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Coolmax

Coolmax is a trademarked of high-performance fibers engineered for superior moisture management and cooling, keeping wearers dry and comfortable during or in warm conditions. Developed in by (now under The LYCRA Company), it revolutionized athletic apparel through its innovative fiber structure, which wicks sweat away from the skin to the fabric's surface for rapid evaporation and . The technology features a multi-channel cross-section in the filaments, allowing for enhanced airflow, lightweight construction, and quick-drying properties that outperform traditional fabrics like in humid or active environments. Key applications of Coolmax span , outdoor gear, and even , where it regulates body temperature and reduces discomfort from . Its versatility extends to items like running shirts, jerseys, socks, and performance underwear, providing non-bulky, soft-touch materials that promote freedom of movement. In recent years, Coolmax has emphasized , with over 85% of its fibers sold containing recycled materials, including EcoMade variants using 100% recycled resources, maintaining the same premium cooling performance while minimizing environmental impact. This shift aligns with broader industry trends toward eco-friendly textiles, as seen in its use during the 2024 Paris Summer Games for uniforms.

History

Development

Coolmax was invented in 1986 by textile engineers at as a novel engineered to efficiently transfer heat and moisture away from the body. This development marked a significant advancement in synthetic fibers, addressing the limitations of traditional , which often trapped moisture and hindered comfort during physical exertion. The initial purpose of Coolmax was to enhance user comfort in extreme physical activities by facilitating rapid sweat , thereby providing a cooling effect and reducing the sensation of clamminess. Designed specifically for applications, it aimed to outperform natural fibers like merino wool in moisture management without compromising durability. The key innovation lay in modifying the fiber's cross-section to create a distinctive structure, typically featuring a tetra-channel or hexa-channel design with an oblong shape and lengthwise grooves. These channels increased the fiber's surface area by approximately 20% compared to round fibers, enabling to draw and transport moisture away from for quicker , a feature absent in standard . Early testing and prototype development were conducted by researchers to validate its performance in athletic scenarios, focusing on moisture-wicking efficiency and thermal regulation during simulated physical . These efforts confirmed the fiber's ability to maintain a cool, dry feel, laying the groundwork for its evolution into a branded .

Commercialization and ownership

Coolmax was introduced as a branded performance fabric technology by in the late , building on its initial development by DuPont engineers in 1986, and designed for integration into garments requiring enhanced moisture management. The fabric's unique structure allowed it to be woven or knitted into apparel, marking an early entry into the . A key milestone in its commercialization came with DuPont's filing and granting of a for the moisture-wicking mechanism in 1998, which solidified the technology's proprietary status and enabled broader adoption under the Coolmax name. Initial efforts focused on licensing the technology to manufacturers, who incorporated it into products like athletic shirts, socks, and outerwear to meet growing demand for breathable, quick-drying materials in performance gear. This licensing model allowed DuPont to expand Coolmax's reach without direct production of finished goods. Ownership of Coolmax transitioned in 2004 when sold its Textiles and Interiors business unit to for approximately $4.4 billion, rebranding it as and transferring stewardship of the Coolmax brand along with other fiber technologies. continued to promote and license Coolmax globally, emphasizing its role in sportswear innovation. In 2019, divested its Apparel & Advanced Textiles division, including Coolmax, to Technology Group in a deal reportedly valued at over $2 billion, forming The Lycra Company to manage the portfolio of brands such as Lycra, Coolmax, and Thermolite. By 2022, amid financial challenges faced by Ruyi, The Lycra Company underwent a change in equity ownership, with control passing to a of investors consisting of Lindeman Asia, Lindeman Partners , Tor Investment Management, and Everbright Limited, ensuring continued operations and investment in the Coolmax brand. This shift maintained the focus on licensing and innovation without disrupting market availability. As of 2025, The LYCRA Company continues operations under this ownership, including the opening of its largest global production facility in in November 2025.

Technology

Fiber structure

Coolmax fibers are constructed from 100% , specifically high-tenacity variants engineered for enhanced durability and performance in demanding applications. This material composition provides the fiber with inherent strength and resistance to , while allowing for modifications that optimize moisture management without compromising structural integrity. Unlike traditional round cross-section polyester fibers, which offer limited surface area for fluid interaction, Coolmax features a modified, non-circular profile designed to facilitate capillary action. The standard Coolmax fiber typically exhibits a four-channel cross-section, with longitudinal grooves or channels running along its length, effectively increasing the surface area by approximately 20% compared to conventional polyester. These channels create pathways that draw moisture away from the skin, promoting rapid transport through the fiber structure. Variants of Coolmax fibers adapt this grooved design to specific needs, such as the six-channel configuration in Coolmax freshFX, which further amplifies wicking efficiency for applications. Another iteration, Coolmax Air, employs a propeller-shaped cross-section with integrated channels to enhance and between fibers. These configurations, originally developed by and now managed by The LYCRA Company, allow tailoring of the fiber's geometry for targeted performance while maintaining the core base.

Moisture-wicking mechanism

Coolmax fibers facilitate moisture transport through , where longitudinal grooves along the fiber's profiled cross-section draw sweat from the skin to the fabric's outer surface via forces. These micro, typically arranged in a four- or multi-lobal configuration, create pathways that efficiently pull moisture outward, preventing accumulation against the body. The wicking rate is influenced by factors such as channel depth and , which optimize the balance between moisture uptake and dispersion without saturation. Once transported, the spreads across the enlarged surface area of the grooved fibers, promoting rapid into the surrounding air. This enhances cooling through evaporative heat loss, as the of sweat absorbs from the wearer's skin. The composition of Coolmax contributes to this efficiency with its hydrophobic nature, exhibiting a low moisture regain of less than 0.4%, which minimizes retention and enables quicker drying compared to natural fibers like , which can absorb up to 8%.

Properties

Physical characteristics

Coolmax fabrics are typically , with weights in the range of 4 to 6 oz/yd² (approximately 135 to 205 ) for activewear applications, facilitating enhanced breathability without added bulk. The texture and feel of Coolmax are characterized by a , soft hand, resulting from the incorporation of fine denier fibers, typically 1 to 2 denier per , which provide a comfortable sensation against the skin. In terms of , Coolmax demonstrates high tensile strength, generally 4 to 5 g/denier, along with robust that supports repeated washing and mechanical without substantial . Coolmax fabrics exhibit strong colorfastness, with stable dyes achieving ratings of grade 4 or higher under standard testing, and good UV that minimizes from sunlight exposure in applicable variants.

Performance attributes

Coolmax fabrics demonstrate superior quick-drying performance, drying up to five times faster than due to their efficient . Lab tests conducted by indicate that Coolmax can lose 93% of absorbed within 30 minutes, compared to 50% for under similar conditions. This rapid is facilitated by the fabric's wicking mechanism, which spreads sweat across a larger surface area for quicker drying. The of Coolmax contributes significantly to user comfort by promoting through the material. Official specifications for Coolmax EcoMade PRO fibers require an air permeability of at least 100 cubic feet per minute per (cfm/ft²), which supports effective temperature regulation during activity. This level of permeability, typically translating to around 50 cm³/cm²/s in volumetric terms, allows air to circulate freely, enhancing and preventing overheating. Odor resistance in Coolmax arises primarily from its ability to remove rapidly, thereby limiting the conditions that foster and development. This quick drying extends the time garments can be worn without noticeable , as thrive less in dry environments. Specialized variants like Coolmax freshFX incorporate additives that further inhibit bacterial proliferation on the fabric surface. Coolmax provides effective thermal regulation by leveraging evaporative cooling to maintain lower skin temperatures during physical exertion. This performance helps users stay comfortable by dissipating heat efficiently without retaining excess warmth, as indicated by lower evaporative resistance compared to under ASTM F1868 standards.

Manufacturing

Yarn production

The production of Coolmax yarn begins with the melt-spinning , where chips—derived from and or, for EcoMade variants, from 100% recycled resources—are heated to a molten state and forced through a specialized featuring oblong holes designed to form filaments with a grooved, four-channel cross-section. This step creates the distinctive structure that enables wicking, with the filaments solidifying as they cool in air. Following extrusion, the filaments undergo , a stretching process that aligns the molecules to enhance tensile strength and elasticity, typically increasing the length by several times while reducing diameter for finer . Subsequently, texturing is applied through crimping or false-twist methods to introduce curls and bulk, improving cohesion, handle, and inter-fiber without compromising the grooved profile. Yarn denier is precisely controlled during these stages to produce micro-denier filaments, often in the range of 40-100 denier for multi-filament yarns, allowing for , breathable fabrics suitable for applications. For example, common configurations include 75-denier yarns with 72 filaments, balancing with . Quality control throughout yarn production emphasizes uniformity of the grooved channels. The LYCRA Company, which licenses Coolmax technology, enforces rigorous testing protocols at production facilities to ensure fibers meet performance standards before winding into bobbins for further processing.

Fabric formation

Coolmax yarns are primarily assembled into fabrics using and techniques to create structures that enhance moisture transport and comfort. is commonly employed for stretchy activewear, producing seamless, flexible fabrics like jerseys and interlocks that conform to body movement. In contrast, plain weaving is used for more structured items, such as shirts or outer layers, where a tighter, stable construction is required, though weaves may also be applied for added . To achieve elasticity in performance garments, Coolmax yarns are often blended with at levels of 5-15%, enabling four-way stretch while maintaining wicking properties; for example, blends like 95% Coolmax and 5% are typical for activewear. Following , fabrics undergo finishing processes to optimize performance. Heat-setting stabilizes dimensions by controlling yarn crimp and preventing shrinkage, ensuring long-term shape retention. Antimicrobial treatments may be applied as needed to inhibit in moisture-prone areas, enhancing without compromising . Coolmax fabrics are produced in various forms, including wovens for crisp applications and knits for comfort-focused apparel, with densities such as 140-150 in examples like knits to balance lightness and coverage.

Applications

Activewear and

Coolmax fabric is widely utilized in activewear and due to its moisture-wicking capabilities, which help regulate body during physical exertion. Common garments include T-shirts, , , and base layers designed for activities such as running, , and team sports like soccer and . These items leverage the fabric's lightweight and breathable structure to enhance comfort without adding bulk, making it suitable for both recreational and competitive use. In high-sweat scenarios, Coolmax maintains wearer dryness by rapidly transporting moisture away from the skin to the fabric's outer surface for , thereby reducing discomfort and chafing during prolonged efforts. This property has been integral to professional athletics since the , following its development in 1986 by (now under The LYCRA Company), where it was adopted in performance gear to support endurance and recovery. For instance, studies on recruits in 1992 demonstrated its effectiveness in reducing blisters and improving foot comfort under demanding conditions, paving the way for broader athletic integration. Specific examples highlight its role in enhancing ; marathon uniforms often incorporate Coolmax in running to sustain dryness over long distances, while gym wear such as workout tanks and shorts uses it to boost endurance during intense training sessions. In team sports, it appears in jerseys and kits, as seen in the Brazilian national volleyball team's 2024 uniforms featuring 92% Coolmax EcoMade fibers for optimal cooling. Additionally, applications include undergarments and base layers in uniforms for troops in hot climates, where the fabric's quick-drying nature prevents overheating and supports operational readiness. As of 2024, Coolmax technology has been integrated into menswear collections to provide moisture-wicking in everyday active apparel. In February 2025, The LYCRA Company launched COOLMAX CORE fiber, expanding its applications in advanced activewear.

Non-apparel uses

Coolmax fabric has found applications in various household and industrial products, leveraging its moisture-wicking and quick-drying properties to enhance comfort and hygiene. In , it is commonly used for sheets and designed for warm climates, where it effectively draws away to promote better sleep by maintaining a cool and dry surface. For instance, Coolmax-infused sheet sets and pillow covers are engineered to regulate and improve , reducing heat retention during rest. Beyond traditional , Coolmax extends to accessories such as , hats, and gloves, which provide moisture management for outdoor activities by transporting away from the skin to keep users cool and comfortable. These items, often incorporated into outdoor gear, benefit from the fabric's , making them suitable for prolonged exposure to varying conditions. In industrial contexts, Coolmax is utilized in vehicle upholstery, such as seat covers, where its breathable structure helps dissipate heat and moisture, improving driver and passenger comfort during extended use. Additionally, it appears in and garments like scrubs and patient gowns, supporting through rapid drying that minimizes moisture buildup, with certain variants offering additional antibacterial treatments. Since the 2000s, Coolmax applications have expanded to include cooling towels, which activate upon wetting to provide evaporative cooling for personal use, and pet bedding, where the fabric's cooling effect helps regulate animal body temperature in warm environments. These developments highlight the fabric's versatility in non-traditional products, driven by ongoing innovations in fiber technology.

Market and licensing

Trademark and ownership

Coolmax is a registered owned by The LYCRA Company LLC, with multiple registrations including U.S. Trademark Registration Number 5788117 for synthetic fibers and clothing products, effective since its registration on June 25, 2019. The brand was previously managed under , which transferred ownership of its Apparel & Advanced Textiles business, including Coolmax, to an affiliate of Shandong Ruyi Investment Holding in January 2019, leading to the formation of The LYCRA Company. In 2022, following financial challenges, The LYCRA Company's equity ownership transitioned to a group including China Everbright Limited, Lindeman Asia, Lindeman Partners Asset Management, and Tor Investment Management. As part of this transition, The LYCRA Company assumed full control of the Coolmax portfolio, which is globally protected and actively defended against unauthorized use to maintain its integrity as a performance fiber brand. The licensing model for Coolmax operates through a trademark licensing program administered directly by The LYCRA Company, granting rights to qualified manufacturers and fabric producers who demonstrate compliance with specific performance and quality criteria. To obtain a license, applicants must submit fabrics containing Coolmax fibers for independent testing and to verify attributes such as , moisture wicking, and , ensuring that only products meeting these standards can bear the Coolmax label. These licenses are typically non-exclusive and non-transferable, allowing multiple authorized entities to use the while upholding brand consistency across global supply chains. The LYCRA Company holds rights, including patents on the underlying technologies that enable Coolmax's moisture management and cooling properties, which are enforced to protect innovations in construction and processing. For instance, the company has secured numerous patents related to performance fibers within its , with ongoing legal actions to defend against infringements that could dilute the technology's proprietary advantages. Coolmax forms a key component of The LYCRA Company's broader of performance fibers, alongside brands like LYCRA®, THERMOLITE®, and SUPPLEX®, supporting applications in apparel and textiles worldwide.

Adoption by brands

Coolmax technology has been adopted by major athletic apparel brands since its introduction in the 1990s, with incorporating it into apparel such as the Coolmax with line launched in 2009, which blends the fabric with wool for enhanced moisture management during play. has similarly integrated Coolmax into its performance polos and shirts, including the ClimaCool series featuring Coolmax Energy fabric for improved airflow and cooling in athletic settings. has utilized Coolmax in products like its All Season Coolmax No Show Tab Socks, providing breathable, moisture-wicking support for sports and training. Patagonia has employed Coolmax in outdoor and hiking apparel, such as its /Coolmax blend shorts and performance , which offer mechanical stretch and quick-drying properties for active use. The fabric is also common in soccer jerseys from various manufacturers, where its moisture-wicking channels help players stay dry during matches, as seen in custom fabrics designed specifically for team uniforms. In the military sector, gained traction through contracts in the early 2000s; Department of National Defence renewed a multi-year agreement in 2000 for its official use in uniforms to enhance soldier comfort in varying climates. This adoption was driven by endorsements from performance testing, leading to widespread integration across global brands by the , with The LYCRA Company licensing the technology for sustainable EcoMade variants in athletic and outdoor lines.

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