Kyocera DNMG150608 CA115P TML00156 CNC Turning
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- Stock: In Stock
- Model: CA115P
- Weight: 0.10kg
- Manufactured: In Japan
- Ships: Worldwide
- Item Code: TML00156
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Product Overview
The DNMG150608 is a 55° rhombic (diamond) negative insert manufactured by Kyocera under grade CA115P. Featuring an 15.875mm (5/8" Inscribed Circle) inscribed circle, 6.35mm (1/4") thickness, and a 0.8mm nose radius, this indexable carbide insert is engineered for high-precision CNC turning operations. The Standard Geometry – General Purpose geometry ensures controlled chip formation and superior surface finish across a range of steel workpiece materials. With MPN TML00156, this insert is a genuine OEM component backed by full manufacturer specifications.
ISO Designation Breakdown
The model code DNMG150608 follows ISO 1832 nomenclature for indexable inserts:
- D — 55° Rhombic insert shape with 55° included angle
- N — 0° clearance angle (negative basic insert, requires negative holder rake)
- M — Tolerance class ±0.05mm (inscribed circle), ±0.08mm (thickness), ±0.13mm (hole location)
- G — Cylindrical hole with countersink (40°–60° chamfer) for pin or screw clamping
- 15 — 15.875mm (5/8" Inscribed Circle)
- 06 — 6.35mm (1/4") nominal thickness
- 08 — 0.8mm corner nose radius
- — Standard Geometry – General Purpose chipbreaker code
Engineering Dimensions & Geometry
| Parameter | Value | Notes |
|---|---|---|
| Inscribed Circle (IC) | 15.875mm (5/8" Inscribed Circle) | Standard ISO tolerance class M |
| Thickness (S) | 6.35mm (1/4") | Negative insert, no clearance |
| Nose Radius (rε) | 0.8mm | Determines surface finish and edge strength |
| Hole Diameter | ~15mm standard (varies by countersink) | Cylindrical hole with countersink (40°–60° chamfer) for pin or screw clamping |
| Corner Angle | 55° | Primary cutting edge angle |
Grade Details — Key Grade Characteristics
Grade CA115P is a CVD-coated carbide grade developed specifically for steel machining in the ISO P15 application zone. The substrate consists of a fine-grained tungsten carbide (WC-Co) with a cobalt content optimized for hardness and toughness balance. The multi-layer CVD coating architecture typically includes:
- TiCN base layer — Provides adhesion strength and resistance to plastic deformation at high temperatures
- Al₂O₃ middle layer — Offers thermal barrier protection and chemical stability during high-speed cutting
- TiN top layer — Gold-colored identification layer that reduces friction and improves wear detection
The "P" suffix in CA115P denotes a premium micro-grain substrate with enhanced edge integrity, making it particularly suitable for precision finishing where edge chipping must be minimized. The grade exhibits excellent flank wear resistance and crater wear stability under continuous cutting conditions.
Grade Comparison Matrix
How CA115P compares to adjacent grades in the Kyocera steel-turning portfolio:
| Grade | Coating | ISO Range | Application | Speed Capability |
|---|---|---|---|---|
| CA115 | CVD TiCN/Al₂O₃ | P10–P20 | General steel turning | Medium–High |
| CA115P | CVD TiCN/Al₂O₃ (Enhanced) | P15 | Precision to medium steel finishing | High |
| CA125P | CVD Thick Al₂O₃ | P20–P30 | Medium roughing | Medium |
| PR930 | PVD TiAlN | P10–P30 / M10 | Universal steel/stainless | High |
Chipbreaker Profile
Standard Geometry – General Purpose
This insert features a standard negative geometry without a dedicated chipbreaker groove, offering maximum edge strength and versatility. The flat rake face provides consistent cutting performance across a wide range of applications and is ideal for users who prefer traditional insert designs.
Key chipbreaker characteristics:
- Rake angle: Optimized for low cutting forces and controlled chip flow
- Groove width: Engineered for 0.8mm nose radius and recommended feed range
- Chip control: Produces short, curled chips that evacuate safely without scratching the finished surface
- Edge preparation: Micro-honed T-land for edge stability without sacrificing sharpness
Recommended Applications & Workpiece Materials
Suitable for general-purpose turning of carbon steels, alloy steels, and cast irons in continuous to lightly interrupted conditions.
Compatible materials: Carbon steels (C20–C60), low-alloy steels, cast irons (GG25, GG30), and mild stainless steels up to 30 HRC.
- Plain carbon steels: SAE 1010–1060, DIN C15–C60
- Low-alloy steels: 4130, 4140, 5120, 8620 (annealed or normalized)
- Bearing steels: 52100, SUJ2, 100Cr6
- Tool steels: H13, D2 (in soft condition, pre-hardened ≤ 32 HRC)
Application Map by Operation
General external turning, facing, and boring on standard CNC lathes and manual machines.
| Operation | Suitability | Depth of Cut (ap) | Feed (fn) |
|---|---|---|---|
| External Turning | ★★★★★ Excellent | 0.30–3.00 mm | 0.10–0.35 mm/rev |
| Internal Boring | ★★★★☆ Very Good | 0.2–1.5 mm | 0.08–0.25 mm/rev |
| Facing | ★★★★★ Excellent | 0.30–3.00 mm | 0.10–0.35 mm/rev |
| Profiling / Contouring | ★★★☆☆ Good | 0.2–1.0 mm | 0.08–0.20 mm/rev |
| Grooving / Parting | ★☆☆☆☆ Not Recommended | — | — |
Recommended Cutting Conditions
Starting parameters for CA115P with DNMG150608 on carbon and alloy steels (dry or wet):
| Parameter | Range | Optimal Starting Point | Notes |
|---|---|---|---|
| Cutting Speed (Vc) | 120–220 m/min | 200 m/min | Reduce 15% for alloy steels; increase 10% for plain carbon |
| Feed Rate (fn) | 0.10–0.35 mm/rev | 0.20 mm/rev | Lower feeds for finish; higher for productivity |
| Depth of Cut (ap) | 0.30–3.00 mm | 1.00 mm | Keep below 1.5× nose radius for best finish |
Operating Guidelines
- Machine Rigidity: Use on CNC lathes with minimum spindle runout ≤ 0.01mm. Ensure toolholder overhang is ≤ 4× holder diameter for boring bars.
- Coolant Strategy: Flood coolant recommended for general applications. Dry machining possible on cast irons with appropriate dust extraction.
- Entry Strategy: Use radial or oblique entry to avoid full-depth plunge. Ramp-in at 45° for facing operations.
- Exit Strategy: Reduce feed by 30% in the last 2mm of cut to prevent exit burr and edge micro-chipping.
- Edge Inspection: Check for uniform flank wear (VB ≤ 0.20mm) or crater wear (KT ≤ 0.12mm) before re-indexing. Replace insert if chipping exceeds 0.08mm.
- Workpiece Preparation: Ensure straightness and minimal runout. Cast or forged skins should be removed with a roughing grade before finish passes with DNMG150608.
Toolholder Compatibility
The DNMG150608 is a negative insert with 0° clearance and requires a negative-rake toolholder. Compatible holder families include:
- MDJNR/L15, MDQNR/L15, SDJCR/L15 — 93° external turning, 107.5° profiling
- Clamp type: Lever or screw-down clamping with pin lock
- Insert seat angle: Must match 55° negative geometry
- Shim requirement: Use original Kyocera shim seat S15D (or equivalent) to prevent seat deformation and ensure accurate height alignment
Verify holder compatibility using the Kyocera Tooling Systems catalog or contact our technical support team with your machine spindle and turret specifications.
Packaging & Ordering Information
- Manufacturer Part Number (MPN): TML00156
- Packaging: Genuine Kyocera industrial packaging with holographic authenticity seal. Each insert is laser-marked with grade and model code.
- Minimum Order: Sold individually or in bulk packs (10 inserts per pack). Contact us for volume pricing on 50+ inserts.
- Authenticity: All inserts are sourced directly from Kyocera Corporation, Japan. Verify authenticity via the laser-etched batch code on each insert face.
- Price: $11.2 USD per insert (subject to volume discounts)
Catalog Meta Data
| Attribute | Value |
|---|---|
| Product Series | Kyocera Standard Turning Inserts — 55° Rhombic Series |
| ISO Standard | ISO 1832:2017 / ANSI B212.4 |
| Grade Family | CA115P (CVD Coated Steel Grade) |
| Chipbreaker Family | Standard Geometry – General Purpose |
| Cross-Reference | Compatible with standard ISO DNMG 15.875mm (5/8") negative insert seats |
| Catalog Page | Kyocera Turning Tools Catalog 2024–2025, Section 2.3 (Steel Grades) |
| Made In | Japan |
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