45° 4-Flute Solid Carbide Dovetail Cutter for Aluminum and Stainless Steel

45° 4-flute solid carbide dovetail cutter for aluminum and stainless steel, designed for dovetail grooves, angled undercuts, locking features and recessed-profile machining. Material-specific edge preparation and coating options can be selected according to the workpiece grade and machining conditions.

  • ◆45° formed cutting profile for dovetail grooves and angled undercut features
  • ◆4-flute solid carbide geometry for stable profile milling and controlled cutting engagement
  • ◆Material-specific configurations available for aluminum and stainless-steel machining

Workpiece Materials
Aluminum Alloys / Stainless Steel
Flute & Angle
4 Flutes / 45° Standard
Coating Options
Uncoated / AlTiN / TiAlN / TiSiN
Edge Preparation
Material-Specific Geometry for Aluminum / Stainless Steel

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.

45° 4-Flute Dovetail Cutter Overview

This 45° 4-flute solid carbide dovetail cutter is designed for precision dovetail slotting, angled undercutting and recessed-profile machining in aluminum and stainless steel components. The fixed 45° form-cutting geometry produces symmetrical dovetail features, while the 4-flute solid carbide structure provides controlled cutting engagement for CNC milling applications. Tool dimensions, cutting-edge preparation and coating should be selected according to the workpiece material, groove depth, entry clearance and required dimensional accuracy.

Dovetail Angle
45°
Flute Count
4 Flutes
Tool Material
Micro-Grain Carbide
Materials
Aluminum / Stainless

45° Dovetail Cutting Geometry

Fixed 45° Profile

The symmetrical 45° cutting profile is designed for standard dovetail grooves, angled guide features and mechanical locking profiles.

4-Flute Form Cutting

Four cutting edges provide repeated engagement during dovetail slotting and side-profile machining while maintaining a compact formed cutting structure.

Material-Specific Configuration

Cutting-edge preparation and coating can be selected separately for aluminum and stainless steel rather than using one identical configuration for both materials.

Application-Specific Advantages

45°

Defined Dovetail Angle

Designed around a documented 45° dovetail series for consistent angled-slot geometry.

4F

4-Flute Structure

Four cutting edges support controlled form milling and repeated cutting-edge engagement.

N

Aluminum Configuration

Geometry and surface treatment can be selected according to aluminum chip formation and adhesion control requirements.

M

Stainless Configuration

Coating and cutting-edge preparation can be reviewed according to stainless-steel grade and cutting conditions.

Recommended Machining Operations

45° Dovetail Slotting
RECOMMENDED
Angled Undercutting
RECOMMENDED
Guide & Locking Grooves
RECOMMENDED
Recessed Profiling
SUITABLE

Workpiece Material Compatibility

MATERIAL GROUP CONFIGURATION GUIDANCE LEVEL
N
Aluminum Alloys
Select cutting geometry and surface configuration for aluminum chip evacuation and adhesion control Primary
M
Stainless Steel
Select coating and edge preparation according to stainless grade, engagement and coolant conditions Primary

Material Selection Note:
Aluminum and stainless steel have different cutting and chip-formation characteristics. Edge preparation, coating and machining parameters should therefore be selected separately for each material rather than treating one tool configuration as universally optimized for both.

Product Details

45 degree 4 flute solid carbide dovetail cutter
solid carbide dovetail milling cutter for aluminum and stainless steel
45 degree dovetail cutter cutting profile

 

 

45° Dovetail Cutter Dimensions

The standard 45° dovetail cutter series is selected according to the required minor diameter, reference diameter, dovetail angle and overall length. These dimensions should be matched to the finished groove profile, entry clearance and machining depth rather than selecting the cutter by diameter alone.

45 degree solid carbide dovetail cutter dimension drawing
D1: Minor / Tip Diameter D2: Reference Diameter L2: Overall Length in Current Matrix Angle: 45° Standard
Dimension Note: The standard-reference matrix below is based on the documented 45° series. For replacement tools or non-standard dovetail profiles, provide a component or existing tool drawing so the complete cutting geometry can be confirmed.

Technical Configuration

PARAMETER REFERENCE CONFIGURATION
Tool Type Solid Carbide Dovetail Cutter
Dovetail Angle 45° standard profile
Flute Count 4 Flutes
Tool Material Micro-Grain Tungsten Carbide
Helix Angle None / straight-form cutting configuration
Shank / Reference Diameter 1.5–12 mm stated product capability, with custom dimensions available
Overall Length 50–75 mm stated range; current standard matrix uses 50 / 60 mm
Reference Tolerance 0 to ±0.01 mm according to the existing product specification
Coating Options AlTiN / TiAlN / TiSiN / AlTiSiN / TiN / application-specific configuration
Primary Materials Aluminum Alloys / Stainless Steel
Primary Operations 45° Dovetail Slotting / Angled Undercutting / Guide Grooves / Recessed Profiling
Custom Options Minor diameter, major/reference diameter, profile angle, overall length, cutting geometry, coating, laser marking and packaging

Standard 45° Size Matrix

Documented standard-reference configurations for the 45° dovetail cutter series. All dimensions are in millimeters.

SPECIFICATION D1 D2 L2 ANGLE
D1.5 × 45° × D4 × 50L 1.5 4 50 45°
D2.0 × 45° × D4 × 50L 2.0 4 50 45°
D2.5 × 45° × D4 × 50L 2.5 4 50 45°
D3.0 × 45° × D4 × 50L 3.0 4 50 45°
D4.0 × 45° × D4 × 50L 4.0 4 50 45°
D5.0 × 45° × D5 × 50L 5.0 5 50 45°
D6.0 × 45° × D6 × 50L 6.0 6 50 45°
D8.0 × 45° × D8 × 50L 8.0 8 50 45°
D10.0 × 45° × D10 × 60L 10.0 10 60 45°
D12.0 × 45° × D12 × 60L 12.0 12 60 45°
Size Note: The matrix above represents the documented 45° standard series. Non-standard diameters, alternative overall lengths and special profile requirements can be reviewed according to the component drawing.

45° Dovetail Milling Guidance

  • Profile Selection: Confirm the required 45° dovetail width, minor diameter and groove depth before selecting the tool size.
  • Entry Clearance: Ensure sufficient access for the formed cutter before engaging the angled sidewalls.
  • Aluminum Applications: Review cutting-edge geometry and surface configuration according to chip evacuation and material adhesion conditions.
  • Stainless Steel Applications: Select coating, cutting engagement and coolant strategy according to the actual stainless-steel grade and machining conditions.
  • Form-Cutting Load: Dovetail cutters have substantial side engagement, so avoid excessive full-profile loading when the groove is deep or machine rigidity is limited.
  • Deep Grooves: Use a controlled step-milling strategy for deeper dovetail features rather than forcing the full profile in a single pass.

45° 4-Flute Dovetail Cutter Customization

Minor diameter, reference diameter, overall length, neck clearance, shank dimensions, 45° dovetail profile, cutting-edge preparation and coating can be configured for aluminum and stainless-steel machining. This product uses a 4-flute solid carbide design with a standard 45° dovetail profile, while non-standard dimensions and application-specific geometry can be reviewed according to the workpiece material, groove width, groove depth, entry clearance and required dimensional accuracy.

PARAMETER MANUFACTURING CAPABILITIES
Dovetail Angle 45° is the standard profile for this product series. Alternative dovetail angles can be reviewed as non-standard tools according to the required component geometry.
Minor Diameter (D1) Standard-reference D1 sizes from 1.5 mm to 12 mm are documented in the current 45° series, with non-standard dimensions reviewed according to the finished dovetail groove.
Reference Diameter (D2) D2 can be matched to the required cutter geometry, entry clearance and component dimensions, with standard and drawing-defined configurations available.
Flute Count Standard 4-flute solid carbide configuration for 45° dovetail slotting, angled undercutting and recessed-profile machining.
Neck & Undercut Clearance Neck diameter, relief and reach can be reviewed according to groove depth, cutter diameter, adjacent wall clearance and required access behind the dovetail profile.
Shank Configuration Straight cylindrical shank with standard or drawing-defined shank diameter and clamping dimensions according to cutter size and holder requirements.
Overall Length Standard and custom overall lengths can be reviewed within the stated 50–75 mm product range, subject to machining depth, holder clearance and tool rigidity.
45° Profile Geometry The formed 45° cutting profile can be matched to the required dovetail groove width, depth and locking geometry, with drawing-defined dimensions available for custom tools.
Cutting-Edge Preparation Cutting-edge preparation and relief geometry can be reviewed separately for aluminum and stainless steel according to chip formation, cutting load and required surface condition.
Coating Selection AlTiN, TiAlN, TiSiN, AlTiSiN, TiN and application-specific coating options can be reviewed according to the actual workpiece material and machining conditions.
Aluminum Configuration Cutting geometry and surface configuration can be reviewed according to aluminum grade, chip evacuation, groove depth and material-adhesion conditions.
Stainless Steel Configuration Edge preparation, coating and cutting geometry can be reviewed according to stainless-steel grade, groove engagement, coolant method and machining stability.
Machining Application Tool geometry can be reviewed for 45° dovetail slotting, angled undercutting, guide grooves, locking features and recessed-profile machining.
Dimensional Tolerance Drawing-defined requirements can be reviewed for D1, D2, dovetail angle, shank diameter, overall length, neck geometry and finished cutting profile.
Replacement Tool Matching Existing dovetail cutters can be reviewed from a detailed tool drawing, component drawing or physical sample when an equivalent replacement profile is required.
OEM & Private Label Laser marking, custom tool codes, private labels and packaging can be reviewed for distributors, tooling brands and OEM customers.
Engineering Note: Please provide the workpiece material and grade, required 45° dovetail groove width and depth, D1 and D2 dimensions, neck clearance, shank diameter, overall length, machining depth, coating preference, dimensional tolerance and order quantity. For non-standard or replacement tools, a component drawing, existing tool drawing or physical sample is recommended. Final geometry, coating and custom dimensions are confirmed after technical review.

บริการ OEM และแบรนด์ส่วนตัว

OEM manufacturing and private-label supply options are available for industrial distributors, tooling brands and repeat-production customers. Laser identification, label content, protective packaging and coating presentation can be configured according to the approved product specification and order requirements.

OEM laser marking custom labels coatings and packaging for solid carbide square end mills

Laser Etching

Custom logos, tool codes, cutting dimensions, coating identification and batch numbers can be marked according to the available shank area.

Custom Labels & Packaging

Individual protective tubes, product labels, specification details, colored packaging tubes and private-label packaging can be reviewed.

Commercial Terms

MOQ, sample evaluation, custom-size trials, repeat orders and scheduled supply programs are confirmed according to the selected configuration.

Technical Workflow

A structured review process is used to confirm standard, customized and private-label square end mill requirements before production.

STAGE 01

Inquiry

Submit the material, hardness, milling operation, dimensions, tolerance and quantity.

STAGE 02

Engineering

Review flute geometry, helix angle, edge preparation, coating, ap and ae.

STAGE 03

Commercial

Confirm quotation, MOQ, sample requirements, production schedule and delivery terms.

STAGE 04

Production

CNC grinding, end-face formation, edge preparation, coating and laser marking.

STAGE 05

Quality Control

Inspect diameter, flute length, shank, runout, square-end geometry and cutting edges.

Quality, Inspection & Delivery

Our solid carbide square end mills are controlled through material verification, precision grinding, in-process measurement and final inspection. Key dimensions, square-end geometry, cutting-edge condition, coating appearance and product identification are reviewed according to the approved specification or drawing before packing.

Controlled manufacturing and final inspection for solid carbide square end mills

Three-Stage Quality Control

Inspection checkpoints are arranged around the manufacturing process to support dimensional consistency and repeat-order control.

STAGE 01

Incoming Material Control

Carbide substrate grade, blank dimensions and supplied material information are checked against the production requirement.

STAGE 02

In-Process Grinding Control

Cutting diameter, flute geometry, flute length, square-end profile and shank dimensions are monitored during CNC grinding.

STAGE 03

Final Tool Inspection

Finished tools are reviewed for specified dimensions, runout, cutting-edge condition, coating appearance, marking and packing identification.

Key Inspection Characteristics

Inspection requirements are confirmed according to the standard product specification or the approved custom drawing.

INSPECTION ITEM CONTROL FOCUS CONFIRMATION BASIS
Cutting Diameter (DC) Diameter and dimensional consistency Standard specification or approved drawing
Flute Length (APMX) Effective cutting length Confirmed product size or drawing requirement
Shank Diameter (DCON) Clamping-section dimension and surface condition Applicable shank specification
Overall Length (OAL) Total tool length Standard size matrix or approved drawing
Radial Runout Concentricity between cutting section and shank Agreed inspection requirement
Square-End Geometry End-face profile, corner condition and center-cutting form Selected tool configuration
Flute & Helix Profile Flute count, helix form and grinding consistency Approved manufacturing configuration
Cutting Edge & Coating Edge condition, visible defects and coating appearance Application-specific production requirement
Marking & Identification Tool code, dimensions and batch information where applicable Confirmed order and packaging specification

Measurement & Batch Traceability

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

Optical Measurement

Profile and dimensional review of specified cutting features.

Runout Verification

Concentricity review based on the agreed product requirement.

Edge Inspection

Magnified review of the end face, corners and cutting-edge condition.

Batch Identification

Order, product and batch information are linked where required for repeat supply.

Inspection Documentation: Dimensional records, sample inspection requirements or additional documentation can be reviewed according to the order specification before production.

Protective Packaging Process

Finished end mills are protected to reduce contact between cutting edges and to support clear product identification during storage and transportation.

Protective packaging process for solid carbide end mills
01 Individual ProtectionProtective tubes or cases help shield cutting edges.
02 Batch IdentificationLabels identify the applicable tool and order information.
03 Carton ProtectionInternal cushioning is selected according to the shipment.
04 Ready for DispatchCartons are closed and prepared for the confirmed shipping method.

Bulk-Order & Export Packaging

Bulk shipments can be arranged with reinforced cartons, protective wrapping, palletized loading or export cases according to order quantity, shipment weight and agreed transportation requirements.

Bulk-order and export packaging for HY Cutting Tools shipments

Delivery Coordination

Production completion, packing method and dispatch arrangements are confirmed according to the approved order. Courier, air, sea or customer-designated shipping options can be reviewed according to shipment size and destination. Final lead time is confirmed after product specifications, quantity and packaging requirements are approved.

Product & Application FAQs

Common questions about the 45° 4-flute solid carbide dovetail cutter for aluminum, stainless steel, dovetail slotting and angled undercutting.

What is this 45° dovetail cutter designed for?
It is designed for 45° dovetail grooves, angled undercuts, guide features, locking grooves and recessed profiles in aluminum and stainless-steel components.
Is the dovetail angle fixed at 45°?
The standard size matrix on this product page uses a 45° profile. Alternative dovetail angles can be reviewed as non-standard configurations when a different component geometry is required.
How many flutes does this cutter have?
This product uses a 4-flute configuration designed for formed dovetail slotting and side-profile machining.
Can the same configuration be used for both aluminum and stainless steel?
The same 45° cutter profile can be used as the geometric basis, but cutting-edge preparation, coating and machining parameters should be selected according to the actual workpiece material. Aluminum and stainless steel should not automatically use identical cutting configurations.
Which coating options are available?
Available coating options include AlTiN, TiAlN, TiSiN, AlTiSiN and TiN, with additional material-specific configurations reviewed according to the machining application.
Does the cutter require a pre-machined access slot?
For internal dovetail and undercut features, sufficient entry clearance is normally required before the formed cutter engages the angled sidewalls. Entry geometry should be checked against the cutter dimensions before machining.
How should deep dovetail grooves be machined?
For deeper grooves, use controlled step milling so that cutting engagement can be managed progressively rather than applying the complete dovetail profile load in one pass.

Ordering & Customization FAQs

Ordering information for distributors, tooling suppliers and OEM customers requiring standard or customized 45° dovetail cutters.

Can the cutter dimensions be customized?
Yes. Minor diameter, reference diameter, shank dimensions, overall length, profile geometry and related dimensions can be reviewed according to the required dovetail groove and component drawing.
Can you make other dovetail angles?
Yes. Although this page is based on the standard 45° series, alternative angles can be reviewed as custom configurations according to the required groove profile and drawing.
Can you manufacture replacement cutters from drawings or samples?
Yes. A detailed tool drawing, component drawing or physical sample can be reviewed for replacement and non-standard dovetail cutter matching.
Are OEM marking and private-label packaging available?
Yes. Laser marking, custom tool codes, labels and private-label packaging can be reviewed for distributors, tooling brands and OEM orders.
ระยะเวลาการผลิตโดยทั่วไปคือเท่าไร?
When available from stock, standard specifications are generally ready for shipment within 1–3 working days. Lead time for custom dimensions, profile angles or coating configurations is confirmed after specification and quantity review.
What information should I provide for quotation?
Please provide the workpiece material and grade, required 45° dovetail groove width and depth, minor diameter, cutter or shank diameter, overall length, machining depth, coating preference and order quantity. A component drawing is recommended for replacement or non-standard profiles.

Technical Downloads

Reference documents for solid carbide milling cutter selection and machining-data review.

Solid Carbide End Mill Catalog

Review dovetail cutters and related specialty solid carbide milling tools.

View Catalog

End Mill Speeds & Feeds Guide

Use as a general reference before confirming the final dovetail-milling parameters.

View Guide

Need Sizes, Pricing or Custom Options?

Send us the required tool type, sizes, quantities, workpiece material and any OEM or custom requirements. We will confirm suitable specifications, availability, lead time and quotation details.

Standard Sizes Small Trial Orders Mixed Sizes OEM & Custom Options
Request Price & Specifications Chat on WhatsApp

Drawings, size lists and reference photos are welcome.