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Carbide Drill Bit
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Anti Chipping Solid Carbide Drill Bit Coolant Through Deep Hole Drill Smooth Surface OEM

Anti Chipping Solid Carbide Drill Bit Coolant Through Deep Hole Drill Smooth Surface OEM

Brand Name: AMG
Model Number: Standard/Customized
MOQ: 3
Price: Request Quote
Detail Information
Place of Origin:
China
Certification:
ISO9001
Features:
Smooth Surface Finish
Name:
Solid Carbide Coolant-Through Deep Hole Drill
Application:
Aluminum Alloy, Copper Alloy, Non-ferrous Metals
Type:
Step Drill
Coating:
DLC/Uncoated
Coolant Type:
Through Coolant
Transport:
Air,TNT,DHL,EMS,Express
Oem:
OEM Is Accepted
Highlight:

Anti Chipping Solid Carbide Drill Bit

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Coolant Through Deep Hole Drill

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Smooth Surface Solid Carbide Drill Bit

Product Description
Superior Wear and Anti-Chipping Solid Carbide Coolant-Through Deep Hole Drill
Product Specifications
Attribute Value
Name Solid Carbide Coolant-Through Deep Hole Drill
Application Aluminum alloy, copper alloy, non-ferrous metals
Features Smooth surface finish
Type Step drill
Coating DLC/Uncoated
Coolant type Through coolant
Transport Air, TNT, DHL, EMS, Express
Oem OEM is accepted
Product Overview

AMG solid carbide coolant-through straight flute drill is engineered for precision deep hole and blind hole machining. Manufactured from high-quality ultra-fine grain solid carbide through precision grinding, this tool offers exceptional hardness, superior wear resistance, and outstanding anti-chipping performance. The innovative coolant-through design provides targeted cooling and efficient chip evacuation, reducing cutting temperatures while extending tool life for stable, high-performance deep hole drilling operations.

Anti Chipping Solid Carbide Drill Bit Coolant Through Deep Hole Drill Smooth Surface OEM 0
Applications

Ideal for deep hole and blind hole machining in various materials including:

  • Carbon steel
  • Stainless steel
  • Aluminum alloys
  • Copper and other metals

Perfect for high-precision applications in hydraulic components, mold processing, hydraulic valve body deep hole drilling, automotive parts, and structural components.

Technical Specifications
  • Material: Ultra-fine grain solid carbide (HM)
  • Coolant: Coolant-Through system
  • Flute Type: Straight Flute design
  • Diameter Range: Φ3mm - Φ12mm (customizable)
  • Cutting Length: 6D / 10D / 15D / 20D (customizable upon request)
  • Coating Options: TiAlN / DLC / Uncoated
Working Principle

The coolant-through straight flute drill delivers high-pressure coolant directly to the cutting area through internal channels, significantly reducing cutting temperatures and minimizing thermal deformation. The straight flute design ensures optimal guidance and stable chip evacuation during deep hole drilling operations, preventing chip clogging and enabling continuous machining.

Key Advantages
Efficient cooling and chip evacuation with coolant-through design eliminates heat accumulation in deep hole machining
Straight flute structure maintains exceptional hole straightness and dimensional accuracy
Rigorous AMG quality control ensures batch-to-batch consistency and extended tool life
Enables high-efficiency, high-finish mass production of deep holes
Reduces tool change frequency, minimizing downtime and labor costs
Anti Chipping Solid Carbide Drill Bit Coolant Through Deep Hole Drill Smooth Surface OEM 1
Frequently Asked Questions
Q: What materials are suitable for the solid carbide coolant-through straight flute drill?

A: This drill is optimized for deep hole machining of carbon steel, stainless steel, alloy steel, aluminum alloys, and copper materials.

Q: How to ensure smooth chip evacuation during hydraulic valve body deep hole drilling?

A: AMG coolant-through straight flute drills combined with high-pressure coolant systems provide efficient chip evacuation and prevent clogging in demanding applications.

Q: Can different sizes and coatings be customized?

A: AMG offers complete customization of diameters, cutting lengths, shank sizes, and coating options based on customer specifications and machining requirements.