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Product Description

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PRODUCT DESCRIPTION

Special design helps to reduce the cutting force while machining. It is highly applicable for hardened steels up to 65 HRC and suitable for general applications.

FEATURES & BENEFITS
  • Custom tools provided as per specific needs: from coating, flute, and helix angle to cutting length and total length.
  • Heavy duty operation end mills featuring unequalled indexing and asymmetric helix angle.
  • Anti-Vibration technology providing smooth and steady chip evacuation.
  • Ideal for heavy duty cutting operations across various hard metals.
  • Employs a 1-degree flute shape to enable high efficiency machining of high hardness materials, perfect for roughing.
ARE WIDELY USED:
✔ Aerospace industry ✔ Vehicle manufacturing ✔ Mold manufacturing ✔ Ship manufacturing ✔ Weapons manufacturing ✔ Metallurgical equipment ✔ Electronics industry ✔ Machinery & equipment
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Frequently Asked Questions
1. What materials are these tools suitable for? These tools are specifically designed for hardened steels up to 65 HRC and can also be used for general metal machining applications.
2. Can I request a customized tool design? Yes, we provide customization options including specific coatings, flute counts, helix angles, cutting lengths, and total lengths to meet your unique requirements.
3. How does the anti-vibration feature help? The anti-vibration design ensures a smooth and steady chip evaluation, which reduces tool wear and improves the surface finish of the workpiece.
4. Is the tool efficient for roughing operations? Absolutely. The 1-degree flute shape is specifically designed to enable high-efficiency machining and is highly effective for roughing high-hardness materials.
5. In which industries are these end mills commonly used? They are widely utilized in aerospace, vehicle manufacturing, mold making, electronics manufacturing, and heavy machinery industries.
6. How does the special design reduce cutting force? The asymmetric helix angle and unique indexing help distribute the workload unevenly during rotation, which significantly reduces the cutting force required.

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