1996 Peugeot 106 Gti Chassis - 3D Scan (STL) [Item: DFE]

A$150.00

Contributor: Daniel Ferreira

This listing provides a high-resolution 3D scan of the 1996 Peugeot 106 Gti chassis, capturing the external structural geometry, mounting points, and key attachment interfaces. The scan is ideal for vehicle modification planning, reverse engineering, and engineering analysis, providing accurate reference data for aftermarket or custom projects.

Note from contributor: Partial scan of the chassis of a 106 with welded front end strengthening and a welded rollcage. Since these were multiple scans stitched together, the chassis apears to be twisted along its longitudinal axis. Although not ideal, It can definitely be used for designing parts from. The scan of the chassis is aligned at the front.

Scan is compatible with 1996 Peugeot 106 models (verify fitment for specific years).

The scan captures precise external geometry, mounting interfaces, and structural details, making it suitable for chassis integration studies, part development, and digital visualization.

Common Applications

  • Chassis modification and reinforcement planning

  • Aftermarket component fitment validation

  • Vehicle engineering and structural analysis

  • Reverse engineering for replacement or custom parts

  • 3D visualization and simulation

File Suitability
Ideal for CAD reference, packaging design, and vehicle engineering workflows.

Disclaimer:
We encourage you to download the sample file to assess scan format, output quality, and how it performs in your preferred software. Different packages may interpret scan data differently, so verifying compatibility with your workflow is essential.

Please refer to the provided part images to evaluate file quality and representation.

While every effort is made during scanning to ensure accuracy, we advise verifying critical dimensions against the physical part if your application requires tight tolerances or precise referencing.

Reviewing both the sample file and images will help ensure the scan meets your requirements before purchase.

Contributor: Daniel Ferreira

This listing provides a high-resolution 3D scan of the 1996 Peugeot 106 Gti chassis, capturing the external structural geometry, mounting points, and key attachment interfaces. The scan is ideal for vehicle modification planning, reverse engineering, and engineering analysis, providing accurate reference data for aftermarket or custom projects.

Note from contributor: Partial scan of the chassis of a 106 with welded front end strengthening and a welded rollcage. Since these were multiple scans stitched together, the chassis apears to be twisted along its longitudinal axis. Although not ideal, It can definitely be used for designing parts from. The scan of the chassis is aligned at the front.

Scan is compatible with 1996 Peugeot 106 models (verify fitment for specific years).

The scan captures precise external geometry, mounting interfaces, and structural details, making it suitable for chassis integration studies, part development, and digital visualization.

Common Applications

  • Chassis modification and reinforcement planning

  • Aftermarket component fitment validation

  • Vehicle engineering and structural analysis

  • Reverse engineering for replacement or custom parts

  • 3D visualization and simulation

File Suitability
Ideal for CAD reference, packaging design, and vehicle engineering workflows.

Disclaimer:
We encourage you to download the sample file to assess scan format, output quality, and how it performs in your preferred software. Different packages may interpret scan data differently, so verifying compatibility with your workflow is essential.

Please refer to the provided part images to evaluate file quality and representation.

While every effort is made during scanning to ensure accuracy, we advise verifying critical dimensions against the physical part if your application requires tight tolerances or precise referencing.

Reviewing both the sample file and images will help ensure the scan meets your requirements before purchase.