Product Overview

15xD Solid Carbide Drill —Engineered for Extra-Deep Titanium Alloy Hole Machining

The 15xD carbide drill for titanium alloy is designed for extra-deep-hole machining applications where heat control, chip evacuation, hole straightness, edge strength, and process stability are critical. Compared with 12xD drilling, 15xD titanium alloy drilling has a longer chip evacuation path and higher requirements for internal coolant pressure, flute rigidity, spindle runout control, pilot hole quality, and machine stability.

Titanium alloys such as Ti-6Al-4V, TC4, Grade 5 titanium, and Grade 2 titanium have low thermal conductivity, high toughness, and strong adhesion tendency during drilling. In 15xD extra-deep-hole drilling, cutting heat is harder to remove from the cutting zone, while chips must travel a much longer path before leaving the hole. If heat buildup, chip adhesion, coolant delivery, and cutting load are not controlled, the drill may face rapid wear, hole deviation, poor surface quality, or premature breakage.

This 15xD carbide drill is manufactured from imported MG grade 0.8 μm tungsten carbide rods with 10% cobalt content, supporting high-speed cutting and stable tool strength. Combined with HSR118 heat-resistant coating, optimized point geometry, reinforced extra-deep-hole flute structure, controlled edge preparation, and German Walter precision grinding, it helps improve heat resistance, reduce chip sticking, protect the cutting edge, and maintain consistent hole quality in extra-deep titanium alloy drilling applications.

  • Extra-Deep Titanium Drilling
  • HSR118 Heat-Resistant Coating
  • Internal Coolant Support
  • Regrinding & Customization
product overview

Technical Specifications 

Item Description Item Description
Product Name 15xD Carbide Drill for Titanium Alloy Drill Type Solid Carbide Extra-Deep-Hole Drill
Hole Depth 15xD Application Extra-deep-hole drilling in titanium alloy and difficult-to-machine materials
Workpiece Material Titanium alloy, Ti-6Al-4V, TC4, Grade 5 titanium, Grade 2 titanium, high-temperature alloys Carbide Material Imported MG Grade 0.8 μm Tungsten Carbide
Cobalt Content 10% Coating HSR118 Wear-Resistant Coating
Passivation Control ±0.003 mm Edge Inspection
300x magnification appearance inspection
Service Regrinding and Customization Available Tool Life Up to 80–150 Meters Under Suitable Machining Conditions

 

Additional diameters, special tolerances, and internal coolant versions available on request.

Engineering Details That Improve 15xD Titanium Alloy Drilling

Premium Carbide Material

Premium Carbide Material

Made from imported MG grade 0.8 μm tungsten carbide with 10% cobalt content.
The fine carbide grain structure helps support tool rigidity, edge strength, and stable cutting performance in extra-deep titanium alloy hole machining.

HSR118 Heat-Resistant Coating

HSR118 Heat-Resistant Coating

HSR118 coating is designed for titanium alloy machining where cutting heat and chip adhesion are major challenges.
It helps reduce chip sticking, protect the cutting edge, and maintain stability in 15xD extra-deep-hole drilling conditions.

Optimized Point Geometry

Optimized Point Geometry

Optimized drill point geometry supports stable entry and accurate hole positioning.
A stable drill point helps reduce drill walking, minimize cutting load fluctuation, and improve starting accuracy before long-depth drilling.

Extra-Deep-Hole Flute Structure

Extra-Deep-Hole Flute Structure

Reinforced flute geometry improves chip evacuation and tool rigidity in 15xD titanium alloy drilling.
The variable core design and back taper help reduce chip clogging, lower friction inside the hole, protect the cutting edge, and maintain better hole straightness over longer drilling depths.

Applications

Where This 15xD Carbide Drill Performs Best

This 15xD carbide drill for titanium alloy is suitable for extra-deep-hole machining in CNC machining centers and production drilling applications. It is especially useful for titanium components where cutting heat control, chip adhesion reduction, internal coolant delivery, hole straightness, edge stability, and batch drilling reliability are important.

Suitable Materials

  • Titanium Alloy
  • Ti-6Al-4V
  • TC4 Titanium Alloy
  • Grade 5 Titanium
  • Grade 2 Titanium
  • High-Temperature Alloys
  • Difficult-to-Machine Alloy Materials
  • Titanium Mechanical Components

Typical Applications

  • 15xD Extra-Deep-Hole Drilling
  • Deep Through-Hole Drilling
  • Deep Blind-Hole Drilling
  • Precision Titanium Hole Machining
  • Aerospace Titanium Components
  • Medical Titanium Parts
  • Automotive Lightweight Titanium Parts
  • High-Temperature Alloy Component Drilling
  • Batch Production Titanium Drilling
Ready to Test?

Need a Stable 15xD Carbide Drill for Titanium Alloy?

Send us your material and hole requirements. Our team will recommend the right drill solution.

Why Choose Us

Why Choose Landun CNC Tool

Landun CNC Tool is a carbide drill manufacturer focused on precision solid carbide drills and custom carbide drill solutions, supported by advanced grinding, strict inspection, and consistent edge preparation.

3,000 m²

Production Facility

3 μm

Geometry Accuracy Control

300x

Edge Inspection Magnification

±0.003 mm

Edge Passivation Control

Why Choose Us
German Walter 5-Axis Grinding Machines

German Walter 5-Axis Grinding Machines

Our carbide drills are ground on German WALTER 5-axis grinding machines for sharp cutting edges, stable accuracy, and smooth drilling performance.

Walter Helicheck Plus Contour Inspection

Walter Helicheck Plus Contour Inspection

We use WALTER HELICHECK PLUS for contour inspection, keeping profile and radius control within 3 μm for reliable geometric precision.

300x Magnification Edge Inspection

300x Magnification Edge Inspection

Each carbide drill is inspected at 300x magnification to check edge quality and avoid chipping or saw-tooth defects before shipment.

Consistent Edge Passivation Control

Consistent Edge Passivation Control

Manual drill point honing and automatic rubber-bonded diamond abrasive polishing help improve tool life and control edge consistency within ±0.003 mm.

Frequently Asked Questions

15xD means the drill is designed for hole depths up to 15 times the drill diameter. It is used for extra-deep-hole machining where chip evacuation, coolant delivery, tool rigidity, heat control, and hole straightness are more demanding.

Yes. This 15xD carbide drill is suitable for titanium alloys such as Ti-6Al-4V, TC4, Grade 5 titanium, Grade 2 titanium, and other difficult-to-machine alloy materials under suitable machining conditions.

This drill uses HSR118 heat-resistant coating, which helps improve heat resistance, reduce chip adhesion, and protect the cutting edge in titanium alloy extra-deep-hole drilling applications.

Titanium alloy has low thermal conductivity, high toughness, and strong adhesion tendency. In 15xD drilling, heat is harder to remove and chips travel a longer distance, so coolant support, chip evacuation, and edge stability are critical.

A 12xD drill is used for deep-hole drilling, while a 15xD drill is designed for longer and more demanding holes. 15xD drilling requires stronger coolant support, better flute rigidity, more careful runout control, and more stable machine conditions.

Yes. Internal coolant is strongly recommended because it helps control cutting heat, reduce chip adhesion, support chip evacuation, and maintain stable hole quality in extra-deep titanium alloy holes.

For better starting stability and hole accuracy, a pilot hole or guide hole is recommended in many 15xD drilling applications. The actual process should be confirmed according to drill diameter, machine condition, titanium grade, and tolerance requirement.

Yes. We support customization based on drawings, titanium grade, diameter, hole depth, coolant method, HSR118 coating requirement, shank size, and drilling application.

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Landun Cnc Tool

Tell Us Your Requirements

Contact Landun CNC Tool for standard, micro, deep-hole, internal-coolant, flat-bottom, step, and custom solid carbide drills. Send us your drawing, existing tool sample, workpiece material, and hole requirements, and our team will provide an application review and quotation.

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