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Get it between 2025-01-02 to 2025-01-09. Additional 3 business days for provincial shipping.
Tap Size: 3/8-16 UNC thread, H2 thread tolerance grade. Spiral flute design, upward chip removal. Right hand thread cutting, clear threads, fast tapping with accuracy.
Material and Finish: High speed steel tool features high hardness and toughness, heat resistance, good for general purpose applications. Titanium Plating for wear resistance, corrosion resistance, rust protection.
Applications: Suitable for processing blind holes and sticky materials. Great for drilling and tapping aluminum, die steel, stainless steel, bronze, hard plastics, etc.
Easy to Use: Used on drilling machines, tapping machines, CNC and milling machines. Use with tapping oil to get higher quality threads and more durable taps.
Tips: Machine taps are suggested to be used with tap collets with overload protection. Hand use is easy to cause breakage to the tap due to uneven force.
Specifications: Thread Size: 3/8-16 UNC Thread Length: 25mm / 0.98" Total Length: 80mm / 3.15" Square End Size: 6mm x 6mm / 0.24" x 0.24" Thread Tolerance Grade: H2 Material: HSS (High Speed Steel) Finish: Titanium Plated Cutting Direction: Right Hand Numbers of Flutes: 3 Flutes Package Content: 1 x Spiral Flute Threading Tap Descriptions: 1. Spiral flute design, upward chip removal. Right hand thread cutting, clear threads, fast tapping with accuracy. 2. High speed steel tool features high hardness and toughness, heat resistance, good for general purpose applications. Titanium Plating for wear resistance, corrosion resistance, rust protection and long service life. 3. Suitable for processing holes and sticky materials. Great for drilling and tapping aluminum, die steel, stainless steel, bronze, hard plastics, etc.. 4. Used on drilling machines, tapping machines, CNC and milling machines. Use with tapping oil to get higher quality threads and more durable taps. 5. Machine taps are suggested to be used with tap collets with overload protection. Hand use is easy to cause breakage to the tap due to uneven force.