Reflective fabric capable of reflecting colored highlight and preparation process thereof
By forming a glass bead layer on the carrier of the reflective cloth and performing multiple coloring and adhesive coatings, combined with aluminum plating technology, the existing high-gloss reflective cloth has been solved, and the existing high-gloss reflective fabrics are prepared with anti-color highlights, scratch-resistant and non-creassed reflective fabrics.
Patent Information
- Application Number
- CN202510479260.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-16
- Publication Date
- 2025-05-13
AI Technical Summary
The existing high-gloss reflective cloth is not full and bright enough in terms of reflective colors, has low brightness, and is prone to creases and is not scratch-resistant.
By forming a glass bead layer on the carrier, and applying multiple colors and adhesive coatings thereon, finally aluminium plating to form a coating, and compounded with the fabric, a reflective fabric with anti-color highlights is prepared.
It improves the fullness and brightness of reflective fabrics, with higher brightness, and has scratch-resistant and crease-free effects.
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of reflective fabrics, in particular to a reflective fabric capable of reflecting colored highlights and a preparation process thereof. Background Art
[0002] In the prior art, the preparation method of high-brightness reflective cloth is usually as shown in the public patent document CN101380834B. Specifically, beads are first planted, then colored, and then aluminum-plated. The reflective fabric produced by this method has the following disadvantages: 1. It is easy to have creases; 2. It is not scratch-resistant; 3. The color is not full and bright enough, and the brightness is low. For this reason, the applicant filed this application. Summary of the invention
[0003] In view of the deficiencies in the prior art, the present invention provides a reflective fabric capable of reflecting colored highlights and a preparation process thereof. The reflective fabric prepared has fuller and brighter reflective colors and higher brightness, and is also scratch-resistant and crease-free.
[0004] In order to solve the above technical problems, the present invention is solved by the following technical solutions: A preparation process of a reflective fabric capable of reflecting colored highlights comprises the following steps: S1, planting beads: applying a first adhesive on a carrier to form a first adhesive layer, and spreading glass beads on the first adhesive layer to form a glass bead layer; S2, coloring: coloring the surface of the object obtained in the previous process; S3, gluing: applying a third adhesive on the surface of the article obtained in the previous process; S4, metal plating: metal is plated on the surface of the object obtained in the previous process to form a coating; S5, gluing: applying the fourth adhesive on the plated layer to form a semi-finished product; S6: Compounding: Compounding the semi-finished product of step S5 with the fabric to obtain the reflective fabric.
[0005] In the above technical solution, preferably, between step S1 and step S2, the following steps are also included: Gluing: Apply a second adhesive on the glass bead layer, and then proceed to coloring in step S2.
[0006] In the above technical solution, preferably, one or more of the second adhesive, the third adhesive and the fourth adhesive is transparent glue.
[0007] In the above technical solution, preferably, one or more of the second adhesive, the third adhesive and the fourth adhesive is polyurethane glue.
[0008] In the above technical solution, preferably, the color of the toner in step S2 is transparent, and the particle size range is 10-100 nm.
[0009] In the above technical solution, preferably, the following steps are further included between steps S2 and S3: Coloring: Apply another layer of toner on the toner in step S2, the color of the toner is transparent, and then proceed to step S3 of gluing.
[0010] In the above technical solution, preferably, in step S1, the particle size of the glass microbeads is in the range of 10-100 μm.
[0011] In the above technical solution, preferably, in step S1, the carrier is one or more of PET and PE; in step S4, the metal is aluminum.
[0012] In the above technical solution, preferably, the fabric in step S7 is stretch fabric, leather, hot melt adhesive film, TC fabric or pet.
[0013] A reflective fabric capable of reflecting colored highlights is produced by the above-mentioned preparation process of a reflective fabric capable of reflecting colored highlights.
[0014] The beneficial effects of the present invention are: The reflective fabric prepared by the preparation process of the present invention has fuller and brighter reflective colors and higher brightness, and is also scratch-resistant and crease-free. DETAILED DESCRIPTION
[0015] The present invention is further described in detail below in conjunction with specific embodiments: Embodiment 1:
[0016] A preparation process of a reflective fabric capable of reflecting colored highlights comprises the following steps: S1, planting beads: applying a first adhesive on a carrier to form a first adhesive layer, and spreading glass beads on the first adhesive layer to form a glass bead layer; S2, coloring: color powder on the surface of the glass bead layer; S3, gluing: applying a third adhesive on the surface of the toner in step S2; S4, metal plating: plating metal on the surface of the third adhesive in step S3 to form a plating layer; S5, gluing: applying the fourth adhesive on the plated layer to form a semi-finished product; S6: Compounding: Compounding the semi-finished product of step S5 with the fabric to obtain the reflective fabric.
[0017] In step S1, glass beads with large particle size are selected. As one embodiment, the particle size of the glass beads ranges from 10 to 100 μm. The glass beads with large particle size are selected to make the reflective fabric brighter and to make the color powder more evenly spread when applying the color powder, thereby improving the color richness and vividness.
[0018] In step S1, the carrier is one or more of PET and PE, such as PET film, PE film or PE / PET composite film.
[0019] In this embodiment, the first adhesive is a common glue used in the bead implanting process, such as composite glue.
[0020] One or more of the third adhesive and the fourth adhesive is transparent glue. In this embodiment, the third adhesive and the fourth adhesive are both transparent glue, such as polyurethane glue, to improve the scratch resistance of the reflective fabric.
[0021] In step S2, the color of the toner is transparent. As one option, the transparent toner is made of transparent resin and the pigment therein, and the particle size of the toner is in the range of 10-100 nm.
[0022] In step S4, the metal is aluminum, that is, an aluminum layer is plated, and the aluminum layer is an electroplated powdery substance. After the reflective fabric is folded, the powdery substance will turn black after contacting other colors, thereby forming a crease. In this embodiment, the upper and lower surfaces of the aluminum-plated layer are blocked by transparent glue, so that the powdery substance will not contact other colors after the reflective fabric is folded, thereby achieving a crease-free effect. At the same time, the aluminum layer can also enhance the brightness, produce high light, and has anti-corrosion and anti-oxidation effects.
[0023] In step S6, the fabric is stretch fabric, leather, hot melt adhesive film (PES, TPU, etc.), TC fabric or PET. In the composite stage, the glue used is determined according to the type of substrate, and the existing design can be referred to.
[0024] A reflective fabric capable of reflecting colored highlights is produced by the above-mentioned preparation process of a reflective fabric capable of reflecting colored highlights.
[0025] Embodiment 2:
[0026] A preparation process of a reflective fabric capable of reflecting colored highlights comprises the following steps: S1, planting beads: applying a first adhesive on a carrier to form a first adhesive layer, and spreading glass beads on the first adhesive layer to form a glass bead layer; S2, gluing: applying a second adhesive on the glass bead layer; S3, coloring: applying color powder on the surface of the second adhesive in step S2; S4, gluing: applying a third adhesive on the surface of the toner in step S3; S5, metal plating: plating metal on the surface of the third adhesive in step S4 to form a plating layer; S6, gluing: applying a fourth adhesive on the plated layer to form a semi-finished product; S7: Compounding: Compounding the semi-finished product of step S6 with the fabric to obtain the reflective fabric.
[0027] In step S1, glass beads with large particle size are selected. As one embodiment, the particle size of the glass beads ranges from 10 to 100 μm. The glass beads with large particle size are selected to make the reflective fabric brighter and to make the color powder more evenly spread when applying the color powder, thereby improving the color richness and vividness.
[0028] In step S1, the carrier is one or more of PET and PE, such as PET film, PE film or PE / PET composite film.
[0029] In this embodiment, the first adhesive is a common glue used in the bead implanting process, such as composite glue.
[0030] In step S2, after the second adhesive is applied, the second adhesive sinks between adjacent glass beads, while retaining a sinking space for the color powder. Adding this process can stabilize the position of the color powder and help improve the fullness and brightness of the reflected color.
[0031] One or more of the second adhesive, the third adhesive and the fourth adhesive is transparent glue. In this embodiment, the second adhesive, the third adhesive and the fourth adhesive are all transparent glue, such as polyurethane glue, to improve the scratch resistance of the reflective fabric.
[0032] In step S3, the color of the toner is transparent. As one option, the transparent toner is made of transparent resin and the pigment therein, and the particle size of the toner is in the range of 10-100 nm.
[0033] In step S5, the metal is aluminum, that is, an aluminum layer is plated, and the aluminum layer is an electroplated powdery substance. After the reflective fabric is folded, the powdery substance will turn black after contacting other colors, thereby forming a crease. In this embodiment, the upper and lower surfaces of the aluminum-plated layer are blocked by transparent glue, so that the powdery substance will not contact other colors after the reflective fabric is folded, thereby achieving a crease-free effect. At the same time, the aluminum layer can also enhance the brightness, produce high light, and has anti-corrosion and anti-oxidation effects.
[0034] In step S7, the fabric is stretch fabric, leather, hot melt adhesive film (PES, TPU, etc.), TC fabric or PET.
[0035] A reflective fabric capable of reflecting colored highlights is produced by the above-mentioned preparation process of a reflective fabric capable of reflecting colored highlights.
[0036] Embodiment 3:
[0037] A preparation process of a reflective fabric capable of reflecting colored highlights comprises the following steps: S1, planting beads: applying a first adhesive on a carrier to form a first adhesive layer, and spreading glass beads on the first adhesive layer to form a glass bead layer; S2, gluing: applying a second adhesive on the glass bead layer; S3, coloring: applying color powder on the surface of the second adhesive in step S2; S4, coloring: applying another layer of toner on the toner in step S3; S5, gluing: applying a third adhesive on the surface of the toner in step S4; S6, metal plating: plating metal on the surface of the third adhesive in step S5 to form a plating layer; S7, gluing: applying a fourth adhesive on the plated layer to form a semi-finished product; S8: Compounding: Compounding the semi-finished product of step S7 with the fabric to obtain the reflective fabric.
[0038] In step S1, glass beads with large particle size are selected. As one embodiment, the particle size of the glass beads ranges from 10 to 100 μm. The glass beads with large particle size are selected to make the reflective fabric brighter and to make the color powder more evenly spread when applying the color powder, thereby improving the color richness and vividness.
[0039] In step S1, the carrier is one or more of PET and PE, such as PET film, PE film or PE / PET composite film.
[0040] In this embodiment, the first adhesive is a common glue used in the bead implanting process, such as composite glue.
[0041] In step S2, after the second adhesive is applied, the second adhesive sinks between adjacent glass beads, while retaining a sinking space for the color powder. Adding this process can stabilize the position of the color powder and help improve the fullness and brightness of the reflected color.
[0042] One or more of the second adhesive, the third adhesive and the fourth adhesive is transparent glue. In this embodiment, the second adhesive, the third adhesive and the fourth adhesive are all transparent glue, such as polyurethane glue, to improve the scratch resistance of the reflective fabric.
[0043] In steps S3 and S4, the color of the toner is transparent. As one of the options, the transparent toner is made of transparent resin and the pigment therein. The particle size range of the toner is 10-100nm. Using two coloring operations can make the toner more evenly laid, avoid the formation of concave and convex shapes between the glass beads and the toner, and make the color fuller and brighter.
[0044] In step S6, the metal is aluminum, that is, an aluminum layer is plated, and the aluminum layer is an electroplated powdery substance. After the reflective fabric is folded, the powdery substance will turn black after contacting other colors, thereby forming a crease. In this embodiment, the upper and lower surfaces of the aluminum-plated layer are blocked by transparent glue, so that the powdery substance will not contact other colors after the reflective fabric is folded, thereby achieving a crease-free effect. At the same time, the aluminum layer can also enhance the brightness, produce high light, and has anti-corrosion and anti-oxidation effects.
[0045] In step S8, the fabric is stretch fabric, leather, hot melt adhesive film (PES, TPU, etc.), TC fabric or PET.
[0046] A reflective fabric capable of reflecting colored highlights is produced by the above-mentioned preparation process of a reflective fabric capable of reflecting colored highlights.
[0047] Embodiment 4:
[0048] A preparation process of a reflective fabric capable of reflecting colored highlights comprises the following steps: S1, planting beads: applying a first adhesive on a carrier to form a first adhesive layer, and spreading glass beads on the first adhesive layer to form a glass bead layer; S2, coloring: color powder on the surface of the glass bead layer; S3, coloring: applying another layer of toner on the toner in step S2; S4, gluing: applying a third adhesive on the surface of the toner in step S3; S5, metal plating: plating metal on the surface of the third adhesive in step S4 to form a plating layer; S6, gluing: applying a fourth adhesive on the plated layer to form a semi-finished product; S7: Compounding: Compounding the semi-finished product of step S6 with the fabric to obtain the reflective fabric.
[0049] In step S1, glass beads with large particle size are selected. As one embodiment, the particle size of the glass beads ranges from 10 to 100 μm. The glass beads with large particle size are selected to make the reflective fabric brighter and to make the color powder more evenly spread when applying the color powder, thereby improving the color richness and vividness.
[0050] In step S1, the carrier is one or more of PET and PE, such as PET film, PE film or PE / PET composite film.
[0051] In this embodiment, the first adhesive is a common glue used in the bead implanting process, such as composite glue.
[0052] One or more of the third adhesive and the fourth adhesive is transparent glue. In this embodiment, the third adhesive and the fourth adhesive are both transparent glue, such as polyurethane glue, to improve the scratch resistance of the reflective fabric.
[0053] In steps S2 and S3, the color of the toner is transparent. As one of the options, the transparent toner is made of transparent resin and the pigment therein. The particle size range of the toner is 10-100nm. Using two coloring operations can make the toner more evenly laid, avoid the formation of concave and convex shapes between the glass beads and the toner, and make the color fuller and brighter.
[0054] In step S5, the metal is aluminum, that is, an aluminum layer is plated, and the aluminum layer is an electroplated powdery substance. After the reflective fabric is folded, the powdery substance will turn black after contacting other colors, thereby forming a crease. In this embodiment, the upper and lower surfaces of the aluminum-plated layer are blocked by transparent glue, so that the powdery substance will not contact other colors after the reflective fabric is folded, thereby achieving a crease-free effect. At the same time, the aluminum layer can also enhance the brightness, produce high light, and has anti-corrosion and anti-oxidation effects.
[0055] In step S7, the fabric is stretch fabric, leather, hot melt adhesive film (PES, TPU, etc.), TC fabric or PET.
[0056] A reflective fabric capable of reflecting colored highlights is produced by the above-mentioned preparation process of a reflective fabric capable of reflecting colored highlights.
[0057] The above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit the same. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art should understand that the technical solutions described in the aforementioned embodiments may still be modified, or some of the technical features may be replaced by equivalents. However, these modifications or replacements do not deviate the essence of the corresponding technical solutions from the spirit and scope of the technical solutions of the embodiments of the present invention.
Claims
1. A process for preparing a reflective fabric capable of reflecting colored highlights, characterized in that: The steps include: S1, planting beads: applying a first adhesive on a carrier to form a first adhesive layer, and spreading glass beads on the first adhesive layer to form a glass bead layer; S2, coloring: coloring the surface of the object obtained in the previous process; S3, gluing: applying a third adhesive on the surface of the article obtained in the previous process; S4, metal plating: metal is plated on the surface of the object obtained in the previous process to form a coating; S5, gluing: applying the fourth adhesive on the plated layer to form a semi-finished product; S6: Compounding: Compounding the semi-finished product of step S5 with the fabric to obtain the reflective fabric.
2. The process for preparing a reflective fabric capable of reflecting colored highlights according to claim 1, characterized in that: Between step S1 and step S2, the following steps are also included: Gluing: Apply a second adhesive on the glass bead layer, and then proceed to coloring in step S2.
3. The process for preparing a reflective fabric capable of reflecting colored highlights according to claim 1, characterized in that: One or more of the second adhesive, the third adhesive and the fourth adhesive is transparent glue.
4. The process for preparing a reflective fabric capable of reflecting colored highlights according to claim 1, characterized in that: One or more of the second adhesive, the third adhesive and the fourth adhesive is polyurethane glue.
5. The process for preparing a reflective fabric capable of reflecting colored highlights according to claim 1, characterized in that: The color of the toner in step S2 is transparent, and the particle size ranges from 10 to 100 nm.
6. The process for preparing a reflective fabric capable of reflecting colored highlights according to claim 1 or 5, characterized in that: The following steps are also included between steps S2 and S3: Coloring: Apply another layer of toner on the toner in step S2, the color of the toner is transparent, and then proceed to step S3 of gluing.
7. A process for preparing a reflective fabric capable of reflecting colored highlights according to any one of claims 1 to 4, characterized in that: In step S1, the particle size of the glass microbeads ranges from 10 to 100 μm.
8. A process for preparing a reflective fabric capable of reflecting colored highlights according to any one of claims 1 to 4, characterized in that: In step S1, the carrier is one or more of PET and PE; In step S4, the metal is aluminum.
9. A process for preparing a reflective fabric capable of reflecting colored highlights according to any one of claims 1 to 4, characterized in that: The fabric in step S7 is stretch fabric, leather, hot melt adhesive film, TC fabric or pet.
10. A reflective fabric capable of reflecting colored highlights, characterized in that: The reflective fabric is made by the preparation process of a reflective fabric capable of reflecting colored highlights as described in any one of claims 1 to 9.
Citation Information
Patent Citations
High light color reflective cloth and preparation technique
CN101380834B
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