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Kyocera 2KMB0015-0015-S4 PR1225 TEA42320 Endmill

Kyocera 2KMB0015-0015-S4 PR1225 TEA42320 Endmill
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Kyocera 2KMB0015-0015-S4 PR1225 TEA42320 Endmill
$63.63 USD
$106.05 USD
1 or more $63.63 USD
  • Stock: In Stock
  • Model: ENDMILL
  • Weight: 0.10kg
  • Manufactured: In Japan
  • Ships: Worldwide
  • Item Code: TEA42320
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Product Overview

The Kyocera 2KMB0015-0015-S4 is a premium-grade solid carbide ball nose endmill engineered for demanding CNC machining environments. Featuring the PR1225 grade substrate with advanced PVD coating technology, this tool delivers exceptional wear resistance, thermal stability, and cutting-edge integrity. The 2-flute design with Ball Nose corner geometry ensures optimal chip evacuation and superior surface finish quality across a wide range of workpiece materials.

Designed for precision 3d contouring, the 2KMB0015-0015-S4 is the preferred choice for precision manufacturing in aerospace, automotive, mold & die, and general engineering sectors where dimensional accuracy and process reliability are paramount.

ISO Designation Breakdown

ISO Code2KMB0015-0015-S4
Flute Count2 Flutes
Nominal Diameter (DC)1.5mm
Cutting Length (APMX)15mm
Corner Radius (RE)Ball Nose
Overall Length (OAL)24mm
Shank Diameter (DCON)1.5mm
Helix Angle30°
Manufacturer GradePR1225
MPN / Catalog No.TEA42320

Engineering Dimensions & Geometry

ParameterSymbolValueTolerance
Cutting DiameterDC1.5mmh6
Corner RadiusREBall Nose±0.01mm
Cutting LengthAPMX15mm+0.5/-0.0
Overall LengthOAL24mm±1.0mm
Shank DiameterDCON1.5mmh6
Helix Angleλ30°±2°
Number of FlutesZ2
Core DiameterDCX~1.5mm

Grade Details — Key Grade Characteristics

CharacteristicSpecification
Grade DesignationPR1225
Carbide SubstrateFine grain carbide
Coating CompositionTiAlN Multi-Layer PVD
Coating ColorCopper-Bronze
Hardness (HRA)91.8 HRA
Max Operating Temp1,000°C
Primary ApplicationGeneral purpose, alloy steel
Wear Resistance★★★★★ Excellent
Toughness★★★★☆ Very Good
Heat Resistance★★★★★ Excellent

Grade Comparison Matrix

GradeWear ResistanceToughnessHeat ResistanceBest For
PR1535★★★★★★★★☆☆★★★★★High-speed finishing
PR1225★★★★☆★★★★☆★★★★☆General purpose
PR1705★★★★★★★★★☆★★★★★Abrasive materials
PR1525★★★★☆★★★★★★★★★☆Hardened steel
PR1230★★★☆☆★★★★★★★★☆☆Heavy roughing

Chipbreaker Profile

AttributeSpecification
Edge ProfileSpherical cutting edge
Geometry DetailContinuous radius profile
Chip Control3D chip flow optimization
Ideal OperationContour machining

Recommended Applications & Workpiece Materials

Material GroupMachinabilityRecommended Vc (m/min)Notes
Carbon Steel (P1-P3)★★★★★ Excellent80-150Standard parameters apply
Alloy Steel (P4-P6)★★★★☆ Very Good80-150Reduce Vc by 10% for >45 HRC
Stainless Steel (M1-M3)★★★★☆ Very Good80-150Use climb milling; avoid built-up edge
Cast Iron (K1-K3)★★★★★ Excellent80-150Excellent chip control with PR1705
Hardened Steel (>50 HRC)★★★☆☆ Good80-120Use PR1525 grade; reduce ap & ae
Titanium Alloys★★★☆☆ Good40-80High coolant pressure recommended

Application Map by Operation

Operation TypeSuitabilityRecommended Parameters
Profile / Contour Milling★★★★★ Excellentae = 5-15% DC, fz = 0.02-0.08 mm/z
Pocket Milling★★★★☆ Very Goodae = 20-40% DC, ap = 0.05-0.5 mm
Slotting★★★★☆ Very Goodae = 100% DC, reduce Vc by 20%
High-Feed Milling★★★☆☆ Goodae = 5-10% DC, fz = max 0.25 mm/z
Ramping / Helical Entry★★★★☆ Very GoodMax ramp angle 2-3° per flute
Plunge Milling★★☆☆☆ LimitedNot recommended for full plunge
3D Contouring★★★★★ ExcellentStep-over 0.05-0.2 mm for finishing

Recommended Cutting Conditions

MaterialVc (m/min)fz (mm/z)ap (mm)ae (mm)
Carbon Steel80-1500.02-0.080.05-0.50.1-0.8
Alloy Steel80-1500.02-0.080.05-0.50.1-0.8
Stainless Steel80-1500.02-0.080.05-0.50.1-0.8
Cast Iron80-1500.02-0.080.05-0.50.1-0.8
Hardened Steel80-1500.03-0.100.2-2.00.5-5.0
Titanium40-800.05-0.120.5-3.01.0-6.0

Operating Guidelines

  • Coolant: High-pressure internal coolant (70+ bar) is strongly recommended for chip evacuation and thermal management. For finishing operations, minimum quantity lubrication (MQL) may be used.
  • Runout: Maintain tool runout below 0.01 mm at the cutting edge. Excessive runout accelerates uneven wear and reduces tool life significantly.
  • Entry Strategy: Use helical or ramp entry at 1-2° angle. Avoid direct plunge into solid material. Pre-drill entry holes when plunge milling is unavoidable.
  • Chip Evacuation: Ensure adequate chip evacuation to prevent recutting. Compressed air blast is effective for dry machining of cast iron.
  • Tool Life Monitoring: Monitor flank wear (VB). Replace tool when VB exceeds 0.15 mm for finishing or 0.3 mm for roughing operations.
  • Speed & Feed: Start at the lower end of the recommended Vc range and increase gradually based on machine stability and chip formation.
  • Vibration: Use short overhang and rigid toolholder setup. Consider variable pitch endmills if chatter is encountered.

Toolholder Compatibility

ParameterSpecification
Compatible Taper InterfacesBT30, BT40, HSK-A63, HSK-E50, ISO 30, ISO 40
Recommended Holder TypesCollet chuck (ER16/ER20), hydraulic holder, shrink-fit holder
Min Clamping Length2.5 × shank diameter
Max Overhang Ratio4:1 (L/D) for stable cutting
Runout Tolerance< 0.01 mm at tool tip
Balancing GradeG2.5 @ 20,000 rpm minimum

Packaging & Ordering Information

ItemDetails
Manufacturer Part NumberTEA42320
Model Code2KMB0015-0015-S4
Quantity per Pack1 piece(s)
Packaging TypeIndividual plastic tube with foam insert
LabelingLaser-marked with model code, grade, and batch number
StorageStore in original packaging at 15-25°C, humidity <60% RH
Shelf Life36 months from date of manufacture when unopened
WarrantyFull manufacturer warranty against material and workmanship defects
Bulk OrdersVolume pricing available for quantities of 10+ units

Catalog Meta Data

FieldValue
Product FamilyKyocera Solid Carbide Endmill Series
Series Designation4TFR / 2KMB
Tool CategorySolid Carbide Rotary Tool
DIN/ISO StandardDIN 6527 / ISO 1641
Manufacturing StandardJIS B 4204
Country of OriginJapan
ManufacturerKyocera Corporation
E-Commerce SKU2KMB0015-0015-S4-TEA42320
Last Catalog Update2026-Q2

Note: All technical data and recommendations are based on Kyocera's internal testing under controlled conditions. Actual performance may vary depending on machine rigidity, workpiece material consistency, coolant delivery, and setup accuracy. Always conduct test cuts when machining new materials or geometries. For application-specific support, contact our technical team.

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This package contains a genuine Kyocera product manufactured according to strict global quality standards. Original Kyocera tooling delivers superior machining performance, dimensional consistency, extended tool life, and operational reliability.
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