Long shifts, lasting comfort: The Lenzing advantage in workwear

Workwear

Long shifts, lasting comfort: The Lenzing advantage in workwear

About Workwear

At Lenzing, we recognize the unique challenges that businesses face when selecting the right materials for workwear. Whether you're outfitting employees in corporate environments, healthcare settings, hospitality, or government institutions, the comfort, performance, and durability of the fabrics you choose are paramount.

That’s why our high-quality cellulosic fibers are an ideal solution for your workwear needs, providing employees with a comfortable, pleasant wearing experience throughout long shifts.

Benefits

How workwear benefits from Lenzing fibers

Natural softness

Our TENCEL™ fibers give fabrics a natural softness, making them feel pleasant against the skin.

High moisture regulation

The structure of cellulosic fibers allows the absorption and release of moisture. In the final fabric, these moisture controlling properties support a drier microclimate on the skin.

Long-lasting softness

TENCEL™ Modal fibers’ cross-section and tenacity favor fabric softness, allowing them to withstand repeated washing and drying cycles.

Reduced odor development

TENCEL™ Lyocell fibers absorb sweat efficiently, resulting in reduced moisture on the fiber surface. This creates a less favorable environment for the growth of odor-causing bacteria.

Fibers

Lenzing’s fiber solutions for workwear

LENZING™ for Workwear Brochure

Brochure

Download our brochure and learn more about our workwear solutions.

Services

Enhance your visibility with our services

Applications

Discover more applications

Contact form

How can we best support you? Get in touch!

You can find the privacy notice of Lenzing AG here. 

Woodyard

Thank you very much for your request!

We´ll get in touch with you as soon as possible. Best regards, Your Lenzing Team

1 FSC® (FSC-C041246) or PEFC (PEFC/06-33-92)

2 Wood pulp is transformed into cellulosic fibers, while more than 99.8% of the solvent is recovered and fed back into the loop, resulting in close-to-zero wastage.