Press Brake Tooling Chart | V-Die, Radius & Tonnage Guide

Press Brake Tooling Chart: Punch, Die, V-Opening, Bend Radius & Tonnage Guide

Last Updated: August 2026

A press brake tooling chart helps operators, engineers, buyers, and production managers quickly select the correct punch, lower die, V-opening, bend radius, minimum flange, and approximate bending force for a sheet-metal job.

This YRS Industrial reference guide combines the most important press brake tooling relationships into one page, including material thickness, V-die opening, natural inside radius, minimum flange length, tonnage, punch type, die type, material correction, and special tooling selection.

The charts below are intended as practical starting points for normal press brake air bending. Actual results depend on material grade, tensile strength, sheet thickness tolerance, punch radius, die shoulder radius, bending method, tooling material, machine rigidity, crowning, and springback.

Press Brake Tooling Quick Rule

For common mild-steel air bending: a V-opening around 6–8 × sheet thickness is often used as a starting range.

Larger V-opening: lower tonnage, larger natural radius, longer minimum flange.

Smaller V-opening: higher tonnage, tighter radius, shorter minimum flange.

Always verify: material strength, required radius, flange length, tooling load rating, and machine capacity before production.

Related guides: Press Brake Tooling Guide, Press Brake Dies Guide, Multi-V Die Guide, Press Brake Radius Guide, and Press Brake Tonnage Calculator.

1. Master Press Brake Tooling Chart

The following chart gives a practical starting reference for common mild-steel air bending.

Sheet Thickness Typical V-Opening Approx. Natural Inside Radius Approx. Minimum Flange Typical Punch
0.8 mmV6≈ 1.0 mm≈ 4–5 mmStandard / acute
1.0 mmV8≈ 1.2–1.4 mm≈ 5–6 mmStandard / acute
1.5 mmV10–V12≈ 1.6–2.0 mm≈ 7–9 mmStandard / gooseneck
2.0 mmV12–V16≈ 2.0–2.6 mm≈ 9–12 mmStandard / gooseneck
2.5 mmV16–V20≈ 2.5–3.2 mm≈ 12–15 mmStandard / gooseneck
3.0 mmV20–V24≈ 3.2–4.0 mm≈ 14–18 mmStandard / gooseneck
4.0 mmV24–V32≈ 4.0–5.0 mm≈ 18–24 mmStandard / heavy-duty
5.0 mmV32–V40≈ 5.0–6.5 mm≈ 24–30 mmHeavy-duty / radius
6.0 mmV40–V50≈ 6.5–8.0 mm≈ 30–38 mmHeavy-duty / radius
8.0 mmV50–V64≈ 8–10 mm≈ 38–48 mmHeavy-duty
10 mmV64–V80≈ 10–13 mm≈ 48–60 mmHeavy-duty / large radius

Important: These values are approximate starting references, not guaranteed production values.

2. V-Opening Selection Chart

V-Opening Typical Sheet Thickness Range Typical Use
V60.6–1.0 mmThin sheet, short flanges
V80.8–1.2 mmGeneral thin-sheet bending
V121.2–2.0 mmCabinets and enclosures
V161.5–2.5 mmGeneral fabrication
V202–3 mmGeneral fabrication
V24 / V253–4 mmMedium sheet
V324–5 mmMedium plate
V405–6 mmMedium/heavy plate
V506–8 mmHeavy bending
V648–10 mmHeavy plate
V8010–12 mmHeavy plate / larger radius

Read our Multi-V Die Guide for detailed V-opening selection.

3. Approximate Inside Bend Radius Chart

For common mild-steel air bending, a practical natural-radius estimate is often related to the V-opening.

V-Opening Approx. Natural Inside Radius
V8≈ 1.2–1.4 mm
V12≈ 1.8–2.0 mm
V16≈ 2.4–2.6 mm
V24≈ 3.6–4.0 mm
V32≈ 4.8–5.2 mm
V40≈ 6–6.5 mm
V50≈ 7.5–8.0 mm
V64≈ 9.5–10.5 mm
V80≈ 12–13 mm

These are approximate values. Stainless steel, aluminum, and high-strength steel can form different natural radii with the same V-opening.

Read our Press Brake Radius Guide.

4. Approximate Minimum Flange Length Chart

V-Opening Approx. Minimum Flange
V8≈ 5–6 mm
V12≈ 8–9 mm
V16≈ 10–12 mm
V24≈ 15–18 mm
V32≈ 20–24 mm
V40≈ 25–30 mm
V50≈ 32–38 mm
V64≈ 40–48 mm
V80≈ 50–60 mm

5. Approximate Air-Bending Tonnage Chart

Approximate force varies by tensile strength, thickness, bend length, and V-opening. The table below is a general reference for common mild steel and should be verified before production.

Thickness V-Opening Approx. Force per Meter
1 mmV8≈ 8–12 T/m
1.5 mmV12≈ 12–18 T/m
2 mmV16≈ 18–25 T/m
3 mmV24≈ 28–38 T/m
4 mmV32≈ 38–50 T/m
5 mmV40≈ 48–62 T/m
6 mmV48–V50≈ 58–75 T/m
8 mmV64≈ 75–95 T/m
10 mmV80≈ 95–120 T/m

For actual calculations, use our Press Brake Tonnage Calculator.

6. Press Brake Punch Selection Chart

Punch Type Best For
Standard Straight PunchGeneral-purpose bends
Gooseneck PunchBoxes, return flanges, channels
Acute PunchAcute bends, hemming, overbending
Radius PunchLarge-radius bending
Offset PunchZ-bends, joggles, step bends
Hemming PunchFlattening and hemming operations
Custom PunchSpecial profiles

7. Press Brake Die Selection Chart

Die Type Best Application
Single-V DieDedicated repeat production
Multi-V DieMixed thickness production
Acute DieAcute bending / hemming preparation
Hemming DieFlattening pre-bent hems
Offset DieZ-bends and joggles
Radius / Forming DieLarge radii and special forms
Rotary / Low-Mark DieCosmetic stainless and aluminum

Read our Press Brake Dies Explained Guide.

8. Material Adjustment Chart

Material Tonnage vs Mild Steel Springback Typical Tooling Note
Mild SteelBaselineModerateGeneral-purpose tooling
Stainless SteelHigherHigherConsider larger V and surface protection
AluminumOften lowerVaries by alloyCheck cracking and marking
High-Strength SteelMuch higherHighLarger radii and high-capacity tooling

9. Acute Punch Selection Chart

Acute Punch Angle Typical Application
30°Hemming preparation, deep overbend
45°General acute bends
60°Moderate acute bends and springback compensation

Read our Acute Punch Guide.

10. Gooseneck Punch Application Chart

Application Gooseneck Recommended?
Simple open flangeUsually not necessary
Box bendingYes
Return flangeYes
Deep channelOften yes
Heavy straight bendPrefer straight punch if clearance allows

Read our Gooseneck Punch Guide.

11. Radius Punch Selection Chart

Requirement Recommended Tool
Normal air-bend radiusStandard punch + correct V-die
Large fixed radiusRadius punch
Very large radius, mixed jobsBump bending
Large radius + return flangeRadius gooseneck punch

Read our Radius Punch Guide.

12. Hemming Tool Selection Chart

Hem Type Typical Tooling
Open HemAcute pre-bend + controlled flattening
Closed HemAcute pre-bend + flattening die
Teardrop HemAcute tooling + controlled closing geometry

Read our Press Brake Hemming Tool Guide.

13. Offset Tool Selection Chart

Feature Recommended Tooling
Two widely spaced bendsStandard tooling in two operations
Closely spaced Z-bendDedicated offset tool
Joggle / overlap stepDedicated joggle tool
High-volume fixed stepOne-hit offset tooling

Read our Press Brake Offset Tool Guide.

14. Which Press Brake Tool Do I Need?

Your Requirement Recommended Tool
Simple 90° bendStandard punch + single-V or Multi-V die
Box / return flangeGooseneck punch
Acute angleAcute punch + acute die
Large radiusRadius punch / bump bending
HemAcute punch + hemming/flattening tool
Z-bend / joggleOffset punch and die
Cosmetic stainless/aluminumLow-mark / rotary die
Many sheet thicknessesMulti-V die
Special profileCustom tooling

15. Common Press Brake Tooling Selection Mistakes

  • Using the same V-opening for every material thickness.
  • Choosing the smallest die opening without checking tonnage.
  • Ignoring minimum flange length.
  • Assuming the punch-tip radius always equals the finished radius.
  • Ignoring material tensile strength.
  • Using gooseneck tooling when a stronger straight punch would work.
  • Using acute punches above their rated load.
  • Changing V-opening without updating bend allowance or bend deduction.
  • Ignoring surface marking on stainless steel or aluminum.
  • Exceeding the tooling manufacturer’s tonnage-per-meter rating.

16. Frequently Asked Questions About Press Brake Tooling Charts

What is a press brake tooling chart?

It is a reference table used to select punches, dies, V-openings, bend radius, flange length, and bending force.

What is the 8× thickness rule?

For many common mild-steel air-bending jobs, a V-opening around eight times sheet thickness is a useful starting point.

Is V = 8T always correct?

No. Material strength, target radius, flange length, tonnage, and part geometry may require a different opening.

What V-die should I use for 2 mm steel?

V12–V16 is a common starting range for ordinary mild-steel air bending.

What V-die should I use for 3 mm steel?

V20–V24 is a practical starting range for many mild-steel jobs.

What V-die should I use for 4 mm steel?

V24–V32 is a common starting range.

What V-die should I use for 6 mm steel?

V40–V50 is a useful starting range depending on radius, flange, and tonnage requirements.

Does a larger V-opening reduce force?

Yes.

Does a larger V-opening make a larger radius?

Generally yes in air bending.

Does a larger V-opening require a longer flange?

Yes.

What punch should I use for a box?

A gooseneck punch is commonly used when previously formed flanges need extra clearance.

What punch should I use for hemming?

An acute punch is commonly used for the pre-bend stage.

What punch should I use for a large radius?

Use a radius punch or bump bending depending on the required radius and production volume.

What tooling should I use for a Z-bend?

Dedicated offset tooling is ideal for closely spaced Z-bends and joggles.

Does stainless steel require more tonnage?

Generally yes compared with common mild steel of the same thickness.

Can aluminum use the same V-opening as steel?

Sometimes, but alloy, temper, minimum radius, and surface marking should be checked.

What is minimum flange length?

It is the shortest flange that can remain properly supported by the die shoulders during bending.

Can I use a Multi-V die for different thicknesses?

Yes. That is one of its main advantages.

Can I use one punch with several V-openings?

Yes in many air-bending applications, provided angle, clearance, radius, and load capacity remain suitable.

Should I calculate tonnage before choosing tooling?

Yes. Required force must be checked against both machine capacity and tooling load rating.

18. Need Help Selecting Press Brake Tooling?

YRS Industrial supplies CNC press brakes and press brake tooling for sheet metal fabrication. We can recommend punches, dies, V-openings, tooling materials, bend radius, tonnage, segmentation, and special tooling according to your machine and parts.

YRS Industrial
Email: info@yrs-industrial.com
Website: https://yrs-industrial.com
WhatsApp: +86 180 0258 8351
Factory: Mingjue Industrial Park, Lishui District, Nanjing, Jiangsu, China

For a tooling recommendation, send your press brake model, clamping photos, material grade, thickness range, maximum bend length, target bend angles, required inside radius, minimum flange dimensions, part drawings, and production volume.

Technical Note

The tables in this guide are general reference values for tooling selection and should not be treated as guaranteed production data. Actual results vary with material tensile strength, actual sheet thickness, bend angle, punch-tip radius, die shoulder radius, V-opening, bending method, machine condition, tooling condition, and springback. Always verify machine and tool load ratings before production.

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