Moisture-absorbing antibacterial peptide wool insole
Through the composite structure of the antibacterial wool yarn and the activated carbon fiber non-woven fabric layer, the balance between warmth and antibacterial properties of the insole is solved, and the moisture absorption and antibacterial effect is achieved, and the comfort and health of the insole is improved.
Patent Information
- Application Number
- CN202422484043.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-14
- Publication Date
- 2025-08-19
- Estimated Expiration
- 2034-10-14
AI Technical Summary
Existing insoles are difficult to balance between warmth and antibacterial properties, especially when used in winter, which can easily breed bacteria, resulting in foot odor, athlete's foot and skin ulcers.
The composite structure of the wool fabric layer, loofah layer, coconut shell activated carbon fiber non-woven fabric layer and base layer is used with antibacterial wool yarn interwoven, combined with the use of antibacterial agents and activated carbon particles to achieve hygroscopic and antibacterial effects.
It achieves good warmth, moisture absorption performance and antibacterial functions, can effectively prevent foot odor, athlete's foot and skin ulcers, keep the shoes dry and have good health care functions.
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Figure CN223232225U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to a moisture-absorbing antibacterial peptide wool insole, belonging to the technical field of insoles. Background Art
[0002] Insoles are a widely used daily necessity, especially in leather shoes and athletic shoes, which have become increasingly popular in recent years. However, due to differences in manufacturing processes and materials, most insoles are uncomfortable to wear. Over time, they can even cause foot odor, athlete's foot, and skin ulcers, which are particularly serious for people who sweat easily. Foot odor, athlete's foot, and skin ulcers are generally caused by bacteria. Furthermore, insoles used in winter are also required to have a good thermal insulation effect. Insoles with good thermal insulation properties are also prone to bacterial growth. Therefore, how to prepare an insole that not only has good softness and thermal insulation properties, but also has moisture-absorbing and antibacterial effects has become a problem to be solved. Utility Model Content
[0003] The utility model aims to provide a moisture-absorbing antibacterial peptide wool insole, which has good warming, moisture-absorbing and antibacterial effects.
[0004] In order to solve the above technical problems, the purpose of this utility model is achieved as follows:
[0005] The utility model relates to a moisture-absorbing antibacterial peptide wool insole, comprising an insole body; the insole body comprises a wool fabric layer, an upper loofah layer, a coconut shell activated carbon fiber non-woven fabric layer, a lower loofah layer and a bottom fabric layer, which are compounded in sequence; the wool fabric layer is woven with antibacterial wool yarn.
[0006] On the basis of the above solution and as a preferred solution of the above solution: the gaps inside the upper loofah layer are filled with activated carbon particles.
[0007] On the basis of the above solution and as a preferred solution of the above solution: the wool fiber used in the antibacterial wool yarn is antibacterial peptide wool fiber.
[0008] On the basis of the above solution and as a preferred solution of the above solution: the antibacterial wool yarn includes wool fiber yarn and an antibacterial agent attached to the wool fiber yarn.
[0009] On the basis of the above scheme and as a preferred scheme of the above scheme: the antibacterial agent is a quaternary ammonium salt antibacterial agent or polyhexamethylene biguanide hydrochloride.
[0010] On the basis of the above solution and as a preferred solution of the above solution: anti-slip particles are provided on the surface of the bottom fabric layer on a side away from the lower loofah layer.
[0011] The beneficial effects of the present invention are as follows: the wool fabric woven from wool-resistant yarns used in the moisture-absorbing and antimicrobial peptide wool insole has excellent antimicrobial and warmth-retaining properties, meeting winter warmth requirements. The loofah layer also has excellent moisture absorption properties, and the mesh-like shape of the loofah fibers can repeatedly stimulate acupuncture points on the soles of the feet. The coconut shell activated carbon fiber nonwoven fabric also has excellent deodorizing and antimicrobial properties, automatically absorbing and removing odors from the shoes while maintaining a dry and comfortable feel. BRIEF DESCRIPTION OF THE DRAWINGS
[0012] Figure 1 This is a schematic diagram of the cross-sectional structure of the insole body of the moisture-absorbing antimicrobial peptide wool insole involved in Example 1;
[0013] Figure 2 It is a schematic diagram of the cross-sectional structure of the insole body of the moisture-absorbing antimicrobial peptide wool insole involved in Example 2.
[0014] The markings in the figure are as follows: 1-wool fabric layer; 2-upper loofah layer; 3-coconut shell activated carbon fiber non-woven fabric layer; 4-lower loofah layer; 5-bottom fabric layer; 6-anti-slip particles. DETAILED DESCRIPTION
[0015] The present invention will be further described below with reference to the accompanying drawings and specific embodiments.
[0016] Example 1
[0017] Combine Figure 1 This embodiment is described in detail. This embodiment involves a moisture-absorbing antimicrobial peptide wool insole, comprising an insole body; the insole body comprises a wool fabric layer 1, an upper loofah layer 2, a coconut shell activated carbon fiber non-woven fabric layer 3, a lower loofah layer 4, and a base fabric layer 5, which are laminated in this order. The wool fabric layer 1 is woven from antimicrobial wool yarn. The insole body is then sewn with wool fabric around its perimeter. In this embodiment, the base fabric layer 5 is made of wool fabric.
[0018] The loofah layer 2 and the lower loofah layer 4 are both made of loofah through cutting. Because the fiber of loofah is in a grid shape, it can repeatedly stimulate the acupuncture points on the sole of the foot, promote blood circulation, enhance body metabolism, and eliminate fatigue. The shoe-pad made by the loofah has the function of strong water absorption, ventilation and air permeability, wear-resisting sweat absorption, not easily deformed, sterilization and antipruritic, promoting blood circulation, detumescence and detoxification, refreshing and improving eyesight, improving human immunity, can effectively prevent and treat foot diseases such as beriberi, tinea pedis, foot odor, foot sweat, and has good health care function.
[0019] The wool fabric layer 1 is woven from antibacterial wool yarn and exhibits excellent antibacterial properties. The wool fibers used in the antibacterial wool yarn are antimicrobial peptide wool fibers. Antimicrobial peptide wool fibers are wool fibers produced through an antimicrobial peptide wool washing and carbonization process. For details on the antimicrobial peptide wool washing and carbonization process, please refer to the same applicant's authorized invention patent: A natural antimicrobial peptide wool washing and carbonization process.
[0020] The coconut shell activated carbon fiber non-woven fabric layer 3 is made of coconut shell activated carbon fiber needle-punched non-woven fabric. The coconut shell activated carbon fiber has a good adsorption effect and can absorb the generated odor.
[0021] Furthermore, the spaces inside the upper loofah layer are filled with activated carbon particles, which can effectively improve the ability to absorb odors.
[0022] Furthermore, the surface of the bottom fabric layer away from the lower loofah layer is provided with anti-skid particles 6. This increases the friction between the insole and the shoe and reduces the slippage of the insole relative to the sole. The anti-skid particles are specifically made of silica gel.
[0023] Example 2
[0024] Combine Figure 2 The present embodiment is described in detail. The difference between the present embodiment and the first embodiment is that the coconut shell activated carbon fiber non-woven fabric layer 3 and the lower loofah layer 4 are provided with a mildew-proof fabric layer 7.
[0025] Another difference from the first embodiment is that the wool fabric layer is formed by interweaving warp yarns and weft yarns, and the wool fibers used in the antibacterial wool yarns used in the warp yarns are antibacterial peptide wool fibers.
[0026] The antibacterial wool yarn used in the weft yarn consists of wool fiber yarn and an antibacterial agent attached to the wool fiber yarn. The antibacterial agent is a quaternary ammonium salt antibacterial agent or polyhexamethylene biguanide hydrochloride. Quaternary ammonium salt antibacterial agents are cationic surfactants and non-oxidizing bactericides with dispersing, penetrating, deodorizing, and corrosion-inhibiting properties. They adsorb negatively charged bacterial microorganisms, altering the permeability of their cytoplasmic membranes, allowing cytoplasmic substances to leak out and causing bacterial apoptosis. Polyhexamethylene biguanide hydrochloride (PHMB) is readily soluble in water, and its aqueous solution is non-toxic, containing no harmful substances such as iodine, chlorine, and aldehydes. Its LD50 in acute oral toxicity tests on rats is > 5000 mg / kg, making it a practically non-toxic product. Furthermore, PHMB's bactericidal efficacy is minimally affected by ambient temperature, pH, and organic matter. In this embodiment, polyhexamethylene biguanide was selected.
[0027] The above describes in detail the preferred embodiments of the present invention. It should be understood that those skilled in the art can make numerous modifications and variations based on the concepts of the present invention without inventive effort. Therefore, any technical solutions that can be derived by those skilled in the art based on the concepts of the present invention through logical analysis, reasoning, or limited experimentation based on the existing technology should be within the scope of protection defined by the claims.
Claims
1. A hygroscopic antimicrobial peptide wool insole, comprising an insole body; characterized in that: The insole body comprises a wool fabric layer, an upper loofah layer, a coconut shell activated carbon fiber non-woven fabric layer, a lower loofah layer and a bottom fabric layer which are compounded in sequence; the wool fabric layer is woven with antibacterial wool yarn.
2. The hygroscopic antimicrobial peptide wool insole according to claim 1, characterized in that: The gaps inside the upper loofah layer are filled with activated carbon particles.
3. The hygroscopic antimicrobial peptide wool insole according to claim 1, characterized in that: The wool fiber used in the antibacterial wool yarn is antibacterial peptide wool fiber.
4. The hygroscopic antimicrobial peptide wool insole according to claim 1, characterized in that: The antibacterial wool yarn comprises wool fiber yarn and an antibacterial agent attached to the wool fiber yarn.
5. The moisture-absorbing antimicrobial peptide wool insole according to claim 4, characterized in that: The antibacterial agent is a quaternary ammonium salt antibacterial agent or polyhexamethylene biguanidine hydrochloride.
6. The moisture-absorbing antimicrobial peptide wool insole according to claim 1, characterized in that: The surface of the bottom fabric layer on one side away from the lower loofah layer is provided with anti-slip particles.