TNMG 1604 Series Carbide Turning Inserts for Stainless Steel Machining

TNMG 1604 series carbide turning inserts are developed for turning, facing and profiling stainless steel. The double-sided triangular design offers six usable cutting edges, while stainless-steel-oriented grades and chipbreakers help control continuous chips and cutting heat. Multiple corner radii allow distributors to cover finishing, medium machining and selected roughing requirements.

◆Complete TNMG 1604 corner-radius coverage
◆Grades and chipbreakers for stainless steel machining
◆Six usable edges for economical inventory planning
◆Mixed-model orders and customer-label support
ModelsTNMG 160402 / 160404 / 160408 / 160412 options
Materials & OperationsStainless Steel · Turning / Facing / Profiling
Grade & ChipbreakerPVD / CVD options · Finishing / Medium / Roughing
Pack & SupplyStandard box · Mixed models · Neutral / Private label

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◆Ürüne Genel Bakış

Bu TNMG 1604 series carbide turning inserts are designed for external turning, facing and profiling of stainless-steel components on CNC lathes. Their triangular negative geometry provides strong cutting-edge support and multiple usable cutting edges, making the series suitable for continuous production and repeat machining.

Stainless steel can generate high cutting temperatures, work hardening and built-up edge. TNMG 1604 inserts can therefore be supplied with different carbide substrates, PVD/CVD coatings and chipbreakers to balance edge sharpness, toughness, chip control and wear resistance.

Customers selecting inserts for different workpiece groups can also compare the complete TNMG 1604 insert range according to material, chipbreaker and grade requirements.

Quick Procurement Summary
Insert Series TNMG 1604 Standard Models 160404 / 160408 / 160412
Ekleme Şekli Triangular, 60° included angle Clearance Negative, 0° clearance
Corner Radius 0.4 / 0.8 / 1.2 mm Operations Turning / Facing / Profiling
Primary Material Paslanmaz çelik Processing Range Finishing / Medium / Selected roughing
Grade Options Multiple carbide grades by confirmation Kaplama Seçenekleri PVD / CVD options
Standard Pack 10 pieces per box Supply Options Standard / Mixed models / Private label

Grade, chipbreaker, coating, material suitability and stock status should be confirmed using the complete insert code.

Key Advantages for Stainless Steel Turning
01Controlled Cutting Forces
Suitable chipbreaker geometries help reduce cutting resistance during stainless-steel turning.
02Improved Chip Control
Chipbreakers can be selected for different feed and depth-of-cut ranges to improve chip evacuation.
03Heat and Wear Resistance
Suitable coated grades help protect the cutting edge from heat, adhesion and abrasive wear.
04Economical Multi-Edge Design
Double-sided triangular geometry provides multiple usable cutting edges for production turning.

◆TNMG 1604 Model Selection

Model Corner Radius Edge Characteristic General Selection
TNMG 160404 0,4 mm Lower radial cutting force Finishing and lighter turning conditions
TNMG 160408 0,8 mm Balanced strength and finish General medium turning
TNMG 160412 1.2 mm Stronger corner support Higher feed and stable heavier cuts

Corner-radius selection also affects radial cutting force, surface finish and chip thickness. Confirm suitability through the complete cutting conditions.

Model and Grade Reference

The following reference images show TNMG 1604 dimensions, chipbreaker options, available grades and material recommendations. Send the complete current code for accurate replacement matching.

TNMG 1604 carbide turning insert model and grade reference oneTNMG 1604 stainless steel turning insert model and grade reference twoTNMG 1604 chipbreaker and cutting application reference

Designed for Stainless Steel Turning

Stainless steels can work-harden quickly and retain heat near the cutting edge. An unsuitable insert may produce long chips, built-up edge, poor surface quality or premature edge failure.

TNMG 1604 selection should therefore consider edge sharpness, coating, carbide toughness, chipbreaker range and tool-holder rigidity together rather than selecting by size alone.

◆Avoid unnecessary dwell to reduce work hardening
◆Maintain a stable feed suitable for the selected chipbreaker
◆Use rigid clamping and minimize tool overhang
◆Apply coolant consistently when the selected process requires it

Recommended Turning Operations
External TurningOutside-diameter turning of stainless-steel shafts and cylindrical parts.
FacingEnd-face machining under stable workholding and suitable holder positioning.
ProfilingGeneral contour turning where the triangular geometry provides sufficient access.

◆Chipbreaker and Product Details

TNMG 1604 carbide turning insert chipbreaker geometry one
TNMG 1604 coated carbide insert chipbreaker geometry two
TNMG 1604 stainless steel turning insert cutting edge detail
TNMG 1604 PVD and CVD coated carbide turning inserts

Grade and Chipbreaker Selection

Different stainless-steel grades and turning conditions require different combinations of edge sharpness and toughness. Finishing geometries generally use smaller feeds and depths of cut, while medium and roughing geometries require stronger edge support.

Coating color alone cannot identify the insert grade. Confirm the printed code or package label before placing a repeat or replacement order.

◆Finishing chipbreaker for lighter cuts and surface-quality requirements
◆Medium chipbreaker for general stainless-steel production
◆Stronger geometry for stable higher-load conditions
◆Trial cutting recommended before large-volume replacement

Packaging and Customer Supply

TNMG inserts are normally packed in compartment boxes to protect the cutting edges and preserve clear model, grade and batch identification. Final packaging and supply details are confirmed according to the selected models and order quantity.

◆Standard pack: 10 inserts per box
◆Mixed-model orders available by confirmation
◆Neutral and private-label packaging available
◆Customer SKU, barcode and batch labels available

Information Required for Model Matching
  1. Complete TNMG insert code, grade and chipbreaker
  2. Compatible tool-holder model
  3. Stainless-steel grade and workpiece hardness
  4. Finishing, medium or roughing operation
  5. Required quantity and packaging preference

If the complete insert code is unavailable, send clear photographs of the top marking, chipbreaker surface, side profile, original box label and compatible tool holder.Images of carbide inserts hy cutting tools full series of carbide turning inserts hy cutting tools

◆Specifications & Size Chart

This TNMG 1604 range covers 160404, 160408 and 160412 for stainless-steel turning, with nominal corner radii of 0.4, 0.8 and 1.2 mm. TNMG is a 60° triangular, negative-clearance insert with a fixing hole. The common 16-size family references below assist holder selection; the approved drawing and complete chipbreaker/grade code determine the supplied configuration.

Base ISO Size IC (mm) S (mm) Hole D1 (mm) Corner Radius RE (mm) Application Consideration
TNMG 160404 9.52* 4.76* 3.81* 0.4 Smaller radius; consider for lighter stainless-steel finishing cuts.
TNMG 160408 9.52* 4.76* 3.81* 0.8 Balanced radius for stable medium turning, subject to chipbreaker and grade.
TNMG 160412 9.52* 4.76* 3.81* 1.2 Larger radius; check machine rigidity and radial-force sensitivity.
Dimension note: *IC, S and D1 are common TNMG 16 family references, not measurements verified for every HY grade or chipbreaker. Cutting-edge length can change with nose radius and edge geometry; no single L value is assigned here. Confirm the full model, tolerance, fixing hole and holder fit from the current series drawing. The Overview includes catalogue reference images; confirm their actual row data and suffixes against the selected HY product drawing.

◆Specification Checklist by Model

Parametre Details to Confirm
Insert geometry 60° triangular, double-sided TNMG form with 0° clearance and a fixing hole; check the actual chipbreaker and holder seat.
Nominal size and radius 1604 size family; select 0.4, 0.8 or 1.2 mm radius according to feed, profile, finish and setup rigidity in stainless steel.
Carbide grade The Overview lists multiple carbide grades without mapping them to each radius. Confirm an ISO M application grade for the actual stainless-steel type, hardness and cut continuity.
Chipbreaker and coating Confirm the selected stainless-steel chipbreaker, substrate, PVD/CVD coating and recommended feed/depth range. Coating color alone does not identify a grade.
Holder compatibility Check TNMG 16 pocket, thickness, hole, clamp, seat, approach angle and tool hand against the holder manufacturer's specification.
Supply and packing Overview reference: 10 pieces per plastic box. Confirm pack count, mixed-model supply, stock and labeling by complete order code.

Stainless Steel Grade & Chipbreaker Selection

Select the chipbreaker by the actual feed and depth of cut, then match a carbide grade and coating to the stainless-steel family and cut continuity. The Overview lists finishing, medium and selected roughing conditions, but does not identify a complete order code for each combination.

Operation Selection Priority Confirm for the Complete Code
Bitirme Chip formation and surface finish at the planned lower feed and depth Edge preparation, radius, grade and minimum effective feed
Medium turning Balance chip control, edge strength and wear resistance Operating window, coolant and stainless-steel grade
Selected roughing Edge toughness and stability under higher or interrupted load Approved geometry, grade, holder rigidity and permissible load
Application note: Stainless grades differ in machinability; 304/316 austenitic steel, duplex and precipitation-hardening grades should not automatically share a grade or speed. Avoid unnecessary dwell and validate chip flow, adhesion, wear and finish during a trial cut.

◆How to Select a TNMG Insert for Stainless Steel

1. Match the holderCheck the TNMG 16 pocket, clamp and approach angle for external turning, facing or accessible profiling.
2. Choose the radiusCompare 0.4, 0.8 and 1.2 mm against the stainless-steel profile, feed, finish and vibration risk.
3. Specify grade and breakerProvide the stainless-steel grade and hardness, cut continuity, depth, feed and coolant so an ISO M grade and chipbreaker can be matched.
4. Run a controlled trialRecord chip shape, flank wear, finish and dimensional stability before switching a production insert.

See the CNC Insert Selection Guide for additional shape, grade and radius checks.

◆Starting Cutting Data

The Overview does not give a validated cutting-speed, feed or depth-of-cut range for a complete TNMG grade and chipbreaker. Obtain starting data for the exact stainless-steel grade, insert code, coolant and cut continuity. Maintain sufficient feed for the selected geometry, avoid rubbing or dwell, and adjust after observing chip formation and edge wear.

Calculation reference: n = (1000 × Vc) / (π × D), where n is spindle speed in rev/min, Vc is cutting speed in m/min and D is current workpiece diameter in mm. On a lathe, programmed feed is commonly given in mm/rev; confirm the control's feed mode. This formula does not establish a safe speed for an unspecified grade.

◆Related Series & Technical References

Compare other turning geometries in the carbide turning and milling insert range. For a current TNMG stainless-steel series drawing, holder match, grade-specific cutting data or quotation, send the complete model and application details.

◆Carbide Insert Customization & OEM

Specify the insert around the machining operation, workpiece and holder. We can review standard replacements, application-specific geometry and private-label requirements using your insert designation, drawing or sample. Available grades, coatings, dimensions and order quantities are confirmed for each requested series.

Geometry & Chip Control

Review chipbreaker, rake, cutting-edge preparation, nose radius and corner design for the operation and workpiece. Confirm holder compatibility before approving a modified geometry.

Substrate & Coating

Select an available carbide grade and coating for the workpiece material, cutting conditions and desired balance of wear resistance and edge toughness.

Dimensions & OEM

Review insert size, thickness, locating and clamping features, tolerances, laser marking and private-label packaging against the approved specification.

◆Customization Options

Use the fields below when sending an inquiry. The exact options depend on the insert family and are confirmed in the quotation or approved drawing.

Şartname Details to Confirm
Ekleme Tipi Turning, milling, threading, grooving or drilling insert; send the designation or drawing.
Size & Fit Shape, size, thickness, inscribed circle or edge length, hole or clamping form, and holder model.
Kesim Geometrisi Chipbreaker, nose or corner radius, edge preparation, cutting direction and application-specific profile.
Grade & Coating Workpiece group and grade, carbide substrate, coating system and wet or dry cutting conditions.
Tolerance & Inspection Critical dimensions, profile requirements, inspection method and any required report.
OEM Presentation Insert or box marking, label content, packaging format and quantity per pack.

◆How to Request a Custom Insert

HY Cutting Tools Carbide Inserts series photo
01 · Share the ReferenceSend a designation, drawing, sample photos and holder model.
02 · Describe the CutState the workpiece, operation, cutting conditions and current problem.
03 · Confirm the ProposalReview geometry, grade, coating, tolerance, quantity and sample plan.
04 · Approve the OrderApprove the final drawing, marking, packaging and delivery terms.
Teknik Özellik Notu: A matching ISO designation does not by itself establish the same chipbreaker, carbide grade, coating or cutting performance. Confirm the complete configuration before ordering a replacement.

Send your insert requirements through our contact form or review our OEM and private-label service.

◆Carbide Insert Quality Control

quality control carbide inserts hy cutting tools

Insert quality depends on the approved grade, geometry, coating and dimensional specification. We review the requirements at order confirmation and align the inspection scope with the insert series and any customer drawing. Share critical dimensions or documentation needs before production so they can be included in the agreed inspection plan.

01 · Incoming Material

Confirm the specified carbide grade or material documentation against the order requirements.

02 · In-Process Checks

Review dimensions and cutting-edge features during production against the approved specification.

03 · Final Inspection

Check the agreed dimensions, appearance, edge condition, coating identification and marking as applicable.

04 · Packing Review

Verify the item code, quantity, labels and protective packing against the approved order.

◆Inspection & Documentation

Inspection points and acceptance criteria should be agreed for the ordered series. For custom inserts, the approved drawing takes priority over a generic catalogue description.

Check Area What to Confirm
Dimensions & Fit Insert size, thickness, corner radius, clamping features and any drawing tolerances.
Kesim Geometrisi Chipbreaker, edge preparation, usable corners and profile where applicable.
Grade & Coating Approved grade and coating designation; any requested verification method.
Appearance & Packing Visible edge damage, marking, item code, count and packing format.
Requested Records Inspection report, material or coating documentation, sample approval or batch identification when agreed.
Quality Note: Inspection method, sampling level and documentation vary by product and order. If a dimension, coating property or report is critical, include its acceptance criteria in the purchase specification before production.

◆Order & Delivery

HY Cutting Tools Carbide Inserts series collection photo
HY Cutting Tools Carbide Inserts series with package

Share a line-by-line list of insert codes and quantities for a mixed-size quotation. Stock status, minimum quantity, sample requirements and production lead time are confirmed for each grade, coating and configuration.

Stock & MOQConfirm by item code and requested quantity.
Samples & ApprovalAgree the sample specification and evaluation criteria before a custom production order.
Teslim SüresiConfirm dispatch timing after specifications, quantity and packaging are approved.
Packing & ShippingAgree box labels, pack quantity, shipping method and required documents.

Send your item list and quality requirements through our contact form for specification, availability and delivery confirmation.

◆Product FAQs

Why use a TNMG insert for stainless-steel turning?

TNMG is a 60° triangular, negative-clearance insert with a fixing hole and multiple usable edges. A suitable chipbreaker and ISO M carbide grade can be selected for external turning or facing of stainless steel. Holder angle, workpiece grade and cut conditions determine whether this geometry fits the operation.

What changes between TNMG 160404, 160408 and 160412?

Their nominal corner radii are 0.4, 0.8 and 1.2 mm. A smaller radius may suit lighter finishing cuts; a larger radius offers more corner support but can increase radial force. Choose with the stainless-steel grade, chipbreaker, feed, finish and setup rigidity in mind.

Can all three radii use the same holder?

They share the TNMG 1604 base designation, but verify the holder pocket, insert thickness, fixing hole, clamp, approach angle and part clearance. The nose radius and chosen chipbreaker can change usable profile access even when the insert seats in the same holder.

How do I select a grade for 304, 316 or another stainless steel?

Specify the exact stainless grade and hardness, operation, cut continuity, coolant and current wear pattern. The Overview does not assign a named carbide grade to every radius or chipbreaker. Confirm an ISO M application grade, coating and starting cutting data for the complete code; duplex or precipitation-hardening grades may need a different selection from 304/316.

Why does chipbreaker selection matter in stainless steel?

Stainless steel can produce long chips and built-up edge. A chipbreaker needs sufficient feed and depth of cut to work as intended while maintaining edge strength. Confirm the supplier’s geometry-specific operating range; neither the TNMG size nor coating color identifies the correct chipbreaker.

How do I reduce work hardening and built-up edge?

Use the grade-specific cutting data and a stable feed that lets the selected edge cut rather than rub. Avoid unnecessary dwell, keep the setup rigid, and apply coolant consistently where required. Check chip flow, adhesion, wear and finish in a controlled trial.

◆Ordering & OEM FAQs

What should I send for a TNMG replacement inquiry?

Provide the original manufacturer, full insert code, grade and chipbreaker, photos of the marking and both faces, holder model, stainless-steel grade, cutting conditions, current wear issue and required quantity. Compare a proposed replacement in a controlled machining trial.

Can I order different radii or grades together?

Send a line-by-line list with each complete TNMG code, grade, chipbreaker and quantity. Mixed-model availability, minimum order quantity and dispatch time are confirmed by item. The Overview lists 10 pieces per box as its standard reference.

Can I request samples before a larger order?

Provide the complete code, holder, workpiece and planned test conditions. Confirm sample availability and evaluation criteria by grade; compare wear, chip control, surface finish and cost per accepted part under the same setup.

Are private-label packaging and customer SKU labels available?

The Overview lists neutral and private-label packaging, customer SKU and barcode labels. Send the artwork, marking requirements, pack quantity and expected order volume so feasibility, minimum quantity and lead time can be confirmed.

◆Guides & Technical References

Use the CNC Insert Selection Guide for holder, grade, corner-radius and chipbreaker checks. The Carbide Insert Types Guide explains the wider insert families.

For the current TNMG stainless-steel drawing, grade-specific cutting data or quotation, send your complete insert and holder codes with the stainless-steel grade and quantity.

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