MicroFlex Gloves

93-260

Microflex® 93-260 is a thin, chemical resistant disposable glove made of an innovate, synthetic composite material for tough chemical protection. The extra soft formulation and ergonomic design provides a comfortable fit and feel for extended wear times.

  • Three layer design for superior protection against harsh chemicals including acids, solvents and bases
  • Thin mil construction provides enhanced tactility and dexterity
  • Extra soft material and ergonomic design for outstanding fit, feel and flexibility for longer wear time
  • Lower acceptable pinhole rate (0.65 AQL) and extended cuff for reliable protection against hazardous substances
  • Silicone free formulation and processing ensure better product protection
MicroFlex 93-260 Gloves
Style Description Size Pack Qty
93-260 11.8" 50 gloves/dispenser box, 10 dispenser boxes/shipper box

Specifications

Glove Profile93-260
MaterialNitrile + Neoprene
ColorGreen outside, blue inside
Glove DesignAmbidextrous, Powder-Free, Textured fingers, Heavy Weight Product
CuffBeaded
Manufacturing/QMS Audit StandardsISO 9001
Regulatory/Standards ComplianceCOMPLIANT WITH ASTM D6977 & D6319, PPE 89/686, EN 420, 388 & 374 CATEGORY III
Packaging50 gloves per dispenser box, 10 dispenser boxes in a shipper box
StorageKeep out of direct sunlight; store in a cool and dry place. Keep away from sources of ozone or ignition.
Country of OriginSri Lanka
User Needs SegmentHigh Risk Glove – Extended cuff gloves to provide additional protection for the wrist and forearm.

Physical Properties

Typical ValuesTesting Method
5.5-6
XS
6.5-7
S
7.5-8
M
8.5-9
L
9.5-10
XL
10.5-11
XXL
ASTM D3767/EN 420
Length (mm/inches)300/11.8300/11.8 300/11.8 300/11.8 300/11.8 300/11.8
Average Palm Width78 8998111116122
Freedom from Holes
(Inspection Level I)
0.5 AQLASTM D6319-10/ASTM D5151=06 (2011)
Palm Thickness Single Wall(mm: 0.198)/(mil: 7.8)ASTM D3767/EN 420
BEFORE AGINGAFTER AGING
Ultimate Tensile Strength22 Mpa26 Mpa ASTM D6319-10
Elongation at Break (%)62026 MpaASTM D6319-10
Force at break (N)1617EN 455-2