Light storage fabric
Through the design of light storage and light storage fabrics, reflective carbon fibers and long-term optical storage fiber yarns are twisted to form a surface layer, combined with reflective adhesive layers and particles, the problem of reflective fabrics relying on external light sources, achieving continuous lighting and multi-angle reflection, improving night visibility, and enhancing safety and comfort.
Patent Information
- Application Number
- CN202422566866.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-23
- Publication Date
- 2025-08-22
- Estimated Expiration
- 2034-10-23
AI Technical Summary
Existing reflective fabrics need to rely on external light sources to emit light, and cannot provide continuous lighting in the event of insufficient light, which poses safety risks.
The design of light storage and light storage fabric is used to twist the surface layer by twisting the reflective carbon fiber filaments and long-acting optical fiber yarns, combining the reflective glue layer and reflective particles, and knitting with a knitted weft knitting large circle machine to achieve self-luminescence and multi-angle reflection effects.
Provide continuous lighting without external light sources, improve night visibility, reduce traffic accidents, and have the characteristics of comfort, environmental protection, strength and wear resistance.
Smart Images

Figure CN223255597U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of textiles, in particular to a light-storing fabric. Background Art
[0002] With the progress of society and the development of the times, new fabrics are emerging one after another. People hope to develop more new fabrics that are closer to real life to solve some of the problems in daily life. Especially in low-light environments, it is difficult for the human eye to see things in front of it clearly. This is particularly dangerous when traveling in traffic, which can easily cause traffic accidents and even endanger people's lives in serious cases.
[0003] Common luminous fabrics on the market typically utilize a reflective powder coating. This type of fabric strongly reflects direct sunlight, enhancing visibility. However, reflective fabrics have limited operating conditions and rely on external light sources to function. Without sufficient light, their effectiveness is greatly diminished, and they cannot provide continuous illumination. Light-storing pigments, on the other hand, absorb light during the day and release the stored energy at night, creating a self-luminous effect.
[0004] In order to overcome the limitations of existing luminous fabrics, the market is in urgent need of developing a light-storing and non-toxic fabric. Utility Model Content
[0005] The purpose of this utility model is to provide a light-storing fabric to address the shortcomings of the existing technology.
[0006] In order to achieve the above purpose, the technical solution adopted by the utility model is:
[0007] The utility model provides a light-storing fabric, comprising: a surface layer and an inner layer connected to the surface layer.
[0008] The surface layer is composed of yarn A and yarn B, and the inner layer is composed of blended yarn, which are knitted using a circular knitting machine.
[0009] The pattern of the light-storing fabric is a four-way cycle.
[0010] The organizational structure of the first route from top to bottom is tuck organization, tuck organization, tuck organization, and tuck organization;
[0011] The organization structure of the second route is loop organization, floating line organization, floating line organization, and loop organization from top to bottom.
[0012] The organizational structure of the third route is, from top to bottom, small circle organization, small circle organization, tuck circle organization, and tuck circle organization;
[0013] The organizational structure of the fourth route from top to bottom is circle organization, circle organization, circle organization, and circle organization.
[0014] Furthermore, the A yarn is formed by twisting reflective carbon fiber filaments and polyester hollow fiber yarns or filaments.
[0015] Furthermore, the cross-section of the reflective carbon fiber filament is triangular.
[0016] Furthermore, the B yarn is formed by twisting long-lasting light-storing fiber yarn or filament with silver-plated fiber filament.
[0017] Furthermore, the twisting direction of the A yarn is S twist, and the twisting direction of the B yarn is Z twist.
[0018] Furthermore, a reflective adhesive layer is provided on the surface of the B yarn.
[0019] Furthermore, a plurality of reflective particles are evenly distributed on the surface of the reflective adhesive layer.
[0020] Furthermore, the reflective particles are in the shape of a triangular prism.
[0021] Furthermore, the yarn of the inner layer is a blended yarn of cotton, regenerated fiber, and hemp fiber.
[0022] The present invention adopts the above technical solution, and compared with the prior art, has the following technical effects:
[0023] The utility model can emit light by itself through long-lasting light-storing fibers in the absence of an external light source, providing a continuous lighting effect. It can significantly improve nighttime visibility in low-light environments, reduce the occurrence of traffic accidents, and protect people's lives. The use of reflective particles can achieve multi-angle reflection, further improving nighttime visibility. Among them, the inner yarn of the utility model is a blended yarn of cotton, regenerated fiber, and hemp fiber, and combines the advantages of the organizational structure. It has comfort, environmental protection, strength and wear resistance, moisture absorption and breathability, antibacterial and deodorizing properties, softness and drape, and good dyeing properties. BRIEF DESCRIPTION OF THE DRAWINGS
[0024] Figure 1 This is a schematic structural diagram of the surface layer in the present utility model;
[0025] Figure 2 This is a schematic diagram of the triangular arrangement of the inner layer of the present invention;
[0026] Figure 3 This is a schematic diagram of the cross-sectional structure of the surface layer of the present invention;
[0027] Figure 4 This is a schematic diagram of the structure of the reflective particles in the present invention;
[0028] The accompanying drawings of the present invention are as follows:
[0029] Surface, 1. DETAILED DESCRIPTION
[0030] The specific implementation of the present utility model will be described in detail below.
[0031] Unless otherwise defined, the technical or scientific terms used in the claims and the specification shall have the common meanings understood by persons having ordinary skills in the technical field to which the present invention belongs.
[0032] The words "include" or similar used in the description and claims of this utility model patent application mean that the items before "include" include the items listed after "include" or their equivalents, and do not exclude other items.
[0033] The numerical values mentioned in the present invention include all numerical values that increase by one unit from the lowest to the highest, assuming that there are at least two units between any lower value and the higher value. For example, if a component or a physical quantity is said to be from 1 to 100, preferably from 10 to 90, and most preferably from 20 to 80, it is intended to express that values such as 5 to 95, 14 to 76, 23 to 67, 32 to 58, and 41 to 49 are clearly listed in this specification; for values less than 1, 0.0001, 0.001, 0.01, or 0.1 are considered to be more appropriate units. The above examples are for illustrative purposes only. In fact, all numerical combinations between the lowest value and the highest value listed are considered to be clearly listed in this specification in a similar manner.
[0034] Example
[0035] This embodiment provides a light-storing fabric, comprising: a surface layer 1, and an inner layer connected to the surface layer 1.
[0036] The surface layer 1 is composed of yarn A and yarn B, and the inner layer is composed of blended yarn, which are knitted using a circular knitting machine.
[0037] The pattern of the light-storing fabric is a four-way cycle.
[0038] The organizational structure of the first route from top to bottom is tuck organization, tuck organization, tuck organization, and tuck organization;
[0039] The organization structure of the second route is loop organization, floating line organization, floating line organization, and loop organization from top to bottom.
[0040] The organizational structure of the third route is, from top to bottom, small circle organization, small circle organization, tuck circle organization, and tuck circle organization;
[0041] The organizational structure of the fourth route from top to bottom is circle organization, circle organization, circle organization, and circle organization.
[0042] Furthermore, the A yarn is formed by twisting reflective carbon fiber filaments and polyester hollow fiber yarns or filaments.
[0043] Furthermore, the cross-section of the reflective carbon fiber filament is triangular.
[0044] Furthermore, the B yarn is formed by twisting long-lasting light-storing fiber yarn or filament with silver-plated fiber filament.
[0045] Furthermore, the twisting direction of the A yarn is S twist, and the twisting direction of the B yarn is Z twist.
[0046] Furthermore, a reflective adhesive layer is provided on the surface of the B yarn.
[0047] Furthermore, a plurality of reflective particles are evenly distributed on the surface of the reflective adhesive layer.
[0048] Furthermore, the reflective particles are in the shape of a triangular prism.
[0049] Furthermore, the yarn of the inner layer is a blended yarn of cotton, regenerated fiber, and hemp fiber.
[0050] As a preferred embodiment, the long-lasting light-storing fiber adopts the light-storing fiber described in the patent application number 202011308264.5, and the patent name is a light-storing light-storing fabric and its preparation method. The utility model adopts this technical solution without the need for creative labor by technical personnel in this field.
[0051] To sum up, the utility model can emit light by itself through long-lasting light-storing fibers in the absence of an external light source, providing a continuous lighting effect. It can significantly improve night visibility in low-light environments, reduce the occurrence of traffic accidents, and protect people's lives. The use of reflective particles can achieve multi-angle reflection, further improving night visibility. Among them, the inner yarn of the utility model is a blended yarn of cotton, regenerated fiber, and linen fiber, and combines the advantages of the organizational structure. It has comfort, environmental protection, strength and wear resistance, moisture absorption and breathability, antibacterial and deodorizing properties, softness and drape, and good dyeing properties.
[0052] The above description is only a preferred embodiment of the present invention and does not limit the implementation method and protection scope of the present invention. For those skilled in the art, it should be aware that all solutions obtained by equivalent substitutions and obvious changes made using the description and illustrations of the present invention should be included in the protection scope of the present invention.
Claims
1. A light-storing fabric, characterized in that: include: A surface layer (1), and an inner layer connected to the surface layer (1), The surface layer (1) is composed of yarn A and yarn B, and the inner layer is composed of blended yarn, which are knitted using a circular knitting machine; The pattern of the light-storing fabric is a four-way cycle. The organizational structure of the first route from top to bottom is tuck organization, tuck organization, tuck organization, and tuck organization; The organization structure of the second route is loop organization, floating line organization, floating line organization, and loop organization from top to bottom. The organizational structure of the third route is, from top to bottom, small circle organization, small circle organization, tuck circle organization, and tuck circle organization; The organizational structure of the fourth route from top to bottom is circle organization, circle organization, circle organization, and circle organization.
2. The light-storing fabric according to claim 1, characterized in that: The A yarn is formed by twisting reflective carbon fiber filaments and polyester hollow fiber yarns or filaments.
3. The light-storing fabric according to claim 2, characterized in that: The cross section of the reflective carbon fiber filament is triangular.
4. The light-storing fabric according to claim 1, characterized in that: The B yarn is formed by twisting long-lasting light-storing fiber yarn or filament with silver-plated fiber filament.
5. The light-storing fabric according to claim 2 or 4, characterized in that: The twisting direction of the A yarn is S twist, and the twisting direction of the B yarn is Z twist.
6. The light-storing fabric according to claim 1, characterized in that: The surface of the B yarn is provided with a reflective adhesive layer.
7. The light-storing fabric according to claim 6, characterized in that: A plurality of reflective particles are evenly distributed on the surface of the reflective adhesive layer.
8. The light-storing fabric according to claim 7, characterized in that: The reflective particles are in the shape of a triangular pyramid.
9. The light-storing fabric according to claim 1, characterized in that: The yarn of the inner layer is a blended yarn of cotton, regenerated fiber and hemp fiber.
Citation Information
Patent Citations
Light-storing fabric and preparation method thereof
CN112376285A