More Views
Angled side

Men's Justin Rush 8" Lace Up Nano Comp Toe Waterproof

$221.00
Pecan Brown
style SE469
Color: Pecan Brown (Brown)
Width:
Size:
  • Select Size and Width for Availability

Gain confidence and versatility for both work and leisure with these boots that provide unparalleled flexibility, comfort, and protection.

Our Stampede Rush series presents the 8" Waterproof Round Nano Composite Toe boot - specially constructed to provide more agility and ease of movement compared to conventional work boots while incorporating fundamental safety attributes. Fitted with a nano composite protective toe, oil and slip resistant rubber outsole, and a detachable Ortholite® insole, this lace-up waterproof boot satisfies ASTM F2413 safety footwear requirements.

Details

  • Upper: Premium Full Grain Leather
  • Lining: Woven
  • Insole: Ortholite® Insert
  • Toe Shape: Round
  • Construction: Cement
  • Shank: Non-Metallic
  • Outsole: Rubber
  • Safety Features: Nano Comp Toe, EH, Oil and Slip Resisting, meets ASTM 2413 Safety Footwear Standards
Slip Resisting - Slip-resistant footwear, also known as non-slip footwear or anti-slip footwear, is specially designed to provide enhanced traction and stability on slippery surfaces, reducing the risk of slips and falls. This type of footwear is essential in industries and work environments where workers are exposed to wet, oily, greasy, or otherwise slippery floors, such as hospitality, healthcare, food service, and manufacturing.
Electrical Hazard - Electrical Hazard footwear is designed to impede the flow of electricity through the shoe and to the ground, reducing the likelihood of electrocution, in accordance with ASTM F2413-11.
Waterproof - Waterproof footwear is designed to prevent water from entering the interior of the shoe or boot, keeping the wearer's feet dry and comfortable in wet and damp conditions. This type of footwear is commonly worn in various work environments, outdoor activities, and recreational settings where exposure to rain, mud, puddles, and wet surfaces is likely.