Factory Carbide BSG Thread Mill Pipe Thread Milling Cutter For Stainless Steel Aluminum Titanium CNC Machining

Short Description:

BSG Thread Mill is a high-precision solid carbide cutting tool specially developed for machining 55° non-taper parallel pipe threads, which fully conforms to BSPP and ISO G thread standards. It adopts integrated drilling and threading technology without pre-drilling, greatly improving CNC machining efficiency and reducing production costs.


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Product Detail

Product Tags

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Bullet Points

Multi-size Thread Compatible Single BSG thread mill supports multiple pipe thread diameters, reduce the quantity of stored taps and thread cutters, save workshop inventory cost.

Low Breakage Risk vs Traditional Taps Optimized chip evacuation structure, avoid tap breakage inside blind holes, lower rejection rate and equipment maintenance loss.

High Efficiency for Mass Production Only one circular feed around the hole can form complete threads, ideal for batch production on CNC machining centers and milling machines.

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Applications

Aerospace: Turbine parts, aircraft hydraulic pipe fittings, high-precision pipeline connectors

Automotive: Engine blocks, hydraulic valve bodies, transmission pipe thread components

Medical Devices: Surgical instruments, medical implant pipe fittings, precision fluid control parts

Hot Q&A

  1. What thread standard does BSG thread mill comply with?

Answer: It adopts 55° non-taper parallel pipe thread, equivalent to BSPP and ISO G thread standards, suitable for all G/BSPP pipeline connection processing.

  1. Can you customize coating and sizes?

Answer: Custom coating, shank diameter, thread specification, flute length and overall length are available according to customer drawings.

  1. Is it available for blind hole processing without pre-drilling?

Answer: Sure. Our bottom-hole-free integrated structure realizes one-step drilling and threading for both blind holes and through holes.

  1. Can BSG thread mill fully replace traditional taps?

Answer: Yes. It has better chip removal performance, lower breakage risk, higher machining precision and wider material adaptability, with obvious advantages over ordinary taps for precision mass threading.


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