Eco Friendly Mesh Racerback Tank Recycled Polyester Seamless Sustainable Activewear
Recycled Mesh Racerback Tank
,Polyester Mesh Racerback Tank
,Sustainable Seamless Racerback Tank
Crafted for eco-conscious athletes, this tank blends 88% recycled polyester and 12% spandex in a seamless knit, diverting plastic waste from landfills. The racerback design enhances mobility, while laser-cut mesh panels at the back and sides boost breathability during high-intensity workouts. Moisture-wicking tech pulls sweat 2x faster than conventional fabrics, and antibacterial properties from natural odor inhibitors keep it fresh. The seamless construction eliminates chafing, with four-way stretch adapting to every movement. Dyed with low-impact pigments, it comes in earthy tones like moss green, shale gray, and oat (XS-XXL). Ideal for yoga, running, or gym sessions, this tank proves sustainability doesn't sacrifice performance—move freely in fabric that's kind to the planet and your practice.
| Category | Active Wear |
|---|---|
| Features |
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| Fabric Information |
Functions:
Properties:
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| Colors | Solid |
| Materials | Body: 92% Nylon, 8% Spandex |
| Fitting & Sizing | Regular, Plus |
| Care Instructions |
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Multilingual e-commerce support team is ready around the clock to assist customers worldwide, whether it's guiding them through the purchase of yoga vests or resolving issues with international shipping.
Robotics-enhanced knitting technicians operate high-precision machines to create seamless yoga shorts with intricate patterns and consistent quality, reducing human error and increasing production efficiency.
Green logistics operation team optimizes delivery routes and uses eco-friendly transportation options, ensuring that the shipment of INTEX seamless underwear and other products has a minimal carbon footprint.
What makes INTEX yoga pants suitable for high-intensity yoga? Our pants are crafted from a blend of high-elasticity and durable materials, with reinforced seams and strategic paneling that provide maximum flexibility and support during dynamic movements.