Malco® MALM14

Malco® Andy™ M14A Classic Snip, Pressure Fit Inset Blade, Mild Curve, Pattern, Straight Cut, 3-1/4 in L Cut, 14 in OAL

Manufacturer: Malco Products
Part #: MALM14
Customer Part #:
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Additional Information      :      6 in W x 1-1/2 in H Dimensions, Domestic
Blade Material      :      Steel
Blade Type      :      Pressure Fit Inset
Cut Materials      :      Aluminum, Copper, Galvanized Steel, Mild Steel, Stainless Steel, Vinyl
Cut Type      :      Mild Curve, Pattern, Straight
Handle Color      :      Light Gray
Handle Material      :      Aluminum
Handle Type      :      Ergonomic
Length of Cut      :      3-1/4 in
Maximum Sheet Thickness      :      0.055 in
Overall Length      :      14 in

Sleek styling, easy blade replacement and original-style handles make Malco® 14 in Andy® classic snips the perfect addition to any tool bag. These snips are ideal for cutting vinyl siding, aluminum, copper or sheet metal. The sleek head design improves maneuverability making it easier to cut materials such as J-channel. A full 3 in (76.2 mm) cutting length makes straight shearing with the Malco® Andy® snip fast and easy. Blade replacement is easily accomplished in the field.

Malco® Classic Snip, Mild Curve, Pattern, Straight Cut, 0.055 in Maximum Sheet Thickness, 3-1/4 in Length of Cut, Pressure Fit Inset Blade, Steel Blade, Ergonomic Handle, Aluminum Handle, Light Gray Handle, 14 in Overall Length, Cut Materials: Aluminum, Copper, Galvanized Steel, Mild Steel, Stainless Steel, Vinyl, Additional Information: 6 in W x 1-1/2 in H Dimensions, Domestic

  • Sleek styling, easy blade replacement and larger handles make the Andy® snip more versatile
  • A sleek head design improves maneuverability
  • A full 3-1/4 in cutting length makes straight shearing with the Malco® Andy® snip fast and easy
  • Blade replacement is easily accomplished in the field
  • M14ARB replaceable blade
  • Rounded contour styling and loops
  • Flat ground edges
  • Andy® classic 14 in pattern straight shearing, mild curve cuts and multiple layers of material

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