| Laser cutting |
Is the work mainly sheet, tube, profile, combined sheet-and-tube, large format or coil-fed? |
Trial parts in normal and difficult materials, edge inspection, cycle breakdown and handling concept |
| Press brake bending |
What bend length, material strength, tooling, geometry and tolerance define the job? |
Tonnage basis, tooling plan, collision review, backgauge concept and sample bends |
| Welding systems |
Do the joint, fit-up and volume suit handheld, automatic or robotic welding? |
Joint trials, fixture concept, access review, process parameters and safety layout |
| Laser cleaning |
What layer must be removed without unacceptable substrate change? |
Before-and-after samples, removal result, surface assessment and residue/extraction plan |
| Laser marking |
Is the objective contrast, depth, coating removal, identification or traceability? |
Marked samples, readability test, field-size confirmation and data-workflow demonstration |
| Deburring and finishing |
Is the target slag removal, burr removal, edge rounding, surface finishing or oxide removal? |
Test parts showing both faces and edges, finish definition, consumable route and dust plan |
| Digital knife cutting |
Which flexible or non-metal material and tool action must be validated? |
Material trials, tool selection, hold-down behavior, pattern accuracy and nesting workflow |
| Air compressors |
What pressure, flow and air quality are required at the point of use? |
Demand calculation, duty profile, treatment package, pressure-drop plan and energy basis |
| Loading, unloading and automation |
Which manual constraint is being removed, and how will exceptions be handled? |
Layout, part-flow simulation, buffer logic, interface list, recovery procedure and safety concept |