

Manufacturer pricing rules prevent us from advertising our discount — no account or email required to see it.
Secure Payments
Easy Returns
Expert Advice
Fast Shipping
The MCR SAFETY 9277NFL is a cut-resistant work glove built for trades and industrial applications where hand protection against sharp edges, punctures, and abrasive surfaces is a daily requirement. The glove is constructed from a 13-gauge HyperMax shell, providing ANSI/ISEA Cut Level A7 and Puncture Level 3 resistance. A nitrile foam (NFT) coating covers the palm and fingertips, adding grip and ANSI Abrasion Level 6 resistance. A reinforced thumb crotch extends durability in a high-wear zone. The hi-visibility lime green color improves wearer visibility in low-light or high-traffic work environments. Electricians, pipefitters, sheet metal workers, and other trade professionals handling sharp materials benefit from this protection profile.
The 9277NFL is suited for residential and commercial trade work involving metal fabrication, pipe handling, conduit work, HVAC sheet metal, and general construction tasks where cut and puncture hazards are present. The seamless HyperMax lining and knit cuff deliver an all-day wear profile. The touchscreen-compatible palm allows device use without removing the glove, which is practical in field service settings. This glove ships as a pair and is sized Large, which also corresponds to a Women's Medium per MCR SAFETY sizing.
Designed as a general-purpose cut-resistant glove replacement for trade and industrial applications requiring ANSI Cut Level A7 hand protection. Formerly marketed under the Memphis Glove brand in the 9277NF series.
Inspect gloves before each use for cuts, tears, or coating separation that may compromise protection. Do not use damaged gloves as rated protection levels cannot be guaranteed once the shell or coating is compromised. Gloves should be selected and replaced per the jobsite PPE program and applicable OSHA hand protection requirements. Launder per manufacturer guidelines to maintain grip performance and structural integrity.
Thanks for subscribing!
This email has been registered!