Frequently Asked Questions
Review these common questions for quick clarifications on core bending concepts, K-factor assumptions, and best practices for preparing sheet metal flat patterns for fabrication.
What is the difference between bend allowance and bend deduction?
Bend allowance is the neutral-axis arc length within the bend. Bend deduction is the amount subtracted from the sum of finished outside flange dimensions to obtain the flat length. Both describe the same bend from different dimensioning approaches.
What is the bend allowance formula for a 90 degree bend?
BA = (pi / 2) x (R + K x T). You still need the formed inside radius, thickness, and a validated K-factor for the intended process.
How do I calculate bend deduction for a 90 degree bend?
OSSB = R + T, so BD = 2 x (R + T) - BA. Subtract that value once from the sum of the two outside flange dimensions.
Is 0.33 the correct K-factor for all sheet metal?
0.33 is the explicit example assumption used in this chart. K-factor can change with material condition, thickness, bend angle, radius, tooling, and forming method. Use measured or supplier-validated data for production.
Can I use bend deduction without knowing K-factor?
Yes, if a validated bend-deduction table directly matches the material, thickness, angle, radius, tooling, and process. If you calculate BD from geometry, K-factor enters through the bend allowance term.
Should I send a flat pattern to a sheet metal fabricator?
Send the formed 3D model and dimensioned drawing first. A flat pattern is useful when its compensation data has been agreed with the fabricator; otherwise, the shop may need to regenerate it using its own bend table.
Does bend allowance change with grain direction?
It can. Rolling direction can affect material response, cracking risk, springback, and the stable process settings, especially for direction-sensitive alloys or tight radii. Preserve coupon orientation when calibrating production data.
