Frequently Asked Questions
These answers address common decisions that arise when a calculator result differs from CAD, a supplier chart, or an existing part. Use them to identify the input convention and determine when a test bend or drawing-specific DFM review is necessary.
What is the minimum bend radius in sheet metal?
It is the smallest inside radius that a material and process can form without unacceptable cracking, thinning, distortion, or surface damage. There is no single universal value because alloy, temper, thickness, grain direction, edge quality, tooling, bend method, and acceptance criteria all matter.
Is the bend radius measured on the inside or outside?
This calculator uses the inside bend radius. If a drawing gives an outside radius, do not enter it directly. For an idealized constant-thickness section, the outside radius is approximately the inside radius plus sheet thickness, but real forming and measurement practices should be confirmed with the fabricator.
Why does aluminum 6061-T6 need a larger radius than 5052-H32?
6061-T6 is heat treated for higher strength and is generally less forgiving in tight sheet bends. 5052-H32 is commonly selected for formed sheet parts because it has better bendability. The calculator therefore applies different published starting factors rather than grouping both under a generic aluminum option.
Does grain direction change the calculated radius?
It changes the production risk, but this tool does not apply a fixed numeric multiplier because the published guidance does not define one universal adjustment. A bend line parallel to the rolling direction receives an increase-radius warning. Confirm the required radius with the material supplier and fabricator.
Why does 6.00 mm use a different factor tier?
The source chart presents ranges that meet at 6 mm. To make the calculator deterministic, exactly 6.00 mm enters the heavier-sheet tier. This also avoids understating the starting radius at the boundary. The convention is shown in the interface and should still be checked against the intended process.
Can I use the result as the punch radius?
Not automatically. The output is a recommended finished inside bend radius for preliminary design. Punch nose radius, V-die opening, air bending, bottoming, coining, springback, and material response all affect the relationship between the tool and the finished part.
Does a proposed radius above the recommendation guarantee a good bend?
No. A larger radius generally reduces outer-fiber strain, but it does not verify flange length, tooling clearance, hole-to-bend distance, springback, cosmetic quality, flat-pattern accuracy, or press capacity. It is one input to a complete DFM review.
What should I do when my material is not listed?
Do not select a different alloy only to obtain a number. Provide the material specification, temper or condition, thickness, bend angle, grain direction, desired radius, and applicable quality requirements to the fabricator. Material supplier bend data or a representative test bend is more reliable than an unsupported substitution.
