Deburring and Tumbling
Reduce sharp edges, dross, and handling marks.
3DWKPrecision Sheet Cutting
Fast profile cutting for flat metal parts, followed by the forming, hardware, and finishing operations needed for a complete component.
Process
Laser cutting is well suited to nested sheet layouts, detailed profiles, repeated hole patterns, and fast transition from prototypes to larger batches.
Quickly validate brackets, panels, shims, and mounting geometry.
Arrange repeated parts efficiently across standard sheet sizes.
Create slots, tabs, cutouts, ventilation patterns, and identification features.
Add bends, welds, threads, hardware, coating, marking, and packaging.
Materials
Secondary Operations
Reduce sharp edges, dross, and handling marks.
Add flanges, boxes, channels, hems, and jogs.
Create threaded or flush-fastener features after cutting.
Install specified self-clinching fasteners and standoffs.
Powder coat, anodize, plate, passivate, brush, blast, or mark.
Join components into enclosures, frames, guards, and subassemblies.
Design Guidance
Remove duplicate lines, open paths, and accidental construction geometry from DXF files.
Very small holes, narrow bridges, and tight gaps may be limited by thickness and material.
State burr, edge-break, cosmetic, and coating requirements instead of assuming a universal edge condition.
For bent parts, include the final 3D shape and a drawing that defines bend direction and critical dimensions.
FAQ
Yes for simple flat parts, provided the file is full scale and the RFQ includes material, thickness, quantity, and finish. Formed parts should include a 3D model and drawing.
Yes. Include the formed model, bend details, finish specification, color, masking, and cosmetic requirements.
Waterjet may be preferable for thick stock, heat-sensitive materials, composites, stone, rubber, or geometry where heat input is a concern.
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