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Explanation document regarding the challenges and improvement measures in the manufacturing process of "super hard long drill materials."

We present materials that explain the manufacturing challenges of ultra-hard long drills and their improvement points, which are useful for enhancing the precision of drilling processes!

The material for ultra-hard long drills is created through sintering, which can lead to runout and bending at the material stage. The document titled "Challenges and Improvement Measures in the Manufacturing Process of 'Ultra-Hard Long Drill Material'" provides a detailed explanation of the challenges in the manufacturing process of ultra-hard long drills, including techniques for removing runout and bending, and their improvement measures. This may help enhance the precision of "drilling processing technology" for effectively and accurately creating fine holes and deep holes. [Partial Content Introduction] ■ About the material of ultra-hard long drills ■ What is a sintered body? ■ The manufacturing process of ultra-hard long drills ■ Required precision for ultra-hard long drills ■ Current processing methods and issues ■ <Through-feed Centerless Grinding> etc. Konan Koki offers centerless cylindrical grinding processing of ultra-hard alloy round bars. We uniquely reduce material warping and bending to an extreme degree, achieving high precision in outer diameter accuracy, roundness, and cylindricity. Please feel free to consult with us. *For more details, please download the PDF or feel free to contact us.

  • Processing Contract
  • alloy

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Super Hard Long Drill "DRLX" <Internal Cooling Type>

It demonstrates stable performance under various cutting conditions, such as when the rotation speed and feed rate are fast or slow, and when the coolant pressure is high or low!

■Demonstrates stable performance under various cutting conditions, such as high or low spindle speeds and feed rates, high or low coolant pressure, and the presence or absence of step machining. ■Low cutting resistance and minimal load on the spindle. ■Polished grooves prevent welding and allow for smooth chip evacuation. ■Large S-shaped chip pockets achieve excellent chip evacuation. ■Chamfering at the corners prevents chipping and reduces burrs. ■Large core thickness ensures rigidity. ■Double margins improve straightness. *For more details, please download the PDF or feel free to contact us.*

  • drill

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