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From custom prototyping to end-use production, we help teams drive product development forward.
Learn MoreUse these practical design checkpoints to prepare sheet metal parts for efficient fabrication, more predictable fit, and cleaner production outcomes.
| Flat Part | 0.30 in. × 0.30 in. 7.6 mm × 7.6 mm |
|---|---|
| Formed Part | 0.55 in. × 0.55 in. 14.0 mm × 14.0 mm |
| Size | 38 in. × 46 in. 965 mm × 1,168 mm |
|---|---|
| Bend Length | 46 in. 1,168 mm |
| Feature | Single Surface | Multi Surface |
|---|---|---|
| Linear dimensions | Specified at quote | Reviewed by feature relationship |
| Angular features | Reviewed by bend geometry | Reviewed by accumulated bends |
| Hole location | Feature-specific review | Reviewed across formed surfaces |
| Bend relationship | Part geometry dependent | Accumulated feature review |
Available thickness is selected against the chosen material, part envelope, feature pattern, and forming plan.
| Thickness | CR Steel | HR Steel | Galvanized | Aluminum | Stainless | Copper | Brass |
|---|---|---|---|---|---|---|---|
| 0.024 in. | Available | — | Available | Available | — | — | — |
| 0.032 in. | Available | Available | Available | Available | Available | — | — |
| 0.040 in. | Available | Available | Available | Available | Available | Available | Available |
| 0.050 in. | Available | Available | Available | Available | Available | Available | Available |
| 0.063 in. | Available | Available | Available | Available | Available | Available | Available |
| 0.080 in. | Available | Available | Available | Available | Available | Available | Available |
| 0.100 in. | Available | Available | Available | Available | Available | — | — |
| 0.125 in. | Available | Available | Available | Available | Available | — | — |
| 0.160 in. | Available | Available | — | Available | Available | — | — |
| 0.190 in. | Available | — | — | Available | Available | — | — |
| 0.250 in. | — | — | — | Available | — | — | — |
| 0.375 in. | — | — | — | Available | — | — | — |
Use a short visual reference to compare standard fabrication finishes with cosmetic surface requirements before a design is released.
Plan bend direction, inside radius, tool access, and material grain together. Practical details early in the model make formed dimensions easier to control.
A press brake leaves a natural witness where force is applied. Define appearance-critical surfaces early so the fabrication sequence can account for them.
Keep cut features clear of active bend zones. Adequate clearance protects holes and slots from distortion during forming.
Where a profile crosses a bend, evaluate the feature shape together with material stretch and the required formed profile.
Coordinate lances, tabs, slots, and formed details with the press-brake path so the selected tool can reach the intended geometry.
Give each flange enough material for stable tool contact. Short returns are reviewed against the stock, bend radius, and target geometry.
Place inserted hardware where forming tools can reach the bend without collision, and sequence insertion with finishing requirements in mind.
Holes and inserts can affect formed geometry when they sit too close to a bend. Reserve material and tool clearance around each critical interface.
A strategically placed relief gives material room to stretch during forming without pulling a critical feature out of position.
Bend design connects the flat pattern to the finished component. Keep the intended shape, visible surfaces, tool access, and dimensional relationships visible before the fabrication route is fixed.
A stable bend plan begins with the material and thickness, then checks the inside radius, flange length, feature relationship, and the way the part will be handled after forming.
Brake contact leaves a process relationship that can matter on visible surfaces. Use practical bend direction and selected finish requirements to guide where that relationship belongs.
Plan the visible side and contact direction early when surface appearance is a requirement.
Keep the structural geometry, material grain, and tool approach aligned around the intended return.
Compare the selected feature with its nearest bend zone before release. The practical direction depends on material behavior, whether a feature is visible, and the required formed geometry.
| Design Situation | Practical Direction |
|---|---|
| Feature close to an active bend | Reserve clearance or review whether the operation can be sequenced after forming. |
| Critical location across a bend | Use the model to assess accumulated movement and the required final relationship. |
| Feature in a visible surface | Plan bend orientation and finishing together so the surface requirement remains clear. |
| Complex formed profile | Review the part as a complete setup before committing to the selected feature route. |
A feature that crosses a bend should be considered as a formed system rather than an isolated cutout. The following diagram positions reserve the expected material movement.
The flat pattern keeps the opening clear of active material stretch.
Review whether material accumulation would distort the final formed profile.
A controlled extension can relieve the contact zone and preserve the intended feature.
Use a selected relief when the feature and formed profile require extra clearance.
Detailed feature choices are most effective when they are reviewed as part of the full sheet component: flat-pattern geometry, bend sequence, tool access, hardware, finish, and the final assembly relationship.
Coordinate every cutout, tab, louver, or inserted component with the bends that surround it. This gives the manufacturing review enough context to identify suitable relief and reliable order of operations.
A flange must provide enough material for stable contact and the required finished shape. Short return conditions are checked against the stock, radius, and tooling approach before release.
Place hardware so the forming path and installation sequence can remain practical. The most suitable arrangement depends on local clearance, part stiffness, and the selected surface treatment.
Keep enough clearance for forming tools and the intended insert operation.
A suitable relief lets material move without disturbing the required critical feature.
Check your design against these rules in a quote.