Description
- 77/22/1 acrylic/poly/spandex
Weight | N/A |
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A fresh neckline with tie gives this comfortably flowy blouse a sophisticated look. 4.5-ounce, 100% polyester textured crepe Open neck with self-fabric tie Elastic cuffs Side slits
A tank with a vintage look-thanks to our specially garment dye treatment. 5.5-ounce, 100% garment-dyed ring spun cotton Self-binding at neck and armholes Side seamed Curved hem The garment-dying process infuses each garment with unique character. Please allow for slight color variation in production and washing. Special consideration must also be taken when printing white […]
Sized to fit the gear you need to be active, this duffel also has several pockets to keep things organized. A lined, padded bottom gives this durable bag structure and protection.| 600 denier polyester canvas, contrast ripstop accents, abrasion and water-resistant coated bottom Large decoration-friendly front zippered pocket Zippered end pocket with exterior stretch mesh […]
Tote? Backpack? With convertible straps, this contemporary bag adapts to your ever-changing needs. The spacious zip-topped main compartment includes a dedicated laptop sleeve and organization panel. Smaller belongings easily store in the front pocket. Bottom straps hold yoga mats or jackets for more hands-free ease. Straps+Handles Webbing shoulder handles convert to backpack straps Bottom quick-release […]
A vintage-inspired hoodie for casual comfort. 4.5-ounce, 70/30 combed ring spun cotton/poly French terry, 40 singles Tear-away label Back neck tape Unlined hood Cowl neck Dyed-to-match drawcords with metal tips and grommets Pieced hem with merrow edge
LAYERABLE WARMTHSTRETCHSTAY-COOL WICKINGREFLECTIVE DETAILS 7.4-ounce, 85/15 poly/spandex with stay-cool wicking technology Reflective OGIO heat transfer label for tag-free comfort Oversized zip-through cowl neck collar Front seaming for shaping Black reflective O heat transfer on back right shoulder Pleating on back Metaluxe ® zipper Engraved matte black metal O zipper pull Black reflective O heat transfer […]
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