Multifunctional integrated luggage fabric and preparation method thereof
By using a variety of materials and specific processes, the high cost and electrostatic problems of multi-function integrated bag fabrics are solved, and the effect of reducing production costs and improving antistatic properties is achieved.
Patent Information
- Application Number
- CN202510355538.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-25
- Publication Date
- 2025-06-20
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The existing multi-function integrated bag fabrics are made of high-tech materials or composite materials, resulting in high production costs, affecting the product's affordability and market competitiveness, and also having static electricity problems, affecting the user experience.
Polyester fiber, nylon, fiber cloth, cellulose fiber, bamboo fiber, biodegradable plastic, organic cotton, spandex, neoprene, natural plant fiber, wool, silicone particles, metal powder, anti-mosquito reagent, blending agent and coating agent are used to improve antistatic ability through specific mixing and weaving processes.
It reduces production costs, improves the competitiveness and bearability of the product, and effectively reduces the impact of static electricity on the items in the bag, avoiding the adhesion or absorption of dust caused by static electricity.
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Abstract
Description
Technical Field
[0001] The present invention belongs to the technical field of luggage fabrics, and particularly relates to a multifunctional integrated luggage fabric and a preparation method thereof. Background Art
[0002] The multifunctional integrated luggage fabric is a specially designed material, usually used for making luggage, backpacks and other travel items. Its design purpose is to integrate multiple functions in a single material, such as waterproof, wear-resistant, tear-resistant, etc. This kind of fabric usually adopts high-tech materials or composite materials to ensure excellent performance under various environments and usage conditions; this kind of fabric usually has a waterproof coating or waterproof film, which can effectively prevent moisture from penetrating into the bag and protect the items in the bag from getting wet; since luggage may be subject to friction and wear during daily use, the multifunctional integrated luggage fabric usually has good wear resistance and can keep its appearance undamaged for a long time; modern travel luggage pursues lightness, and the multifunctional integrated luggage fabric is usually made of lightweight materials to ensure that the overall weight is not too heavy; this kind of fabric usually has good strength and durability, can withstand the pulling and heavy pressure during daily use, and protect the items in the bag from being damaged.
[0003] However, manufacturing the multifunctional integrated luggage fabric with high-tech materials or composite materials usually results in higher costs, which may lead to an increase in the price of the final product and make it unaffordable for consumers. Conventional fabrics are prone to generating static electricity, affecting the user experience, and may cause items to stick together or attract dust. Summary of the Invention
[0004] Aiming at the deficiencies in the prior art, the purpose of the present invention is to solve the problem of high cost, utilize new production technologies and material processes to reduce production costs, thereby making the product more competitive and affordable. The addition of metal powder improves the antistatic ability of the fabric, reduces the impact of static electricity on the items in the luggage, and avoids item adhesion or dust adsorption caused by static electricity.
[0005] The technical solution adopted by the present invention to solve its technical problems is:
[0006] A multifunctional integrated luggage fabric, comprising the following components: polyester fiber, nylon, fiber cloth, cellulose fiber, bamboo fiber, biodegradable plastic, organic cotton, spandex, neoprene, natural plant fiber, wool, silica gel particles, metal powder, mosquito repellent, blend agent, coating agent.
[0007] Preferably, it comprises the following components in parts by weight: polyester fiber: 20 - 40 parts, nylon: 10 - 30 parts, fiber cloth: 5 - 15 parts, cellulose fiber: 1 - 10 parts, bamboo fiber: 1 - 10 parts, biodegradable plastic: 1 - 10 parts, organic cotton: 1 - 10 parts, spandex: 1 - 5 parts, neoprene: 1 - 5 parts, natural plant fiber: 1 - 10 parts, wool: 1 - 5 parts, silica gel particles: 1 - 5 parts, metal powder: 0.1 - 2 parts, mosquito repellent: 0.1 - 2 parts, blending agent: 1 - 5 parts, coating agent: 1 - 5 parts.
[0008] Preferably, the nylon is nylon 610, and the fiber cloth is any one or more of cotton cloth, canvas, and Oxford cloth.
[0009] Preferably, the cellulose fiber is any one or more of cotton fiber, linen fiber, fluffy fiber, and hemp fiber.
[0010] Preferably, the biodegradable plastic is any one or more of polylactic acid and bio - based TPU.
[0011] Preferably, the natural plant fiber is grass fiber, and the silica gel particles are silica micro - particles.
[0012] Preferably, the wool is any one or more of cashmere and woolen cloth, and the metal powder is any one or more of aluminum powder, copper powder, and titanium powder.
[0013] Preferably, the blending agent is any one or more of antistatic agent, ultraviolet - ray resistant agent, antibacterial agent, and antifouling agent.
[0014] Preferably, the coating agent is any one or more of polyurethane coating agent and fluorocarbon resin coating agent.
[0015] A method for preparing a multifunctional integrated luggage fabric, comprising the following steps:
[0016] Weigh polyester fiber, nylon, fiber cloth, cellulose fiber, bamboo fiber, biodegradable plastic, organic cotton, spandex, neoprene, natural plant fiber, wool, silica gel particles, and coating agent according to the formula ratio, and uniformly mix them through a mixing mechanical device at 300 - 1000 revolutions per minute for 10 - 20 minutes;
[0017] Add a blending agent to promote the compatibility and uniform mixing degree of each component;
[0018] Add metal powder and mosquito repellent to the mixture according to the formula ratio, stir and mix them evenly, and form the mixed fabric raw material through a weaving machine at 100 - 1000 revolutions per minute;
[0019] After weaving, the fabric is sent to a coating machine for coating and shrinkage treatment. The woven fabric is pre-treated, including cleaning, soaking or steam treatment, to remove grease, dirt and residual processing agents on the fabric. The fabric is placed in hot water or steam to make it fully absorb moisture, and then heat-treated under the conditions of a temperature of 60°C - 100°C and a humidity of 50°C - 100°C;
[0020] When the fabric is in a wet-heat state, the fabric is stretched with a tensile force of 10% - 50% using mechanical equipment. After the shrinkage treatment is completed, the fabric is dried to restore its normal dry state, and the fabric is subjected to heat setting finishing at a temperature of 120°C - 180°C for 10 - 30 minutes.
[0021] Among them, nylon 610 is a synthetic fiber, also known as polycaprolactam. Nylon 610 has high strength and wear resistance, making it very popular in textile and industrial applications. It can be used to make durable fabrics, ropes, meshes, industrial tapes, etc., and can withstand certain stretching and friction; nylon 610 has good tolerance to many chemical substances and is not easily eroded and damaged by acids, alkalis, solvents, etc., so it is also widely used in some chemical and industrial fields; nylon 610 has excellent elasticity and toughness, and can maintain a good shape and performance even when stressed, which makes it very useful in making products with high elastic requirements; nylon 610 has a low coefficient of friction, so it performs well in some occasions where friction needs to be reduced and sliding needs to be increased, such as slide rails, bearings, etc.; nylon 610 has a certain high-temperature resistance and can be used at relatively high temperatures without losing its performance, which makes it widely used in some high-temperature environments; nylon 610 can be processed into various shapes by injection molding, extrusion, etc., such as making parts, mechanical parts, engineering plastic products, etc., and has good processing performance.
[0022] Among them, cotton cloth is made of natural cotton fibers and has good air permeability, which can allow air to circulate freely, making the skin feel comfortable and reducing excessive sweat accumulation; cotton cloth has high hygroscopicity and can quickly absorb the sweat or moisture of the body, keeping the skin dry and reducing discomfort; cotton cloth has a soft texture, comfortable touch, and is not easy to irritate the skin, making it suitable for clothing and bedding that directly contact the skin; cotton cloth has good heat resistance and is not easy to melt or burn, so it is relatively safe to use in high-temperature environments; cotton cloth is a natural fiber material with strong degradability, is environmentally friendly, and will not pollute the ecological environment; cotton cloth is easy to dye and print, and can achieve diverse designs and patterns to meet personalized needs; cotton cloth has strong durability after proper care and cleaning, can withstand multiple uses and washings, and extends its service life;
[0023] Canvas is usually made of cotton fibers or polyester fibers, with high abrasion resistance, capable of withstanding friction and wear in daily use, so it is suitable for making durable items; Canvas is a strong and sturdy material with a long service life, not easily broken or damaged, and can withstand heavy loads and frequent use; The canvas material is processed accordingly and has a certain waterproof ability, which can effectively prevent water penetration, making it suitable for making outdoor products, tents, duffel bags and other items that require waterproof functions; Canvas has good breathability, allowing air to circulate freely, keeping the inside of the item ventilated and dry, and avoiding mildew and unpleasant odors; Canvas can be used to make various items, such as bags, shoes, canvas paintings, outdoor furniture, etc. Its sturdiness and durability make it very suitable for making items that need to withstand heavy pressure and frequent use; Canvas usually uses natural fibers such as cotton, so it has less impact on the environment during production and recycling;
[0024] Oxford cloth is a common textile material, usually made of polyester fibers or nylon fibers. Oxford cloth is strong and durable, with high abrasion resistance and tear resistance, and can withstand friction and pulling in daily use, so it is suitable for making items that require durability; Oxford cloth is specially treated and usually has good waterproof performance, which can effectively resist the intrusion of rain, water splashes and stains, keeping the inside of the item dry and clean; Although Oxford cloth has waterproof function, it can still maintain a certain degree of breathability, allowing air to circulate, preventing moisture and unpleasant odors from generating inside the item; Oxford cloth usually has good wrinkle resistance, is not easy to wrinkle, maintains a neat appearance, and reduces the need for ironing; Oxford cloth is suitable for making various items, such as backpacks, tents, outdoor utensils, seat covers, etc. Its durability and waterproof performance make it widely used in outdoor sports, travel and camping and other scenarios; Oxford cloth is usually easy to clean and maintain, and ordinary cleaning methods such as washing and wiping can be used to keep it clean and presentable.
[0025] Among them, cotton fiber is a natural textile raw material, picked after cotton ripens. Cotton fiber usually has good hygroscopicity, can quickly absorb human sweat and moisture, and keep the body dry and comfortable; Cotton fiber has good breathability, allowing air to circulate freely, keeping the inside of the item ventilated and dry, and avoiding unpleasant odors and mildew; Cotton fiber has the characteristics of being soft, skin-friendly and comfortable, can provide a comfortable wearing and using experience, and is suitable for making close-fitting clothes and bedding, etc.; Cotton fiber usually has good heat resistance, is not easy to melt or fuse, so it is suitable for making items used in high-temperature environments; Cotton fiber is a natural textile raw material, with less environmental pollution during production and is relatively easy to recycle; Compared with synthetic fibers, cotton fiber has lower processing difficulty, so it can be easily made into various forms of textiles;
[0026] Flax fiber is a natural textile raw material extracted from the stems of flax plants. Flax fiber is usually stronger and more wear-resistant than cotton fiber, so it is suitable for making items that require durability; Flax fiber has good moisture absorption, can quickly absorb human sweat and moisture, and can quickly discharge it to keep the body dry and comfortable; Flax fiber has good air permeability, allowing air to circulate freely, maintaining ventilation and dryness inside the item, and avoiding the generation of odors and mildew; Flax fiber has natural antibacterial and anti-mite properties, can effectively inhibit the growth of bacteria and mites, and keep the inside of the item clean and hygienic; Flax fiber is a natural textile raw material, with less environmental pollution during the production process and is also relatively easy to recycle; Flax fiber has a natural luster and beautiful color, which can add beauty and texture to the product;
[0027] Loose fibers usually refer to fiber materials such as down and cotton wadding. There is an air layer between the loose fibers, which can effectively block external cold air and keep the body warm; Loose fibers are usually soft, light, and have good elasticity, comfortable to wear, and will not oppress the body or cause discomfort; Loose fibers generally have good moisture absorption and air permeability, allowing the skin to breathe and keeping the body dry and comfortable; Compared with other thermal insulation materials, loose fibers are light in weight and small in volume, convenient to carry; Loose fibers usually have good durability and can be used for many years after proper maintenance and use;
[0028] Hemp fiber is a natural fiber extracted from the stems of hemp plants. Hemp fiber has high strength and strong wear resistance, so it can be made into durable fabrics, papers and other materials; Hemp fiber has good moisture absorption and air permeability, can quickly absorb moisture and quickly discharge it to keep the clothes dry and comfortable; Hemp fiber contains natural antibacterial components, can effectively inhibit the growth of bacteria, and can also help remove odors; The hemp plant has a short growth cycle and is easy to grow. At the same time, it can absorb a large amount of carbon dioxide during the growth process, so hemp fiber is relatively environmentally friendly.
[0029] Among them, polylactic acid is a biodegradable polymer, abbreviated as PLA. PLA is made from renewable resources such as plant starch. Therefore, it can be decomposed by microorganisms in the natural environment, will not cause persistent pollution to the environment, and is conducive to reducing the impact of plastic waste on the environment; the raw materials of PLA are usually from plant resources such as corn starch, which are renewable, can reduce the dependence on non-renewable resources such as petroleum, and contribute to sustainable development; PLA has good mechanical properties, including strength, stiffness, and wear resistance, etc., and can be used to manufacture a series of products, such as packaging materials, food containers, medical devices, 3D printing materials, etc.; PLA has good transparency and gloss, making it have an advantage when manufacturing transparent products or products that require a good appearance; PLA materials are non-toxic and odorless, meet food safety standards, and can be safely used for food packaging and containers; PLA has good processability and can manufacture products of various shapes and sizes through processing techniques such as blow molding, injection molding, and extrusion; PLA has good heat-sealing performance and is suitable for food packaging and sealing materials; PLA can be decomposed by microorganisms into carbon dioxide and water under appropriate environmental conditions (such as industrial composting facilities), and no harmful substances are produced during the degradation process, which is conducive to reducing soil and water pollution;
[0030] Bio-based TPU is a thermoplastic polyurethane made from biological resources. The raw materials of bio-based TPU are usually from renewable resources, such as vegetable oil, plant fiber, etc. Compared with petroleum-based TPU, it reduces the dependence on non-renewable resources, helps to reduce carbon emissions and environmental impact; some types of bio-based TPU have biodegradability and can be decomposed by microorganisms into water and carbon dioxide under appropriate environmental conditions, which is conducive to reducing the impact of plastic waste on the environment; bio-based TPU retains the excellent properties of traditional TPU, such as good wear resistance, softness, chemical resistance, and strength, and is suitable for a wide range of application fields, including clothing, shoe materials, automotive parts, medical devices, etc.; bio-based TPU has good processing performance and can manufacture products of various shapes and sizes through processes such as extrusion, injection molding, and thermoforming, suitable for different production needs; some bio-based TPU materials meet food safety standards and can be safely used for food contact materials and packaging; compared with traditional TPU, some bio-based TPU shows better anti-yellowing performance and can maintain a better appearance even during long-term use; due to its environmental protection and sustainable characteristics, bio-based TPU can usually obtain green certifications and labels, which helps enterprises enhance their sustainable development image and market competitiveness.
[0031] Among them, grass fiber is a fiber extracted from natural plant herbs. Grass fiber usually comes from renewable plant resources, and its production process is relatively environmentally friendly, which is conducive to reducing the dependence on non-renewable resources and lowering carbon emissions. Most grass fibers are biodegradable and can be decomposed by microorganisms into natural substances under appropriate environmental conditions, without causing pollution to the environment, which is beneficial to reducing the impact of plastic waste on the environment. Grass fiber has good air permeability and hygroscopicity, allowing air and moisture to pass through, which helps to keep items dry and ventilated, giving it advantages in making clothing, bedding, etc. Grass fiber is light, soft, and comfortable, suitable for making clothing, household items, etc. Some grass fibers have good abrasion resistance and strength and can be used to make durable products such as packaging materials and furniture. Grass fiber can be easily dyed and has a good color absorption effect, suitable for making various products with rich colors. Some grass fibers have antibacterial properties, which helps to keep items clean and hygienic. Grass fiber can be applied to fields such as textiles, packaging, construction, furniture, and decoration, with broad application prospects.
[0032] Among them, silica gel particles are tiny particulate substances made of silica gel. Silica gel particles have good adsorption properties and can adsorb moisture, odors, and harmful gases in the air, keeping the environment fresh and dry. Silica gel particles can effectively absorb moisture in the surrounding environment, prevent items from getting damp, mildewing, and rotting, and protect the quality and shelf life of items. Silica gel particles are widely used in various desiccants to keep items such as electronic products, medicines, and foods in a dry state and extend their service life. Silica gel particles can adsorb and neutralize odors and harmful gases in the air, achieving a deodorizing effect and keeping the air fresh. Silica gel particles can be reactivated by heating or drying, enabling them to regain their adsorption function and can be used multiple times, with a long service life. Silica gel particles are a non-toxic, odorless, and pollution-free material, harmless to humans and the environment, and safe and reliable.
[0033] Among them, cashmere is the fine hair that goats grow in cold environments. Due to its extremely fine fiber fineness, high softness, and strong heat preservation performance, the diameter of cashmere fiber is only 1 / 6 of that of ordinary sheep wool, which can effectively protect the human body from cold invasion and keep the body warm. Its heat preservation performance is stronger than that of any other animal fiber. Cashmere fiber is soft, light, and comfortable to wear, without causing a sense of oppression, suitable for long-term wear. Cashmere fiber contains rich natural proteins, is non-irritating to the skin, and has excellent air permeability and hygroscopicity, making it very comfortable to wear. Cashmere fiber is easy to dye, with bright and beautiful colors, which can meet the personalized needs of consumers. Cashmere fiber contains special antibacterial components, which can inhibit the growth of bacteria and is not prone to generating odors itself. Cashmere fiber has good soft elasticity, high abrasion resistance and durability, and is not easy to deform, pill, or shed hair during wearing.
[0034] Woolen cloth is a high-grade fabric woven from wool. The wool fibers contain abundant air, which can effectively block the invasion of cold air from the outside and keep the human body warm; woolen cloth has good hygroscopicity, can quickly absorb the sweat on the skin and evaporate it, keeping the human body dry; woolen cloth can be dyed into various colors, with bright and long-lasting colors and not easy to fade; woolen cloth is soft and light, comfortable to wear, does not produce a sense of oppression, and is suitable for long-term wear; the fibers of woolen cloth are soft and have good elasticity, with high abrasion resistance and durability, and are not easy to pill or shed hair during wearing; woolen cloth is a natural fiber, produced in a sustainable way, and has no pollution or damage to the environment.
[0035] Among them, aluminum powder can be used as a filler material to enhance the strength and hardness of composite materials. When preparing composite materials, mixing aluminum powder with matrix materials (such as resins, plastics or rubbers) can effectively improve the mechanical properties of the materials, such as tensile strength and impact resistance; aluminum powder has good electrical conductivity, so it is often used as a conductive filler to prepare materials with good electrical conductivity, such as conductive coatings, conductive adhesives and conductive plastics; aluminum powder has good thermal conductivity and can be used to improve the thermal conductivity of materials. In some applications that require good heat dissipation performance, such as heat sinks for electronic devices and heat dissipation plates for vehicle braking systems, aluminum powder is often used as a filler for thermal conduction materials; aluminum powder can be used as an anti-corrosion agent in some coatings and coatings. The coating added with aluminum powder can form a protective oxide layer to effectively prevent the corrosion and oxidation of the substrate; due to the low density of aluminum powder itself, it can be used as an additive for lightweight materials to prepare lightweight products, such as lightweight concrete, lightweight composite materials, etc.;
[0036] Copper powder is often used to manufacture materials with good electrical conductivity, such as conductive coatings, conductive adhesives, and conductive plastics. In the electronics field, copper powder is widely used in the manufacture of circuit boards and conductive lines; copper powder has excellent thermal conductivity, so it can be used to prepare materials with good heat conduction performance. In the heat dissipation field, copper powder is often added to heat dissipation materials, such as thermal paste and heat sinks, to improve the heat dissipation efficiency and protect electronic devices from overheating damage; copper has antibacterial and bacteriostatic properties, so copper powder can be applied to the medical, health, and food industries to manufacture antibacterial functional materials, such as medical dressings, antibacterial packaging materials, etc., to reduce the spread of bacteria and viruses; copper powder has good corrosion resistance, so it can be used to manufacture corrosion-resistant materials, such as anticorrosive coatings and anticorrosive metal products, to protect the metal surface from oxidation and corrosion; copper powder can be added as a filler to composite materials to enhance the strength, hardness, and wear resistance of the materials. When manufacturing composite products, copper powder can improve the mechanical properties of the materials and extend their service life; the metallic luster and color of copper powder make it an excellent pigment, which is widely used in paints, inks, and plastic products to give products good appearance effects;
[0037] Titanium powder is a micron-level powder prepared from titanium metal, with a variety of excellent properties and application functions. Titanium metal has a low density, so titanium powder also has the characteristic of light weight, making it an ideal choice for preparing lightweight products. In the fields of aerospace, automotive manufacturing, and sports equipment, titanium powder is widely used to manufacture lightweight components, which helps to reduce the weight of equipment, improve performance, and save energy; titanium powder has excellent corrosion resistance and can remain stable in harsh environments such as acids and alkalis for a long time without being easily corroded or oxidized, so it is widely used to manufacture products that require corrosion resistance, such as chemical equipment, marine equipment, and medical devices; titanium powder has excellent biocompatibility and is not likely to cause allergic or rejection reactions. In the medical field, it is widely used to manufacture medical devices and implant materials such as artificial joints, dental implants, and surgical instruments; despite its low density, titanium powder has good strength and stiffness and can withstand large loads and stresses, so it is used to manufacture high-strength components in the fields of aerospace and automotive racing; titanium powder has good high-temperature stability and can maintain good physical and chemical properties in high-temperature environments, so it is widely used in high-temperature working environments such as aeroengines and gas turbines.
[0038] Among them, an antistatic agent is a substance used to reduce or prevent the generation and accumulation of static electricity. The antistatic agent can effectively reduce the generation of static electricity on the surface of an object, prevent the accumulation and release of static electricity; the accumulation of static electricity may cause interference to electronic devices, precision instruments, sensitive circuits, etc. The use of an antistatic agent can reduce this interference and protect the normal operation of the equipment; static electricity discharge may cause dangerous situations such as fires, explosions, or damage to electronic components. The antistatic agent can reduce the risk of static electricity discharge and improve safety; in some industrial production processes, static electricity can cause material adhesion, blockage, and chaos. The use of an antistatic agent can reduce these problems and improve production efficiency; static electricity can cause discomfort to the human body, such as a feeling of electric shock and a feeling of jumping electricity. The use of an antistatic agent can improve comfort and reduce the inconvenience and discomfort caused by static electricity;
[0039] An anti-ultraviolet agent is a substance used to reduce or prevent the damage of ultraviolet rays. The anti-ultraviolet agent can effectively block the penetration of ultraviolet rays, protect the skin from the harm of sunlight, and prevent diseases such as sunburn, suntan, and skin cancer; ultraviolet rays can also cause harm to the eyes, such as keratitis, cataract, etc. The use of an anti-ultraviolet agent can reduce these problems and protect eye health; ultraviolet rays are one of the main reasons for the aging of many materials (such as fibers, plastics, coatings, etc.). The use of an anti-ultraviolet agent can slow down the aging speed of the materials and extend their service life; when working outdoors or participating in sports, the use of an anti-ultraviolet agent can reduce the risk of personnel being irradiated by ultraviolet rays and improve safety; ultraviolet rays also have a great impact on the environment, such as air pollution and water eutrophication. The use of an anti-ultraviolet agent can reduce these problems and protect the environment;
[0040] An antibacterial agent is a substance used to inhibit or kill the growth of bacteria. The antibacterial agent can effectively inhibit the growth and reproduction of pathogenic bacteria, thereby reducing the risk of infection. In a medical environment, the use of an antibacterial agent can prevent the occurrence of surgical site infections and nosocomial infections; antibacterial agents can be used to control the spread of infectious diseases. For example, during the flu season, antibacterial agents can help reduce the spread of the virus and lower the infection rate of the population; in the process of food processing and storage, the use of an antibacterial agent can prevent the growth and reproduction of bacteria, maintain the freshness and hygienic quality of food, and improve food safety; antibacterial agents can prevent the erosion and contamination of products by bacteria and fungi, and extend the service life of products. For example, adding antibacterial agents to household items, textiles, and cosmetics can reduce the growth of bacteria and molds and maintain the quality and durability of products;
[0041] An anti-stain agent is a substance used to reduce and prevent stains from adhering to the surface of an object. The anti-stain agent can form a protective film or coating, creating a non-porous microstructure on the object's surface, making it difficult for stains to adhere. This can reduce the generation and fixation of stains, making the object easier to clean. Since the anti-stain agent can reduce the adhesion of stains, cleaning the object will be easier and more efficient. The anti-stain agent can reduce the use of cleaning agents and force, saving time and labor. The use of the anti-stain agent can extend the cleaning interval of the object. Since stains do not easily adhere to the surface, the object can remain clean for a longer time, reducing the need for frequent cleaning. The anti-stain agent can play a certain protective role, preventing the object's surface from being eroded and damaged by stains. Especially for some materials vulnerable to stains, such as clothing, furniture, and car interiors, the use of the anti-stain agent can extend their lifespan.
[0042] Among them, the polyurethane coating agent has high durability and can protect the object's surface from corrosion, oxidation, and other external factors. After treatment, the polyurethane coating agent has a high surface hardness and strength, with strong abrasion resistance, and can effectively prevent scratching and wear. The polyurethane coating agent forms a chemical bond with the object's surface, has good adhesion, and is not easy to peel off or fall off. The polyurethane coating agent can effectively prevent the object's surface from being eroded and damaged by water, thereby extending the service life of the item. The polyurethane coating agent can improve the fire resistance of the item and reduce the damage degree of the fire to the item. The polyurethane coating agent can make the surface of the item present a smooth, bright, and soft color, improving the aesthetic degree of the item. The polyurethane coating agent has good coating performance and convenient processing, and is suitable for surface coatings of various materials.
[0043] The fluorocarbon resin coating agent has good weather resistance and can withstand the erosion and damage of various climate factors such as acid rain, ultraviolet rays, oxidation, and humidity. The fluorocarbon resin coating agent has excellent corrosion resistance and has good resistance to various chemical substances such as acids, alkalis, and salts. The fluorocarbon resin coating agent has a high hardness and strong abrasion resistance, and can effectively protect the surface of the item from wear and scratches. The fluorocarbon resin coating agent has excellent anti-stain performance, forming a non-porous microstructure on the surface of the item that is difficult to adhere to, and can slow down the generation and adhesion of stains. The surface of the fluorocarbon resin coating agent is smooth and easy to clean, saving cleaning time and cost. The fluorocarbon resin coating agent has rich and colorful colors and lusters, which can improve the aesthetic degree of the item. The fluorocarbon resin coating agent also has multiple functions such as waterproof, insulating, and fireproof.
[0044] The beneficial effects of the present invention are:
[0045] Synthetic fibers such as polyester fiber, nylon, and spandex have excellent abrasion resistance and durability, making the luggage fabric more durable and able to withstand long-term use and heavy pressure. Materials such as fiber cloth, bamboo fiber, and biodegradable plastics are lightweight and have a certain strength, which can reduce the overall weight of the luggage and improve the carrying comfort. Materials such as biodegradable plastics, organic cotton, and natural plant fibers have good biodegradability, which is beneficial to reducing environmental pollution and conforming to the development trend of environmental protection awareness. Materials such as silica gel particles and coating agents have excellent waterproof performance, which can effectively prevent moisture from penetrating into the luggage and protect the items from being affected by moisture. The addition of mosquito repellent can effectively repel pests such as mosquitoes and insects, protecting the items in the luggage from being invaded by pests, especially suitable for outdoor activities or travel. Materials such as metal powder and wool endow the fabric with a unique appearance and texture, enhancing the fashionability and aesthetics of the luggage. At the same time, the addition of a compatibilizer can enable different materials to be fully integrated, giving play to their respective advantages and achieving multi-functional integration. Detailed implementation mode
[0046] The principles and features of the present invention are described below. The examples given are only used to explain the present invention and are not intended to limit the scope of the present invention. The present invention will be described more specifically by way of example in the following paragraphs. The advantages and features of the present invention will be clearer according to the following description and claims.
[0047] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by those skilled in the technical field to which the present invention belongs. The terms used in the specification of the present invention herein are only for the purpose of describing specific embodiments and are not intended to limit the present invention. The term "and / or" used herein includes any and all combinations of one or more of the related listed items.
[0048] Example 1:
[0049] A multi-functional integrated luggage fabric includes the following components: polyester fiber: 30 parts, nylon: 20 parts, fiber cloth: 10 parts, cellulose fiber: 5 parts, bamboo fiber: 5 parts, biodegradable plastic: 5 parts, organic cotton: 5 parts, spandex: 3 parts, neoprene: 3 parts, natural plant fiber: 8 parts, wool: 3 parts, silica gel particles: 3 parts, metal powder: 1 part, mosquito repellent: 1 part, compatibilizer: 3 parts, coating agent: 3 parts.
[0050] The fiber cloth is cotton cloth, the cellulose fiber is cotton fiber, the biodegradable plastic is polylactic acid, and the wool is cashmere;
[0051] The metal powder is aluminum powder, the compatibilizer is an antistatic agent, and the coating agent is a polyurethane coating agent.
[0052] A method for preparing a multi-functional integrated luggage fabric includes the following steps:
[0053] Weigh polyester fiber, nylon, fiber cloth, cellulose fiber, bamboo fiber, biodegradable plastic, organic cotton, spandex, neoprene, natural plant fiber, wool, silica gel particles, and coating agent according to the formula ratio, and uniformly mix them through a mixing mechanical equipment with a rotation speed of 400 r / min and a mixing time of 10 min.
[0054] Add a compatibilizer to promote the compatibility and mixing uniformity of each component.
[0055] Add metal powder and mosquito repellent to the mixture according to the formula ratio, stir and mix them evenly, and form the mixed fabric raw material through a weaving machine with a rotation speed of 200 r / min.
[0056] After weaving, send the fabric to a coating machine for coating treatment and shrinkage treatment, and pre-treat the woven fabric, including cleaning, soaking, or steam treatment, to remove grease, dirt, and residual processing agents on the fabric. Place the fabric in hot water or steam to make it fully absorb moisture, and then conduct heat treatment under the conditions of a temperature of 60 °C and a humidity of 50%.
[0057] When the fabric is in a wet and hot state, stretch the fabric with a 10% tensile force using mechanical equipment. After the shrinkage treatment is completed, dry the fabric to restore its normal dry state, and conduct heat setting finishing on the fabric at a temperature of 120 °C for 10 min.
[0058] Example 2:
[0059] A multifunctional integrated luggage fabric, including the following components: polyester fiber: 25 parts, nylon: 15 parts, fiber cloth: 8 parts, cellulose fiber: 3 parts, bamboo fiber: 7 parts, biodegradable plastic: 7 parts, organic cotton: 7 parts, spandex: 2 parts, neoprene: 2 parts, natural plant fiber: 6 parts, wool: 2 parts, silica gel particles: 2 parts, metal powder: 0.5 parts, mosquito repellent: 0.5 parts, compatibilizer: 2 parts, coating agent: 2 parts.
[0060] The fiber cloth is canvas, the cellulose fiber is linen fiber, the biodegradable plastic is bio-based TPU, and the wool is woolen cloth;
[0061] The metal powder is copper powder, the compatibilizer is an anti-ultraviolet agent, and the coating agent is a fluorocarbon resin coating agent.
[0062] A method for preparing a multifunctional integrated luggage fabric, including the following steps:
[0063] Weigh polyester fiber, nylon, fiber cloth, cellulose fiber, bamboo fiber, biodegradable plastic, organic cotton, spandex, neoprene, natural plant fiber, wool, silica gel particles, and coating agent according to the formula ratio, and uniformly mix them through a mixing mechanical equipment with a rotation speed of 500 rpm and a mixing time of 12 minutes;
[0064] Add a compatibilizer to promote the compatibility and mixing uniformity of each component;
[0065] Add metal powder and mosquito repellent to the mixture according to the formula ratio, stir and mix them evenly, and form the mixed fabric raw material through a weaving machine with a rotation speed of 400 rpm;
[0066] After weaving, send the fabric into a coating machine for coating treatment and shrinkage treatment, and pre-treat the woven fabric, including cleaning, soaking or steam treatment, to remove grease, dirt and residual processing agents on the fabric. Place the fabric in hot water or steam to make it fully absorb moisture, and then conduct heat treatment under the conditions of a temperature of 65°C and a humidity of 60°C;
[0067] When the fabric is in a wet and hot state, stretch the fabric with a 20% tensile force using mechanical equipment. After the shrinkage treatment is completed, dry the fabric to restore its normal dry state, and conduct heat setting finishing on the fabric at a temperature of 130°C for 12 minutes.
[0068] Example 3:
[0069] A multifunctional integrated luggage fabric, including the following components: polyester fiber: 35 parts, nylon: 25 parts, fiber cloth: 12 parts, cellulose fiber: 8 parts, bamboo fiber: 8 parts, biodegradable plastic: 8 parts, organic cotton: 8 parts, spandex: 4 parts, neoprene: 4 parts, natural plant fiber: 9 parts, wool: 4 parts, silica gel particles: 4 parts, metal powder: 1.5 parts, mosquito repellent: 1.5 parts, compatibilizer: 4 parts, coating agent: 4 parts.
[0070] The fiber cloth is Oxford cloth, the cellulose fiber is fluffy fiber, the biodegradable plastic is bio-based TPU, and the wool is woolen cloth;
[0071] The metal powder is titanium powder, the compatibilizer is an antibacterial agent, and the coating agent is a fluorocarbon resin coating agent.
[0072] A preparation method of a multifunctional integrated luggage fabric, including the following steps:
[0073] Weigh polyester fiber, nylon, fiber cloth, cellulose fiber, bamboo fiber, biodegradable plastic, organic cotton, spandex, neoprene, natural plant fiber, wool, silica gel particles, and coating agent according to the formula ratio, and uniformly mix them through a mixing mechanical equipment with a rotation speed of 600 rpm and a mixing time of 14 minutes;
[0074] Add a blending agent to promote the compatibility and mixing uniformity of each component;
[0075] Add metal powder and mosquito repellent to the mixture according to the formula ratio and stir to mix evenly. Then, form the mixed fabric raw materials through a weaving machine at 500 revolutions per minute;
[0076] After weaving, send the fabric to a coating machine for coating treatment and shrinkage treatment. Pretreat the woven fabric, including cleaning, soaking, or steam treatment, to remove grease, dirt, and residual processing agents on the fabric. Place the fabric in hot water or steam to make it fully absorb moisture, and then conduct heat treatment under the conditions of a temperature of 70°C and a humidity of 70°C;
[0077] When the fabric is in a wet and hot state, stretch the fabric with a 30% tensile force using mechanical equipment. After the shrinkage treatment is completed, dry the fabric to restore its normal dry state, and conduct heat setting finishing on the fabric at a temperature of 140°C for 14 minutes.
[0078] Example 4:
[0079] A multifunctional integrated luggage fabric, including the following components: polyester fiber: 38 parts, nylon: 22 parts, fiber cloth: 14 parts, cellulose fiber: 6 parts, bamboo fiber: 4 parts, biodegradable plastic: 4 parts, organic cotton: 4 parts, spandex: 3 parts, neoprene: 2 parts, natural plant fiber: 5 parts, wool: 3 parts, silica gel particles: 3 parts, metal powder: 0.8 parts, mosquito repellent: 0.8 parts, blending agent: 3 parts, coating agent: 3 parts.
[0080] The fiber cloth is Oxford cloth, the cellulose fiber is hemp fiber, the biodegradable plastic is bio-based TPU, and the wool is woolen cloth;
[0081] The metal powder is titanium powder, the blending agent is an anti-fouling agent, and the coating agent is a fluorocarbon resin coating agent.
[0082] A method for preparing a multifunctional integrated luggage fabric, including the following steps:
[0083] Weigh polyester fiber, nylon, fiber cloth, cellulose fiber, bamboo fiber, biodegradable plastic, organic cotton, spandex, neoprene, natural plant fiber, wool, silica gel particles, and coating agent according to the formula ratio and conduct uniform mixing through a mixing mechanical equipment at 700 revolutions per minute and a mixing time of 16 minutes;
[0084] Add a blending agent to promote the compatibility and mixing uniformity of each component;
[0085] Add metal powder and mosquito repellent to the mixture according to the formula ratio and stir to mix evenly. Then, form the mixed fabric raw materials through a loom with a speed of 600 revolutions per minute.
[0086] After weaving, send the fabric to a coating machine for coating treatment and shrinkage treatment. Pretreat the woven fabric, including cleaning, soaking, or steam treatment, to remove grease, dirt, and residual processing agents on the fabric. Place the fabric in hot water or steam to make it fully absorb moisture, and then conduct heat treatment under the conditions of a temperature of 80°C and a humidity of 80°C.
[0087] When the fabric is in a hot and humid state, stretch the fabric with a mechanical device with a tensile force of 40%. After the shrinkage treatment is completed, dry the fabric to restore its normal dry state, and conduct heat setting finishing on the fabric at a temperature of 150°C for 16 minutes.
[0088] Example 5:
[0089] A multifunctional integrated luggage fabric, including the following components: polyester fiber: 30 parts, nylon: 20 parts, fiber cloth: 10 parts, cellulose fiber: 5 parts, bamboo fiber: 5 parts, biodegradable plastic: 5 parts, organic cotton: 5 parts, spandex: 2 parts, neoprene: 2 parts, natural plant fiber: 5 parts, wool: 2 parts, silica gel particles: 2 parts, metal powder: 0.5 part, mosquito repellent: 0.5 part, compatibilizer: 3 parts, coating agent: 3 parts.
[0090] The fiber cloth is canvas, the cellulose fiber is fluffy fiber, the biodegradable plastic is bio-based TPU, and the wool is cashmere;
[0091] The metal powder is aluminum powder, the compatibilizer is an anti-fouling agent, and the coating agent is a fluorocarbon resin coating agent.
[0092] A method for preparing a multifunctional integrated luggage fabric, including the following steps:
[0093] Weigh polyester fiber, nylon, fiber cloth, cellulose fiber, bamboo fiber, biodegradable plastic, organic cotton, spandex, neoprene, natural plant fiber, wool, silica gel particles, and coating agent according to the formula ratio and uniformly mix them through a mixing mechanical device with a speed of 800 revolutions per minute and a mixing time of 18 minutes;
[0094] Add a compatibilizer to promote the compatibility and mixing uniformity of each component;
[0095] Add metal powder and mosquito repellent to the mixture according to the formula ratio and stir to mix evenly. Then, form the mixed fabric raw materials through a loom with a speed of 700 revolutions per minute.
[0096] After weaving is completed, the fabric is sent to a coating machine for coating and shrinkage treatment. The fabric obtained by weaving is pretreated, including cleaning, soaking or steam treatment, to remove grease, dirt and residual processing agents on the fabric. The fabric is placed in hot water or steam to make it fully absorb moisture, and then heat treatment is carried out under the conditions of a temperature of 85°C and a humidity of 85°C;
[0097] When the fabric is in a damp-heat state, the fabric is stretched with a 45% tensile force by mechanical equipment. After the shrinkage treatment is completed, the fabric is dried to restore its normal dry state, and the fabric is subjected to heat setting finishing at a temperature of 160°C for 18 minutes.
[0098] Example 6:
[0099] A multifunctional integrated luggage fabric, including the following components: polyester fiber: 28 parts, nylon: 18 parts, fiber cloth: 9 parts, cellulose fiber: 4 parts, bamboo fiber: 6 parts, biodegradable plastic: 6 parts, organic cotton: 6 parts, spandex: 2 parts, neoprene: 3 parts, natural plant fiber: 7 parts, wool: 2 parts, silica gel particles: 2 parts, metal powder: 0.5 parts, mosquito repellent: 0.5 parts, blend agent: 2 parts, coating agent: 2 parts.
[0100] The fiber cloth is cotton cloth, the cellulose fiber is hemp fiber, the biodegradable plastic is polylactic acid, and the wool is cashmere;
[0101] The metal powder is titanium powder, the blend agent is an ultraviolet ray inhibitor, and the coating agent is a fluorocarbon resin coating agent.
[0102] A method for preparing a multifunctional integrated luggage fabric, including the following steps:
[0103] Weigh polyester fiber, nylon, fiber cloth, cellulose fiber, bamboo fiber, biodegradable plastic, organic cotton, spandex, neoprene, natural plant fiber, wool, silica gel particles, and coating agent according to the formula ratio and uniformly mix them through a mixing mechanical equipment at 900 revolutions per minute for 19 minutes;
[0104] Add a blend agent to promote the compatibility and mixing uniformity of each component;
[0105] Add metal powder and mosquito repellent to the mixture according to the formula ratio and stir and mix them evenly. Form the mixed fabric raw material through a loom at 800 revolutions per minute;
[0106] After weaving is completed, the fabric is sent to a coating machine for coating treatment and shrinkage treatment. The fabric obtained by weaving is pretreated, including cleaning, soaking or steam treatment, to remove grease, dirt and residual processing agents on the fabric. The fabric is placed in hot water or steam to make it fully absorb moisture, and then heat treatment is carried out under the conditions of a temperature of 90°C and a humidity of 90°C;
[0107] When the fabric is in a damp and hot state, the fabric is stretched with a 50% tensile force by mechanical equipment. After the shrinkage treatment is completed, the fabric is dried to restore its normal dry state, and the fabric is subjected to heat setting finishing at a temperature of 170°C for 19 minutes.
[0108] Comparative Example 1:
[0109] A multifunctional integrated luggage fabric, including the following components: A multifunctional integrated luggage fabric, including the following components: Polyester fiber: 30 parts, nylon: 30 parts, cellulose fiber: 5 parts, bamboo fiber: 5 parts, biodegradable plastic: 5 parts, organic cotton: 5 parts, spandex: 3 parts, neoprene: 3 parts, natural plant fiber: 8 parts, wool: 3 parts, silica gel particles: 3 parts, metal powder: 1 part, mosquito repellent: 1 part, blending agent: 3 parts, coating agent: 3 parts.
[0110] The cellulose fiber is cotton fiber, the biodegradable plastic is polylactic acid, and the wool is cashmere;
[0111] The metal powder is aluminum powder, the blending agent is an antistatic agent, and the coating agent is a polyurethane coating agent.
[0112] A method for preparing a multifunctional integrated luggage fabric, including the following steps:
[0113] Weigh polyester fiber, nylon, cellulose fiber, bamboo fiber, biodegradable plastic, organic cotton, spandex, neoprene, natural plant fiber, wool, silica gel particles, and coating agent according to the formula ratio, and uniformly mix them through a mixing mechanical equipment with a rotation speed of 400 r / min and a mixing time of 10 min;
[0114] Add a blending agent to promote the compatibility and mixing uniformity of each component;
[0115] Add metal powder and mosquito repellent to the mixture according to the formula ratio, stir and mix them evenly, and form the mixed fabric raw material through a loom with a rotation speed of 200 r / min;
[0116] After weaving is completed, the fabric is sent to a coating machine for coating treatment and shrinkage treatment. The fabric obtained by weaving is pretreated, including cleaning, soaking or steam treatment, to remove grease, dirt and residual processing agents on the fabric. The fabric is placed in hot water or steam to make it fully absorb moisture, and then heat treatment is carried out under the conditions of a temperature of 60°C and a humidity of 50°C;
[0117] When the fabric is in a wet and hot state, the fabric is stretched with a 10% tensile force by mechanical equipment. After the shrinkage treatment is completed, the fabric is dried to restore its normal dry state, and the fabric is subjected to heat setting finishing at a temperature of 120 °C for 10 minutes.
[0118] Comparative Example 2:
[0119] A multifunctional integrated luggage fabric, comprising the following components: polyester fiber: 25 parts, nylon: 15 parts, fiber cloth: 11 parts, bamboo fiber: 7 parts, biodegradable plastic: 7 parts, organic cotton: 7 parts, spandex: 2 parts, neoprene: 2 parts, natural plant fiber: 6 parts, wool: 2 parts, silica gel particles: 2 parts, metal powder: 0.5 part, mosquito repellent: 0.5 part, blending agent: 2 parts, coating agent: 2 parts.
[0120] The fiber cloth is canvas, the biodegradable plastic is bio-based TPU, and the wool is woolen cloth;
[0121] The metal powder is copper powder, the blending agent is an anti-ultraviolet agent, and the coating agent is a fluorocarbon resin coating agent.
[0122] A preparation method of a multifunctional integrated luggage fabric, comprising the following steps:
[0123] Weigh polyester fiber, nylon, fiber cloth, bamboo fiber, biodegradable plastic, organic cotton, spandex, neoprene, natural plant fiber, wool, silica gel particles, and coating agent according to the formula ratio, and uniformly mix them through a mixing mechanical equipment with a rotation speed of 500 r / min and a mixing time of 12 min;
[0124] Add a blending agent to promote the compatibility and mixing uniformity of each component;
[0125] Add metal powder and mosquito repellent to the mixture according to the formula ratio, stir and mix them evenly, and form the mixed fabric raw material through a weaving machine with a rotation speed of 400 r / min;
[0126] After weaving, send the fabric into a coating machine for coating treatment and shrinkage treatment, and pre-treat the woven fabric, including cleaning, soaking or steam treatment, to remove grease, dirt and residual processing agents on the fabric. Place the fabric in hot water or steam to make it fully absorb moisture, and then conduct heat treatment under the conditions of a temperature of 65 °C and a humidity of 60%;
[0127] When the fabric is in a wet and hot state, the fabric is stretched with a 20% tensile force by mechanical equipment. After the shrinkage treatment is completed, the fabric is dried to restore its normal dry state, and the fabric is subjected to heat setting finishing at a temperature of 130 °C for 12 minutes.
[0128] Comparative Example 3
[0129] A multifunctional integrated luggage fabric, comprising the following components: polyester fiber: 35 parts, nylon: 28 parts, fiber cloth: 15 parts, cellulose fiber: 10 parts, biodegradable plastic: 8 parts, organic cotton: 8 parts, spandex: 4 parts, neoprene: 4 parts, natural plant fiber: 9 parts, wool: 4 parts, silica gel particles: 4 parts, metal powder: 1.5 parts, mosquito repellent: 1.5 parts, blending agent: 4 parts, coating agent: 4 parts.
[0130] The fiber cloth is Oxford cloth, the cellulose fiber is fluffy fiber, the biodegradable plastic is bio-based TPU, and the wool is woolen cloth;
[0131] The metal powder is titanium powder, the blending agent is an antibacterial agent, and the coating agent is a fluorocarbon resin coating agent.
[0132] A method for preparing a multifunctional integrated luggage fabric, comprising the following steps:
[0133] Weigh polyester fiber, nylon, fiber cloth, cellulose fiber, biodegradable plastic, organic cotton, spandex, neoprene, natural plant fiber, wool, silica gel particles, and coating agent according to the formula ratio, and uniformly mix them through a mixing mechanical device with a rotation speed of 600 r / min and a mixing time of 14 min;
[0134] Add a blending agent to promote the compatibility and mixing uniformity of each component;
[0135] Add metal powder and mosquito repellent to the mixture according to the formula ratio, stir and mix them evenly, and form the mixed fabric raw material through a weaving machine with a rotation speed of 500 r / min;
[0136] After weaving, send the fabric into a coating machine for coating treatment and shrinkage treatment, and pre-treat the woven fabric, including cleaning, soaking, or steam treatment, to remove grease, dirt, and residual processing agents on the fabric. Place the fabric in hot water or steam to make it fully absorb moisture, and then conduct heat treatment under the conditions of a temperature of 70 °C and a humidity of 70 °C;
[0137] When the fabric is in a wet and hot state, stretch the fabric with a 30% tensile force using mechanical equipment. After the shrinkage treatment is completed, dry the fabric to restore its normal dry state, and conduct heat setting finishing on the fabric at a temperature of 140 °C for 14 min.
[0138] Comparative Example 4
[0139] A multifunctional integrated luggage fabric, comprising the following components: polyester fiber: 38 parts, nylon: 26 parts, fiber cloth: 14 parts, cellulose fiber: 6 parts, bamboo fiber: 4 parts, biodegradable plastic: 4 parts, spandex: 3 parts, neoprene: 2 parts, natural plant fiber: 5 parts, wool: 3 parts, silica particles: 3 parts, metal powder: 0.8 parts, mosquito repellent: 0.8 parts, blending agent: 3 parts, coating agent: 3 parts.
[0140] The fiber cloth is Oxford cloth, the cellulose fiber is hemp fiber, the biodegradable plastic is bio-based TPU, and the wool is woolen cloth;
[0141] The metal powder is titanium powder, the blending agent is a stain-resistant agent, and the coating agent is a fluorocarbon resin coating agent.
[0142] A method for preparing a multifunctional integrated luggage fabric, comprising the following steps:
[0143] Weigh polyester fiber, nylon, fiber cloth, cellulose fiber, bamboo fiber, biodegradable plastic, spandex, neoprene, natural plant fiber, wool, silica particles, and coating agent according to the formula ratio, and perform uniform mixing through a mixing mechanical device at 700 revolutions per minute for 16 minutes;
[0144] Add a blending agent to promote the compatibility and mixing uniformity of each component;
[0145] Add metal powder and mosquito repellent to the mixture according to the formula ratio, stir and mix evenly, and form the mixed fabric raw material through a loom at 600 revolutions per minute;
[0146] After weaving, send the fabric into a coating machine for coating treatment and shrinkage treatment, and perform pretreatment on the woven fabric, including cleaning, soaking, or steam treatment, to remove grease, dirt, and residual processing agents on the fabric. Place the fabric in hot water or steam to make it fully absorb moisture, and then perform heat treatment under the conditions of 80°C temperature and 80% humidity;
[0147] When the fabric is in a damp and hot state, stretch the fabric with a 40% tensile force using mechanical equipment. After shrinkage treatment, dry the fabric to restore its normal dry state, and perform heat setting finishing on the fabric at 150°C for 16 minutes.
[0148] Comparative Example 5
[0149] A multifunctional integrated luggage fabric, comprising the following components: polyester fiber: 30 parts, nylon: 25 parts, fiber cloth: 10 parts, cellulose fiber: 5 parts, bamboo fiber: 5 parts, biodegradable plastic: 5 parts, organic cotton: 5 parts, spandex: 2 parts, neoprene: 2 parts, wool: 2 parts, silica gel particles: 2 parts, metal powder: 0.5 part, mosquito repellent: 0.5 part, blend agent: 3 parts, coating agent: 3 parts.
[0150] The fiber cloth is canvas, the cellulose fiber is fluffy fiber, the biodegradable plastic is bio-based TPU, and the wool is cashmere;
[0151] The metal powder is aluminum powder, the blend agent is a stain-resistant agent, and the coating agent is a fluorocarbon resin coating agent.
[0152] A method for preparing a multifunctional integrated luggage fabric, comprising the following steps:
[0153] Weigh polyester fiber, nylon, fiber cloth, cellulose fiber, bamboo fiber, biodegradable plastic, organic cotton, spandex, neoprene, wool, silica gel particles, and coating agent according to the formula ratio, and uniformly mix them through a mixing mechanical device at 800 revolutions per minute for 18 minutes;
[0154] Add a blend agent to promote the compatibility and mixing uniformity of each component;
[0155] Add metal powder and mosquito repellent to the mixture according to the formula ratio, stir and mix them evenly, and form the mixed fabric raw materials through a weaving machine at 700 revolutions per minute;
[0156] After weaving, send the fabric to a coating machine for coating treatment and shrinkage treatment. Pretreat the woven fabric, including cleaning, soaking, or steam treatment, to remove grease, dirt, and residual processing agents on the fabric. Place the fabric in hot water or steam to make it fully absorb moisture, and then perform heat treatment under the conditions of a temperature of 85°C and a humidity of 85°C;
[0157] When the fabric is in a damp and hot state, stretch the fabric with a 45% tensile force using mechanical equipment. After shrinkage treatment, dry the fabric to restore its normal dry state, and perform heat setting finishing on the fabric at a temperature of 160°C for 18 minutes.
[0158] Comparative Example 6
[0159] A multifunctional integrated luggage fabric, comprising the following components: polyester fiber: 28 parts, nylon: 18 parts, fiber cloth: 9 parts, cellulose fiber: 4 parts, bamboo fiber: 6 parts, biodegradable plastic: 6 parts, organic cotton: 6 parts, spandex: 2 parts, neoprene: 3 parts, natural plant fiber: 7 parts, wool: 2 parts, silica gel particles: 2 parts, mosquito repellent: 1 part, blending agent: 2 parts, coating agent: 2 parts.
[0160] The fiber cloth is cotton cloth, the cellulose fiber is hemp fiber, the biodegradable plastic is polylactic acid, and the wool is cashmere;
[0161] The metal powder is titanium powder, the blending agent is an ultraviolet ray-proof agent, and the coating agent is a fluorocarbon resin coating agent.
[0162] A preparation method of a multifunctional integrated luggage fabric, comprising the following steps:
[0163] Weigh polyester fiber, nylon, fiber cloth, cellulose fiber, bamboo fiber, biodegradable plastic, organic cotton, spandex, neoprene, natural plant fiber, wool, silica gel particles, and coating agent according to the formula ratio, and uniformly mix them through a mixing mechanical device at 900 revolutions per minute for 19 minutes;
[0164] Add a blending agent to promote the compatibility and mixing uniformity of each component;
[0165] Add the mosquito repellent to the mixture according to the formula ratio, stir and mix evenly, and form the mixed fabric raw materials through a loom at 800 revolutions per minute;
[0166] After weaving, send the fabric into a coating machine for coating treatment and shrinkage treatment. Pretreat the woven fabric, including cleaning, soaking or steam treatment, to remove grease, dirt and residual processing agents on the fabric. Place the fabric in hot water or steam to make it fully absorb moisture, and then conduct heat treatment under the conditions of a temperature of 90 °C and a humidity of 90 °C;
[0167] When the fabric is in a wet and hot state, stretch the fabric with a 50% tensile force using mechanical equipment. After the shrinkage treatment is completed, dry the fabric to restore its normal dry state, and conduct heat setting finishing on the fabric at a temperature of 170 °C for 19 minutes.
[0168] Experimental example
[0169] Twelve groups of multifunctional integrated luggage fabrics were produced according to the chemical compositions and production methods of Embodiments 1-6 and Comparative Examples 1-6 designed according to the present invention; a batch of experimental objects similar to the multifunctional integrated luggage fabrics were selected as samples, and it was ensured that the lengths, colors, thicknesses and textures of the multifunctional integrated luggage fabrics were similar. The samples were divided into 12 groups, 6 groups as the experimental groups, using the multifunctional integrated luggage fabrics made in Embodiments 1-6 of the present example, and 6 groups as the control groups, using the multifunctional integrated luggage fabrics made in Comparative Examples 1-6 for production.
[0170] After the production of the multifunctional integrated luggage fabrics was completed, it was evaluated whether the fiber material components of the multifunctional integrated luggage fabrics passed the tear resistance and abrasion resistance tests, and whether the finished products of the multifunctional integrated luggage fabrics passed the compressive resistance and electrostatic adsorption tests. The results are shown in Table 1 below.
[0171] Table 1
[0172]
[0173]
[0174] As can be seen from the above table, Embodiment 1, Embodiment 2, Embodiment 6 and Embodiment 4 all performed well in terms of whether the fiber material components passed the tear resistance and abrasion resistance tests, and whether the finished products of the multifunctional integrated luggage fabrics passed the compressive resistance and electrostatic adsorption, meeting the expected effects; there were some problems with Embodiment 3 and Embodiment 5 in terms of whether the fiber material components passed the tear resistance and abrasion resistance tests, and whether the finished products passed the compressive resistance and electrostatic adsorption, which needed to be further improved; there were obvious problems with the multifunctional integrated luggage fabrics in Comparative Example 1, Comparative Example 2, Comparative Example 3, Comparative Example 4, Comparative Example 5 and Comparative Example 6.
[0175] In summary, Embodiment 1, Embodiment 2, Embodiment 6 and Embodiment 4 are relatively successful multifunctional integrated luggage fabric solutions, while Comparative Example 1, Comparative Example 2, Comparative Example 3, Comparative Example 4, Comparative Example 5 and Comparative Example 6 are significantly inferior in effect due to the lack of fiber cloth, cellulose fiber, bamboo fiber, organic cotton, natural plant fiber, and metal powder.
[0176] The above embodiments of the present invention do not limit the protection scope of the present invention. The implementation manners of the present invention are not limited thereto. All such modifications, substitutions or changes made to the above structure of the present invention according to the above content of the present invention, in accordance with the common general technical knowledge and customary means in the art, without departing from the above basic technical idea of the present invention, shall fall within the protection scope of the present invention.
Claims
1. A multifunctional integrated luggage fabric, characterized in that: Includes the following ingredients: polyester fiber, nylon, fiber cloth, cellulose fiber, bamboo fiber, biodegradable plastic, organic cotton, spandex, neoprene, natural plant fiber, wool, silica gel particles, metal powder, mosquito repellent, blending agent, coating agent.
2. The multifunctional integrated bag fabric according to claim 1, characterized in that: The invention comprises the following ingredients in parts by weight: polyester fiber: 20-40 parts, nylon: 10-30 parts, fiber cloth: 5-15 parts, cellulose fiber: 1-10 parts, bamboo fiber: 1-10 parts, biodegradable plastic: 1-10 parts, organic cotton: 1-10 parts, spandex: 1-5 parts, chloroprene rubber: 1-5 parts, natural plant fiber: 1-10 parts, wool: 1-5 parts, silica gel particles: 1-5 parts, metal powder: 0.1-2 parts, mosquito repellent: 0.1-2 parts, blending agent: 1-5 parts, coating agent: 1-5 parts.
3. The multifunctional integrated bag fabric according to claim 1 or 2, characterized in that: The nylon is nylon 610, and the fiber cloth is any one or more of cotton cloth, canvas, and Oxford cloth.
4. The multifunctional integrated bag fabric according to claim 1 or 2, characterized in that: The cellulose fibers are any one or more of cotton fibers, flax fibers, fluffy fibers, and hemp fibers.
5. The multifunctional integrated luggage fabric according to claim 1 or 2, characterized in that: The biodegradable plastic is any one or more of polylactic acid and bio-based TPU.
6. The multifunctional integrated bag fabric according to claim 1 or 2, characterized in that: The natural plant fibers are grass fibers, and the silica gel particles are silica gel particles.
7. The multifunctional integrated bag fabric according to claim 1 or 2, characterized in that: The wool is any one or more of cashmere and woolen cloth, and the metal powder is any one or more of aluminum powder, copper powder and titanium powder.
8. The multifunctional integrated bag fabric according to claim 1 or 2, characterized in that: The blending agent is any one or more of an antistatic agent, an anti-ultraviolet agent, an antibacterial agent, and an antifouling agent.
9. The multifunctional integrated bag fabric according to claim 1 or 2, characterized in that: The coating agent is any one or more of a polyurethane coating agent and a fluorocarbon resin coating agent.
10. A method for preparing multifunctional integrated luggage fabric, characterized in that: The following steps are involved: Weigh polyester fiber, nylon, fiber cloth, cellulose fiber, bamboo fiber, biodegradable plastic, organic cotton, spandex, chloroprene rubber, natural plant fiber, wool, silica gel particles, and coating agent according to the formula ratio and mix them evenly through a mixing mechanical device at 300-1000 rpm and a mixing time of 10-20 min; Adding blending agents promotes compatibility and mixing uniformity of the ingredients; Add metal powder and mosquito repellent into the mixture according to the formula ratio and stir to mix evenly, and form the mixed fabric raw materials through a 100-1000 rpm weaving machine; After weaving, the fabric is sent to the coating machine for coating and shrinking treatment. The woven fabric is pre-treated, including washing, soaking or steam treatment to remove grease, dirt and residual processing agents on the fabric. The fabric is placed in hot water or steam to fully absorb moisture, and then heated at a temperature of 60℃-100℃ and a humidity of 50℃-100℃; When the fabric is in a hot and wet state, mechanical equipment is used to stretch the fabric by 10%-50%. After the shrinkage treatment is completed, the fabric is dried to restore its normal dry state, and the fabric is heat-set at a temperature of 120℃-180℃ for 10-30 minutes.