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Morse Cutting Tools MT3360789 5/16" – 24 NF 2-Flute, H3 Modified Bottoming Series/List # 2093S Spiral Flute Tap Supply

Original price was: $47.08.Current price is: $18.83.

SKU: US-6727224164557 Categories: , Tag:

Description

Morse Cutting Tools MT3360789 5/16" – 24 NF 2-Flute, H3 Modified Bottoming Series/List # 2093S Spiral Flute Tap

Short Description

Morse Cutting Tools 60789 5/16″ – 24 NF 2-Flute, H3 Modified Bottoming Series/List # 2093S Spiral Flute Tap


Full Description

Thread Diameter Size (TDZ) 5/16″ Thread Tolerance Class (TCTR) H3
Threads per Inch (TPI) 24 Special Feature High Performance
Thread Standard NF Tool Type High Performance Tap
Overall Length (OAL) 2-23/32″ Chamfer Semi-Bottoming
Thread Cutting Part Length (THL) 15/32″ Coating CrN
Flute Count (NOF) 2 Flute Type Spiral-45 Degree
Flute Helix Angle (FHA) 48 Degrees Style Modified Bottoming
Applicable Material Aluminum / Non-Ferrous Materials Measurement Type Fractional
Cutting Edge Material HSSPM ToolTypeName Spiral Flute Taps

• HPT†- High Performance Tap – Aluminum • Recommended for all types of aluminum alloys. CrN coating especially recommended for high-silicon aluminum alloys. • Spiral Flute Taps are designed to lift the chips out of the hole in blind hole tapping, eliminating chip evacuation problems which can result in damaged threads and broken taps. They will also bridge openings, keyways and other interruptions in the tapped hole. • Semi-Interrupted Thread (3-Flute taps only) • Semi-Bottoming Style (2-3 thread chamfer) allows threading close to the bottom of blind holes but cuts more efficiently than standard bottoming taps due to a slightly longer chamfer which distributes the cutting load over greater number of teeth. • CNC Reduced Neck Design enhances chip evacuation and cutting fluid flow to the cutting teeth for reduced friction, heat and galling. Also reduces contact between the tap the work piece. • P/M Powder Metallurgy High Speed SteelPremium Steel Engineered For:† Hardness / Wear Resistance / Tool / Heat Resistance / Toughness and Strength / Performance under Difficult Cutting Conditions / Higher Cutting Speeds / Increased Productivity