Description
We took our popular knit cap style and fully lined it with fleece for additional warmth and comfort.|
- Fabric 100% acrylic with 100% polyester fleece lining
- 68/32 poly/acrylic (Athletic Oxford)
We took our popular knit cap style and fully lined it with fleece for additional warmth and comfort.|
Weight | N/A |
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Chill out and enjoy must-deserved downtime with this cooler that serves up 6-12 cans of pure refreshment. 600D poly/420D diamond dobby/PEVA lining Open top design Top grab handle Front zippered pocket Dual side beverage/accessory holsters Zippered, insulated main compartment holds 6-12 12-ounce cans Easy clean, leak-proof lining Collapses for storage Dimensions: 10.5″h x 8.5″w x […]
| Fabric 80/20 poly/cotton Structure Structured Profile Mid Profile Fade-resistant and moisture-wicking Closure Hook and loop
Rise to the occasion with this moisture-wicking 1/2-zip hoodie. 6.8-ounce, 90/10 poly/spandex Tag-free label
Our double poly mesh construction wicks moisture better for superior breathability and comfort.| 3.8-ounce, 100% polyester double knit mesh Double-needle arm seams, shoulders and hem Taped neck Self-fabric Johnny collar *Due to the nature of 100% polyester performance fabrics, special care must be taken throughout the screen printing process.
Perfect for the beach, shopping and events, these durable totes have open tops, contrast handles and contrast bottoms for classic good looks. 15.5-ounce, 100% cotton canvas body; 11-ounce, 100% cotton canvas handle trim and bottom Sturdy, reinforced webbing handles Exterior front pocket for easy decoration access Interior hanging pocket with hook and loop closure to […]
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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