HRC55 4-Flute TiSiN-Coated Solid Carbide Roughing End Mill

HRC55 4-flute TiSiN-coated solid carbide roughing end mill designed for efficient material removal in CNC milling. The serrated cutting edge reduces cutting force, improves chip evacuation, and provides stable performance for rough machining applications.

⚙️ Product Configurations

*Tool Type: Roughing end mill
*Flute Count: 4 Flute
*Hardness Capability: Up to HRC55
*Coating: TiSiN coated for high temperature resistance and improved wear performance
*Cutting Edge Design: Serrated edge geometry for efficient chip breaking and fast material removal
*Workpiece Materials: Carbon steel, alloy steel, mold steel and general steel
*Machining Type: Roughing, heavy cutting and high-efficiency material removal
*Helix Angle: 30° / 35° / 45° (optional)

Consistent Quality

Consistent geometry across repeat orders.

Đơn hàng linh hoạt

Small batches and mixed sizes available.

OEM Support

Custom marking, labels and packaging.

Tiêu chuẩn & Theo yêu cầu

Standard sizes and custom configurations.

HRC55 TiSiN-Coated Roughing End Mill Overview

This HRC55 4-flute solid carbide roughing end mill combines serrated wave-edge geometry with a TiSiN coating for efficient stock removal in carbon steel, alloy steel, tool steel, mold steel and selected pre-hardened steel. The roughing profile divides the cutting load and produces shorter chips during high-engagement machining, while the four-flute construction provides a rigid tool core and stable cutting contact. Standard Ø1–Ø20 mm reference sizes, long-flute options and drawing-defined custom configurations are available for industrial distributors, tooling brands and repeat-production customers.

Steel Hardness
Up to HRC55
Flute Design
4-Flute Roughing
Coating
TiSiN
Diameter Range
Ø1–Ø20 mm

HRC55 Steel-Roughing Features

Serrated Wave Edge

The roughing-tooth profile divides the cutting load and produces shorter chips during high-engagement stock removal.

Rigid 4-Flute Core

Four flutes provide multiple cutting contacts and a rigid core for rough slotting, side milling, pocketing and profiling.

TiSiN-Coated Cutting Edge

The TiSiN coating supports wear resistance and cutting-edge stability during elevated-temperature steel roughing.

Fine-Grain Solid Carbide

The fine-grain carbide substrate provides an application-matched balance of wear resistance, core strength and resistance to chipping.

Applications & Materials

Recommended for rough slotting, side milling, pocket roughing, profiling and high-engagement material removal on CNC machining centers and milling machines. Cutting parameters should be adjusted according to the tool diameter, flute length, workpiece hardness, axial depth, radial engagement, tool overhang and machine rigidity.

P Carbon Steel

P Alloy Steel

P Tool & Mold Steel

H Pre-Hardened Steel

Application Note: Serrated roughing geometry normally leaves a characteristic wave pattern on the machined surface. Leave suitable finishing stock when a smooth final surface or close finished dimension is required.

Product Details

HRC55 four-flute TiSiN-coated solid carbide roughing end mill

HRC55 roughing end mills stock HRC55 roughing end mills long size HRC55 roughing end mills bulk order

TiSiN-Coated Roughing End Mill Specifications

Technical configuration and standard reference sizes for the HRC55 4-flute TiSiN-coated solid carbide roughing end mill. Dimensions are shown in millimeters. Final size availability and cutting geometry should be confirmed according to the workpiece grade, hardness, machining engagement and required tool reach.

PARAMETER STANDARD CONFIGURATION
Product Type Solid carbide roughing end mill
Cutting Profile Serrated wave-edge roughing geometry
Substrate Fine-grain solid carbide
Flute Count 4 flutes
Coating TiSiN coating
Target Hardness Steel machining up to approximately HRC55 under suitable conditions
Cutting Diameter Ø1–Ø20 mm reference range
Shank Diameter Ø4–Ø20 mm reference range
Overall Length 50, 60, 75 and 100 mm reference configurations
Helix Angle 30° or 35° reference geometry
Main Applications Rough slotting, side milling, pocket roughing, profiling and high-engagement stock removal
Machine Compatibility CNC machining centers and milling machines

Standard Reference Sizes

D = cutting diameter, L1 = flute length, d = shank diameter and L = overall length. The listed sizes are reference configurations; stock availability should be confirmed before ordering.

HRC55 four-flute TiSiN-coated roughing end mill dimensional drawing
SPECIFICATION D L1 d L FLUTES
D1–D4 × L1 × d4 × 50L 1–4 3 / 6 / 9 / 12 4 50 4
D4 × 16 × d4 × 75L 4 16 4 75 4
D4 × 20 × d4 × 100L 4 20 4 100 4
D6 × 15 × d6 × 50L 6 15 6 50 4
D6 × 24 × d6 × 75L 6 24 6 75 4
D6 × 30 × d6 × 100L 6 30 6 100 4
D8 × 20 × d8 × 60L 8 20 8 60 4
D8 × 25 × d8 × 75L 8 25 8 75 4
D8 × 35 × d8 × 100L 8 35 8 100 4
D10 × 25 × d10 × 75L 10 25 10 75 4
D10 × 40 × d10 × 100L 10 40 10 100 4
D12 × 35 × d12 × 75L 12 35 12 75 4
D12 × 45 × d12 × 100L 12 45 12 100 4
D14 × 45 × d14 × 100L 14 45 14 100 4
D16 × 45 × d16 × 100L 16 45 16 100 4
D18 × 45 × d18 × 100L 18 45 18 100 4
D20 × 45 × d20 × 100L 20 45 20 100 4
Size Note: The listed dimensions are reference configurations. Please confirm the cutting diameter, flute length, shank diameter, overall length, workpiece material, hardness and required quantity before ordering.

HRC55 Carbide & TiSiN Coating Reference

The carbide substrate and TiSiN coating are selected as a combined cutting system for steel roughing. Final properties may vary according to the carbide and coating supplier.

ITEM REFERENCE PROPERTY VALUE FUNCTION
HRC55 Carbide Grain Size 0.6 μm Balance of edge stability and core toughness
HRC55 Carbide Cobalt Content 10% Supports carbide toughness during roughing loads
TiSiN Coating Reference Hardness 3600 HV Supports cutting-edge wear resistance
TiSiN Coating Reference Thickness Approximately 3 μm Provides a coated cutting surface without excessive edge buildup
TiSiN Coating Reference Oxidation Temperature Approximately 1000°C Supports elevated-temperature steel machining

The listed carbide and coating properties are supplier reference values and may vary according to coating structure, deposition process and production batch.

TiSiN-Coated Roughing End Mill Customization

Cutting diameter, serrated roughing-tooth profile, flute length, shank diameter, overall length, helix angle and cutting-edge preparation can be configured for steel-roughing applications. The standard design combines four flutes with a TiSiN-coated wave edge for controlled chip formation and stable stock removal. Standard, long-flute, extended-length and drawing-defined non-standard configurations can be reviewed according to the workpiece grade, hardness, machining engagement, tool overhang and machine rigidity.

PARAMETER MANUFACTURING CAPABILITIES
Cutting Diameter Reference cutting diameters from Ø1–Ø20 mm, with intermediate and drawing-defined non-standard diameters available after technical review
Flute Count Standard 4-flute construction with a rigid tool core and multiple cutting contacts for steel-roughing operations
Roughing-Tooth Profile Serrated wave-edge pitch and tooth profile can be adjusted according to the tool diameter, required chip size, cutting load and remaining finishing allowance
Flute Length Standard, long-flute and drawing-defined cutting lengths can be reviewed according to the axial depth, workpiece geometry and machining reach
Overall Length Reference overall lengths of 50, 60, 75 and 100 mm, with selected extended-length configurations available for deeper or less accessible features
Shank Configuration Precision cylindrical shanks from Ø4–Ø20 mm, with custom shank diameter, reduced-neck geometry and clamping length reviewed according to the holder and tool overhang
Helix Angle 30° or 35° reference helix options, with application-specific geometry reviewed according to the steel grade, chip formation and cutting engagement
End Geometry Square-end roughing geometry for slots, pockets and shoulder roughing, with the end-face design and center-cutting capability confirmed by the selected configuration
Cutting-Edge Preparation Rake angle, relief geometry, edge honing, end-face grinding and corner condition can be matched to the workpiece hardness and roughing load
Carbide Grade Fine-grain carbide grade selected to balance cutting-edge wear resistance, tool-core strength and resistance to chipping during steel roughing
TiSiN Coating TiSiN coating applied to support cutting-edge wear resistance and thermal stability during elevated-temperature machining of steel up to approximately HRC55
Workpiece Materials Configurations can be reviewed for carbon steel, alloy steel, tool steel, mold steel and selected pre-hardened steel
Workpiece Hardness HRC55-series positioning for steel machining up to approximately HRC55 under suitable cutting conditions
Roughing Applications Geometry can be reviewed for rough slotting, side milling, pocket roughing, profiling and other high-engagement stock-removal operations
Dimensional Tolerance Drawing-defined control of cutting diameter, flute length, shank diameter, overall length, runout and roughing-edge geometry, with critical tolerances confirmed before production
OEM & Private Label Customer logos, tool codes, cutting dimensions, TiSiN identification and batch numbers can be laser marked; custom labels, protective tubes and private-label packaging are also available
Engineering Note: Please provide the workpiece material and hardness, cutting diameter, flute length, shank diameter, overall length, roughing operation, axial depth ap, radial engagement ae, holder type, coolant method, finishing allowance, dimensional tolerance and order quantity. Final serrated-edge geometry, carbide grade, TiSiN coating and custom dimensions are confirmed after technical review.

Dịch vụ OEM và nhãn hiệu riêng

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.

FAQ & Downloads

Review common product, application and ordering questions for the HRC55 4-flute TiSiN-coated solid carbide roughing end mill, then access the current end mill catalog and starting cutting-data guide.

Product & Application FAQs

Selection and application guidance for high-engagement steel roughing.

What materials is this HRC55 roughing end mill designed to machine?

It is primarily configured for carbon steel, alloy steel, tool steel, mold steel and selected pre-hardened steel up to approximately HRC55. Final suitability depends on the workpiece grade, hardness, cutting engagement, holder condition, machine rigidity and coolant strategy.

Does HRC55 mean the tool can machine every steel at exactly 55 HRC?

HRC55 describes the product-series positioning and approximate upper target range under suitable machining conditions. Actual capability depends on the steel composition, operation, tool diameter, cutting parameters, tool overhang, holder condition and machine rigidity. Applications near the upper hardness range should be reviewed before machining.

What is the purpose of the serrated roughing edge?

The serrated wave-edge geometry divides the removed material into shorter chips and interrupts the cutting load. This supports chip control and helps reduce continuous cutting resistance during heavy roughing compared with a conventional smooth-edge finishing end mill.

What are the advantages of the 4-flute construction?

The four-flute construction provides a rigid tool core and multiple cutting contacts for stable side milling, pocket roughing and profiling. Chip evacuation must still be controlled carefully during full-width slotting or deep axial engagement because the additional flutes reduce the available chip space.

What does the TiSiN coating provide?

TiSiN is a wear- and heat-resistant coating selected to support cutting-edge stability during elevated-temperature steel machining. Its performance depends on the carbide substrate, edge preparation, coating quality, workpiece material and cutting conditions.

Which machining operations are suitable for this roughing end mill?

It is suitable for rough slotting, side milling, pocket roughing, profiling and other high-engagement stock-removal operations. Axial depth, radial engagement and feed should be adjusted according to the cutting diameter, flute length, workpiece hardness and machine rigidity.

Can this roughing end mill produce the final finished surface?

The serrated cutting profile normally leaves a characteristic wave pattern on the machined surface. When a smooth final surface or close finished dimension is required, leave suitable finishing stock and complete the operation with a smooth-edge finishing end mill.

Can this 4-flute tool perform full-width slotting?

Full-width slotting may be possible when the cutting parameters, axial depth and chip evacuation are properly controlled. Reduce engagement when necessary and maintain effective coolant or air delivery to prevent chip recutting and excessive heat accumulation.

Ordering & Customization FAQs

Information for distributors, tooling brands and customers requesting standard or drawing-based configurations.

What standard sizes are available?

The reference series covers selected cutting diameters from Ø1–Ø20 mm, shank diameters from Ø4–Ø20 mm and overall lengths of 50, 60, 75 and 100 mm. Standard, long-flute and selected extended-length configurations are available. Final stock availability should be confirmed before ordering.

Can non-standard dimensions or roughing geometry be manufactured?

Yes. Cutting diameter, flute length, shank diameter, overall length, reduced-neck geometry, roughing-tooth profile, helix angle and cutting-edge preparation can be reviewed according to the drawing and machining application.

Can I order samples before placing a bulk order?

Yes. Samples can be reviewed according to the required diameter, flute length, TiSiN coating and quantity. For a non-standard tool, the drawing, tolerance requirements, sample quantity and delivery cost must be confirmed before production.

What is the lead time?

Available standard configurations can normally be shipped within 1–3 working days after order confirmation. Lead time for custom dimensions, special roughing geometry or non-standard production requirements is confirmed separately according to the drawing, quantity and current production schedule.

Are OEM marking and private-label packaging available?

Yes. Customer logos, tool codes, cutting dimensions, TiSiN coating identification and batch numbers can be laser marked according to the available shank area. Custom labels, protective tubes and private-label packaging can also be supplied.

What information is required for an accurate quotation?

Please provide the workpiece material and hardness, cutting diameter, flute length, shank diameter, overall length, roughing operation, axial depth ap, radial engagement ae, holder type, coolant method, dimensional tolerance and order quantity. A tool drawing is recommended for non-standard configurations.

Technical Downloads

Access current product-range information and starting cutting references for solid carbide roughing end mill selection.

Solid Carbide End Mills Catalog

End mill families, hardness series, roughing geometries, coating options and reference sizes.

Download Catalog

End Mill Speeds & Feeds Guide

Starting cutting speeds, chip loads, engagement guidance and adjustment notes.

Xem dữ liệu cắt

Cutting data are starting references only. Adjust the values according to the exact tool diameter, flute length, workpiece hardness, axial and radial engagement, tool overhang, holder condition and machine rigidity.

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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.

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