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P55NGA


Seamless Nitrile Gloves

  • Comfort & Dexterity: 15-gauge seamless glove with a lightweight, breathable black polyester liner for excellent comfort, flexibility, and precision handling.
  • Durable Grip & Protection: Grey nitrile palm coating with a smooth finish offers superior dry grip, enhanced abrasion resistance, and long-lasting wear.
  • Quality Construction: Made with 100% polyester liner, palm-coated nitrile, and polypropylene yarn binding for strength and durability.

Abrasion

Tear

Impact Resistant

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P55NGA

P55NGA

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P55NGA

P55NGA

P55NGA

P55NGA
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EN:388:4131X

CE

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  • Product Details
  • Tests
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  • A sporty look that ensures maximum protection looks good on the production floors, bikes, and outdoor adventures.
  • The sole resists hazard related to hydrocarbons, oil, and slip.
  • Abrasion as per EN 388 is 4:
    Resistance to abrasion based on the number of cycles required to abrade through the sample glove (abrasion by sandpaper under a stipulated pressure). The protection factor is then indicated on a scale from 1 to 4 depending on how many revolutions are required to make a hole in the material. The higher the number, the better the glove.
  • Cut as per EN 388 is 1:
    Blade cut resistance based on the number of cycles required to cut through the sample at a constant speed. The protection factor is then indicated on a scale from 1 to 5.
  • Tear as per EN 388 is 2:
    Tear resistances based on the amount of force required to tear the sample. The protection factor is then indicated on a scale from 1 to 4.
  • Puncture as per EN 388 is 1:
    Puncture resistances based on the amount of force required to pierce the sample with a standardly sized point. The protection factor is then indicated on a scale from 1 to 4.
  • When the metal blade touches the metal strip:
    the test is terminated. A straight blade is loaded into the machine. Weight is added to serve as a force. The blade moves across the fabric. The blade is replaced with a new one to ensure accuracy. The sample is cut five times, each with three different loads. The distance traveled to cause cut through at various forces is recorded. The data is used to determine the load required to cut through the sample.
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