SPLX® and R-SPLX® Nylon by Tepar Tekstil: The Perfect Blend of Comfort and Durability In 1935, nylon was invented at DuPont under the leadership of Dr. Wallace Carothers, revolutionizing the synthetic fiber industry. During World War II, nylon replaced silk in parachutes, proving its strength and durability. What is SPLX® Nylon? SPLX® and R-SPLX® nylon, developed by Tepar Tekstil, are engineered through an advanced extrusion process where nylon is forced through the smallest possible holes, creating ultra-fine, lightweight, and flexible fibers. These fine strands are then wrapped together to form the SPLX® fabric. The tiny nano-fibrils enhance the fabric’s softness, making it as comfortable as cotton while outperforming cotton by not shrinking, wrinkling, or fading in color. Additionally, SPLX® nylon retains the durability and strength of traditional nylon. SPLX® Performance: * 26-36% Softer: More comfortable than standard nylon. * Abrasion Resistant: Maintains durability with extensive wear. * Water Repellent: Provides protection from moisture. * Quick-Drying: Dries faster than cotton, ideal for activewear. * Breathable: Allows for better air circulation. * Lustrous: Retains a sleek, polished appearance. * Color Retention: Colors do not fade over time. * Shape Retention: Holds its form well after multiple washes and wears. * Anti-Bacterial & Odor Resistant: Prevents bacterial growth and odors. * Easy Care: Simple to wash and maintain. * UV Resistant: Protects against harmful ultraviolet rays. Why It Matters When you're preparing for the office, hiking a mountain, or biking down a trail, you need a versatile pair of pants that offers protection, comfort, and durability. SPLX® and R-SPLX® nylon by Tepar Tekstil are designed to meet these needs, providing you with superior performance and comfort in any setting. Wherever you go, we've got you covered with SPLX® and R-SPLX®.
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Would you wear clothes made of memory fabric❓ 🧶At present, the development of high-tech materials is changing with each passing day. Smart fibers with memory function have brought our lives into a fantastic world. An Italian textile company has developed a smart shirt that uses shape memory titanium-nickel alloy fibers and synthetic fiber nylon. 👕When the temperature of the surrounding environment rises, the sleeves of this smart shirt will automatically roll up. Moreover, this shirt is not afraid of wrinkles. Even if it is crumpled into a mess, it can be restored immediately by blowing with a hair dryer. Even human body temperature can automatically iron it. 💡With the continuous development of shape memory material preparation and processing technology and textile and clothing synthesis technology, as well as the gradual improvement of the basic theory of shape memory materials, its role in promoting the development of textile products and clothing design will be immeasurable. #Layo #Fabric #Textile #Fashion #Clothing #Garments #Trends #manufacturing #sustainable #Feature #knitting #woven #Brand
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Let's delve into the world of sports clothing manufacturing. Material selection is crucial, with synthetics like polyester and nylon dominating for their performance properties. Computer-aided design (CAD) plays a big role here, allowing for efficient pattern creation and customization. Chosen materials are processed into fabric. This can involve spinning yarns→ weaving knitting → depending on the desired properties. The fabric is precisely cut using sharp blades or lasers, guided by the digital patterns. Special sewing techniques like flatlock seams might be used for enhanced durability and comfort. The finished sportswear is carefully packaged and shipped to retailers or directly to consumers. The industry is increasingly focusing on eco-friendly practices. This includes using recycled materials, reducing water consumption during production, and implementing ethical labor practices. So, the next time you slip on your favorite workout gear, remember the intricate journey it looks like to get there. It’s a testament to the merging of design, technology, and textile science! #sportswear #textileindustry #manufacturing #innovation #perfomance #sustainability
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👔 From Field to Fashion - Compressed Air Weaves Cotton into Clothing 🧵 Ever wonder about the journey of that crisp cotton dress shirt hanging in your closet? Let's unravel the thread of how #compressedair helps transform cotton into wearable fashion! Raw material: Fluffy cotton balls ↓ Finished product: Your sharp, wrinkle-resistant work shirt Compressed air plays a pivotal role throughout the shirt-making process: 👉 Harvesting: Pneumatic cotton pickers gently remove cotton from plants 👉 Cleaning: Air jets separate cotton fibres from seeds and debris 👉 Spinning: Airflow helps create uniform yarn for finer fabrics 👉 Weaving: Air-jet looms rapidly interlace threads for smooth cloth 👉 Cutting: Compressed air powers precision cutting tools 👉 Sewing: Pneumatic sewing machines ensure even stitching 👉 Pressing: Air-powered presses give shirts that crisp, professional finish From the first pick to the final button, compressed air touches every fold of your shirt's creation. Next time you button up for work, remember the invisible force that helped create your polished look! #CompressedAir #TextileIndustry #ManufacturingInnovation
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Clothing which facilitates thermoregulation is being increasingly used in virtually all segments of the clothing industry. Some key materials gaining importance in this field include graphene—a “wonder material” which demonstrates excellent heat preserving properties when applied to fabrics, such as fleece. At the same time, when graphene is integrated into thin, breathable fabrics, it has the ability to quickly release excess heat, thereby producing a cooling effect. Similarly, xylitol is gaining popularity as a cooling material in textiles due to its ability to absorb heat upon contact with liquid, thereby providing an immediate sensation of coolness through touch. For more on other key innovations in the market for temperature control fabrics, finishes and materials, follow the link. https://bit.ly/3Vnm0rJ #clothing #fashion #sportswear #textiles #fibres #thermoregulation #temperaturecontrol #innovation #materialscience #graphene #breathability #xylitol #finishes #coatings
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We are just a few days away from PERFORMANCE DAYS with our official launch of a new breakthrough heat transfer technology at Performance Days Munich. And this innovation is what the heat transfer label market has been longing to have. What do you do when your heat transfer failed to adhere to DWR treated fabrics? Look no further if you want to find a heat transfer solution to combat this very issue. SB4D®, Super Bond 4 DWR heat transfer technology, uses a polyester or TPU based proprietary adhesive formulation that creates a chemical and mechanical bond to any DWR treated substrates (light and/or heavy weight). Many of the existing heat transfer applications are not wash durable in accordance to the requirements of brand customers. Chimera’s SB4D® heat transfer technology can endure a minimum of 10 wash cycles using 60°C on many of the C0 DWR treated fabrics. This innovation is suitable for all of the C0 DWR chemistry including TPU coated, PU coated, and acrylic coated fabrics. More importantly, our SB4D® is estimated to increase 4x the efficiency and save at least 10x the energy consumption for your garment vendors during their heat press bonding process. We have these heat transfer options available with the SB4D® heat transfer technology: Silver reflective input material - ISO 20471 compliant for workwear Non-reflective black Non-reflective white For other surface layers, please consult with our team to get SB4D® certified and approved for your fabrics Chimera is your strategic partner in advanced material coating & heat transfer applications. #sb4d #coating #circularfashion #circulareconomy #oekotexcertified #hivis #reflective #innovation #woven #apparel #footwear #bags #accessories #fashion #lifestyle #stylish #heattransfer #tpu #polyester #sustainability
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