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Kyocera #13 TX SGS58501 DRILL - CNC Machining

Kyocera #13 TX SGS58501 DRILL - CNC Machining
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Kyocera #13 TX SGS58501 DRILL - CNC Machining
$53.55 USD
$89.25 USD
1 or more $53.55 USD
  • Stock: In Stock
  • Model: DRILL
  • Weight: 0.10kg
  • Manufactured: In Japan
  • Ships: Worldwide
  • Item Code: SGS58501
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Product Overview

The Kyocera #13 DRILL 2FL 2XD TX SGS58501 is a precision-engineered solid carbide drill designed for demanding 2×D depth CNC machining operations. Manufactured in Japan to exacting ISO standards, this #13-inch diameter tool features a 2-flute design with extended 2×D flute length, optimized for superior chip evacuation and hole quality in through-hole and blind-hole applications across a wide range of ferrous and non-ferrous materials.

Key Benefits: Extended 2×D flute length for deeper hole capability | Ultra-fine grain carbide substrate with TiAlN PVD coating for extended tool life | Mirror-finish hole quality even at 2×D depth | Reduced cycle times via high-speed capability | Stable performance in wet and dry machining environments.

ISO Designation Breakdown

Designation ElementCodeDescription
Tool CategoryDSolid carbide drill
Nominal Diameter4.70 mm (#13")Cutting diameter per ANSI/ISO standard
Flute Count2FLTwo-flute design for chip evacuation
Flute Length Ratio2XDFlute length = 2 × cutting diameter
Manufacturer CodeSGS58501Kyocera catalog identifier
GradeTXSubmicron grain carbide with TiAlN coating
Full ISO CalloutD4.70-2FL-2XD-SGS58501-TX

Engineering Dimensions & Geometry

Cutting Diameter (D1)
#13" (4.699 mm)
Flute Length (L1) — 2×D
0.370" (9.40 mm)
Overall Length (L)
1.425" (36.20 mm)
Shank Diameter (D2)
0.242" (6.15 mm)
Point Angle
140° ± 2° (Split-point with web thinning)
Helix Angle
30° ± 1° (Right-hand, optimized for 2×D)
Margin Width
0.10 × D1
Back Taper
0.005" / 25 mm flute length

Grade Details - Key Grade Characteristics

PropertySpecificationPerformance Impact
Carbide Grain SizeSubmicron grain tungsten carbide (0.6 μm)Enhanced toughness and edge stability for 2×D drilling
Coating SystemTiAlN (Titanium Aluminum Nitride) PVD nano-layeredSuperior heat resistance up to 950°C; reduced built-up edge in stainless steel
HardnessHRA 92.0 ± 0.5Excellent wear resistance in abrasive materials at 2×D depth
Transverse Rupture Strength≥ 4,200 MPaResists chipping in cross-hole drilling and interrupted cuts
Recommended EnvironmentHigh-speed drilling, 2×D depth capability, wet & dry machiningFlexible coolant strategies without compromising tool life at 2×D

Grade Comparison Matrix

GradeSubstrateCoatingHardnessMax DepthPrimary Use Case
TX (This Tool)Submicron WCTiAlN PVDHRA 92.02×DSteel, Stainless, Cast Iron, 2×D holes
TCUltra-fine WCAlTiN PVDHRA 92.51×D–1.5×DGeneral purpose shallow-hole drilling
PR1535Fine WCTiAlNHRA 91.81×DGeneral-purpose steel machining
CA6535Submicron WCAlCrNHRA 93.01.5×DHardened steel >50 HRC
GW15Coarse WCTiNHRA 90.51×DCast iron and non-ferrous alloys

Chipbreaker Profile

The #13 TX drill utilizes a HF-2XD (High Feed for 2×D) chipbreaker geometry specifically engineered for 2×D flute length. The flute profile incorporates a variable helix design with polished rake surfaces and enhanced chip gullet volume to accommodate longer chip strings while minimizing friction and heat generation at depth.

ParameterValueFunction
Chipbreaker TypeHF-2XD (High Feed for 2×D)Optimized chip segmentation for #13" diameter at 2×D
Rake Angle (γ)8° ± 2°Balances edge strength with cutting efficiency for 2×D depth
Flute Surface FinishRa 0.2 μmReduces chip adhesion and heat generation over extended flute length
Core Thickness0.25 × D1Maximizes rigidity for 2×D depth while maintaining coolant flow
Chip Gullet VolumeEnlarged 15%Accommodates longer chip strings without packing

Recommended Applications & Workpiece Materials

  • Carbon & Alloy Steels (≤ 45 HRC): Excellent chip control and surface finish in 1045, 4140, 4340 grades at 2×D depth
  • Stainless Steels: Austenitic (304, 316) and martensitic (410, 420) series with reduced built-up edge tendency at 2×D
  • Cast Iron: Gray cast iron (Class 30-40) and ductile iron (65-45-12) with high wear resistance over extended flute length
  • Titanium Alloys: Ti-6Al-4V at moderate speeds with adequate coolant delivery and peck cycles
  • High-Temperature Alloys: Inconel 718 and Hastelloy at reduced parameters with rigid setup and through-tool coolant

Application Map by Operation

Operation TypeSuitabilityRecommended ConditionsExpected Tool Life
Through-Hole Drilling (≤ 2×D)★★★★★ ExcellentStandard parameters per cutting dataHigh
Blind-Hole Drilling (≤ 2×D)★★★★★ ExcellentReduce feed 10% in last 1×D; use peck cycleHigh
Cross-Hole Intersection★★★★☆ Very GoodReduce speed 15%, rigid toolholder requiredModerate-High
Stacked Plate Drilling★★★★☆ Very GoodConsistent entry/exit with clamping pressureModerate-High
Deep-Hole Drilling (> 2×D)★★☆☆☆ LimitedNot recommended; use 3×D or 5×D seriesLow
Micro-Peck Drilling★★★☆☆ GoodPeck depth 0.6×D for 2×D holesModerate

Recommended Cutting Conditions

Workpiece MaterialHardnessCutting Speed Vc (m/min)Feed fn (mm/rev)Coolant
Low-Carbon Steel< 200 HB71-1150.08-0.14Wet/Dry*
Medium-Carbon Steel200-280 HB65-1050.08-0.15Wet preferred
Alloy Steel280-350 HB55-890.06-0.12Wet required
Stainless Steel (Austenitic)< 250 HB48-780.07-0.13Wet required
Cast Iron (Gray)180-260 HB65-1050.10-0.18Wet/Dry
Titanium Alloy Ti-6Al-4V< 350 HB32-520.05-0.10Wet required

*Dry machining requires stable machine spindle and rigid workholding. Adjust parameters based on machine rigidity and hole depth. For 2×D holes, wet machining is strongly recommended.

Operating Guidelines

  • Runout Limit: Maximum tool runout at the cutting edge should not exceed 0.01 mm (0.0004") to prevent uneven wear and premature failure at 2×D depth.
  • Pecking Cycle: For 2×D holes, implement a peck cycle with retract to clear chips. Recommended peck depth = 0.6×D.
  • Coolant Pressure: Minimum 70 bar (1,015 psi) through-tool coolant recommended for 2×D holes in stainless and titanium.
  • Entry Angle: Ensure perpendicular entry (±1°) or use a spot drill to prevent chipping on inclined surfaces.
  • Tool Overhang: Minimize overhang to 4×D or less. Use hydraulic or shrink-fit holders for optimal rigidity. Rigid machine setup recommended.
  • Speed/Feed Ramp: Reduce feed by 30% for the first 1 mm of entry to stabilize the tool before full engagement.
  • Chip Monitoring: Visually inspect chips during 2×D drilling. Blue or purple chips indicate excessive heat—reduce speed 10%.

Toolholder Compatibility

Toolholder TypeRecommended Model SeriesClamping ForceRunout Capability
ER Collet ChuckER16, ER20 Collet ChuckMedium≤ 0.015 mm @ 3×D
Hydraulic ChuckHydroForce Mini / StandardHigh≤ 0.005 mm @ 3×D
Shrink-Fit ChuckThermoGrip Slim / Heavy DutyVery High≤ 0.003 mm @ 3×D
Weldon Side-LockStandard DIN 1835-BMedium≤ 0.020 mm @ 3×D

Packaging & Ordering Information

ItemDetails
Catalog NumberSGS58501
Packaging Unit1 piece per plastic tube with protective end caps
Master Carton10 tubes per carton (anti-static foam lining)
BarcodeEAN-13 compatible (request specific code from sales)
StorageStore in original packaging at 15-25°C, humidity <60% RH
Shelf Life5 years from date of manufacture when unopened

Catalog Meta Data

AttributeValue
Product FamilyKyocera SGS Precision Tools - Solid Carbide 2×D Drill Series
Series DesignationSGS-585xx (2-Flute, 2×D, TX Grade)
Manufacturing StandardISO 5419, DIN 1414, ANSI B94.11M
Country of OriginJapan
Quality CertificationISO 9001:2015 (Manufacturing), ISO 13485 (Medical-grade capability)
RoHS ComplianceYes - Directive 2011/65/EU compliant
REACH ComplianceYes - No SVHC substances above threshold
Last Catalog UpdateJune 2026

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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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