Sheet metal

5052-H32 aluminum 10-gauge bend allowance estimator

Prefilled bend allowance, deduction, and developed-length estimates for 5052-H32 aluminum at 0.1019 in / 2.588 mm nominal thickness. Treat as a screening reference; verify against material certificates and a coupon bend before production.

5052-H32 aluminum10 ga0.1019 in2.588 mm

Interactive calculator

Prefilled Bend Allowance Calculator

Bend allowance0.2241 in
Neutral axis radius0.1427 in

K-factor variance

5052-H32 aluminum 10 ga process range

ProcessMin KTypical KMax KUse note
Air bending0.330.400.45Free bend in a V-die; most BendMath defaults start here.
Bottoming0.400.430.46Punch drives the sheet close to the die angle with higher contact.
Coining0.450.480.50High-tonnage forming that sets the bend more deeply into the tooling.

Source: SheetMetal.Me K-Factor chart; AUST IPE 2212 Manufacturing Processes-II Sessional generic K-factor table; shop starting estimate for this alloy family.

Values vary with grain direction, inside radius-to-thickness ratio, V-die opening, coating, temper, and tooling condition. Verify with a coupon test bend.

Material notes for this combination

Starting references for 5052-H32 aluminum at 10 ga

Recommended starting V-die opening

About 0.611 in (factor 6T). Expect an air-bend inside radius near 0.098 in. Verify with the tooling supplier's chart.

Starting minimum inside bend radius

About 0.102 in (1T) for this material family. Bends across the grain typically need a larger radius.

Tonnage multiplier vs mild steel

0.5× the mild-steel baseline. Cross-check the press brake's rated tonnage and the punch/die load rating before forming.

Grain and process

Aluminum sheet is grain-direction sensitive — bends across the rolling direction often need a larger inside radius than bends along it. 6061-T6 is the most crack-prone of the common alloys.

Default K-factor (0.4), minimum-radius factor (1T), and tonnage multiplier (0.5×) for 5052-H32 aluminum are starting estimates. See /reference/data-sources/ for provenance.

Static reference

Common thickness, radius, and angle combinations

Swipe table horizontally for more columns.

GaugeThicknessInside radiusAngleBend allowanceBend deduction
16 ga0.0508 in / 1.29 mm0.0508 in / 1.29 mm45 deg0.0559 in0.0283 in
12 ga0.0808 in / 2.052 mm0.1212 in / 3.078 mm90 deg0.2411 in0.1629 in
10 ga0.1019 in / 2.588 mm0.1019 in / 2.588 mm120 deg0.2988 in0.4072 in

Formula used

What this calculator computes

BA = (π / 180) × A × (r + K × t)
BA
Bend allowance (developed arc length along the neutral axis) (in or mm)
A
Bend angle (rotation angle of the bend, in degrees) (deg)
r
Inside bend radius (in or mm)
t
Material thickness (in or mm)
K
K-factor (neutral-axis position) (0 to 1)
  • Bend angle A is the angle of rotation through which the sheet is bent (the supplement of the included angle for less-than-180° bends). A flat sheet bent so its flanges meet at 90° corresponds to A = 90°. If your drawing labels the included angle, convert with A = 180° − included angle before entering it.
  • Developed flat length for a single bend = sum of straight flange lengths + BA. For multi-bend parts, add BA for every bend.

Worked example

One numeric walk-through

Inputs

Thickness t
0.0598 in
Inside radius r
0.0598 in
Bend angle A
90°
K-factor
0.42

Steps

  1. A in radians: 90 × π/180 = 1.5708.
  2. r + K·t = 0.0598 + 0.42 × 0.0598 = 0.0849 in.
  3. BA = 1.5708 × 0.0849 ≈ 0.1334 in.

Result

Bend allowance ≈ 0.1334 in. Add this to the straight flange lengths to get the developed flat length for one bend.

Common mistakes

Things to check before trusting the number

FAQ

Specific checks for this calculator

What thickness is 10 gauge 5052-H32 aluminum on this page?

This page uses 0.1019 in / 2.588 mm as the nominal 10-gauge thickness for aluminum sheet. Mill thickness can vary; check the material certificate.

Can these 5052-H32 aluminum bend values be used directly for production?

No. Use them as screening estimates. Confirm K-factor, bend radius, and tonnage with a coupon bend, the supplier's data, and the press brake's rated capacity before production.

What K-factor should I use for 5052-H32 aluminum 10 gauge?

Use K=0.40 as a starting point for air bending 5052-H32 aluminum 10 gauge. Bottoming and coining use different typical values (0.43 and 0.48 here), so verify the value with the actual tooling and a coupon bend.