Silica gel locking soft and elastic composite fabric capable of releasing magnetic force and far infrared rays and preparation method of silica gel locking soft and elastic composite fabric
By using silicone locking, soft and elastic composite fabric in clothing fabrics, the magnetic, far-infrared and nano-silver ion sterilization functions are integrated, which solves the problems of single functions and poor stability of traditional clothing fabrics, achieving versatile and stable health care effects, and is suitable for large-scale production.
Patent Information
- Application Number
- CN202510444122.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-09
- Publication Date
- 2025-07-11
AI Technical Summary
The existing clothing fabrics mainly focus on basic functions such as warmth and breathability, which are difficult to meet people's versatile needs for health and wellness. The existing functional materials are easily lost during the washing process and have poor stability.
The structural design of silicone locking soft elastic composite fabric is adopted, including the base material fabric, functional material layer and sealing and protective fabric. The functional material layer is composed of silicone, magnetic powder, far-infrared ceramic powder and stone powder. It is applied on the base material fabric by scraping or spraying, and is sealed with a sealing and protective fabric to ensure the stability of the material.
It realizes versatile health care effects, including magnetic, far-infrared and nano-silver ion sterilization functions, improves wear comfort and functional stability, is suitable for large-scale industrial production, and reduces production costs.
Smart Images

Figure CN120287656A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of composite fabrics, in particular to a silicone-locked soft-elastic composite fabric that releases magnetic force and far-infrared rays and a preparation method thereof. Background Art
[0002] As people's living standards improve, the functional requirements for clothing are getting higher and higher. Traditional clothing fabrics mainly focus on basic functions such as warmth and breathability, which are difficult to meet people's needs for health and health care. Functional materials such as magnetism, far infrared rays, Bianstone, and nano silver powder have certain applications in the field of medical care, such as promoting blood circulation, relieving pain, and improving immunity. However, the technology for integrating these functional materials into clothing fabrics is still single and has poor functionality and stability. The technical concept is not mature enough, and there are problems such as unstable application functions and complex production processes.
[0003] There are already composite material functional fabrics; such as "a fabric that can release far infrared rays and negative ions", whose structural composition is: "epoxy resin, gelatin, poplar pulp, chitosan, polyacrylamide, bamboo charcoal fiber pulp and hydroxylated linear macromolecular initiator; components in the protective layer: single crystal silicon powder and lacquer; the particle layer is composed of bamboo charcoal fiber particles", and its products are heavy, stiff, and extremely uncomfortable to wear, which cannot meet people's important standards for clothing wearing, softness, and basic functional requirements for comfort; the health functionality is single, which cannot meet people's health needs for healthy multifunctional fabrics; during the washing process, infrared and other functional materials will be quickly and massively lost, and the functionality is unstable. It is difficult to meet people's needs for health and health care.
[0004] Therefore, it is of great practical significance to develop a multifunctional clothing fabric that is simple to make, stable in function and effective. Summary of the invention
[0005] In view of the shortcomings of the prior art, the present invention provides a silicone locking soft-elastic composite fabric that releases magnetism and far-infrared rays and a preparation method thereof, which solves the problem that the existing traditional clothing fabrics mainly focus on basic functions such as warmth preservation and breathability, and solves the problem that the existing textile fiber functional fabrics, due to the limitations of the sand making process, very few infrared and magnetic functional materials can be added to the textile fibers, and the functional effects are extremely low.
[0006] To achieve the above objectives, the present invention is implemented through the following technical solutions: a silicone locking soft elastic composite fabric that releases magnetic force and far infrared rays, comprising a bottom substrate fabric, a functional material layer and a closed protective fabric, wherein the flexible functional material layer is arranged on the bottom substrate fabric, the closed protective fabric is arranged on the bottom substrate fabric, and the bottom substrate fabric covers the functional material layer.
[0007] Preferably, the enclosed protective fabric and the underlying substrate fabric are a combination of one of natural fibers and chemical fibers.
[0008] Preferably, the functional material layer includes silica gel, magnetic powder, far-infrared ceramic powder, nano silver powder, and bian stone powder.
[0009] A preparation method of a silica gel locking flexible elastic composite fabric that releases magnetic force and far-infrared rays. The preparation method steps of the composite fabric that flexibly releases magnetic force and far-infrared rays and has controllable material loss of nano silver ion sterilization are as follows:
[0010] Step 1: Cut and shape the underlying substrate fabric:
[0011] Step 2: Put the silica gel material and nano silver powder material into a stirrer and mix them evenly to form the first-layer nano silver ion sterilization material functional layer of the functional material;
[0012] Step 3: Put the silica gel material, magnetic powder material, far-infrared ceramic powder material, and bian stone material powder into a stirrer and mix them evenly to form the second-layer material that releases magnetic force and far-infrared rays;
[0013] Step 4: Apply the first-layer nano silver ion sterilization material formed in Step 2 to the underlying substrate fabric by scraping or spraying;
[0014] Step 5: Then apply the functional material layer that releases magnetic force and far-infrared rays formed in Step 3 to the bottom layer of the first-layer nano silver ion sterilization material by scraping or spraying;
[0015] Step 6: Let the flexible silica gel of the functional material layer stand still until the functional material is locked and cured to form a flexible composite functional material that prevents the loss of functional material during water washing, namely, a silica gel flexible elastic solidified body.
[0016] Step 7: Sew the enclosed protective fabric on the underlying substrate fabric, with the enclosed protective fabric covering the functional material layer, and tightly seal the two layers of the enclosed protective fabric and the underlying substrate fabric.
[0017] Preferably, 100 - 1200 g of silica gel material, 5 - 350 g of magnetic powder material, 5 - 250 g of far-infrared ceramic powder material, 5 - 200 g of bian stone material powder, and 0.1 - 0.2 g of nano silver powder.
[0018] Preferably, in Step 2, put the silica gel material and nano silver powder into a stirrer and stir at a speed of 500 - 800 r / min for 30 - 40 minutes.
[0019] Preferably, in Step 3, put the silica gel material, magnetic powder material, far-infrared ceramic powder material, and bian stone material powder into a stirrer and stir at a speed of 500 - 800 r / min for 30 - 40 minutes
[0020] Preferably, in step three, the functional material layer is applied by scraping or spraying.
[0021] Preferably, when scraping is used, the functional material layer is controlled to be at least 0.2 mm, and when spraying is used, the functional material layer is controlled to be at least 0.25 mm.
[0022] Preferably, in step six, the flexible silica gel of the functional material layer is allowed to stand for 3 - 4 hours to form a composite functional material that is flexible and prevents the loss of the functional material during water washing, namely, a flexible silica gel solidified body.
[0023] Preferably, when sewing the closed protective fabric and the bottom substrate fabric in step seven, a sewing machine is used for sewing.
[0024] Beneficial effects
[0025] The present invention provides a silica gel - locked flexible elastic composite fabric that releases magnetic force and far - infrared rays and a preparation method thereof, which solves the problem that existing traditional clothing fabrics mainly focus on basic functions such as warmth retention and breathability and are difficult to meet people's needs in aspects such as health and healthcare. The composite fabric of the present invention integrates magnetic force function, far - infrared ray function, and nano - silver ion sterilization function, can play a health - care role in multiple aspects for the human body, promote human health, and improve immunity. The preparation method is simple, easy to operate, suitable for large - scale industrial production, reduces production costs, improves market competitiveness, and the selected materials are all common and stable in performance, ensuring the quality and safety of the composite fabric, and at the same time being beneficial to environmental protection. Description of the drawings
[0026] Figure 1 It is a top - view structural schematic diagram of a silica gel - locked flexible elastic composite fabric that releases magnetic force and far - infrared rays and a preparation method thereof according to the present invention.
[0027] Figure 2 It is a front - view structural schematic diagram of the first - layer silver - ion sterilization flexible material functional layer of a silica gel - locked flexible elastic composite fabric that releases magnetic force and far - infrared rays and a preparation method thereof according to the present invention.
[0028] Figure 3 It is a front - view structural schematic diagram of the first - layer silver - ion sterilization material flexible functional layer and the second - layer material flexible functional layer that releases magnetic force and infrared rays of a silica gel - locked flexible elastic composite fabric that releases magnetic force and far - infrared rays and a preparation method thereof according to the present invention.
[0029] In the figure: 1. Bottom substrate fabric; 2. Flexible functional material layer; 2 - 1. Silica gel, nano - silver powder; 2 - 2. Silica gel, magnetic powder material, far - infrared ceramic powder, bian stone material powder; 3. Closed protective fabric. Detailed implementation manners
[0030] The present invention will be further described below in conjunction with embodiments;
[0031] Embodiment 1: A preparation method of a silica gel locked flexible and elastic composite fabric that releases magnetic force and far-infrared rays. The steps of the preparation method of the silica gel locked flexible and elastic composite fabric that releases magnetic force and far-infrared rays are as follows:
[0032] Step 1: Cut and form the bottom substrate fabric:
[0033] Step 2: Put 100 g of silica gel material and 0.1 g of nano silver powder material into a stirrer and stir for 30 minutes at a speed of 500 r / min for uniform mixing to form the first functional material layer, the nano silver ion sterilization material functional layer;
[0034] Step 3: Put 100 g of silica gel material, 5 g of magnetic powder material, 5 g of far-infrared ceramic powder material, and 5 g of bian stone material powder into a stirrer for uniform mixing to form the second functional material layer that releases magnetic force and far-infrared rays;
[0035] Step 4: Apply the first layer of nano silver ion sterilization material formed in Step 2 onto the bottom substrate fabric by scraping, and control the functional material layer to be 0.2 mm;
[0036] Step 5: Then apply the functional material layer that releases magnetic force and infrared rays formed in Step 3 onto the bottom layer of the first layer of nano silver ion sterilization material by scraping, and control the functional material layer to be 0.2 mm;
[0037] Step 6: Let the functional material layer of flexible silica gel stand for 3 - 4 hours until the functional material is locked and cured to form a flexible composite functional material that prevents the loss of the functional material during water washing, the flexible and elastic silica gel solidified body.
[0038] Step 7: Sew the closed protection fabric onto the bottom substrate fabric. When sewing, use an industrial sewing machine to sew by the flat sewing needle method, control the stitch density to be 3 mm, cover the functional material layer with the closed protection fabric, and tightly seal the two layers of the closed protection fabric and the bottom substrate fabric.
[0039] Embodiment 2: A preparation method of a silica gel locked flexible and elastic composite fabric that releases magnetic force and far-infrared rays. The steps of the preparation method of the silica gel locked flexible and elastic composite fabric that releases magnetic force and far-infrared rays are as follows:
[0040] Step 1: Cut and form the bottom substrate fabric:
[0041] Step 2: Put 1000 g of silicone material and 0.2 g of nano silver powder material into a stirrer and stir at a speed of 500 r / min for 30 minutes to form a uniformly mixed first-layer functional material, the nano silver ion antibacterial material functional layer;
[0042] Step 3: Put 1000 g of silicone material, 300 g of magnetic powder material, 200 g of far-infrared ceramic powder material, and 150 g of bian stone powder material into a stirrer for uniform mixing to form a second-layer functional material that releases magnetic force and far-infrared rays;
[0043] Step 4: Apply the first-layer nano silver ion antibacterial material formed in Step 2 to the bottom substrate fabric by scraping, and control the functional material layer to be 0.25 mm;
[0044] Step 5: Then apply the functional material layer that releases magnetic force and far-infrared rays formed in Step 3 to the bottom layer of the first-layer nano silver ion antibacterial material by scraping, and control the functional material layer to be 0.25 mm;
[0045] Step 6: Let the functional material layer of flexible silicone stand for 3 - 4 hours until the functional material is locked and cured, forming a composite functional material that flexibly prevents the loss of the functional material during water washing, a flexible and elastic silicone cured body.
[0046] Step 7: Sew the closed protective fabric on the bottom substrate fabric. When sewing, use an industrial sewing machine to sew by the flat seam method, control the stitch density to be 3 mm, cover the functional material layer with the closed protective fabric, and tightly seal the two layers of the closed protective fabric and the bottom substrate fabric.
[0047] Example 3: A preparation method of a silicone-locked flexible and elastic composite fabric that releases magnetic force and far-infrared rays. The steps of the preparation method of the silicone-locked flexible and elastic composite fabric that releases magnetic force and far-infrared rays are as follows:
[0048] Step 1: Cut and form the bottom substrate fabric:
[0049] Step 2: Put 100 g of silicone material and 0.1 g of nano silver powder material into a stirrer and stir at a speed of 500 r / min for 30 minutes to form a uniformly mixed first-layer functional material, the nano silver ion antibacterial material functional layer;
[0050] Step 3: Put 100 g of silicone material, 5 g of magnetic powder material, 5 g of far-infrared ceramic powder material, and 5 g of bian stone powder material into a stirrer for uniform mixing to form a second-layer functional material that releases magnetic force and far-infrared rays;
[0051] Step 4: Apply the first-layer nano silver ion antibacterial material formed in Step 2 to the bottom substrate fabric by spraying, and control the functional material layer to be 0.2 mm;
[0052] Step Five: Then, apply the functional material layer that releases magnetic force and far-infrared rays formed in Step Three onto the first-layer nano silver ion antibacterial material bottom layer by spraying, and control the functional material layer to be 0.2 mm thick.
[0053] Step Six: Let the flexible silica gel of the functional material layer stand for 3 - 4 hours until the functional material is locked and cured, forming a composite functional material that is flexible and prevents the loss of the functional material during water washing, namely a flexible elastic silica gel solid.
[0054] Step Seven: Sew the closed protective fabric onto the bottom substrate fabric. When sewing, use an industrial sewing machine to sew in a flat seam method, control the stitch density to be 3 mm, cover the functional material layer with the closed protective fabric, and tightly seal the two layers of the closed protective fabric and the bottom substrate fabric.
[0055] Example 4: A preparation method of a silica gel-locked flexible composite fabric that releases magnetic force and far-infrared rays. The steps of the preparation method of the silica gel-locked flexible composite fabric that releases magnetic force and far-infrared rays are as follows:
[0056] Step One: Cut and shape the bottom substrate fabric.
[0057] Step Two: Put 1000 g of silica gel material and 0.2 g of nano silver powder material into a stirrer, and stir at a speed of 500 r / min for 30 minutes to form a uniformly mixed functional material, namely the first-layer nano silver ion antibacterial material functional layer.
[0058] Step Three: Put 1000 g of silica gel material, 300 g of magnetic powder material, 200 g of far-infrared ceramic powder material, and 150 g of bian stone material powder into a stirrer to form a uniformly mixed second-layer material that releases magnetic force and far-infrared rays.
[0059] Step Four: Apply the first-layer nano silver ion antibacterial material formed in Step Two onto the bottom substrate fabric by spraying, and control the functional material layer to be 0.25 mm thick.
[0060] Step Five: Then, apply the functional material layer that releases magnetic force and far-infrared rays formed in Step Three onto the bottom layer of the first-layer nano silver ion antibacterial material by spraying, and control the functional material layer to be 0.25 mm thick.
[0061] Step Six: Let the flexible silica gel of the functional material layer stand for 3 - 4 hours until the functional material is locked and cured, forming a composite functional material that is flexible and prevents the loss of the functional material during water washing, namely a flexible elastic silica gel solid.
[0062] Step 7: Sew the closed protective fabric onto the bottom substrate fabric. When sewing, use an industrial sewing machine to sew in a flat-seam method, with the stitch density controlled at 3 mm. The closed protective fabric covers the functional material layer, and the two layers of fabric, namely the closed protective fabric and the bottom substrate fabric, are tightly sealed.
[0063] It should be noted that in this article, relational terms such as the first and second embodiments are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order of a single fixed proportional preparation between these entities or operations. Instead, according to the actual needs of health functions, controllable arbitrary adjustments and productions of the relative functional material ratios are carried out.
Claims
1. A silicone locking soft and elastic composite fabric that releases magnetic force and far-infrared rays, comprising a bottom substrate fabric, a functional material layer, and a closed protection fabric, characterized in that, The functional material layer is disposed on the bottom substrate fabric, and the closed protection fabric is disposed on the bottom substrate fabric, and the bottom substrate fabric covers the functional material layer.
2. The silicone locking soft and elastic composite fabric that releases magnetic force and far-infrared rays according to claim 1, wherein , The closed protection fabric and the bottom substrate fabric are a combination of natural fibers and chemical fibers.
3. The silicone locking soft elastic composite fabric that releases magnetic force and far-infrared rays according to claim 2, characterized in that , The functional material layer includes flexible silica gel, magnetic powder, infrared ceramic powder, nano silver powder, and bian stone powder.
4. The preparation method of a silicone locking soft and elastic composite fabric that releases magnetic force and far-infrared rays according to any one of claims 1-3, characterized in that , The preparation method steps of the silica gel locking flexible elastic composite fabric that releases magnetic force and far infrared rays are as follows: Step 1: Cut and form the bottom substrate fabric: Step 2: Put the flexible silica gel material and nano silver powder material into a stirrer and mix them evenly to form the first layer of functional material, the nano silver ion sterilization material functional layer; Step 3: Put the flexible silica gel material, magnetic powder material, far infrared ceramic powder material, and bian stone material powder into a stirrer and mix them evenly to form the second layer of functional material that releases magnetic force and far infrared rays; Step 4: Apply the first layer of nano silver ion sterilization material formed in Step 2 on the bottom substrate fabric by scraping or spraying; Step 5: Then apply the functional material layer that releases magnetic force and far infrared rays formed in Step 3 on the bottom layer of the first layer of nano silver ion sterilization material by scraping or spraying; Step 6: Let the flexible silica gel of the functional material layer stand still until the functional material is locked and cured with the silica gel to form a flexible composite functional material that prevents the loss of the functional material during water washing, the flexible elastic silica gel solidified body. Step 7: Sew the closed protection fabric on the bottom substrate fabric. The closed protection fabric covers the functional material layer, and tightly seal the two layers of the closed protection fabric and the bottom substrate fabric.
5. The preparation method of a silicone locking soft and elastic composite fabric that releases magnetic force and far-infrared rays according to claim 4, characterized in that , 100 - 1200 g of silica gel material, 5 - 350 g of magnetic powder material, 5 - 250 g of far infrared ceramic powder material, 5 - 200 g of bian stone material powder, 0.1 - 0.2 g of nano silver powder.
6. The preparation method of a silica gel locking soft elastic composite fabric that releases magnetic force and far-infrared rays according to claim 5, characterized in that , The controllability of the functionality of the functional material can increase or decrease the proportion of magnetic powder, far infrared ceramic powder, bian stone material, and nano silver powder according to the health function requirements to meet the health function requirements of people.
7. The preparation method of a silicone locking soft elastic composite fabric that releases magnetic force and far-infrared rays according to claim 5, characterized in that , In Step 2, the silica gel material and nano silver powder are put into a stirrer and stirred at a speed of 500 - 800 r / min for 30 - 40 minutes.
8. The preparation method of a silica gel locking soft elastic composite fabric that releases magnetic force and far-infrared rays according to claim 5, characterized in that , In Step 3, the silica gel material, magnetic powder material, far infrared ceramic powder material, and bian stone material powder are put into a stirrer and stirred at a speed of 500 - 800 r / min for 30 - 40 minutes.
9. The preparation method of a silica gel locking soft elastic composite fabric that releases magnetic force and far-infrared rays according to claim 4, characterized in that , In Step 3, the functional material layer is applied by scraping or spraying.
10. The preparation method of a silica gel locking flexible composite fabric that releases magnetic force and far-infrared rays according to claim 7, characterized in that , When using the scraping method, the functional material layer is controlled to be at least 0.2 mm, and when using the spraying method, the functional material layer is controlled to be at least 0.25 mm.
11. The preparation method of a silica gel locking soft elastic composite fabric that releases magnetic force and far-infrared rays according to claim 4, characterized in that , In Step 6, the flexible silica gel of the functional material layer stands still for 3 - 4 hours to form a flexible composite functional material that prevents the loss of the functional material during water washing, the flexible elastic silica gel solidified body.
12. The preparation method of a silicone locking soft elastic composite fabric that releases magnetic force and far-infrared rays according to claim 4, characterized in that , In Step 7, when sewing the closed protection fabric and the bottom substrate fabric, a sewing machine is used for sewing.