen printing plate used in the manufacture of an artificial mother-of-pearl pattern transfer sticker of the present invention comprises: a transfer base; a binder layer formed by silk-screen printing a binder with a design desired by a manufacturer on one surface of the transfer base; a hologram layer formed on the binder layer; an artificial mother-of-pearl pattern formed on the hologram layer by four-color ink or silk-screen printing; a protective film formed on the artificial mother-of-pearl pattern; and a cover formed by silk-screen printing on the transfer base so as to surround the binder layer, the hologram layer, the artificial mother-of-pearl pattern, and the protective film; In a screen printing plate used in the manufacture of an artificial mother-of-pearl pattern transfer sticker, the plate comprises: a frame including first and second wall portions which are open at upper and lower sides and face each other in the longitudinal direction, and third and fourth wall portions which are connected to the first and second wall portions and face each other in the width direction; It is characterized by including a silkscreen member disposed on the inside of the frame and including first and second fixing rods and a silk screen having both ends fixed to the first and second fixing rods; and a plurality of fixing members installed on the third and fourth wall portions to fix the first and second fixing rods to the third and fourth wall portions.
[0019] In one embodiment of the present invention, a plurality of fixing member connecting portions are formed at predetermined intervals along the longitudinal direction on the third and fourth wall portions, respectively, and the fixing member connecting portions include a through hole formed to penetrate the third or fourth wall portion, a first slit formed to connect the upper end of the entrance / exit of the through hole to the third or fourth wall portion, and a second slit formed to connect the lower end of the entrance / exit of the through hole to the third or fourth wall portion, and the fixing member is characterized in that it includes a body including a vertical portion coupled to the first and second slits and first and second support portions, and a fixing rod coupled to the first or second fixing rod by penetrating the through hole in the body.
[0020] In one embodiment of the present invention, the first and second fixing bars are characterized in that a joining hole is formed in both end surfaces so that the fixing bars can be fitted.
[0021] In one embodiment of the present invention, teeth are formed to interlock with each other in the coupling holes of the first and second fixing bars and the ends of the fixing bars.
[0022] In one embodiment of the present invention, the third and fourth wall portions are characterized in that grooves are formed at the upper and lower portions, respectively, and the fixing member is characterized in that protrusions are formed at the ends of the first and second support portions so as to be fitted into the grooves.
[0023] According to one embodiment of the present invention, a mother-of-pearl pattern transfer sticker is manufactured in which the mother-of-pearl pattern expressed in color is formed by printing with four-color ink or silkscreen, and the design to be implemented is implemented by printing with a binder on a transfer base using silkscreen, so that the mother-of-pearl pattern is firmly fixed to the substrate and has a clear and excellent three-dimensional effect.
[0024] In addition, the plate used in screen printing at this time is structured so that the silkscreen material is detachably installed on the frame, so that the entire plate does not have to be re-manufactured each time screen printing is performed. Instead, the manufacturer can design and manufacture only the silkscreen material with the desired pattern, and the frame is recycled to replace the silkscreen with one frame, thereby greatly reducing the cost of screen printing.
[0025] Fig. 1a is a cross-sectional view showing the layer structure of a conventional thermal transfer sticker.
[0026] Figure 1b is a cross-sectional view showing the layer structure of an artificial mother-of-pearl pattern transfer sticker manufactured by the manufacturing method of the present invention.
[0027] Figure 2 is a plan view of a screen printing plate according to the present invention.
[0028] Figure 3 is a perspective view of a screen printing plate according to the present invention and an enlarged view of part C.
[0029] Figures 4a to 4c are perspective views and cross-sectional views of the first and second fixing rods of Figure 2.
[0030] Figure 5 is a side view of the fixing member of Figure 2.
[0031] Figure 6 is a cross-sectional view of portion D of Figure 3.
[0032] Figure 7 is a flow chart of a method for manufacturing an artificial mother-of-pearl pattern transfer sticker of the present invention and a transfer method.
[0033] Hereinafter, the present invention will be described in detail by way of an embodiment thereof with reference to the attached drawings.
[0034] Figure 1b is a cross-sectional view showing the layer structure of an artificial mother-of-pearl pattern transfer sticker manufactured by the manufacturing method of the present invention.
[0035] As illustrated in FIG. 1b, an artificial mother-of-pearl pattern transfer sticker (200) manufactured by a manufacturing method of one embodiment of the present invention includes a transfer base (210), a binder layer (250), a hologram layer (260) formed on the binder layer, an artificial mother-of-pearl pattern (220) formed on the hologram layer by four-color ink or silkscreen printing, a protective film (230) formed on the artificial mother-of-pearl pattern, and a cover (240) formed by silkscreen printing to surround the artificial mother-of-pearl pattern and the protective film.
[0036] The binder layer (250) is formed by silkscreen printing the binder on one side of the transfer base (210) with a design that the manufacturer wishes to implement.
[0037] Figure 7 is a flow chart of a method for manufacturing an artificial mother-of-pearl pattern transfer sticker of the present invention and a transfer method.
[0038] As shown in Fig. 7, in order to manufacture the artificial mother-of-pearl pattern transfer sticker of the present invention, an adhesive is first applied to one side of a transfer base (210), and then a binder layer (250) is formed by silkscreen printing a binder with a design that the manufacturer wishes to implement (S10).
[0039] The transfer base (210) can be made of paper or film, and is a part that is removed after the artificial mother-of-pearl pattern transfer sticker (200) is transferred to the conductor.
[0040] The binder layer (250) is a part that is first formed on the transfer base (210) because transfer cannot be performed if the hologram layer (260) is formed directly on the transfer base (210).
[0041] At this time, the binder layer (250) can be formed by applying an adhesive on the transfer base (210) and then printing a pattern corresponding to the design that the manufacturer wants to implement with a transparent epoxy resin using a 200 mesh (#) binder silkscreen to form a first layer, forming a second layer on the first layer with a first coating solution containing epoxy resin and pigment using a 150 mesh silkscreen, and forming a third layer on the second layer with a second coating solution containing epoxy resin and an epoxy curing agent using a 200 mesh silkscreen.
[0042] Here, mesh refers to the number of mesh holes per inch in width and length, and the larger the mesh size, the more detailed printing is possible.
[0043] Meanwhile, since the silkscreen printing method is well known, it will be briefly described below. For example, when forming the first layer, a photosensitive liquid is applied to both sides of the silk screen of the plate using a batt, and the silk screen coated with the photosensitive liquid is placed in a dryer and dried at least three times.
[0044] Then, film exposure is performed. At this time, a precisely designed film is fixed in the correct orientation on the dried silk screen. The exposure is then completed by removing the film and washing it in running water.
[0045] Next, a material having a hologram pattern is pressed onto a binder layer (250) to form a hologram (260) layer (S20).
[0046] The hologram layer (260) is formed on the upper surface of the binder layer (250) and serves to provide a three-dimensional effect to the artificial mother-of-pearl pattern (220) through a hologram effect. The color changes depending on the viewing angle, and can provide a subtle and diverse three-dimensional effect to the artificial mother-of-pearl pattern (220).
[0047] This hologram layer (260) may be formed of one of a hologram film, gold foil, and silver foil having a hologram pattern. The hologram layer (260) may be formed by pressing one of the hologram film, gold foil, and silver foil with a roller onto a transfer base having a binder layer formed thereon, but the present invention is not limited thereto.
[0048] Next, an artificial mother-of-pearl pattern (220) is formed on the hologram layer (260) by ink or silkscreen printing (S30).
[0049] This artificial mother-of-pearl pattern (220) is made only of ink and does not contain inorganic pigments, so that the mother-of-pearl pattern can be clearly expressed without baking. The ink may be a 4-color ink (expressing a color sensation similar to offset printing with only 4 colors), but the present invention is not limited thereto.
[0050] In addition, the artificial mother-of-pearl pattern (220) can be formed in various shapes. For example, the artificial mother-of-pearl pattern (220) can be in the shape of a predetermined pattern that is irregularly repeated, or can be in the shape of a flower.
[0051] Next, a protective film (230) is formed on the artificial mother-of-pearl pattern (220) using a top coat binder (S40).
[0052] The protective film (230) serves to protect the artificial mother-of-pearl pattern (220) from external impacts, etc., and is preferably made of a material similar to the artificial mother-of-pearl pattern (220) so that when the cover (240) described later is separated after transferring the transfer paper to the conductor, the cover (240) can be easily separated from the protective film (230).
[0053] Next, a cover (240) is formed by printing a transparent epoxy resin with a 200-mesh silk screen to surround a binder layer (250), a hologram layer (260), an artificial mother-of-pearl pattern (220), and a protective film (230) on a transfer base (210) (S50).
[0054] Since mother-of-pearl transfer basically requires that the pattern design have the feel of mother-of-pearl, it is necessary to scan various mother-of-pearl plates during the design process and synthesize them into the parts that you want to express as mother-of-pearl to add to the overall feel of the design.
[0055] According to one embodiment, the artificial mother-of-pearl pattern (220), which is a part expressed in color, is implemented through ink such as 4-color printing or silkscreen printing, and the hologram layer (260) that implements an invisible three-dimensional effect and the cover (240), which is a post-processing process, are implemented through screen printing. Through this process, a mother-of-pearl pattern with excellent three-dimensional effect similar to real mother-of-pearl can be implemented at low cost.
[0056] The artificial mother-of-pearl pattern transfer paper composed in this way is immersed in water to melt the adhesive applied to one side of the transfer paper, thereby separating the transfer paper from the binder layer (S60), and then the artificial mother-of-pearl pattern transfer sticker with the transfer paper separated is transferred onto the substrate to be attached, smoothed with a squeegee or the like, pressed against the substrate to attach (S70), and then dried (S80) to be transferred.
[0057] At this time, it is desirable to carry out the drying process at room temperature for about 4 hours in the summer and at 40 to 50℃ for about 1 hour using a heat gun in the winter.
[0058] Next, after removing the cover from the transfer paper attached to the conductor, the conductor is placed in a kiln and fired (S90) at 60 to 250°C depending on the material of the conductor to complete the transfer work.
[0059] In the present invention, a plate used for screen printing in the manufacture of such artificial mother-of-pearl pattern transfer paper can be used that has the following structure.
[0060] FIG. 2 is a plan view of a screen printing plate according to the present invention, FIG. 3 is a perspective view of a screen printing plate according to the present invention and an enlarged view of part C, FIGS. 4a to 4c are a perspective view and a cross-sectional view of the first and second fixing bars of FIG. 2, FIG. 5 is a side view of the fixing member of FIG. 2, and FIG. 6 is a cross-sectional view of part D of FIG. 3.
[0061] Referring to FIGS. 2 to 6, a plate (1000) according to one embodiment includes a frame (300), a silkscreen member including first and second fixing bars (400, 500) and a silk screen (420), and a plurality of fixing members (600).
[0062] The frame (300) includes first and second wall portions (311, 312) which are open at the upper and lower sides and face each other in the longitudinal direction (X), and third and fourth wall portions (313, 314) which are connected to the first and second wall portions (311, 312) and face each other in the width direction (Y).
[0063] That is, the frame (300) has a square frame shape and a space can be provided on the inside of the first to fourth wall portions (311-314) in which a silkscreen member is placed.
[0064] In addition, a fixing member connecting portion for connecting a fixing member (600) is formed on the third and fourth wall portions (313, 314). A plurality of such fixing member connecting portions may be formed continuously at a predetermined interval along the length direction of the frame.
[0065] Meanwhile, since the third wall section is a symmetrical structure in the width direction with the fourth wall section, the description of the third wall section is omitted below to avoid duplication.
[0066] The above fixed member joint includes a through hole (321) and first and second slits (slits, 322, 323).
[0067] The through hole (321) is formed to penetrate both sides of the fourth wall portion (314) in the width direction (Y).
[0068] The first slit (322) is formed in a form that connects the upper end of the entrance (referring to the outer part of the penetration hole) and the exit (referring to the inner part of the penetration hole) of the penetration hole (321) formed on both sides of the fourth wall portion (314), that is, it is formed at a predetermined depth on the upper part of the two sides of the fourth wall portion (314) and the upper surface of the fourth wall portion (314) based on the penetration hole (321).
[0069] The second slit (323) is formed in a form that connects the lower end of the inlet and outlet of the through hole (321) formed on both sides of the fourth wall portion (314), that is, it is formed at a predetermined depth on the lower end of the two sides of the fourth wall portion (314) and the lower surface of the fourth wall portion (314) based on the through hole (321).
[0070] The first and second fixing bars (400, 500) are for spreading the silk yarn (420) and fixing it to the frame (300).
[0071] And, coupling holes (411, 511) are formed on both end surfaces of the bodies (410, 420) of the first and second fixed rods (400, 500) in the longitudinal direction (Y), respectively. At this time, first teeth may be formed in the coupling holes (411, 511).
[0072] In addition, the length of the first and second fixed rods (400, 500) may be a length corresponding to the gap between the third and fourth wall portions (313, 314) or a length smaller than that.
[0073] The silk yarn (420) is fixed at both ends to the first and second fixing rods (400, 500).
[0074] At this time, first and second cut grooves (412, 512) can be formed on the outer surfaces of the first and second fixed rods (400, 500), respectively, and both ends of the silk yarn (420) can be fitted into the first and second cut grooves (412, 512).
[0075] The two ends of the silk sha (420) can be fitted into the first and second cut grooves (412, 512) of the first and second fixing rods (400, 500) and then wrapped around once to secure the silk sha (420) so that it does not separate from the bodies (410, 510) of the first and second fixing rods (400, 500).
[0076] However, the present invention is not limited thereto, and for example, both ends of the silk sha (420) may be attached to the outer surfaces of the first and second fixing bars (400, 500) using an adhesive or the like, or, if necessary, an adhesive may be additionally used when fitting both ends of the silk sha (420) into the first and second cut grooves (412, 512).
[0077] As another example, as in Fig. 4c, the first fixed rod (410) may be configured in the form of a pipe with an empty interior, and the silk yarn (420) may be stored in a wound form inside the first fixed rod (410) through the first cut groove (412).
[0078] At this time, the end of the silk sha (420) is exposed to the outside of the first fixing rod (400) through the first cutting groove (412) and fixed to the second fixing rod (500). The silk sha (420) is used by pulling it out as much as the user desires when using the plate (1000).
[0079] In this way, the silk sha (420) is fixed to the first and second fixing bars (400, 500), and then the silk sha (420) is exposed to light and a design is drawn in the desired shape, then washed and holes are made so that the dye can absorb it.
[0080] The fixing member (600) is generally formed in a clip shape including a body and a fixing bar (620). The plate (1000) of one embodiment may include a total of four fixing members (600), two on the third wall (313) and two on the fourth wall (314).
[0081] The body includes a vertical portion (610) and first and second support portions (630, 640) that are fitted into the first and second slits (322, 323) in the fixed member joint.
[0082] The vertical portion (610) is a portion that is fitted into the portion formed on the outer surface of the fourth wall portion (314) at the entrance of the through hole (321) and the first and second slits (322, 323).
[0083] The first support member (630) is a part that extends from the upper end of the vertical member (610) and is bent in two stages in a hook shape and is fitted into the upper portion formed between the upper surface and the inner surface of the fourth wall member (314) in the first slit (322).
[0084] The second support member (640) is a part that extends from the lower end of the vertical member (610) and is bent in two stages in a hook shape and is fitted into a part formed on the lower side of the lower surface and inner surface of the fourth wall member (314) in the second slit (323).
[0085] The fixed bar (620) is a part that is fitted into the connecting hole (411, 511) of the first or second fixed bar (400, 500), and is formed to protrude from the vertical part (610) in the width direction (Y) toward the inside (third wall) of the frame (300).
[0086] At this time, a second tooth may be formed at the end of the fixed rod (620) to engage with the first tooth formed in the coupling hole (411, 511) of the first or second fixed rod (400, 500) so that the first or second fixed rod (400, 500) is firmly fixed.
[0087] Meanwhile, in the case of the third wall, since it is a symmetrical structure in the width direction with the fourth wall, a detailed description is omitted to avoid duplication.
[0088] As shown in FIGS. 3, 5 and 6, the third and fourth wall portions (313, 314) may have first and second grooves (331, 341) formed on the inner surface.
[0089] In the case of the fourth wall section below, since it has a symmetrical structure in the width direction with the third wall section, a detailed description is omitted to avoid duplication.
[0090] The first groove (331) is formed on the upper side of the third wall portion (313) along the longitudinal direction (X) of the frame (300), and the second groove (341) is formed on the lower side of the third wall portion (313) along the longitudinal direction (X) of the frame (300).
[0091] That is, the first groove (331) may be formed between the upper end of the through hole (321) and the upper surface of the third wall portion (313), and the second groove (341) may be formed between the lower end of the through hole (321) and the lower surface of the third wall portion (313).
[0092] In addition, the first and second grooves (331, 341) may preferably be formed in a single line along the longitudinal direction (X) of the frame (300), but the present invention is not limited thereto, and as another example, the first and second grooves may be formed separately one at a time at each position corresponding to each fixed member joint.
[0093] In addition, a first fixing protrusion (631) may be formed at the end of the first support portion (630) toward the outer surface of the third wall portion (313), and a second fixing protrusion (641) may be formed at the end of the second support portion (630) toward the outer surface of the third wall portion (313).
[0094] Accordingly, the first fixing protrusion (631) is fitted into the first groove (331) formed on the upper side of the inner surface of the third wall portion (313), and the second fixing protrusion (641) is fitted into the second groove (341) formed on the lower side of the inner surface of the third wall portion (313).
[0095] In this way, the state in which the fixing member (600) is installed on the third wall (313) can be maintained more firmly by the combination of the first and second fixing protrusions (631, 641) and the first and second grooves (331, 341).
[0096]
[0097] Below, a method of using a plate configured in this manner is described.
[0098] First, determine the spacing between the first and second fixing bars by considering the area to be printed.
[0099] At this time, the spacing between the two fixing members installed on the third wall and the spacing between the two fixing members installed on the fourth wall are also determined according to the area to be printed.
[0100] Next, the first and second fixing rods and the silk yarn are positioned on the inside of the frame, and the first and second fixing members are respectively joined to two fixing member joining portions corresponding to the first and second fixing rods among the fixing member joining portions formed on the third wall of the frame.
[0101] At this time, the vertical portion of the body of the first to fourth fixing members and the first and second support portions are fitted into the first and second slits of the third or fourth wall portion, and the fixing members are fixed to the third or fourth wall portion.
[0102] In one embodiment, the fixing bar of the first fixing member is fitted into a fitting hole formed in one end of the first fixing bar, and the fixing bar of the second fixing member is fitted into a fitting hole formed in one end of the second fixing bar.
[0103] In addition, the third and fourth fixing members are respectively joined to two fixing member joining parts corresponding to the first and second fixing bars among the fixing member joining parts formed on the fourth wall.
[0104] In one embodiment, the fixing rod of the third fixing member is fitted into a fitting hole formed at the other end of the first fixing rod, and the fixing rod of the fourth fixing member is fitted into a fitting hole formed at the other end of the second fixing rod.
[0105] In this way, the first and second fixing bars are connected to the frame using four fixing members, and the installation of the silk screen is completed by selecting a fixing member connecting portion corresponding to the printing area among the plurality of fixing member connecting portions formed on the third and fourth walls and connecting the fixing members.
[0106] Additionally, by following this process, the pins of each silk shawl can be accurately aligned even when printing in multiple colors.
[0107] At this time, when the first teeth are formed on the first and second fixed rods and the second teeth are formed on the fixed bar of the fixed member, the fixed rod can be installed more firmly as the first teeth and the second teeth are interlocked with each other.
[0108] Afterwards, silk screen printing is performed using this plate to create an artificial mother-of-pearl pattern.
[0109] While the specification and drawings have described preferred embodiments of the present invention, specific terms have been used herein, but these are used only in a general sense to facilitate easy explanation of the technical content of the present invention and to aid understanding of the invention, and the present invention is not limited thereto. Accordingly, it will be apparent to those skilled in the art that other modifications based on the technical concepts of the present invention are possible.
[0110] Description of the symbol
[0111] 200: Artificial mother-of-pearl pattern transfer paper
[0112] 210: Warrior's Land
[0113] 220: Artificial mother-of-pearl pattern
[0114] 230: Shield
[0115] 240: Cover
[0116] 250: Binder layer
[0117] 260: Holographic layer
[0118] 1000: Plate making
Claims
1. A step of forming a binder layer by applying adhesive to one side of the transfer surface and then silkscreen printing a binder with the design the manufacturer wants to implement; A step of forming a hologram layer by pressing a material having a hologram pattern onto the binder layer; A step of forming an artificial mother-of-pearl pattern on the above hologram layer using four-color ink or silkscreen printing; A step of forming a protective film with a top coat binder on the artificial mother-of-pearl pattern; and A step of forming a cover by printing a transparent epoxy resin with a 200-mesh silk screen to surround the binder layer, the hologram layer, the artificial mother-of-pearl pattern, and the protective film on the transfer base; including; The above binder layer is formed by printing a transparent epoxy resin on one side of a transfer base with a 200-mesh silk screen, printing a coating solution containing epoxy resin and pigment with a 150-mesh silk screen, and then printing a coating solution containing epoxy resin and an epoxy hardener with a 200-mesh silk screen. A method for manufacturing an artificial mother-of-pearl pattern transfer sticker.
2. A step of putting the artificial mother-of-pearl pattern transfer sticker manufactured by the manufacturing method of paragraph 1 into water to melt the adhesive applied to one side of the transfer base and separate the transfer base from the binder layer; A step of transferring a mother-of-pearl pattern transfer paper separated from the transfer base onto a substrate, smoothing it with a squeegee, and attaching a binder layer to the substrate; A step of drying the conductor with the artificial mother-of-pearl pattern transfer paper attached at room temperature for 4 hours in the summer or drying with hot air at 40 to 50°C for 1 hour in the winter; and A transfer method using an artificial mother-of-pearl pattern transfer sticker, comprising the step of firing the conductor in a kiln at 60 to 250°C after removing the cover; 3. A screen printing plate used in the manufacture of an artificial mother-of-pearl pattern transfer sticker, comprising: a transfer base; a binder layer formed by silkscreen printing a binder with a design desired by the manufacturer on one side of the transfer base; a hologram layer formed on the binder layer; an artificial mother-of-pearl pattern formed on the hologram layer by four-color ink or silkscreen printing; a protective film formed on the artificial mother-of-pearl pattern; and a cover formed by silkscreen printing on the transfer base to surround the binder layer, the hologram layer, the artificial mother-of-pearl pattern and the protective film on the transfer base; The above plate is, A frame comprising first and second wall portions which are open at the upper and lower sides and which face each other longitudinally, and third and fourth wall portions which are connected to the first and second wall portions and face each other transversely; A silkscreen member disposed on the inside of the frame and including first and second fixing rods and a silkscreen having both ends fixed to the first and second fixing rods; and A screen printing plate used in the manufacture of an artificial mother-of-pearl pattern transfer sticker, comprising: a plurality of fixing members installed on the third and fourth walls to fix the first and second fixing rods to the third and fourth walls; 4. In the third paragraph, a plurality of fixed member joints are formed at predetermined intervals along the longitudinal direction on the third and fourth wall portions, The above fixed member joint includes a through hole formed to penetrate the third or fourth wall portion, a first slit formed to connect the upper end of the entrance / exit of the through hole to the third or fourth wall portion, and a second slit formed to connect the lower end of the entrance / exit of the through hole to the third or fourth wall portion. A screen printing plate used in the manufacture of an artificial mother-of-pearl pattern transfer sticker, characterized in that the fixing member includes a body including a vertical portion and first and second support portions coupled to the first and second slits, and a fixing bar that penetrates the through hole in the body and is coupled to the first or second fixing bar.
5. A screen printing plate used in the manufacture of an artificial mother-of-pearl pattern transfer sticker, characterized in that in the fourth paragraph, the first and second fixing bars have fixing holes formed on both end surfaces so that the fixing bars can be fitted.
Citation Information
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