LIFT FIBERWIRE A5 IMPACT CRINKLE LATEX
LIFT FIBERWIRE A5 IMPACT CRINKLE LATEX - Medium is backordered and will ship as soon as it is back in stock.
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Payment
Payment
- Credit Cards: We accept major credit cards, including Visa, Mastercard, American Express, and Discover.
- Apple Pay & Google Pay: Simplify your checkout process using these digital wallets.
- Shop Pay: For faster checkouts and secure payment processing.
Shipping
Shipping
Ground, 2nd Day Air and Next Day Air available !
Returns
Returns
At Harbor Workwear, we aim to ensure you’re completely satisfied with your purchase. If you need to return an item, you have 90 days from the date of delivery to initiate a return.
Eligibility for Returns:
To be eligible for a return:
- The item must be in its original condition—unused, unworn, with all tags still attached, and in its original packaging.
- You’ll need the receipt or proof of purchase.
Please note, returns must be authorized before sending any items back. Items returned without prior authorization will not be accepted.
Description
Description
Engineered for high-risk environments where cut, impact, and abrasion hazards intersect, the LIFT FiberWire™ glove delivers robust protection without compromising dexterity. Constructed with a 15-gauge seamless HDPE and glass fiber shell, it achieves ANSI A5-level cut resistance and includes a full-coverage TPR impact shield across the back of hand. The textured crinkle latex palm offers dependable grip in variable conditions and adds another layer of puncture and abrasion protection.
- Liner Construction: 15-gauge High-Density Polyethylene (HDPE) and Glass Fiber knit liner. Offers cut resistance with low-profile flexibility
- Cut Rating: ANSI/ISEA 105-2016: A5, EN388:2016: Cut Level E (TDM-100 Test Method)
- Impact Protection: Back-of-Hand TPR Protection: Full-length fingers, knuckles, and metacarpals. EN388 Impact Rating: P (Pass)
- Coating: Palm Material: Crinkle Latex
- Coverage: Full palm and fingertips
- Properties: Enhanced grip in wet/dry conditions; chemical and caustic resistance in contact areas

