Solid Carbide No-Pilot-Hole Thread Mill for Combined Hole Making and Thread Milling

SOLID CARBIDE NO-PILOT-HOLE THREAD MILL

Combined core-hole generation and 60° internal metric thread milling in one CNC tool. Steel-cutting and DLC-coated versions are available for different workpiece materials.

Product Configuration
Machining FunctionHole Making + Thread Milling
Thread Profile60° Internal Metric Thread
Standard CoverageSteel M3–M12 / DLC M1.6–M12
Pitch RangeP0.35–P1.75
Cutter DiameterØ1.15–Ø9.6 mm
Flute / Overall Length2 / 3 / 4 Flutes · 50 / 60 / 75 mm

Custom OptionsThread Size / Dimensions / Coolant / Coating / OEM
Standard Dispatch1–3 Working Days
Minimum OrderMOQ 10 Pieces per Size

Consistent Quality

Consistent geometry across repeat orders.

คำสั่งซื้อที่ยืดหยุ่น

Small batches and mixed sizes available.

OEM Support

Custom marking, labels and packaging.

แบบมาตรฐานและแบบตามสั่ง

Standard sizes and custom configurations.

No-Pilot-Hole Thread Mill Overview

These solid carbide drill/thread mills combine core-hole generation and 60° internal thread milling without a separately pre-drilled pilot hole. The steel series covers M3–M12 with four-flute geometry and external or internal coolant by size. The DLC-coated series covers M1.6–M12 with two-, three- or four-flute designs for aluminum, copper and selected non-metallic materials. By completing multiple features with one tool and one clamping position, the series can reduce tool changes, setup time and accumulated positioning error in suitable CNC machining centers.

Combined OperationsHole Making + Thread Milling
Thread Profile60° Internal Metric
Standard RangeM1.6–M12
Material SeriesSteel / DLC Non-Ferrous

Key Configuration

Steel Machining Series

Four-flute solid carbide models for M3–M12. M3–M6 use external coolant; M8–M12 incorporate internal coolant to support chip evacuation at larger sizes and depths.

DLC-Coated Non-Ferrous Series

M1.6–M12 tools with two, three or four flutes. DLC coating and material-specific geometry support low-friction machining of aluminum, copper, plastics and acrylic.

Helical Interpolation Process

The tool follows a programmed orbital path to generate the core hole and thread. It should not be treated as a conventional axial drill unless the specific program and application are approved.

Key Product AdvantagesSolid Carbide No-Pilot-Hole Thread Mill fewer step precision threading advantage Solid Carbide No-Pilot-Hole Thread Mill precision surface advantage Solid Carbide No-Pilot-Hole Thread Mill coating technology advantage Solid Carbide No-Pilot-Hole Thread Mill function advantage Solid Carbide No-Pilot-Hole Thread Mill our tool advantage

2in1

Combined Machining

Generates the core hole and internal thread with one tool, eliminating a separate pilot-drilling tool in suitable applications.

↻

Fewer Tool Changes

One combined tool can shorten tool-change time and simplify tool inventory for repeated threaded-hole production.

DLC

Material-Matched Versions

Separate steel and DLC-coated series match cutting geometry, flute count and coolant strategy to different material groups.

60°

Controlled Thread Profile

Precision-ground 60° geometry supports repeatable metric internal threads when paired with the correct CNC toolpath and gauging.

Series Selection & Applications

SERIES STANDARD RANGE RECOMMENDED MATERIALS COOLANT / PROCESS
Steel Series M3–M12 / P0.5–P1.75 Carbon steel, alloy steel, pre-hardened steel; selected stainless-steel applications External coolant M3–M6; internal coolant M8–M12
DLC-Coated Series M1.6–M12 / P0.35–P1.75 Aluminum alloys, copper alloys, plastics and acrylic Hole making + thread milling + programmed chamfering sequence shown in the catalog
Selection Note: Select by workpiece material first, then match the exact metric size and pitch. Confirm machine interpolation capability, available spindle speed, tool-center programming, bore depth, coolant delivery and thread-gauge requirement before use.

Machining Process Guidance

01 PositionMOVE TO HELICAL START
02 InterpolateMACHINE HOLE & THREAD
03 RetractRETURN TO CENTER
04 FinishCHAMFER IF APPLICABLE
Programming Note: This is a CNC interpolation tool, not a drop-in replacement for a conventional drill or tap cycle. Use the approved program for the exact model and material. Verify the first hole with the correct thread gauge and dimensional inspection method.

Product Geometry & Standard Size Ranges

The following charts show the material-specific geometry, size range, coolant configuration and recommended machining sequence.

Solid carbide no-pilot-hole thread mill for steel dimensions sizes and machining process

Steel Series — M3–M12, Four Flutes, External / Internal Coolant

DLC coated no-pilot-hole thread mill dimensions sizes and machining process

Solid Carbide No-Pilot-Hole Thread Mill for Combined Hole Making and Thread Milling photo1 Solid Carbide No-Pilot-Hole Thread Mill for Combined Hole Making and Thread Milling photo2 Solid Carbide No-Pilot-Hole Thread Mill for Combined Hole Making and Thread Milling photo3DLC-Coated Series — M1.6–M12 for Aluminum, Copper and Selected Non-Metallic Materials

Need help confirming material series, metric size, coolant configuration or CNC toolpath? Read our Thread Mill Selection Guide.

Tool Nomenclature & Dimensions

Reference dimensions and standard configurations for solid carbide no-pilot-hole drill/thread mills. All dimensions are in millimeters. The tool combines orbital core-hole generation and 60° internal thread milling; select the correct series according to material, thread size, coolant method and programmed operation sequence.

No-pilot-hole thread mill for steel dimensions and standard sizesSteel Series: M3–M12 with four flutes and external / internal coolant options
DLC coated no-pilot-hole thread mill dimensions and standard sizesDLC-Coated Series: M1.6–M12 with two, three or four flutes
P: Pitch d1: Cutter Diameter L1: Clearance / Working Length D: Shank Diameter L: Overall Length F: Flute Count

Technical Configuration

PARAMETER STEEL SERIES DLC-COATED SERIES
Tool Material Fine-Grain Solid Carbide Fine-Grain Solid Carbide + DLC Coating
Primary Materials Carbon Steel / Alloy Steel / Pre-Hardened Steel Aluminum / Copper / Plastics / Acrylic
Thread Profile 60° Internal Metric 60° Internal Metric
Standard Size M3–M12 M1.6–M12
Pitch P 0.5–1.75 0.35–1.75
Cutter Diameter d1 Ø2.4–Ø9.0 Ø1.15–Ø9.6
Clearance Length L1 9–26 5–26
Shank Diameter D Ø6 / Ø8 / Ø10 Ø4 / Ø6 / Ø8 / Ø10
Overall Length L 50 / 60 / 75 50 / 60 / 75
Flute Count F 4 Flutes 2 / 3 / 4 Flutes by Size
Coolant External M3–M6 / Internal M8–M12 Not Specified in Source Chart; Confirm by Application

Standard Steel Series Size Matrix

Four-flute models for steel machining. Coolant configuration changes from external to internal coolant at M8.

PRODUCT CODE SIZE P d1 L1 D L F COOLANT
ISO M0.5 2.40700650 A M3.0 0.5 2.4 9.0 6.0 50 4 External
ISO M0.7 3.20900650 A M4.0 0.7 3.2 11 6.0 50 4 External
ISO M0.8 3.9120650 A M5.0 0.8 3.9 12 6.0 50 4 External
ISO M1.0 4.7140650 A M6.0 1.0 4.7 14 6.0 50 4 External
ISO M1.25 6.2180860 A M8.0 1.25 6.2 18 8.0 60 4 Internal
ISO M1.5 7.5230860 A M10 1.5 7.5 23 8.0 60 4 Internal
ISO M1.75 9.0261075 A M12 1.75 9.0 26 10 75 4 Internal

Standard DLC-Coated Size Matrix

Material-specific models for aluminum, copper and selected non-metallic materials. Flute count increases with tool size.

PRODUCT CODE SIZE P d1 L1 D L F
ISO M0.35 1.150500450 DLC M1.6 0.35 1.15 5.0 4.0 50 2
ISO M0.4 1.50650450 DLC M2.0 0.4 1.5 6.5 4.0 50 2
ISO M0.45 1.90700450 DLC M2.5 0.45 1.9 7.0 4.0 50 2
ISO M0.5 2.40900650 DLC M3.0 0.5 2.4 9.0 6.0 50 3
ISO M0.7 3.2110650 DLC M4.0 0.7 3.2 11 6.0 50 3
ISO M0.8 3.9120650 DLC M5.0 0.8 3.9 12 6.0 50 3
ISO M1.0 4.7140650 DLC M6.0 1.0 4.7 14 6.0 50 3
ISO M1.25 6.5180860 DLC M8.0 1.25 6.5 18 8.0 60 4
ISO M1.5 7.8230860 DLC M10 1.5 7.8 23 8.0 60 4
ISO M1.75 9.6261075 DLC M12 1.75 9.6 26 10 75 4
Dimension Note: Confirm that d1, L1 and the programmed orbital path suit the required thread and available feature depth. Product codes should be checked against the latest drawing before ordering.

Machining Sequence

STEP STEEL SERIES DLC-COATED SERIES
01 Move to the programmed helical start point Move to the programmed helical start point
02 Helically interpolate to generate the core hole and thread Helically interpolate to generate the core hole and thread
03 After threading, move to hole center and retract After threading, move to hole center and retract
04 Return to the start position Machine the programmed chamfer
05 — Return to the start position

How to Select a No-Pilot-Hole Thread Mill

  • Match the Material: Use the steel series for the listed ferrous materials and the DLC series for aluminum, copper and the listed non-metallic materials.
  • Match Size and Pitch: Select the exact metric size and P value from the appropriate matrix; these are dedicated-size tools.
  • Check Feature Depth: Confirm L1 provides sufficient access while maintaining safe bottom and shoulder clearance.
  • Confirm Coolant: Steel M8–M12 models require a machine and holder arrangement compatible with internal coolant delivery.
  • Confirm CNC Capability: The control must support accurate helical interpolation and tool-center programming for the supplied machining sequence.
  • Gauge the First Thread: Inspect the first completed feature and adjust compensation only in controlled increments.

Starting Cutting & Programming Guidance

The source charts do not provide numeric cutting data. Starting conditions must be confirmed for the exact tool code, material, coating, coolant method, feature depth, machine rigidity and holder runout.

PARAMETER CONTROL BASIS STARTING GUIDANCE
Cutting Speed Material / coating / d1 Use series-specific data; do not transfer steel data directly to the DLC series
Feed & Interpolation Flute count / pitch / orbital diameter Use the approved CNC program for the exact model and begin conservatively
Coolant & Chips Material / depth / coolant style Maintain chip evacuation and avoid recutting during the combined operation
Toolholding Shank D / holder accuracy Use a precision low-runout holder and minimum practical projection
Inspection Thread gauge / hole depth / chamfer Verify every feature produced by the combined cycle on the first component

Thread Mill Selection Resources

For a custom size or application review, provide the complete thread callout, feature depth, workpiece material and hardness, machine model, holder, coolant method, inspection requirement and quantity.

No-Pilot-Hole Thread Mill Customization

Solid carbide no-pilot-hole thread mills combine core-hole generation and 60° internal metric thread milling in one CNC tool. Standard steel-cutting models cover M3–M12 with P0.5–P1.75, while DLC-coated models cover M1.6–M12 with P0.35–P1.75 for aluminium, copper and other non-ferrous materials. Geometry, coolant delivery, coating and dimensions can be reviewed for the workpiece material, thread depth, machine capability and finished-thread inspection requirement.

PARAMETER MANUFACTURING CAPABILITIES
Combined Cutting Function Integrated bottom-cutting and 60° thread-milling geometry for producing the core hole and internal thread without a separate pilot-hole tool
Thread & Pitch Range Steel series: M3–M12, P0.5–P1.75. DLC-coated non-ferrous series: M1.6–M12, P0.35–P1.75. Each tool is dedicated to the specified thread size and pitch
Cutter Diameter d1 Steel series Ø2.4–Ø9.0 mm; DLC series Ø1.15–Ø9.6 mm. Custom diameter is reviewed against the thread size, core-hole generation and tool strength
Material Version Steel geometry for carbon, alloy and pre-hardened steels, with selected stainless-steel applications; DLC-coated geometry for aluminium, copper, plastics and acrylic
Cutting / Reach Length L1 Steel series 9–26 mm; DLC series 5–26 mm. Custom reach is reviewed against thread depth, bottom clearance, chip evacuation and rigidity
Shank Diameter D Standard Ø4 / Ø6 / Ø8 / Ø10 mm cylindrical shanks according to model; custom shank dimensions can be reviewed for the selected holder
Overall Length L Standard 50 / 60 / 75 mm according to thread size. Custom length is reviewed against machining depth, holder clearance and rigidity
Flute Count F Steel series uses 4 flutes. DLC series uses 2 flutes for M1.6–M2.5, 3 flutes for M3–M6 and 4 flutes for M8–M12
Coolant Delivery Steel M3–M6 models use external coolant; steel M8–M12 models use internal coolant. DLC coolant strategy is confirmed according to material, machine and chip evacuation
Cutting-Edge Preparation Edge preparation can be adjusted according to workpiece material, hardness, cutter diameter, interruption and expected cutting load
Coating Selection Steel-application coating or edge treatment and low-friction DLC coating are selected separately; custom coating is reviewed against workpiece material and coolant conditions
Dimensional Tolerance Drawing-defined requirements for the 60° profile, pitch, d1, L1, D, L, bottom-cutting geometry, shank accuracy, runout and other critical features can be reviewed before production
Engineering Note: Please provide the complete metric thread callout, thread depth, available bottom clearance, workpiece material and hardness, machine spindle and coolant capability, d1 / L1 / D / L restrictions, preferred coating, inspection requirement and quantity. Confirm that the machine and toolpath can perform the combined hole-making and helical thread-milling cycle.

บริการ OEM และแบรนด์ส่วนตัว

OEM manufacturing and private-label supply are available for cutting-tool distributors, tooling brands and repeat-production customers. Steel or DLC series identification, product codes, metric size, pitch, coolant type, coating reference, labels and protective packaging can be configured according to the approved specification.

OEM laser marking custom labels coatings and packaging for solid carbide no-pilot-hole thread mills

Laser Etching

Custom logos, product codes, Steel or DLC identification, metric size, pitch, coating reference and batch number can be marked according to the available shank area.

Custom Labels & Packaging

Individual protective tubes, model and pitch labels, color-coded series identification and private-label packaging can be prepared for distributor and OEM programs.

Commercial Terms

Standard tools can normally be dispatched in 1–2 working days. Minimum order is 10 pieces per size; custom samples and repeat supply are confirmed by specification.

Technical Workflow

A structured review process confirms the thread specification, combined cutting cycle, workpiece material, tool dimensions, flute configuration, coolant strategy and identification before standard, customized or private-label tools enter production.

STAGE 01

Inquiry

Submit the metric thread size and pitch, thread depth, bottom clearance, material, machine capability, coolant method, coating and quantity.

STAGE 02

Engineering

Review steel or DLC geometry, pitch, d1, L1, D, L, flute count, coolant delivery, carbide grade and coating.

STAGE 03

Commercial

Confirm quotation, MOQ, sample conditions, production schedule, marking, packaging and delivery terms.

STAGE 04

Production

Carbide preparation, CNC flute and profile grinding, edge preparation, coating and laser marking.

STAGE 05

Quality Control

Inspect the 60° thread form, pitch, bottom-cutting geometry, dimensions, flute count, runout, coolant feature, coating and identification.

Quality, Inspection & Delivery

Our solid carbide no-pilot-hole thread mills are controlled through carbide material verification, precision CNC grinding, in-process measurement and final inspection. The integrated bottom-cutting geometry, 60° thread form, specified pitch, cutter diameter d1, reach L1, shank diameter D, overall length L, flute count F, coolant feature, radial runout, cutting-edge condition, coating appearance and identification are checked against the selected steel or DLC model or an approved custom drawing before packing.

Inspection & Quality Control hy cutting tools

Three-Stage Quality Control

Inspection checkpoints are arranged throughout production to support bottom-cutting geometry, thread-profile accuracy, pitch consistency, coolant-feature control and repeat-order traceability.

STAGE 01

Incoming Material Control

Carbide substrate grade, blank diameter, blank length and supplied material information are checked against the confirmed tool specification.

STAGE 02

In-Process Grinding Control

The integrated hole-making geometry, 60° thread profile, flute configuration, d1, L1, shank dimensions and applicable coolant feature are monitored during precision CNC grinding.

STAGE 03

Final Tool Inspection

Finished tools are reviewed for product code, steel or DLC version, pitch, specified dimensions, runout, bottom and thread-cutting edges, coolant feature, coating, laser marking and packing labels.

Key Inspection Characteristics

Inspection requirements are confirmed according to the selected steel or DLC-coated standard model and the approved metric thread specification or custom drawing.

INSPECTION ITEM CONTROL FOCUS CONFIRMATION BASIS
60° Thread Form & Pitch Included angle, thread-profile geometry, tooth spacing and specified metric pitch Product code, thread callout and approved manufacturing specification
Cutter Diameter d1 Cutting-section diameter and dimensional consistency Standard size matrix or approved drawing
Bottom-Cutting Geometry End-cutting edges, centre geometry, flute transitions and visible edge condition Approved grinding specification and application version
Reach Length L1 Cutting reach, flute length and shoulder position Required thread depth, standard model or approved drawing
Shank Diameter D Clamping diameter, cylindricity and surface condition Applicable standard or custom shank requirement
Overall Length L Total tool length and configuration consistency Standard size matrix or approved drawing
Flute Count F Steel-series 4-flute configuration or DLC-series 2 / 3 / 4-flute configuration, plus flute-to-flute consistency Selected product code or custom specification
Radial Runout Concentricity between the bottom-cutting section, thread-cutting section and shank Agreed inspection requirement or approved drawing
Cutting Edge & Coating Edge condition, visible defects, coating coverage and surface appearance Application-specific edge-preparation and coating requirement
Marking & Identification Tool code, steel or DLC series, metric size, pitch, coolant reference and batch information Confirmed order and OEM packaging specification

Measurement & Batch Traceability

Optical measuring systems, tool inspection equipment and appropriate dimensional gauges are selected according to the profile and feature being checked.

Optical Measurement

Profile and dimensional review of the integrated bottom-cutting geometry, 60° thread form, flute form and specified dimensions.

Runout Verification

Concentricity between the hole-making section, thread-cutting section and precision shank is reviewed to control radial runout.

Cutting-Edge Inspection

Magnified inspection checks cutting edges, rake and relief surfaces, transitions and visible grinding defects.

Batch Identification

Product code, steel or DLC designation, metric size, pitch, coolant type, dimensions, order and batch information can be linked for repeat supply.

Inspection Documentation: Dimensional records, profile inspection requirements, sample inspection reports or additional documentation can be reviewed according to the confirmed order. Final machined threads should be verified with the correct gauge; tool inspection does not replace first-piece thread gauging.

Protective Packaging Process

Finished no-pilot-hole thread mills are individually protected to reduce contact with the precision-ground bottom and thread-cutting edges while keeping steel and DLC series, pitch, dimensions and batch identities clearly separated during storage and transportation.

Protective packaging process for solid carbide no-pilot-hole thread mills
01 Individual ProtectionProtective tubes or cases help shield precision cutting edges.
02 Model & Batch IdentificationLabels identify the series, product code, pitch, dimensions and order information.
03 Carton ProtectionInternal cushioning and packing arrangement are selected for the shipment.
04 Ready for DispatchPacked tools are checked and prepared for the confirmed shipping method.

Bulk-Order & Export Packaging

Bulk orders of standard and custom no-pilot-hole thread mills can be arranged with steel and DLC-coated models separately labelled, together with reinforced cartons, protective wrapping, palletized loading or export cases according to quantity and transportation requirements.

Bulk-order and export packaging for solid carbide no-pilot-hole thread millsShipping and payment for HY Cutting Tools orders

Delivery Coordination

Production completion, inspection status, steel or DLC series identification, packing method and dispatch arrangements are checked against the approved order. In-stock standard tools can normally be dispatched within 1–2 working days. Minimum order is 10 pieces per size. Custom-tool lead time is confirmed after the thread specification, material version, combined cutting geometry, coolant method, dimensions, coating, quantity, inspection and packaging requirements are approved.

FAQ & Downloads

Review common selection, programming and ordering questions for solid carbide no-pilot-hole thread mills that combine core-hole generation and 60° internal metric thread milling in one CNC tool. Topics include steel and DLC versions, machine requirements, toolpath sequence, coolant, blind-hole use, thread inspection and customization.

Product & Application FAQs

Selection and application guidance for precision CNC thread milling.

What does “no pilot hole” mean for this thread mill?

It means the tool is designed to generate the core hole and mill the 60° internal thread in a combined CNC cycle, so a separate drilling operation is not required. This does not mean the tool can be fed like a conventional tap. It requires the programmed entry, helical interpolation, centre return and retraction sequence specified for this tool family.

What is the difference between the steel and DLC-coated versions?

The steel series is configured primarily for carbon steel, alloy steel and pre-hardened steel, with selected stainless-steel applications. It covers M3–M12 and uses four flutes. The low-friction DLC series is intended for aluminium, copper and suitable non-ferrous or non-metallic materials; it covers M1.6–M12 and uses two, three or four flutes according to size. Select the version by workpiece material rather than coating colour alone.

How do I select the correct product code?

Start with the workpiece material, exact metric thread size, pitch and required thread depth. Then match the dedicated standard model and confirm cutter diameter d1, cutting length L1, shank diameter D, overall length L, flute count and coolant type. Also confirm bottom clearance, holder access and whether the machine can execute the required helical interpolation cycle.

Can one tool produce different thread sizes or pitches?

No. Each standard tool code is matched to a specific metric thread size and pitch because the tool must generate both the core hole and the finished thread geometry. Choose the exact model shown in the dimensional table. A different diameter or pitch requires another standard code or an approved custom design.

Can this thread mill be used in blind holes?

Yes. Blind-hole machining is a primary application, provided the programmed depth leaves adequate bottom clearance and the toolpath supports chip evacuation. Confirm L1, entry position, centre-return movement, coolant delivery and retraction before machining. Avoid contact between the tool shoulder or shank and the workpiece surface.

What materials can the standard series machine?

The steel series is recommended for carbon steel, alloy steel and pre-hardened steel and can be applied to selected stainless steels after confirming cutting conditions. The DLC series is recommended for aluminium and copper and can also be reviewed for plastics and acrylic. Do not use the DLC version for ferrous materials unless the application has been specifically approved.

How should the toolpath and finished thread be controlled?

Use the approved CNC cycle for the selected model: position at the helical start point, interpolate to generate the core hole and thread, return to the hole centre and retract. The DLC process chart also includes a chamfering step before returning to the start point. Use a precision low-runout holder and verify the first finished thread with the correct plug gauge before batch production.

Ordering & Customization FAQs

Information for distributors, tooling brands and customers sourcing standard or custom solid carbide thread mills.

What standard sizes are available?

The steel series covers M3–M12, P0.5–P1.75, d1 Ø2.4–Ø9.0 mm, L1 9–26 mm, Ø6 / Ø8 / Ø10 mm shanks and 50 / 60 / 75 mm overall lengths. The DLC series covers M1.6–M12, P0.35–P1.75, d1 Ø1.15–Ø9.6 mm, L1 5–26 mm, Ø4 / Ø6 / Ø8 / Ø10 mm shanks and 50 / 60 / 75 mm overall lengths.

Can you manufacture a custom no-pilot-hole thread mill?

Yes. Custom metric size, pitch, cutter diameter d1, reach L1, shank diameter D, overall length L, flute configuration, bottom-cutting geometry, coolant delivery, carbide grade, edge preparation and coating can be reviewed. Please provide the complete thread callout, component drawing, thread depth, bottom clearance, material, machine and holder restrictions, inspection requirement and quantity.

Are OEM marking, custom coatings and private-label packaging available?

Yes. Laser marking can include the customer logo, product code, steel or DLC designation, metric size, pitch, coating code and batch number. Application-specific coatings, custom labels, protective tubes and private-label packaging can also be reviewed for distributor and OEM programs.

What are the MOQ and lead time?

The minimum order is 10 pieces per size. In-stock standard tools can normally be dispatched within 1–2 working days. Custom-tool lead time is confirmed after the thread specification, steel or DLC version, combined cutting geometry, coolant delivery, dimensions, carbide grade, coating, quantity, inspection requirements, laser marking and packaging are approved.

Technical Downloads

Access solid carbide no-pilot-hole thread-mill references for material-version selection, dimensional review and CNC machining preparation.

Solid Carbide Thread Mills Catalog

Thread-mill families, thread standards, pitch ranges, dimensional configurations and application references.

Download Catalog

Carbide Tool Speeds & Feeds Guide

General starting cutting-data references and adjustment guidance for carbide threading applications.

ดูข้อมูลการตัด

Starting data should be confirmed according to steel or DLC geometry, cutter diameter, pitch, workpiece material and hardness, coating, thread depth, coolant delivery, holder runout and machine rigidity. Verify the first completed thread with the correct gauge before batch production.

Related Guides & Thread Mill Resources

Explore practical selection guides and related solid carbide thread mill series for different standards, materials and machining requirements.

How to Choose a Thread Mill: Thread, Pitch & Tool Guide

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View All Solid Carbide Thread Mills

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