KEEN Utility Men's Composite Toe Work Boots - Waterproof, Puncture Resistant, Pull-On Design for Construction & Outdoor Work | Durable Safety Shoes for Electricians, Carpenters & Industrial Workers
$69.17
$125.78
Safe 45%
KEEN Utility Men's Composite Toe Work Boots - Waterproof, Puncture Resistant, Pull-On Design for Construction & Outdoor Work | Durable Safety Shoes for Electricians, Carpenters & Industrial Workers
KEEN Utility Men's Composite Toe Work Boots - Waterproof, Puncture Resistant, Pull-On Design for Construction & Outdoor Work | Durable Safety Shoes for Electricians, Carpenters & Industrial Workers
KEEN Utility Men's Composite Toe Work Boots - Waterproof, Puncture Resistant, Pull-On Design for Construction & Outdoor Work | Durable Safety Shoes for Electricians, Carpenters & Industrial Workers
$69.17
$125.78
45% Off
Quantity:
Delivery & Return: Free shipping on all orders over $50
Estimated Delivery: 10-15 days international
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SKU: 95030834
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Description
Come hazards or high water, KEEN Utility Men's CSA Philadelphia Wellington Waterproof Work Boot are ready for the most taxing worksites you step foot on. Asymmetrical, non-metallic carbon-fiber toes improve the fit, and non-mutilating uppers reduce the chance of scratching surfaces. Weighing 39 oz / 1, 105 g (per boot), made with barnyard resistant leather and featuring a contoured heel guard that protects against bumps and scrapes, this boot is built off KEEN's traditional wider footwear form. KEEN Utility products offer removable insoles. This dependable boot is great for heavy-duty work in heavy metal fabrication, masonry, energy, construction, utilities, transportation, maintenance and manufacturing. All KEEN Utility products use a natural, probiotic-based technology called CleansportNXT for breaking down odor in sweat; while also sourcing leather from tanneries certified by the Leather Working Group (LWG) which is the gold-standard for responsibly sourced leather. KEEN Utility believes in creating work boots that make work and life better. To further support that mission, KEEN Utility has been “Putting Good to Work” through its non-profit partnerships within the Project Build program. From helping put veterans back on their feet to supporting conservation corps work across the country, KEEN Utility puts good to work, first.
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Shipping & Returns

For all orders exceeding a value of 100USD shipping is offered for free.

Returns will be accepted for up to 10 days of Customer’s receipt or tracking number on unworn items. You, as a Customer, are obliged to inform us via email before you return the item.

Otherwise, standard shipping charges apply. Check out our delivery Terms & Conditions for more details.

Features

100% Textile

Imported

Rubber sole

Shaft measures approximately 9" from arch

Boot opening measures approximately 12" around

COMPOSITE TOE: Asymmetrical, non-metallic carbon-fiber toes, a composite material, offer an unobtrusive fit and are 15% lighter than steel; The Philadelphia Wellington work boot meets or exceeds CSA Z195 Grade 1, ASTM F2412, F2413 I/75 and C/75 Standards

TRACTION: Oil- and slip-resistant, non-marking, rubber outsoles are used for improved traction that meet or exceed ASTM F1677 MARK II and ASTM F2913 SATRA Non-Slip Testing Standards; Lug sole patterns provide grip even on slick surfaces

WATERPROOF: KEEN. DRY is a waterproof, breathable membrane liner that lets vapor out without letting water in keeping your feet dry and comfortable; The Philadelphia Wellington work boot does have a mesh liner that integrates with the waterproof membrane

UNDERFOOT PROTECTION: Electrical hazard (EH) footwear provides a secondary source of protection from accidental contact with live electrical circuits; A flexible woven-textile puncture and isooctane chemical resistant midsole plate protect the underfoot

ADDITIONAL FEATURES: 100% non-metallic construction for easily passing through metal detectors; Barnyard resistant leather helps resist the damaging effects of oleic acid, urea, sodium chloride, and ammonium hydroxide; 90° heel (5/8") provides stability


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