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V-Gard® Frames

The standard slotted frame works ideally with any MSA slotted  helmet. The universal frame featuring a heavy-duty, flat, rubber strap can be used with slotted and non-slotted MSA helmets.  With the unique sloped frame design material slides off the frame and out of site. The optional debris control creates a tight seal between helmet and frame. The elevated temperature versions withstand temps up to 350ºF (176ºC).

  • Unique 3-point visor loading to fit and remove visors quickly
  • Sloped design allows material to easily slide off the frame
  • Works with or without ear muffs
  • Perfect Compatibility with many half-mask respirators and more
  • Various visor versions to suit all applications
  • Non-metal construction for use in electrical applications
  • Replaceable, optional debris control creates tight seal between frame and helmet
  • Universal= Heavy-duty, flat, rubber strap for easy and secure placement on MSA slotted and non-slotted  helmets
  • ET frames are tested to temperatures of 350˚F (176.7˚C), reducing warping, cracking or crazing.


Markets: Contractor, Industrial, Mining, Oil & Gas, Utilities
Applications: Welding, Sanding & Grinding, Painting, Confined Space, Food Processes, Asbestos Abatement
Standard
10115730
10115730

V-Gard Frame Standard HDPE for slotted helmets with debris control


Length: 0.066 M (2.598 IN)
Width: 0.164 M (6.457 IN)
Height: 0.247 M (9.724 IN)
Weight: 0.159 KG (0.351 LB)
Size: STANDARD
Color: BLACK

10115822
10115822

FRAME,V-GARD, UNIVERSAL FOR CAPS

10121266
10121266

FRAME,V-GD,STD FOR CAPS W/O DEBRIS CTRL

10121267
10121267

FRAME,V-GD,ET FOR CAPS W/O DEBRIS CTRL

10121268
10121268

FRAME,V-GD,UNIV FOR CAPS W/O DEBRIS CTRL

  • ANSI/ISEA Z87.1-2010
  • CSA Z94
  • EN 166
  • AS/NZS 1337.1:2010

 

EN166 389 BT / EN1731-F =

EN166 marking explanation
“B” High speed particles with medium energy impact (120 m/s)
“T” Additional resistance at extreme temperatures (–5 and +55 °C)
“3” Liquid droplets and splash
“8” Electric arc resistance 
“9” Non-adherence of molten metal and resistance to penetration of hot solids