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Reverse Engineering of a Villa for the Design and Fabrication of Custom-Fit Interior Furnishings
3D scan of the entire villa and 3D design of the interior furnishings – ready for precise manufacturing, in this case using a CNC milling machine.
Includes the cleaning and conversion of the scan data into CAD data, as well as further comparison options for subsequent verification of 3D scan/measurement data versus CAD data.
Includes the cleaning and conversion of the scan data into CAD data, as well as further comparison options for subsequent verification of 3D scan/measurement data versus CAD data.

Energy-Efficient Renovation - Sequential Renovation of Facades
Energy-efficient renovation through serial facade refurbishment of an approximately 11,000 m² building complex in three construction phases.
The task: Scan the facades for modular, serial refurbishment and prepare the scan data for analysis of refurbishment costs and options, creating a CAD-compatible BIM model.
The task: Scan the facades for modular, serial refurbishment and prepare the scan data for analysis of refurbishment costs and options, creating a CAD-compatible BIM model.

Analysis Based on 3D Scan Data - Pool Example
This section demonstrates the possibilities for analyzing the geometry and all captured properties of scanned objects and solids, using a swimming pool as an example.
To analyze deviations between the scanned pool section and the actual pool construction, the construction is inserted into the 3D CAD model of the scanned pool section within the CAD program.
For example, a heatmap makes the deviations visible and highlights them accordingly.
This results in a precise comparison of the target geometry of the CAD design with the actual dimensions of the scanned section, enabling optimal adjustments.
Subsequently, visualizations can be created, for example, with original surfaces and in a selectable or custom 3D environment, as well as cutting dimensions and contours, for example, for CNC manufacturing.
To analyze deviations between the scanned pool section and the actual pool construction, the construction is inserted into the 3D CAD model of the scanned pool section within the CAD program.
For example, a heatmap makes the deviations visible and highlights them accordingly.
This results in a precise comparison of the target geometry of the CAD design with the actual dimensions of the scanned section, enabling optimal adjustments.
Subsequently, visualizations can be created, for example, with original surfaces and in a selectable or custom 3D environment, as well as cutting dimensions and contours, for example, for CNC manufacturing.

Yacht Teak Deck - Refit & Repair
For the renovation of a yacht's teak deck during a refit, we 3D-scanned the cockpit and the entire teak deck for a teak deck manufacturer.
After processing and cleaning the data, we created the precise 3D CAD model for the teak deck manufacturer's production.
After processing and cleaning the data, we created the precise 3D CAD model for the teak deck manufacturer's production.

Old Building Facade Stucco - Reverse Engineering & Reconstruction
For facade renovation, possibly including thermal insulation, the entire facade is captured using a 3D scan.
Through data cleaning, preparation, and reduction, the scan data is transformed into a CAD-compatible 3D model.
Reengineering: After integrating the model into the CAD software, the stucco elements of the old building's facade were precisely reconstructed and can be modified as needed.
We then deliver the data ready for production.
This also enables the design and precise, clear assembly planning for all facade and insulation elements.
Through data cleaning, preparation, and reduction, the scan data is transformed into a CAD-compatible 3D model.
Reengineering: After integrating the model into the CAD software, the stucco elements of the old building's facade were precisely reconstructed and can be modified as needed.
We then deliver the data ready for production.
This also enables the design and precise, clear assembly planning for all facade and insulation elements.

Vehicle Conversion - From 3D Scan to Camper Van
Here is the entire process from the 3D scan of the vehicle interior and its preparation into a CAD 3D model, through the adaptation of the 3D furniture designs, to examples of 3D visualizations (e.g., for planning discussions with customers), to the finished, converted camper van or motorhome manufactured by our team in the hygge workshop.

3D Kidney Model: CT Data Processing & 3D Printing
We converted the 3D data of a kidney from a computed tomography scan into a CAD-compatible 3D model and prepared it for 3D printing.
The model was then manufactured using a 3D printer for use in a clear and informative pre-operative consultation and planning session.
The model was then manufactured using a 3D printer for use in a clear and informative pre-operative consultation and planning session.

Human Pelvis as a 3D CAD Model from CT Data
Data processing of computed tomography scans of a human pelvis and modeling into a CAD-compatible 3D model.
The 3D CAD model provides the best basis for applications such as 3D printing, pre-operative consultations for complex surgeries, and the creation and modification of prostheses and other medical technology components, among others.
The 3D CAD model provides the best basis for applications such as 3D printing, pre-operative consultations for complex surgeries, and the creation and modification of prostheses and other medical technology components, among others.

Child Car Seat - Reverse Engineering & Redesign
Reverse engineering of a child car seat for adapting it to children with special needs through modifications to the seat geometry.
Our 3D workflow enabled the customer, for the first time, to transfer the exact geometry of the seat into their CAD program in such a way that it could be easily adapted and seamlessly further processed.
Our 3D workflow enabled the customer, for the first time, to transfer the exact geometry of the seat into their CAD program in such a way that it could be easily adapted and seamlessly further processed.

Reconstruction of a Burnt-Out, Historic Roof Truss
Following a fire in a historic roof structure, a 3D scan was performed to document the existing condition.
The data was then cleaned, prepared for CAD, and reduced in size.
After transferring the data to the CAD program, we created the new design for the reconstruction of the historic roof structure.
The data was then cleaned, prepared for CAD, and reduced in size.
After transferring the data to the CAD program, we created the new design for the reconstruction of the historic roof structure.

Reverse Engineering - Gable of a Detached House
Reverse engineering of a single-family home's gable based on a 3D scan for subsequent renovation – with our workflow:
A) 3D scan capture.
B) Data cleaning and preparation.
C) Integration into a CAD program and creation of the gable as a 3D CAD model.
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[D) Adjustments, modifications, and new designs in the 3D CAD model.
E) Output of all necessary data for any manufacturing methods.]
A) 3D scan capture.
B) Data cleaning and preparation.
C) Integration into a CAD program and creation of the gable as a 3D CAD model.
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[D) Adjustments, modifications, and new designs in the 3D CAD model.
E) Output of all necessary data for any manufacturing methods.]
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