Reverse Engineering & Additive Manufacturing
We transform undocumented or difficult-to-source parts into validated digital models and determine a suitable prototyping or production method.
Engineering scope
- Sample measurement and modeling
- 3D scan data evaluation
- Functional prototype production
- Fixture, guard and auxiliary-part design
- Manufacturing drawings
- Material and production-method selection
Where this capability creates value.
The final scope is defined after reviewing the existing system, operating conditions and project objectives.
- Parts without drawings
- Functional prototypes and fixtures
- Machine guards and auxiliary parts
- Geometric components no longer supplied
A clear and traceable outcome.
- Dimensioned 3D model
- Manufacturing-ready drawing
- Material and production-method recommendation
Understand first. Implement with control.
Available data, current condition and target are defined.
A practical method and scope are prepared.
Sourcing, fabrication or field work is coordinated.
The result is tested and handed over.
About Reverse Engineering & Additive Manufacturing.
Can every part be 3D printed?+
No. Load, temperature, wear, tolerance and surface requirements determine whether additive or conventional manufacturing is appropriate.
What is needed to reverse engineer a part?+
The sample or reliable dimensions, operating conditions, critical interfaces and expected quantity are needed.
