RB249
Reebok Women's Ultraknit Work ULTK Athletic Oxford - RB249 - Reebok
Reebok Women's Ultraknit Work ULTK Athletic Oxford - RB249 - Reebok
Reebok Women's Ultraknit Work ULTK Athletic Oxford - RB249 - Reebok
Reebok Women's Ultraknit Work ULTK Athletic Oxford - RB249 - Reebok
Reebok Women's Ultraknit Work ULTK Athletic Oxford - RB249 - Reebok

Reebok Women's Ultraknit Work ULTK Athletic Oxford - RB249

SKU:RB249
Regular price $119.99
Regular price $147.99 Sale price $119.99

Why Choose SecurityPro USA?

Ultraknit Work ULTK Athletic Oxford
Toe: Composite Upper
Color: Black and White
Slip: Best
Oil: Better
Metal Chips: Good
Heat: Good
Abrasion: Best
Chemicals: Better
Lining: Moisture Wicking Ultrafine Nylon Fabric
Insole: MemoryTech Massage Removable Cushion Footbed
Outsole: Foot-Mapped 3D Foam Midsole with Perimeter Grid and Slip Resistant Outsole
Special Features: 100% Non-Metallic, Static Dissipative (SD 10) with Dual Resistor
Product Description: Lace up some precise cushioning performance. The Print                                   Work ULTK has a dense outer rim midsole for support and                                   central rubber lugs for traction. The Ultraknit upper is                                           irritation-free for all-day comfort with an athletic look.The                                     composite toe provides impact protection that meets or                                       exceeds ASTM F2413-17 safety standards.
Product Features: ASTM F2413, Composite Toe, XTR® Brand Composite Toe
                             Cap, Static Dissipative (SD 10) with Dual Resistor, Slip
                             Resistant, Metal Free

•Ultraknit seamless upper for an irritation-free fit and sleek styling
•Slip resistant central zone of strategically placed lugs for maximum grip
•Dense outer perimeter grips and supports multidirectional movement
•Outsole flex grooves and independent nodes provide flexibility in key zones
•Pressure mapping technology provides precise cushioning
•Low-cut design for freedom of motion and quick transitions