Description
Buffalo Ridge – WP 11″ Brown/Scarlet Nano Sq Toe
Features
Buffalo Ridge – WP 11″ Brown/Scarlet Nano Sq Toe
Bold leather. Lightweight safety. Ready to run the job.
The 804-4341 Buffalo Ridge boot combines bold looks with the toughness your work demands. Crafted from full-grain buffalo leather and built with a nano composite safety toe, this 11-inch boot keeps you protected without weighing you down. The waterproof barrier and non-metallic design let you take on outdoor jobs or pass through security checkpoints with ease. A rugged rubber outsole and shock-absorbing PU midsole handle tough terrain while the flex groove footbed adapts to every step. This is next-gen comfort for old-school grit.
Key Features:
- Full-grain buffalo leather
- Nano composite safety toe
- Composite shank
- PU midsole/Rubber outsole
- Waterproof
- Single Density removable PU with flex groove footbed
- Cement construction
- Non-metallic
- Made in Vietnam
SAFETY TOE BOOTS [ASTM F2413]
All boots featuring a safety toe either steel or composite meet or exceed the falling IMPACT and COMPRESSION testing.
[I] IMPACT: Footwear retains a .500 inch (1/2 inch) for men’s and .468 inch (15/32 inch) for women’s or greater clearance after a nominal impact of 75 foot-pounds (101.7J), i.e., a 50 pound weight dropped, reaching 117.9 ± 2.4 inches per second velocity at impact.
[C] COMPRESSION: Footwear retains a .500 inch (1/2 inch) for men’s and .468 inch (15/32 inch) for women’s or greater clearance after a compression force of 2500 lbs. (11,121 N)
[SR] SLIP-RESISTING [ASTM F3445]
Footwear is tested for ASTM F3445 industry criteria for slip-resisting footwear
OIL-RESISTING OUTSOLE
The outsole is designed to withstand or reduce damage due to oil
Waterproof
Waterproof barrier keeps water out.
[EH] ELECTRIC HAZARD [ASTM F2413-18 OR ASTM F2892]
Constructed or manufactured with electric shock-resisting soles and heels capable of withstanding an application of 18,000 volts (root mean square (RMS) value) at 60 Hz for 1 minute, with no current flow or current leakage in excess of 1.0 milliamperes under dry conditions