Mitsubishi TPGH110304L-FS AP25N | Left-Hand Cermet Turning Insert
Mitsubishi TPGH110302R-FS VP15TF | Right-Hand PVD Precision Insert
Mitsubishi TPGH110302R-FS NX2525 | Right-Hand Cermet Finish Insert
Mitsubishi TPGH110302L-FS NX2525 | Left-Hand Cermet Finish Insert
Mitsubishi TPGH110302L-FS HTI10 | Left-Hand Uncoated Carbide Insert
Mitsubishi TPGH090204L-FS VP15TF | Left-Hand PVD Finishing Insert
Mitsubishi TPGH090204L-FS NX2525 | Left-Hand Cermet Turning Insert
Mitsubishi TPGH090204L-FS HTI10 | Left-Hand Uncoated Carbide Insert
Mitsubishi TPGH090204L-FS AP25N | Left-Hand Cermet Turning Insert
Mitsubishi TPGH090202L-FS VP15TF | Left-Hand PVD Finishing Insert
Mitsubishi TPGH090202L-FS NX2525 | Left-Hand Cermet Finish Insert
Mitsubishi TPGH090202L-FS HTI10 | Left-Hand Uncoated Carbide Insert
Mitsubishi TPGH080204L-FS NX2525 | Left-Hand Cermet Finish Insert
Mitsubishi TPGH080204L-FS HTI10 | Left-Hand Uncoated Carbide Insert
Mitsubishi TPGH080204L-FS AP25N | Left-Hand Cermet Turning Insert
Mitsubishi TPGH080202R-FS VP15TF | Right-Hand PVD Precision Insert
Mitsubishi TPGH080202L-FS VP15TF | Left-Hand Coated Precision Insert
Mitsubishi TPGH080202L-FS NX2525 | Precision Cermet Finishing Insert
Mitsubishi TPGH080204L-FS VP15TF | Left-Hand PVD Finishing Insert
Mitsubishi TPMN220412 VP15TF | Heavy-Duty Miracle Coated Insert
Mitsubishi TPMN220412 UTI20T | Heavy-Duty Carbide Turning Insert
Mitsubishi TPMN220408 UTI20T | Heavy-Duty Uncoated Carbide Insert
Mitsubishi TPMN160308 UTI20T | Uncoated Carbide Turning Insert
Mitsubishi TPMN160308 NX2525 | High-Gloss Cermet Turning Insert
Mitsubishi TPMN160304 NX2525 | High-Gloss Cermet Turning Insert
Mitsubishi TPMN110308 NX2525 | High-Gloss Cermet Turning Insert
Mitsubishi TPMN110304 NX2525 | High-Gloss Cermet Turning Insert
Mitsubishi TPMN160308 VP15TF | Miracle Coated Carbide Insert
Mitsubishi TPMH160304-MV VP15TF | Miracle Coated Carbide Insert
Mitsubishi TPMH160304-MV US735 | Stainless Steel Carbide Insert
Mitsubishi TPMH160304-MV UE6020 | High-Speed Steel Boring Insert
Mitsubishi TPMH160304-FV VP15TF | Precision Super-Finishing Insert
Mitsubishi TPMH110308-MV VP15TF | Strong Edge Miracle Coated Insert
Mitsubishi TPMH110308-MV UE6020 | CVD Coated Steel Turning Insert
Mitsubishi TPMH110304-MV VP15TF | Miracle Coated Carbide Insert
Mitsubishi TPMH110304-MV UE6020 | CVD Coated Steel Turning Insert
Mitsubishi TPMH110304-FV VP15TF | Miracle Coated Finishing Insert
Mitsubishi TPMH110302-MV VP15TF | Precision Fine-Finishing Insert
Mitsubishi TPMH090208-MV VP15TF | Miracle Coated Turning Insert
Mitsubishi TPMH090208-MV UE6020 | CVD Coated Carbide Insert
Mitsubishi TPMH090204-MV VP15TF | Miracle Coated Turning Insert
Mitsubishi TPMH090204-MV US735 | Stainless Steel Turning Insert
Mitsubishi TPMH090204-MV UE6020 | CVD Coated Steel Turning Insert
Mitsubishi VBMT160408-MV UE6020 | CVD Coated Steel Turning Insert
Mitsubishi VBMT160408-MV NX2525 | Cermet Steel Turning Insert
Mitsubishi VBMT160404-MV VP15TF Carbide Turning Insert for Stainless Steel
Mitsubishi VBMT160404-MV US735 | Stainless Steel Profiling Insert
Mitsubishi VBMT160404-MV UE6020 | CVD Coated Steel Turning Insert
Mitsubishi Positive Turning Inserts | ISO / ANSI Standard CNC Carbide Indexable Lathe Tools
1. Product Overview
"Which Mitsubishi positive insert grade and chipbreaker should I use for finishing stainless steel vs roughing alloy steel on a CNC lathe?"
Mitsubishi Materials’ series of Positive Turning Inserts features optimized clearance angles (7° positive relief) engineered to dramatically reduce cutting forces, suppress chatter, and excel in internal boring bar operations or slender workpiece turning. Utilizing state-of-the-art Miracle Coated (VP/NX/US series) technology, these indexable inserts integrate advanced substrate metallurgy with tailored chipbreaker geometries (e.g., MV, MA, Standard MK) to ensure excellent chip evacuation, high thermal stability, and maximum crater wear resistance across diverse CNC machining environments.
2. Key Features & Industrial Advantages
- ISO/ANSI Standard Compliance: Fully interchangeable with all industry-standard internal boring bars and external turning toolholders.
- Ultra-Low Cutting Forces: The positive rake angle geometry reduces horsepower requirements and structural deflection on low-rigidity lathes.
- Advanced Nano-Coating Matrix: Features multi-layer PVD AlTiN and CVD Al2O3 coatings that resist flank wear and built-up edge (BUE) during high-speed thermal cycles.
- Precision-Engineered Chipbreakers: Optimized for distinct depths of cut (DOC) and feed rates, preventing dangerous continuous stringy birds-nesting chips.
3. Technical Specifications & ISO / ANSI Coding
Our system supports both Metric (ISO) and Imperial (ANSI) designations interchangeably. Below is the breakdown of the indexable insert naming system:
Decoding the Insert Model Number (e.g., CCMT 09T304-MV / CCMT 32.51-MV)
Shape
(80° Diamond)
Clearance Angle
(7° Positive)
Tolerance Class
(Medium Precision)
Fixing / Feature
(Countersunk Hole)
Cutting Edge Length
(9.7mm / 3/8")
Thickness
(3.97mm / 5/32")
Corner Corner Radius
(0.4mm / 1/64")
Chipbreaker
(Medium Cutting)
Recommended Technical Cutting Parameters
| Workpiece Material Category | Cutting Speed (Vc) | Feed Rate (f) | Depth of Cut (ap) |
|---|---|---|---|
| P Carbon / Alloy Steel | 120 - 280 m/min (390 - 920 SFM) | 0.08 - 0.35 mm/rev (.003 - .014 ipr) | 0.5 - 3.0 mm (.020 - .118") |
| M Stainless Steel | 90 - 200 m/min (295 - 650 SFM) | 0.08 - 0.25 mm/rev (.003 - .010 ipr) | 0.3 - 2.0 mm (.012 - .079") |
| K Cast Iron | 150 - 320 m/min (490 - 1050 SFM) | 0.10 - 0.40 mm/rev (.004 - .016 ipr) | 0.5 - 3.5 mm (.020 - .138") |
4. Industrial Applications
These inserts are widely deployed across heavy-duty precision industries including:
- Aerospace Machining: Internal boring of tough engine rings and landing gear components.
- Automotive Manufacturing: Profile turning of transmission shafts and fuel injection systems.
- Oil & Gas Sector: High-precision threading, facing, and profiling of API high-alloy couplings.
5. Tooling Compatibility Matrix
Engineered to lock securely into any indexable pocket following global standards:
-
CCMT Inserts: Compatible with
S-SCLC R/Lboring bars andSCLCR/Lexternal toolholders. -
DCMT Inserts: Seamlessly fits
S-SDUC R/Linternal boring bars andSDJCR/Lturning posts. -
TCMT Inserts: Standard integration into
S-STFCR/Linternal andSTGCR/LOD turning systems.
6. Mitsubishi Carbide Grade Comparison Guide
| Grade | Coating Classification | Primary Target Workpiece Matrix | Key Functional Advantage |
|---|---|---|---|
| VP15TF | Miracle PVD Coated | Steel, Stainless Steel, Cast Iron | Universal grade; excellent edge-chipping resistance. |
| US735 | CVD Multi-Layer Coated | Stainless Steel (Austenitic/Duplex) | Prevents thermal cracking and work hardening during roughing. |
| NX2525 | Uncoated Cermet Matrix | Carbon Steel Finish Profiling | Achieves mirror-like surface finishes (Ra < 0.4 µm). |
7. Why Professional Machine Shops Trust Us
We source authentic tooling matrices engineered to perform under extreme metallurgical shear forces, guaranteeing certified structural integrity and exact tolerances.
Verified B2B Global User Reviews
"Phenomenal Tool Life in 316 Stainless"
- Markus K. (Stuttgart, Germany)
" Swapped to CCMT 09T304-MV VP15TF for our continuous boring cycles. Tool wear is incredibly uniform. Deflection issues on our small CNC lathes are completely gone."
"Flawless Surface Finish with NX2525"
- Robert T. (Ohio, USA)
"Using the cermet NX2525 grade for final dimensional tracking loops. Holds a precise 0.01mm tolerance across hundreds of operations on medium carbon steels."
"Excellent Chip Breaking on Duplex Alloy"
- Giovanni M. (Turin, Italy)
"The US735 grade handles interrupted cuts efficiently. The MV chipbreaker snaps long ribbons cleanly, avoiding machine downtime."
"True Japanese Quality Controls"
- Takashi O. (Nagoya, Japan)
"Consistent lot-to-lot reliability. Perfect indexing consistency ensures automated setups run reliably through light night shifts."
"Great Price-to-Performance Match"
- David L. (Monterrey, Mexico)
"Replaced costly European tooling with these positive inserts. Tooling budget down by 22% with equivalent tool life limits."
8. AI-Style Machining FAQ
Q1: What is the difference between VP15TF and NX2525 carbide inserts?
A: VP15TF features a robust PVD coating over an ultra-tough carbide core, ideal for roughing and varied multi-material cutting. NX2525 is an uncoated titanium-cermet composite that delivers elite wear resistance at high speeds, making it the top choice for mirror finishes on steel.
Q2: Why choose a positive turning insert over a negative profile insert?
A: Positive inserts (e.g., CCMT, DCMT) feature an integrated clearance relief angle, generating significantly lower tool deflection and cutting forces. This makes them ideal for thin shafts, deep internal boring bars, and lower-horsepower lathes where structural chatter is an issue.
Q3: How do I solve rapid flank wear when machining hardened tool steel?
A: Reduce surface speed (SFM) by 15-20%, optimize toolholder rigidity to eliminate vibration micro-chipping, and ensure your coolant delivery is targeted directly onto the cutting edge to avoid thermal cracking.
Machinist Grade Comparison & Troubleshooting Tips
Equivalent Reference Models: Cross-reference with Sandvik (CoroTurn 107), Kennametal (Top Notch Positive), and Iscar (ISO-Turn) positive systems. Always match pocket geometries precisely.
Industrial Verification Standard: Technical performance parameters are calibrated following ISO 3685:1993 Tool-Life Testing protocols. Actual shopfloor yield may vary based on spindle rigidity, synthetic emulsion concentration, and machine thermal stabilization cycles.